ebara pumps e.catalogue pumps... · 350 sal about wear and corrosion resistance • the impellers,...

28
347 SAL SLURRY PUMPS FEATURES No power overload Specially designed impeller with a limit load feature is used so that there is never a power overload no matter what the head. Low energy consumption and yet highly efficient Unique hydraulic design makes this pump more efficient than any other type. The initial rate of efficiency is sustained for reducing electrical power consumption. Highly durable A special, wear-resistant iron casting is used for both body and impeller. Ample motor output allowance The motor has ample power output allowance. It will operate without change of output with mixed solution of 1.1 specific gravity. Minimal gland packing leakage Rear impeller vane ensures minimal leakage from durable gland packing. Corrosion and wear-resistant materials Both chrome iron casting and two-phase stainless steel are available. Interchangeability makes a wide range of applications possible. SPECIFICATIONS STANDARD OPTIONAL Model SAL-M Model SAL-R Liquid Slurry (Liquid containing particle matter) Max. spherical solids (mm) 40 x 32 SALE, F ...... Ø6 50 x 40 SALE, F ...... Ø7 125 x 100 SALH...... Ø25 50 x 40 SALG, H......Ø6 125 x 100 SALH...... Ø19 If specifications exceed 65 x 50 SALF, G, H...Ø8 150 x 125 SALH, J...Ø32 those given at left model 80 x 65 SALF, G, H...Ø12 200 x 150 SALJ...... Ø40 URSD must be used. Weight concentration to 30% Specific gravity of mixed to 1-3 (Note: Will be greater than horsepower specifield in catalogue if over 1.1) Temperature 0-80°C (32 ~176°F) Max. suction press 1 kgf/cm 2 up to Size 125 x 100 - 5m Suction head above Size 150 x 125-3m Installation Indoor (SALE, F G) Indoor & Outdoor (SALH,J) Materials Casing Low chrome cast iron Two-phase stainless Impeller High chrome cast iron Two-phase stainless Shaft 403 Stainless steel......SAL-E, F, G 304 Stainless steel . Carbon steel........ SAL-H,J Shaft sleeve 420 Stainless steel 316 Stainless steel Flange JIS 10 kgf/cm 2 Construction Nozzle position End suction, top discharge Impeller type Semi open, with rear vane Stuffing box Gland packing Bearing Sealed ball bearing (SAL-EFG), Ball & angular contact ball (SAL-H, J) Lubrication Grease (SAL-EFG), oil bath (SAL-H, J) Oil bath Drive method Motor direct drive V belt drive......SAL-H, J only

Upload: dotruc

Post on 19-Oct-2018

224 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

347

SAL

SLURRY PUMPS

FEATURES• No power overload

Specially designed impeller with a limit loadfeature is used so that there is never a power overload no matter what the head.

• Low energy consumption and yet highly efficientUnique hydraulic design makes this pump more efficient than any other type.The initial rate of efficiency is sustained for reducing electrical power consumption.

• Highly durableA special, wear-resistant iron casting is used for both body and impeller.

• Ample motor output allowanceThe motor has ample power output allowance. It will operate without change of output with mixed solution of 1.1 specific gravity.

• Minimal gland packing leakageRear impeller vane ensures minimal leakage from durable gland packing.

• Corrosion and wear-resistant materialsBoth chrome iron casting and two-phase stainless steel are available. Interchangeability makes a wide range ofapplications possible.

SPECIFICATIONS

STANDARDOPTIONAL

Model SAL-M Model SAL-RLiquid Slurry (Liquid containing particle matter)

Max. spherical solids (mm) 40 x 32 SALE, F. . . . . .Ø6

50 x 40 SALE, F. . . . . .Ø7 125 x 100 SALH......Ø25

50 x 40 SALG, H......Ø6 125 x 100 SALH......Ø19 If specifications exceed

65 x 50 SALF, G, H...Ø8 150 x 125 SALH, J...Ø32 those given at left model

80 x 65 SALF, G, H...Ø12 200 x 150 SALJ.. . . . .Ø40 URSD must be used.

Weight concentration to 30%

Specific gravity of mixed to 1-3 (Note: Will be greater than horsepower specifield in catalogue if over 1.1)

Temperature 0-80°C (32 ~176°F)

Max. suction press 1 kgf/cm2

up to Size 125 x 100 - 5mSuction head above Size 150 x 125-3mInstallation Indoor (SALE, F G) Indoor & Outdoor (SALH,J)

Materials

Casing Low chrome cast iron Two-phase stainless

Impeller High chrome cast iron Two-phase stainless

Shaft 403 Stainless steel......SAL-E, F, G 304 Stainless steel. Carbon steel. . . . . . . . SAL-H,J

Shaft sleeve 420 Stainless steel 316 Stainless steel

Flange JIS 10 kgf/cm2

Construction

Nozzle position End suction, top discharge

Impeller type Semi open, with rear vane

Stuffing box Gland packing

Bearing Sealed ball bearing (SAL-EFG), Ball & angular contact ball (SAL-H, J)

Lubrication Grease (SAL-EFG), oil bath (SAL-H, J) Oil bath

Drive method Motor direct drive V belt drive......SAL-H, J only

Page 2: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

348

SAL

APPLICATIONS

Page 3: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

349

SAL

SECTION VIEW

Page 4: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

350

SAL

ABOUT WEAR AND CORROSION RESISTANCE

• The impellers, which are subject to the greatest possibility ofwear, are of tough high chrome cast iron about 20 times aswear resistant as ordinary cast iron.

• The casing, which is subject to less possibility of wear, is ofless expensive low chrome cast iron with three to five timesthe wear resistance of ordinary cast iron.

TWO-PHASE STAINLESS STEEL

18-8 system stainless steel now widely favored as an anticorrosive material is vulnerable to an atmosphere with chlorine ions. Tocope with this, EBARA has developed two-phase stainless steel which is resistant to stress corrosion cracks, for use especially inchemical plants, ocean development equipment and food industrial plants.

Two-phase stainless steel is composed of austenite with a 40 to60% ferrite content. The principle features of the superior corrosionresistance of austenite and the hardness and strength of ferrite-have been skillfully combined. This two-phase stainless steel canbe used without the problems of conventional steel such as wear,corrosion, and cracking and is especially suited for use with seawater.

Page 5: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

351

SAL

SELECTION CHART FOR SAL-M (Motor direct drive)

SYMBOLS

50 X 40 SALG 5 2.2Motor output kWFrequency 50 Hz : 5ModelDischarge size mmSuction size mm

Motor Capacity T.H. Capacity T.H. Capacity T.H.Size Model Pole

kW m3/min m m3/min m m3/min m40 x 32 SALF5.75 4 0.75 0.08 11.5 0.13 10 0.18 7.7

SALE5.75 0.75 0.17 7.5 - - 0.26 5.550 x 40 SALF51.5 4 1.5 0.1 13.5 0.21 11.7 0.32 9

SALG52.2 2.2 0.1 20 0.21 17.3 0.33 13

SALF52.2 2.2 0.32 12.5 - - 0.5 9.565 x 50 SALG53.7 4 3.7 0.2 20.5 0.4 17.5 0.57 13

SALH55.5 5.5 0.2 29 0.4 25.5 0.6 21SALH52.2 6 2.2 0.52 10 - - 0.8 7.5

SALF53.7 3.7 0.55 13.5 0.7 11.5 0.85 1080 x 65 SALG55.5 5.5 0.4 21.5 0.7 18 1.0 13.5

4SALH57.5 7.5 0.4 27 0.7 24 1.05 19.5SALH511 11 0.4 32 0.8 29 1.25 23

SALH53.7 6 3.7 0.85 8.8 - - 1.6 6.5SALJ55.5 6 5.5 1.0 13 - - 1.65 9.8SALH57.5 7.5 0.8 17.2 1.5 15 2.1 12

125 x 100 4SALH551 11 1.05 20.5 1.8 18 2.5 14SALH515 15 0.9 28 1.7 24.5 2.3 20

4SALJ518 18.5 0.9 33 1.6 29.5 2.55 22

Pump with 150 x 125 and 200 x 150 diameters must be matched to capacities and heads used. Indicate what principal itemswill be used.

Note :1. Impeller measurements will vary for 150 x 125 and 200 x 150 according to capacities and heads used. Indicate capacities

and heads.2. Output indicated in the chart is in relation to a 1.1 specific gravity. If specific gravity exceeds 1.1 output must be raised one level.

Page 6: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

352

SAL

SELECTION CHART FOR SAL-R (V belt drive)

Page 7: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

353

SAL

DIMENSION FOR SAL-M (Motor direct drive)

DIMENSIONAL TABLE

Note:1. Motor specifications: Three-phase induction

motor; open, drip-proof type : D.P.; completelysealed external fan type : T.E.

2. Dimensions marked with an asterix (*) willchange when using a completely sealedexternal fan type motor with four poles of 15kWor six poles of less than 11kW.

3. The pump must never be allowed to rotate inreverse. Confirm test in operation of motor onlythat rotation direction is correct.

EFG type 1 / 4B 2~3l / min x 1kgf/cm2 (98.1kPa)External water feed

HJ type 3 / 8B 3~5l / min x 2.0kgf/cm2 (196.1kPa)

Size g e F t n hØ32 80 100 135 18 4 1940 85 105 140 18 4 1950 100 120 155 20 4 1965 120 140 175 22 4 1980 130 150 185 22 8 19

100 155 175 210 24 8 19125 185 210 250 24 8 24150 215 240 280 26 8 24200 265 290 330 26 12 24

Motor Pump Motor Corron base Anchor bolt WeightSize Model output [Mass]

FrameøS x ød kW A B D H L* P Type MA* MR BM BN BY1 BY2 Fd Fl Fa Fd kgNo.40 x 32 40 x 32SALF5.75 0.75 80 355 180 225 675 160 80 D.P. 97 140 340 120 304 244 M10 200 40 40 70

50 x 40SALE5.75 0.75 100 355 180 225 695 160 80 D.P. 97 140 340 120 304 244 M10 200 40 40 7050 x 40 50 x 40SALF51.5 1.5 100 355 180 225 741.5 160 90L D.P. 115 168.5 340 120 304 244 M10 200 40 40 78

50 x 40SALG52.2 2.2 100 375 225 255 791 185 100L D.P. 130 183 360 140 350 304 M12 250 55 50 11365 x 50SALF52.2 2.2 100 460 225 290 876 217.5 100L D.P. 130 183 380 180 410 304 M12 250 55 50 144

65 x 50 65 x 50SALG53.7 3.7 100 460 225 290 900 217.5 112M D.P. 137 200 380 180 410 304 M12 250 55 50 15265 x 50SALH55.5 5.5 110 545 280 285 1050 215 132S D.P. 153 239 680 170 390 390 M12 250 55 50 22780 x 65SALF53.7 3.7 100 460 250 290 900 217.5 112M D.P. 137 200 380 180 410 304 M12 250 55 50 15080 x 65SALG55.5 5.5 100 460 250 290 955 217.5 132S D.P. 153 239 540 180 410 410 M12 250 55 50 195

80 x 65 80 x 65SALH57.5 7.5 120 550 280 285 1104 220 132M D.P. 173 258 680 170 390 390 M12 250 55 50 24680 x 65SALH511 11 120 550 280 285 1214 220 160M D.P. 218 323 680 170 390 390 M12 250 55 50 27680 x 65SALH52.2 2.2 120 550 280 275 1010 205 112M D.P. 137 200 500 155 390 310 M12 250 55 50 209

125 x 100SALH57.5 7.5 150 565 280 285 1149 235 132M D.P. 173 259 680 170 390 390 M12 250 55 50 246125 x 100SALH511 11 150 565 280 285 1259 235 160M D.P. 218 323 680 170 390 390 M12 250 55 50 276125 x 100SALH53.7 3.7 150 565 280 285 1110 235 132S D.P. 153 239 680 170 390 390 M12 250 55 50 237

125 x 100 125 x 100SALJ515 15 155 695 315 370 1436 240 160L D.P. 238 345 800 175 480 390 M16 315 70 63 397370 1436 240 160L D.P. 238 345 800 175 480 390 411

125 x 100SALJ518 18.5 155 695 315 M16 315 70 63380 1507 265 180M T.E. 302.5 351.5 860 200 490 490 460

125 x 100SALJ55.5 5.5 155 695 315 370 1284 240 132M D.P. 173 258 800 175 480 390 M16 315 70 63 347150 x 125SALH511 11 180 355 355 370 1434 255 160M D.P. 218 323 800 175 480 390 M16 315 70 63 431150 x 125SALH515 15 180 710 355 370 1476 255 160L D.P. 238 345 800 175 480 390 M16 315 70 63 452

370 1476 255 160L D.P. 238 345 800 175 480 390 466150 x 125SALH518.5 18.5 180 710 355 M16 315 70 63

380 1547 280 180M T.E. 302.5 351.5 860 200 490 490 511150 x 125SALH55.5 5.5 180 710 355 370 1324 255 132M D.P. 173 258 800 175 480 390 M16 315 70 63 407

1481 180M D.P. 236.5 351.5 501150 x 125SALJ522 22 180 710 355 380 280 860 200 490 490 M16 315 70 63

150 X 125 1585 180L T.E. 321.5 370.5 5461519 180L D.P. 255.5 370.5 526

150 x 125SALJ530 30 180 710 355 380 280 860 200 490 490 M16 315 70 631653 200L T.E. 346.5 395.5 6111561 280 200M D.P. 261.5 406.5 860 200 490 490 566

150 x 125SALJ537 37 180 710 355 380 M16 315 70 631703 300 225S T.E. 378 432 960 220 600 600 725150 x 125SALJ57.5 7.5 180 710 355 370 1434 255 160M D.P. 218 323 800 175 480 390 M16 315 70 63 442150 x 125SALJ511 11 180 710 355 370 1476 255 160L D.P. 238 345 800 175 480 390 M16 315 70 63 470

1744 180L D.P. 255.5 370.5 733200 x 150SALJ530 30 220 895 400 460 350 960 220 640 500 M16 315 70 631878 200L T.E. 364.5 395.5 818

1786 350 200M D.P. 261.5 406.5 960 220 500 M16 315 70 63 773200 x 150SALJ537 37 220 895 400 460 6401928 370 225S T.E. 378 432 1040 240 640 M20 400 85 80 893

1824 350 200L D.P. 280.5 425.5 960 220 500 M16 315 70 63 798200 x 150SALJ545 45 220 895 400 460 640200 X 150 1953 370 225M T.E. 390.5 444.5 1040 240 640 M20 400 85 80 923

1862 225M D.P. 299.5 444.5 878200 x 150SALJ555 55 220 895 400 460 370 1040 240 640 640 M20 400 85 802113 250M T.E. 512.5 482.5 1103200 x 150SALJ511 11 220 895 400 460 1701 350 160L D.P. 238 345 640 220 640 500 M16 315 70 63 683

1706 180M D.P. 23.5 315.5 718200 x 150SALJ515 15 220 895 400 460 350 960 220 640 500 M16 315 70 63

1810 180L T.E. 321.5 370.5 743

4 pole motor 6 pole motor Unit : mm

Page 8: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

354

Motor Pump Base Anchor bolt WeightSize Motor Output exp. motor

øS x ød A B C D E F G H L P1 P2 Q BL BM BN BX1 BX2 BY1 BY2 BZ Fd Fa Fb FlkW [Mass] kg

50 x 40 50 x 40SALH 2.2~7.5 105 540 40 225 355 185 180 275 645 15 - 50 720 460 130 495 495 525 525 15 M12 55 50 250 155

65 x 50SALH 2.2~7.5 110 545 40 280 355 185 180 275 655 25 - 50 720 460 130 495 495 525 525 15 M12 55 50 250 16565 x 50

65 x 50SALH 11~22 110 545 40 280 500 240 190 295 655 20 - 40 930 630 150 570 445 600 475 19 M16 70 63 315 190

80 x 65SALH 2.2~7.5 120 550 40 280 355 185 180 275 670 30 - 50 720 460 130 495 495 525 525 15 M12 55 50 250 17580 x 65

80 x 65SALH 11~22 120 550 40 280 500 240 190 295 670 25 - 40 930 630 150 570 445 600 475 19 M16 70 63 315 200

125 x 100SALH 2.2~7.5 150 565 40 280 355 185 180 275 715 45 - 50 720 460 130 495 495 525 525 15 M12 55 50 150 175

125 x 100SALH 11~22 150 565 40 280 500 240 190 295 715 40 - 40 930 630 150 570 445 600 475 19 M16 70 63 315 200125 x 100

125 x 100SALJ 5.5~15 155 695 40 315 450 220 230 370 850 45 - 70 900 580 160 605 605 635 635 19 M16 70 63 315 320

125 x 100SALJ 18.5~37 155 695 40 315 630 300 230 390 850 - 30 50 1160 800 180 620 620 660 660 24 M20 85 80 400 335

150 x 125SALJ 5.5~15 180 710 40 335 450 220 230 370 890 60 - 70 900 580 160 605 605 635 635 19 M16 70 63 315 390150 x 125

150 x 125SALJ 18.5~37 180 710 40 35 630 300 230 390 890 - 15 50 1160 800 180 620 620 660 660 24 M20 85 80 400 395

200 x 150SALJ 15~22 220 895 40 400 680 280 290 460 1115 120 - 90 1250 850 200 690 690 730 730 24 M20 85 80 400 630200 X 150

200 x 150SALJ 37~75 220 895 40 400 830 380 290 515 1115 100 - 40 1500 1000 250 745 630 785 670 24 M20 85 80 400 685

SAL

DIMENSION FOR SAL-R (V-belt drive)

DIMENSIONAL TABLE

Size g e F t n hØ40 85 105 140 18 4 1950 100 120 155 20 4 1965 120 140 175 22 4 1980 130 150 185 22 8 19

100 155 175 210 24 8 19125 185 210 250 24 8 24150 15 240 280 26 8 24200 265 290 330 26 12 24

Unit : mm

Page 9: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

355

SAL

SAL QT TYPE SELF-PRIMING TANK (Optional)

Installing a self-priming tank, if your SAL pump is used for vertical, upward suction, it will be possible for you to use the pump forthe following applications:

1. Install where a general-purpose pump with foot valve is beingused. There are many cases of problems arising with a footvalve pump because the valve does not operate correctly, breaksdown or causes wear of the pump body.

2. Install where a self-priming pump is being used. There are manycases of problems arising due to inefficiency caused by thelength of time it takes for priming, malfunction of the check valveon the suction side and wear of the pump body.

3. Install where a submersible pump is being used. There are manycases of problems arising from frequent breakdown of themechanical seal due to dirt and sand, and extreme wear of thepump body.

4. Install where a vertical shaft pump is being used. There are manycases of problems arising from wear of the submersible verticalshaft bearing, and the frequent necessity of inspection for repair.

• Principles of Self-Priming: Pumping bymeans of siphon action

Once the pipes are filled with water (a varietyof methods can be used to do this) pumpingwill be sustained naturally. When the waterin a section of piping beings drop, a vacuumis created at the upper end of the pipe. Theatmospheric pressure on the surface of thewater in the water tank forces water in thetank up into the pipe so that it is once againfull of water. (In a vacuum, atmosphericpressure has enough power to push waterup 10 meters.) This is why pumping issustained when the pipe are full.If the pipethat is in the water tank is punctured, air willenter through the hole making siphoningimpossible and forcing pumping to stop.

• How to Use the Self-Priming Tank1 Open the air release valve (a) and the feed

water valve (b) and fill the tank with water.2 After the tank has been filled to the point

where water overflows from the top of thesuction pipe, close valve (a) and (b) andstart the pump.

3. As the water in the tank is sucked up bythe pump, its level will gradually drop andthe pressure level in the tank will alsodrop. However, once pressure hasdropped to a certain point, the samesiphon principle operates. The water inthe water tank on the suction side ispushed by a atmospheric pressure intothe tank.

4 Therefore, when a pump isoperated with a self-primingtank there is no need for afoot valve. When the liquidpump contains slurry, the footvalve seat is often worn to thepoint where it no longerfunction and it becomesimpossible to operate thepump. With an EBARA Self-Priming Tank, however, thissort of trouble will never arise.

5 Even when the pump is stopped, all waterin the tank will not drain which means it ispossible to start the next pump operationwithout any preparation. Note, however,that if the tank is punctured or suctionpiping is damaged, self-priming will nolonger be possible and the pump will notbe able to function.

Model and Specifications

Page 10: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

356

SAL

DIMENSION - SAL QT SELF-PRIMING TANK

WeightModel øS A B C D F G H I K [Mass] Kg

QT-1 40 100 570 770 217 150 130 144 40 12 27QT-2 50 120 540 780 268 180 155 174 40 12 40QT-3 65 120 480 780 319 220 185 205 45 15 53QT-4 80 120 495 850 356 240 200 223 45 15 63QT-5 125 160 630 1200 508 350 295 319 65 15 188QT-6 150 210 980 1670 562 400 320 436 65 19 210QT-7 200 280 580 1600 812 550 450 481 75 24 320

Notes on Installation• One self-priming tank should be installed for each pump.• Pump suction piping:

1. Connect self-priming tank and pump with no more than two meters of straight piping.Avoid to use elbow as much as possible.

2. Never allow air in the suction side since pressure will drop.• Pump discharge piping:

1. Discharge piping should be higher than top of tank.2. Total discharge piping length should be as shown in table below.

3. The end of the discharge piping should be higher than suction water level.

4. Do not use a check valve. Install so that there will not be a reverse flow at the end of the discharge piping.

5. When a pump is not operating for extended periods, or when it is a type that does not use external feedwater,add water to the tank occasionally.

Discharge pipePump size length x dia.40 x 32SAL 18m x 1 1/4 B50 x 40SAL 18m x 1 1/2 B65 x 50SAL 13m x 2B80 x 65SAL 10m x 2 1/2B

125 x 100SAL 12m x 4B150 x 125SAL 17m x 5B200 x 150SAL 24m x 6B

Page 11: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

357

IFW

END SUCTION PROCESS PUMPS

EBARA PROCESS PUMPS MODEL IFW of single stage, end suction, foot supported, horizontaltype have been widely used in the chemical industry, petroleum refineries, the petrochemicalindustry and other industries for many years. Many improvements have been recently made onthis pump to enhance its performance. “This money saver” our modern mass production facilitiesenable us to pass the cost-savings on to you. Unique design of this high performance pumpfeatures stainless steel, cast steel casing or cast iron for superior and extended low-cost operation.

APPLICATIONS• Chemical industry• Petroleum refineries• The petrochemical industry• Other industries

FEATURES• Foot support and heavy duty design• Back pull-out casing• Full compliance with ISO 2858 specifications• All components have been designed for maximum parts interchangeability• Flexibility of design handles wide range of liquids• All sizes stocked for last shipment• Low NPSH performance

SPECIFICATIONS

Capacities To 24 m3/min (3700 USGPM)

Heads To 140m (470 ft)

Discharge pressures To gauge pressure 1.57MPa (230PSI) (16kgf/cm2)

Max. allowable suction pressures To gauge pressure 0.88Mpa (130PSI) (9kgf/cm2)

Hydrostatic test pressures To gauge pressure 2.3MPa (340PSI) (24kgf/cm2)

Speed 50Hz 1450 or 2950 min-1

Max. allowable speed To 3600 min-1

Rotation Clockwise viewed from inboard side

Impeller type Enclosed

Stainless steel: -50°C to 200°C (-58°F to 392°F)

Temperatures Cast steel: -5°C to 200°C (-23°F to 392°F)

Cast iron: -15°C to 150°C (-5°F to 300°F)

JIS10KRF/ANSI 150 RF (Stainless steel, cast steel)Flange rating

JIS10KFF/ANSI 125 FF (Cast iron)

Nozzles End-Top

Stuffing box Suitable for conventional packing & mechanical seal

Page 12: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

358

IFW

SELECTION CHART

Page 13: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

359

IFW

CONSTRUCTION

Section Drawing ofStandard Type(Cast iron)

Part List Bearing Casing With Cooling Jacket

MaterialNo. Name of part Quantity

Cast iron Ductile cast iron001 Casing FC250 FCD 1016 Mechanical seal cover SUS420J1 SUS420J1 1018 Gland cover FC250 FCD 1021 Impeller FC200 FC200 1031 Shaft S35C S35C 1

039-1 Impeller key S50C S50C 1039-2 Coupling key S50C S50C 1041 Packing sleeve SUS402J1 SUS402J1 1042 Mechanical seal sleeve SUS316 SUS316 1048 Impeller nut S30C S30C 1051 Bearing casing FC200 FC200 1053 Bearing cover FC200 FC200 2056 Ball bearing - - 2066 Cooling cover FC200 FC200 1090 Lantern ring SUS304 SUS304 1091 Packing gland FC150 FC150 1093 Flinger SUS304 SUS304 1095 Stay SS400 SS400 1

107-1 Liner ring FCD400 FCD400 1107-2 Liner ring FCD400 FCD400 1111 Mechanical seal - - 1114 Oil seal SPHC/NBR SPHC/NBR 2

115-3 O-ring for mechanical seal cover Teflon Teflon 1117-1 Gasket for casing V#6500 V#6500 1117-2 Gasket for shaft sleeve V#6500AC V#6500AC 1117-3 Gasket for bearing Oil Sheet Oil Sheet 1117-4 Gasket for cooling cover NBR NBR 2119 Gland packing P#6501L P#6501L 5120 Casing bolt SS400/SUS403 SS400/SUS403 1 set122 Hock bolt S20C S20C 1124 Gland bolt SUS403 SUS403 2, 4158 Wave washer SK5 SK5 1255 Oil level gauge Synthetic rubber/Glass Synthetic rubber/Glass 1285 Air breather Polycarbonate Polycarbonate 1

(Note) 1. Combinations of parts in other materials than listed are alsoavailable upon request.

2. Packing/gasket material letters is as followsP: Nippon Pillar made.V: Nippon Valqua made.

Page 14: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

360

MaterialNo. Name of part Quantity

Cast iron Cast steel001 Casing SCS14 SCS13 SC480 1

016 Mechanical seal cover SUS316 SUS304 SUS403 1018-1 Gland cover (I) SCS14 SCS13 SC480 1018-2 Gland cover (II) FCD400 FCD400 FCD400 1021 Impeller SCS14 SCS13 FC200 1

031 Shaft SUS316 SUS304 S35C 1039-1 Impeller key SUS316 SUS316 S50C 1039-2 Coupling key S50C S50C S50C 1041 Packing sleeve SUS316 SUS304 SUS420J1 1042 Mechanical seal sleeve SUS316 SUS304 SUS304 1048 Impeller nut SUS316 SUS304 S30C 1051 Bearing casing FC200 FC200 FC200 1053 Bearing cover FC200 FC200 FC200 2056 Ball bearing - - - 2066 Water-cooling cover FC200 FC200 FC200 1090 Lantern ring SUS304 SUS316 SUS304 1093 Flinger SUS316 SUS304 SUS304 1095 Stay SS400 SS400 SS400 1

107-1 Liner ring SUS316 SUS304 FCD400 1107-2 Linear ring SUS316 SUS304 FCD400 1

111 Mechanical seal - - - 1114 Oil seal SPHC/NBR SPHC/NBR SPHC/NBR 2

115-1 O-ring for gland cover NBR NBR NBR 1115-2 O-ring for gland cover NBR NBR NBR 1

115-3 O-ring for mechanical seal cover Teflon Teflon Teflon 1117-1 Gasket for casing V#6500AC V#6500AC V#6500AC 1117-2 Gasket for shaft sleeve V#6500AC V#6500AC V#6500AC 1117-3 Gasket for bearing cover OIL SHEET OIL SHEET OIL SHEET 2117-4 Gasket for water-cooling cover NBR NBR NBR 1119 Gland packing P#6501L P#6501L P#6501L 5120 Casing bolt SUS403 SUS403 SUS403 1 set122 Hook bolt S20C S20C S20C 1124 Gland bolt SUS316 SUS304 SUS403 2, 4158 Wave washer SK5 SK5 SK5 1

Synthetic Synthetic Synthetic255 Oil level gauge rubber/ rubber/ rubber/ 1

Glass Glass Glass

285 Air breather Polycarbonate Polycarbonate Polycarbonate 1

IFW

CONSTRUCTION

Section Drawing ofStandard Type(Stainless steel, Caststeel)

Part List Bearing Casing With Cooling Jacket

(Note) Stuffing box with Cooling Jacket is available with stainless steeland cast pumps only

(Note) 1. Combinations of parts in other materials than listed are alsoavailable upon request.

2. Packing/gasket material letters is as followsP: Nippon Pillar made.V: Nippon Valqua made.

Page 15: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

361

IFW

SHAFT SEALING SYSTEM

A B C

1.Dimension of the shaftsealing packing box are subjectto ISO-3069Mechanical seal is standardizedto DIN 24690 in type anddimensions.

2.Other shaft sealing systems areavailable to meet different servicerequirements.

Page 16: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

362

50 x 40 IFWM 90L 1.5 100 500 225 275 75 900 150 600 150 400 320 168.5 158.5 930 3 M12 55 195 250 110 115 140 6-14

2524 100L 2.2 100 500 225 275 75 900 150 600 150 400 320 193 173 969 3 M12 55 195 250 110 114 140 6-14112M 3.7 100 500 225 287 75 900 150 600 150 400 320 200 283 986 3 M12 55 195 250 110 115 140 6-14

132S 100 500 225 275 75 995 170 660 165 400 400 239 210 1052 3 M12 55 195 250 110 123 140 6-1411160M 100 500 225 275 75 1120 190 740 190 440 440 323 280 1206 3 M12 55 195 250 110 136 140 6-1415

160L 18.5 100 500 225 275 75 112 190 740 190 440 440 345 302 1250 3 M12 55 195 250 110 136 160 8-14

180M 22 100 500 225 275 75 1120 190 740 190 440 440 351.2 325 1279.5 3 M12 55 195 250 110 133 160 8-14180L 30 100 500 225 275 75 1260 205 840 215 490 490 370.5 344 1317.5 3 M12 55 195 250 110 153 180 8-14

IFW

DIMENSION

• Flange dimensions UIS 10K. Regular flanges for cast iron, caststeel and stainless steel pump.

Motor Pump Common base Motor ❈ Anchor bolt Wt CouplingPump [Mass]Model Frame kW P1 P2 H1 H2 A B1 B2 B3 B4 B5 B6 M1 ❈M2 LA X Fd Fb Fe Fh Fw kg CLA CLAB

40 x 25 IFWM 80 0.75 80 385 160 212 60 725 115 480 130 290 250 140 133 741 3 M12 55 195 250 110 64 112 4-101.51312 90L 80 385 160 222 60 725 115 480 130 290 250 168.5 158.5 795 3 M12 55 195 250 110 64 112 4-102.2

40 x 25IFWM 112M 3.7 80 385 160 212 60 765 130 540 95 320 320 200 183 851 3 M12 55 195 250 110 69 112 4-105.51612 132S 80 385 160 240 60 805 130 540 135 350 350 239 210 917 3 M12 55 195 250 110 71 140 6-167.5

40 x 25 IFWM 112M 3.7 80 385 180 240 60 765 130 540 95 320 320 200 183 851 3 M12 55 195 250 110 83 112 4-105.52013 132S 80 385 180 240 60 805 130 540 135 350 350 239 210 927 3 M12 55 195 250 110 81 140 6-147.511160M 80 385 180 255 60 970 170 660 140 400 400 323 280 1071 3 M12 55 195 250 110 101 140 6-1415

50 x 40 IFWM 71 0.4 80 385 160 212 60 725 115 480 130 290 250 120 121 709 3 M12 55 195 250 110 70 112 4-10

1323 80 0.75 80 385 160 212 60 725 115 480 130 290 250 140 133 741 3 M12 55 195 250 110 69 112 4-10

50 x 40 IFWM 90L 80 385 160 222 60 725 115 480 130 290 250 168.5 158.5 795 3 M12 55 195 250 110 69 112 4-10

1623 112M 3.7 80 385 160 212 60 765 130 540 95 320 320 200 185 851 3 M12 55 195 250 110 74 112 4-105.5132S 80 385 160 240 60 805 130 540 135 350 350 239 210 917 3 M12 55 195 250 110 76 140 6-147.511160M 80 385 160 155 60 970 170 660 140 400 400 323 280 1071 3 M12 55 195 250 110 95 140 6-1415

1.51.5/ 2.2

50 x 40 IFWM 80 0.75 100 385 180 240 60 725 115 480 130 320 250 140 133 761 3 M12 55 195 250 110 82 112 4-10

2013 90L 1.5 100 385 180 250 60 725 115 480 130 320 250 168.5 158.5 815 3 M12 55 195 250 110 83 112 4-10100L 2.2 100 385 180 240 60 765 130 540 95 320 320 193 173 854 3 M12 55 195 250 110 85 112 4-10

5.5132S 100 385 180 240 60 805 130 540 135 350 350 239 210 937 3 M12 55 195 250 110 86 140 6-147.511160M 100 385 180 255 60 970 170 660 140 400 400 323 280 1091 3 M12 55 195 250 110 103 140 6-1415

7.55.5/ 5.5

80 x 50 IFWM 71 0.4 100 385 180 240 60 725 115 480 130 320 250 120 121 729 3 M12 55 195 250 110 77 112 4-10

1313 80 0.75 100 385 180 240 60 725 115 480 130 320 250 140 133 761 3 M12 55 195 250 110 77 112 4-10

80 x 50 IFWM 90L 1.5 100 385 180 250 60 725 115 480 130 320 250 168.5 158.5 815 3 M12 55 195 250 110 78 112 4-101623 100L 2.2 100 385 180 240 60 765 130 540 95 320 320 193 173 854 3 M12 55 195 250 110 80 112 4-10

112M 3.7 100 385 180 240 60 765 130 540 95 320 320 200 183 871 3 M12 55 195 250 110 80 112 4-105.5132S 100 385 180 240 60 805 130 540 135 350 350 239 210 937 3 M12 55 195 250 110 81 140 6-147.511160M 100 385 180 255 60 970 170 660 140 400 400 323 280 1091 3 M12 55 195 250 110 98 140 6-1415

160L 18.5 100 385 180 255 60 970 170 660 140 400 400 345 302 1135 3 M12 55 195 250 110 103 160 8-14

Notes: 1. Motor output classification numbers shown are for ordinary E class totally-enclosed, fan-cooled low-voltage 3-phasesquirrel-cage induction motors under JEM-1400-1983.

2. Mz and LA dimensions marked with an asterisk vary to a certain extent, depending on motor manufacturers.3. Dimensions are subject to change without notice.4. In two motor ratings(kW) with slash mark, left side is the rating of four poles and right side is the rating of two poles.

Page 17: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

363

Motor Pump Common base Motor ❈ Anchor bolt Wt CouplingPump [Mass]Model Frame kW P1 P2 H1 H2 A B1 B2 B3 B4 B5 B6 M1 ❈M2 LA X Fd Fb Fe Fh Fw kg CLA CLAB

80 x 50 IFWM 90L 1.5 100 385 200 250 60 725 115 480 130 320 250 168.5 158.5 815 3 M12 55 195 250 110 88 112 4-102023 100L 2.2 100 385 200 240 60 765 130 540 95 320 320 193 173 854 3 M12 55 195 250 110 90 112 4-10

112M 3.7 100 385 200 240 60 765 130 540 95 320 320 200 183 871 3 M12 55 195 250 110 90 125 4-145.5132S 100 385 200 255 60 805 130 540 135 350 350 239 210 937 3 M12 55 195 250 110 89 140 6-147.511160M 100 385 200 255 60 970 170 660 140 400 400 323 280 1091 3 M12 55 195 250 110 108 140 6-1415

160L 18.5 100 385 200 255 60 970 170 660 140 400 400 345 302 1135 3 M12 55 195 250 110 113 160 8-14

180M 22 100 385 200 275 60 1015 170 660 185 320 440 351.5 325 1164.5 3 M12 55 195 250 110 111 160 8-14180L 30 100 385 200 275 60 1015 170 660 185 320 440 370.5 344 1202.5 3 M12 55 195 250 110 111 180 8-14

IFW

DIMENSION

• Flange dimensions UIS 10K. Regular flanges for cast iron, caststeel and stainless steel pump.

80 x 50 IFWM 90L 1.5 125 500 225 275 75 900 150 600 150 400 320 168.5 158.5 955 3 M12 55 195 250 110 122 140 6-142524 100L 2.2 125 500 225 275 75 900 150 600 150 400 320 193 173 994 3 M12 55 195 250 110 122 140 6-14

112M 3.7 125 500 225 287 75 900 150 600 150 400 320 200 183 1011 3 M12 55 195 250 110 122 140 6-14

132S 5.5 125 500 225 275 75 995 170 660 165 400 400 239 210 1077 3 M12 55 195 250 110 131 140 6-14132M 7.5 125 500 225 275 75 995 170 660 165 400 400 258 229 1115 3 M12 55 195 250 110 132 160 8-14

11160M 125 500 225 275 75 1120 190 740 190 440 440 323 280 1231 3 M12 55 195 250 110 144 140 6-1415160L 18.5 125 500 225 275 75 1120 190 740 190 440 440 345 302 1275 3 M12 55 195 250 110 144 160 8-14

180M 22 125 500 225 275 75 1120 190 740 190 440 440 351.5 325 1304.5 3 M12 55 195 250 110 141 160 8-14180L 30 125 500 225 275 75 1260 205 840 215 490 490 370.5 344 1342.5 3 M12 55 195 250 110 161 180 8-14

37200L 125 500 225 295 75 1245 205 840 200 400 490 395.5 377 1400.5 3 M12 55 195 250 110 158 180 8-1445

Notes: 1. Motor output classification numbers shown are for ordinary E class totally-enclosed, fan-cooled low-voltage 3-phasesquirrel-cage induction motors under JEM-1400-1983

2. Mz and LA dimensions marked with an asterisk vary to a certain extent, depending on motor manufacturers.3. Dimensions are subject to change without notice.4. In two motor ratings(kW) with slash mark, left side is the rating of four poles and right side is the rating of two poles.

80 x 50 IFWM 100L 2.2 125 500 280 320 75 905 150 600 155 400 320 193 173 994 3 M12 55 195 250 110 160 140 6-143124 112M 3.7 125 500 280 332 75 905 150 600 155 400 320 200 183 1011 3 M12 55 195 250 110 161 140 6-14

(Only for 4P) 132S 5.5 125 500 280 320 75 990 170 660 160 440 350 239 210 1077 3 M12 55 195 250 110 162 140 6-143224 132M 7.5 125 500 280 320 75 990 170 660 160 440 350 258 229 1115 3 M12 55 195 250 110 162 160 8-14

(Only for 2P) 160M 125 500 280 320 75 1120 190 740 190 440 440 323 280 1231 3 M12 55 195 250 110 175 160 8-14

160L 18.5 125 500 280 320 75 1120 190 740 190 440 440 345 302 1275 3 M12 55 195 250 110 175 160 8-14

180M 22 125 500 280 340 75 1120 190 740 190 440 440 351.5 325 1304.5 3 M12 55 195 250 110 177 160 8-14180L 30 125 500 280 320 75 1265 205 840 220 490 490 370.5 344 1342.5 3 M12 55 195 250 110 202 180 8-14

37200L 125 500 280 320 75 1265 205 840 220 490 490 395.5 377 1400.5 3 M12 55 195 250 110 192 180 8-1445

1111/ 15

100 x 80 IFWM 90L 1.5 100 500 200 240 75 880 150 600 130 350 290 168.5 158.5 930 3 M12 55 195 250 110 100 140 6-141314 100L 2.2 100 500 200 240 75 880 150 600 130 350 290 193 173 969 3 M12 55 195 250 110 99 140 6-14

100 x 80IFWM 112M 3.7 100 500 200 240 75 900 150 600 150 350 350 200 183 986 3 M12 55 195 250 110 103 140 6-14

1614 132S 100 500 200 255 75 970 170 660 140 400 400 239 210 1052 3 M12 55 195 250 110 160 140 6-1411160M 100 500 200 255 75 1120 190 740 190 440 440 323 280 1206 3 M12 55 195 250 110 121 140 6-1415

160L 18.5 100 500 200 255 75 1120 190 740 190 440 440 345 302 1250 3 M12 55 195 250 110 121 160 8-14

180M 22 100 500 200 275 75 1120 190 740 190 440 440 351.5 325 1279.5 3 M12 55 195 250 110 125 160 8-14180L 30 100 500 200 275 75 1245 205 840 200 400 490 370.5 344 1317.5 3 M12 55 195 250 110 143 180 8-14

5.55.5/ 7.5

Page 18: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

364

IFW

DIMENSION

Motor Pump Common base Motor ❈ Anchor bolt Wt CouplingPump [Mass]Model Frame kW P1 P2 H1 H2 A B1 B2 B3 B4 B5 B6 M1 ❈M2 LA X Fd Fb Fe Fh Fw kg CLA CLAB

100 x 80 IFWM 100L 2.2 100 500 225 275 75 900 150 600 150 400 320 193 173 969 3 M12 55 195 250 110 122 140 6-142024 112M 3.7 100 500 225 287 75 900 150 600 150 400 320 200 183 986 3 M12 55 195 250 110 123 140 6-14

132S 5.5 100 500 225 275 75 995 170 660 165 400 400 239 210 1052 3 M12 55 195 250 110 131 140 6-14

132M 7.5 100 500 225 275 75 995 170 660 165 400 400 258 229 1090 3 M12 55 195 250 110 131 160 8-1411160M 100 500 225 275 75 1120 190 740 190 440 440 323 280 1206 3 M12 55 195 250 110 146 140 6-1415

160L 18.5 100 500 225 275 75 1120 190 740 190 440 440 345 302 1250 3 M12 55 195 250 110 146 160 8-14180M 22 100 500 225 275 75 1120 190 740 190 440 440 351.5 325 1279.5 3 M12 55 195 250 110 141 160 8-14

180L 30 100 500 225 275 75 1260 205 840 215 490 490 370.5 344 1317.5 3 M12 55 195 250 110 161 180 8-1437200L 100 500 225 295 75 1245 205 840 200 400 490 395.5 377 1375.5 3 M12 55 195 250 110 158 180 8-1445

225S 55 100 500 225 340 75 1220 205 840 175 400 550 402 388 1394 4 M16 70 245 315 130 177 200 8-20

100 x 80 IFWM 112M 3.7 125 500 250 307 90 915 150 600 165 440 320 200 183 1011 3 M12 55 195 250 110 146 140 6-142524 132S 5.5 125 500 250 320 90 990 170 660 160 440 350 239 210 1077 3 M12 55 195 250 110 151 140 6-14

132M 7.5 125 500 250 320 90 990 170 660 160 440 350 258 229 1115 3 M12 55 195 250 110 151 160 8-14160M 11 125 500 250 320 90 1120 190 740 190 440 440 323 280 1231 3 M12 55 195 250 110 163 160 8-14180M 22 125 500 250 295 90 1120 190 740 190 440 440 351.5 325 1304.5 3 M12 55 195 250 110 163 160MB 8-14180L 30 125 500 250 295 90 1260 205 840 215 490 490 370.5 344 1342.5 3 M12 55 195 250 110 184 180 8-14

37200L 125 500 250 295 90 1260 205 840 215 490 490 395.5 377 1400.5 3 M12 55 195 250 110 174 180 8-1445

225S 55 125 500 250 340 90 1265 205 840 220 550 550 402 388 1419 4 M16 70 245 315 130 200 200 8-20

250S 75 125 500 250 365 90 1260 205 840 215 440 600 433.5 521 1583.5 4 M16 70 245 315 130 216 200 8-20250M 90 125 500 250 365 90 1420 230 940 250 440 600 452.5 540 1621.5 4 M16 70 245 315 130 214 224 8-20

100 x 80 IFWM 132S 5.5 125 530 280 320 90 1020 170 660 190 490 350 239 210 1107 3 M12 55 195 250 110 197 160 8-143215 132M 7.5 125 530 280 320 90 1020 170 60 190 490 350 258 229 1145 3 M12 55 195 250 110 197 160 8-14

160M 11 125 530 280 348 90 1115 190 740 185 490 400 323 280 1261 3 M12 55 195 250 110 208 160 8-14160L 15 125 530 280 320 90 1255 205 840 210 490 400 345 302 1305 3 M12 55 195 250 110 214 160 8-14

18.5180M 125 530 280 320 90 1265 205 840 220 490 490 351.5 325 1334.5 3 M12 55 195 250 110 226 180 8-142237200L 125 530 280 320 90 1265 205 840 220 490 490 395.5 377 1430.5 3 M12 55 195 250 110 230 180MB 8-1445

225S 55 125 530 280 340 90 1265 205 840 220 550 550 402 388 1449 4 M16 70 245 315 130 238 200 8-20

250S 75 125 530 280 365 90 1375 230 940 205 490 600 433.5 521 1613.5 4 M16 70 245 315 130 266 200 8-20250M 90 125 530 280 365 90 1375 230 940 205 490 600 452.5 540 1651.5 4 M16 70 245 315 130 257 224 8-20

150 x 100 IFWM 112M 3.7 125 500 250 307 90 915 150 600 165 440 320 200 183 1011 3 M12 55 195 250 110 131 140 6-141614X 132S 5.5 125 500 250 320 90 990 170 660 160 440 350 239 210 1077 3 M12 55 195 250 110 136 140MB 6-14

132M 7.5 125 500 250 320 90 990 170 660 160 440 350 258 229 1115 3 M12 55 195 250 110 136 160 8-14160L 18.5 125 500 250 320 90 1120 190 740 190 440 440 345 302 1275 3 M12 55 195 250 110 146 160 8-14180M 22 125 500 250 295 90 1120 190 740 190 440 440 351.5 325 1304.5 3 M12 55 195 250 110 148 160MB 8-14180L 30 125 500 250 295 90 1260 205 840 215 490 490 370.5 344 1342.5 3 M12 55 195 250 110 169 180MB 8-14

37200L 125 500 250 295 90 1260 205 840 215 490 490 395.5 377 1400.5 3 M12 55 195 250 110 159 180MB 8-1445225S 55 125 500 250 340 90 1265 205 840 220 550 550 402 388 1419 4 M16 70 240 315 130 186 200 8-20

150 x 100 IFWM 112M 3.7 140 530 280 320 90 1020 170 660 190 490 350 200 183 1056 3 M12 55 195 250 110 185 160 8-142015X 132S 5.5 140 530 280 320 90 1020 170 660 190 490 350 239 210 1122 3 M12 55 195 250 110 182 160 8-14

150 x 100 IFWM 132M 7.5 140 530 280 320 90 1020 170 660 190 490 350 258 229 1160 3 M12 55 195 250 110 182 160 8-14

2525X 160M 11 140 530 280 348 90 1115 190 740 185 490 400 323 280 1276 3 M12 55 195 250 110 193 160 8-14

160L 15 140 530 280 320 90 1255 205 840 210 490 400 345 302 1320 3 M12 55 195 250 110 199 160 8-1418.5180M 140 530 280 320 90 1265 205 840 220 490 490 351.5 325 1349.5 3 M12 55 195 250 110 211 180 8-1422

180L 30 140 530 280 320 90 1265 205 840 220 490 490 370.5 344 1387.5 3 M12 55 195 250 110 214 180MB 8-1437200L 140 530 280 320 90 1265 205 840 220 490 490 385.5 377 1445.5 3 M12 55 195 250 110 211 180MB 8-1445

225S 55 140 530 280 340 90 1265 205 840 220 550 550 402 388 1464 4 M16 70 245 315 130 222 200 8-20

250S 75 140 530 280 365 90 1375 230 940 205 490 600 433.5 521 1628.5 4 M16 70 245 315 130 245 200 8-20250M 90 140 530 280 365 90 1375 230 940 205 490 600 452.5 540 1666.5 4 M16 70 245 315 130 245 224 8-20

37150 x 100 IFWM 200L 140 530 280 320 90 1265 205 840 220 490 490 395.5 377 1445.5 3 M12 55 195 250 110 211 180MB 8-1445

2515XA 225S 55 140 530 280 340 90 1265 205 840 220 550 550 402 388 1464 4 M16 70 245 315 130 232 200 8-20

(Only for 2P) 250S 75 140 530 280 365 90 1375 230 940 205 490 600 433.5 521 1628.5 4 M16 70 245 315 130 242 200 8-20250M 90 140 530 280 365 90 1375 230 940 205 490 600 452.5 540 1666.5 4 M16 70 245 315 130 245 224 8-20280S 110 140 530 280 395 90 1420 230 940 250 490 670 484 599.5 1757.5 4 M16 70 245 315 130 257 224 8-20280M 132 140 530 280 395 90 1560 270 1060 230 490 670 509.5 625 1808.5 4 M16 70 245 315 130 273 250 8-25315S 160 140 530 280 430 90 1590 270 1060 260 490 750 529 734.5 1937.5 4 M20 85 315 400 150 318 250 8-25

150 x 100 IFWM 160M 11 140 530 315 373 90 1120 190 740 190 490 400 323 280 1276 3 M12 55 195 250 110 230 160 8-143225X 160L 15 140 530 315 345 90 1240 205 840 195 490 490 345 302 1320 3 M12 55 195 250 110 240 160 8-14

18.5180M 140 530 315 365 90 1240 205 840 195 490 490 351.5 325 1349.5 3 M12 55 195 250 110 243 180 8-1422

180L 30 140 530 315 365 90 1240 205 840 195 490 490 370.5 344 1388.5 4 M12 55 195 250 110 251 200 8-2037200L 140 530 315 345 90 1265 205 840 220 490 490 425.5 377 1476.5 4 M12 55 195 250 110 260 224 8-2045

Notes: 1. Motor output classification numbers shown are for ordinary E class totally-enclosed, fan-cooled low-voltage 3-phasesquirrel-cage induction motors under JEM-1400-1983.

2. Mz and LA dimensions marked with an asterisk vary to a certain extent, depending on motor manufacturers.3. Dimensions are subject to change without notice.4. In two motor ratings(kW) with slash mark, left side is the rating of four poles and right side is the rating of two poles.

Page 19: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

365

IFW

DIMENSION

150 x 100 IFWM 160M 11 140 530 355 395 110 1265 205 840 220 600 400 323 280 1276 3 M16 70 245 315 130 282 160 8-144015X 160L 15 140 530 355 395 110 1265 205 840 220 600 400 345 302 1320 3 M16 70 245 315 130 282 160 8-14

18.5180M 140 530 355 395 110 1265 205 840 220 600 490 351.5 325 1349.5 3 M16 70 245 315 130 288 180 8-1422

180L 30 140 530 355 395 110 1265 205 840 220 600 490 370.5 344 1388.5 4 M16 70 245 315 130 293 200 8-2037200L 140 530 355 415 110 1265 205 840 220 600 490 425.5 377 1476.5 4 M16 70 245 315 130 303 224 8-2045

225S 55 140 530 355 395 110 1425 230 940 255 600 600 432 388 1494 4 M16 70 245 315 130 335 224MB 8-20

Notes: 1. Motor output classification numbers shown are for ordinary E class totally-enclosed, fan-cooled low-voltage 3-phasesquirrel-cage induction motors under JEM-1400-1983.

2. Mz and LA dimensions marked with an asterisk vary to a certain extent, depending on motor manufacturers.3. Dimensions are subject to change without notice.4. In two motor ratings(kW) with slash mark, left side is the rating of four poles and right side is the rating of two poles.

150 IFWM 132M 7.5 140 530 355 345 90 1025 170 660 195 490 350 258 229 1160 3 M12 55 195 250 110 199 160 8-142015Y 160M 11 140 530 355 373 90 1120 190 740 190 490 400 323 280 1276 3 M12 55 195 250 110 210 160 8-14

150 IFWM 160L 15 140 530 355 345 90 1240 205 740 195 490 490 345 302 1320 3 M12 55 195 250 110 220 160 8-1418.52515Y 180M 140 530 355 365 90 1240 205 840 195 490 490 351.5 325 1349.5 3 M12 55 195 250 110 223 180 8-1422

180L 30 140 530 355 365 90 1240 205 840 195 490 490 370.5 344 1388.5 4 M12 55 195 250 110 231 200 8-20200L 37 140 530 355 345 90 1265 205 840 220 490 490 425.5 377 1476.5 4 M12 55 195 250 110 240 224 8-20

150 x 100 IFWM 160L 15 140 530 355 395 110 1265 205 840 220 600 400 345 302 1320 3 M16 70 245 315 130 277 160 8-1418.53225Y 180M 140 530 355 395 110 1265 205 840 220 600 490 351.5 325 1349.5 3 M16 70 245 315 130 285 180 8-1422

180L 30 140 530 355 395 110 1265 205 840 220 600 490 370.5 344 1388.5 4 M16 70 245 315 130 291 200 8-2037200L 140 530 355 415 110 1265 205 840 220 600 490 425.5 377 1476.5 4 M16 70 245 315 130 298 224 8-2045

225S 55 140 530 355 395 110 1425 230 940 255 600 600 432 388 1494 4 M16 70 245 315 130 320 224MB 8-20

18.5150 x 100 IFWM 180M 140 530 400 430 110 1275 205 840 230 600 490 354.5 325 1349.5 3 M16 70 245 315 130 320 180 8-1422

4025Y 180L 30 140 530 400 430 110 1275 205 840 230 600 490 370.5 344 1388.5 4 M16 70 245 315 130 325 200 8-2037200L 140 530 400 450 110 1275 205 840 230 600 490 425.5 377 1476.5 4 M16 70 245 315 130 330 224 8-2045

225S 55 140 530 400 430 110 1440 230 940 270 600 600 432 388 1494 4 M16 70 245 315 130 361 224MB 8-20

250S 75 140 530 400 430 110 1440 230 940 270 600 600 463.5 501 1638.5 4 M16 70 245 315 130 351 250MB 8-25250M 90 140 530 400 430 110 1440 230 940 270 600 600 482.5 520 1676.5 4 M16 70 245 315 130 352 250MB 8-25280S 110 140 530 400 430 110 1450 230 940 280 670 670 544 579 1797 4 M16 70 245 315 130 356 280MB 8-28

150 x 100 IFWM 180L 30 180 670 450 490 110 1405 230 940 235 670 490 370.5 344 1568.5 4 M16 70 245 315 130 473 200 8-20375016Y 200L 180 670 450 490 110 1405 230 940 235 670 490 425.5 377 1656.5 4 M16 70 245 315 130 493 224 8-2045

225S 55 180 670 450 490 110 1640 270 1060 280 670 670 432 388 1674 4 M16 70 245 315 130 512 224MB 8-20250S 75 180 570 450 515 110 1640 270 1050 280 670 670 463.5 501 1818.5 4 M16 70 245 315 130 540 250MB 8-25250M 90 180 670 450 515 110 1640 270 1060 280 670 670 482.5 520 1856.5 4 M16 70 245 315 130 540 250MB 8-25280S 110 180 670 450 510 110 1635 270 1060 305 670 670 544 579 1977 4 M16 70 245 315 130 536 280MB 8-28280M 132 180 670 450 510 110 1635 270 1060 305 670 670 569.5 604.5 2028 4 M16 70 245 315 130 542 280MB 8-28315S 160 180 670 450 490 110 1850 300 1200 350 750 750 589 640 2083 4 M20 85 315 400 150 587 GEAR CP

18.5200 IFWM 180M 180 565 400 430 110 1275 205 840 230 600 490 351.5 325 1425 3 M16 70 245 315 130 332 180 8-1422

2015 180L 30 180 565 400 430 110 1275 205 840 230 600 490 370.5 344 1463.5 4 M16 70 245 315 130 337 200 8-2037200L 180 565 400 450 110 1470 230 940 300 600 490 425.5 377 1551.5 4 M16 70 245 315 130 356 225 8-2045

225S 55 180 565 400 430 110 1440 230 940 270 600 600 432 388 1569 4 M16 70 245 315 130 374 224MB 8-20

18.5200 IFWM 180M 160 565 450 430 85 1275 205 840 230 600 490 351.5 325 1404.5 3 M16 70 245 315 130 347 180 8-1422

2515 180L 30 160 565 450 430 85 1275 205 840 230 500 490 370.5 344 1443.5 4 M16 70 245 315 130 352 300 8-2037200L 160 565 450 450 85 1275 205 840 230 600 490 425.5 377 1531.5 4 M16 70 245 315 130 360 224 8-2045

225S 55 160 565 450 430 85 1440 230 940 270 600 600 432 388 1549 4 M16 70 245 315 130 391 224MB 8-20

250S 75 160 565 450 430 85 1440 230 940 270 600 600 463.5 501 1693.5 4 M16 70 245 315 130 399 250MB 8-25

Motor Pump Common base Motor ❈ Anchor bolt Wt CouplingPump [Mass]Model Frame kW P1 P2 H1 H2 A B1 B2 B3 B4 B5 B6 M1 ❈M2 LA X Fd Fb Fe Fh Fw kg CLA CLAB

150 x 100 IFWM 250S 75 140 530 315 390 90 1375 230 940 205 490 600 433.5 521 1628.5 4 M16 70 245 315 130 300 200 8-203215XA 250M 90 140 530 315 390 90 1375 230 940 205 490 600 452.5 540 1666.5 4 M16 70 245 315 130 303 224 8-20

(Only for 2P) 280S 110 140 530 315 420 90 1420 230 940 250 490 670 484 599.5 1757.5 4 M16 70 245 315 130 326 224 8-20280M 132 140 530 315 420 90 1560 270 1060 230 490 670 509.5 625 1808.5 4 M16 70 245 315 130 339 250 8-25315S 160 140 530 315 455 90 1590 270 1060 260 490 750 529 734.5 1937.5 4 M20 85 315 400 150 394 250 8-25

37200 x 150 IFWM 200L 160 670 450 450 110 1405 230 940 235 670 490 425.5 377 1636.5 4 M16 70 245 315 130 468 224 8-2045

3216 225S 55 160 670 450 455 110 1635 270 1060 305 670 670 432 388 1654 4 M16 70 245 315 130 520 224MB 8-20200 x 150 IFWM 250S 75 160 670 450 430 110 1640 270 1060 310 670 670 463.5 501 1798.5 4 M16 70 245 315 130 517 250MB 8-25

4026 250M 90 160 670 450 430 110 1640 270 1060 310 670 670 482.5 520 1836.5 4 M16 70 245 315 130 517 250MB 8-25

280S 110 160 670 450 430 110 1640 270 1060 310 670 670 544 579 1957 4 M16 70 245 315 130 512 280MB 8-28280M 132 160 670 450 430 110 1640 270 1060 310 670 670 569.5 604.5 2008 4 M16 70 245 315 130 512 280MB 8-25315S 160 160 670 450 430 110 1670 300 1200 170 750 750 589 640 2063 4 M20 85 315 400 150 535 GEAR CP

Page 20: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

366

IFW

DIMENSION

Motor Pump Common base Motor ❈ Anchor bolt Wt CouplingPump [Mass]Model Frame kW P1 P2 H1 H2 A B1 B2 B3 B4 B5 B6 M1 ❈M2 LA X Fd Fb Fe Fh Fw kg CLA CLAB

200 x 150 IFWM 250S 75 180 820 560 515 110 1840 300 1200 340 670 670 463.5 501 1968.5 4 M20 85 315 400 150 683 280 8-285028 250M 90 180 820 560 515 110 1840 300 1200 340 670 670 482.5 520 2006.5 4 M20 85 315 400 150 683 280 8-28

280S 110 180 820 560 490 110 1820 300 1200 320 670 670 544 579 2127 4 M20 85 315 400 150 684 280MB 8-28

280M 132 180 820 560 490 110 1820 300 1200 320 670 670 569.5 604.5 2178 4 M20 85 315 400 150 684 280MB 8-28315S 160 180 820 560 490 110 2050 340 1320 390 750 750 589 640 2233 4 M20 85 315 400 150 701 GEAR CP315M 200 180 820 560 490 110 2050 340 1320 390 750 750 614.5 665.5 2284 4 M20 85 315 400 150 701 GEAR CP

250 IFWM 225S 55 225 695 560 490 170 1545 270 1060 215 750 550 432 388 1744 4 M20 85 315 400 150 631 224MB 8-202516 250S 75 225 695 560 490 170 1650 270 1060 320 750 750 463.5 501 1888.5 4 M20 85 315 400 150 663 250MB 8-25

250M 90 225 695 560 490 170 1650 270 1060 320 750 750 482.5 520 1926.5 4 M20 85 315 400 150 663 250MB 8-25280S 110 225 695 560 490 170 1850 300 1200 350 750 750 544 479 2047 4 M20 85 315 400 150 697 280MB 8-28280M 132 225 695 560 490 170 1850 300 1200 350 750 750 569.5 604.5 2098 4 M20 85 315 400 150 697 280MB 8-28

315S 160 225 695 560 490 170 1850 300 1200 350 750 750 589 640 2153 4 M20 85 315 400 150 730 GEAR CP

250 x 200 IFWM 250S 75 180 670 560 490 170 1650 270 1060 320 750 750 463.5 501 1818.5 4 M20 85 315 400 150 622 250MB 8-253216 250M 90 180 670 560 490 170 1650 270 1060 320 750 750 482.5 520 1856.5 4 M20 85 315 400 150 622 250MB 8-25

250 x 200 IFWM 280S 110 180 670 560 520 170 1650 270 1060 320 750 750 544 579 1977 4 M20 85 315 400 150 645 280MB 8-28

4016 280M 132 180 670 450 490 170 1850 300 1200 350 750 750 569.5 604.5 2028 4 M20 85 315 400 150 683 280MB 8-28315S 160 180 670 560 490 170 1850 300 1200 350 750 750 589 640 2083 4 M20 85 315 400 150 690 GEAR CP

250 x 200 IFWM 280M 132 200 820 630 540 170 2120 340 1320 460 750 750 569.5 604.5 2198 4 M20 85 315 400 150 859 280MB 8-285028 315S 160 200 820 630 575 170 2120 340 1320 460 750 750 589 640 2253 4 M20 85 315 400 150 871 GEAR CP

315M 200 200 820 630 575 170 2120 340 1320 460 750 750 614.5 665.5 2304 4 M20 85 315 400 150 871 GEAR CP

Notes: 1. Motor output classification numbers shown are for ordinary E class totally-enclosed, fan-cooled low-voltage 3-phasesquirrel-cage induction motors under JEM-1400-1983.

2. Mz and LA dimensions marked with an asterisk vary to a certain extent, depending on motor manufacturers.3. Dimensions are subject to change without notice.4. In two motor ratings(kW) with slash mark, left side is the rating of four poles and right side is the rating of two poles.

Page 21: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

367

Applicable standard High pressure gas control law

-50~155°C (d2G3), -50~105°C (d2G4)Over a temperature as follows, a motor must be witha cooled jacket

Liquid handled temperature -30~80°C (d2G4)Output(kW) 0.4 0.75 1.5 2.2 3.7 5.5 7.5 11 15

d2G3(°C) 135 130 135 130d2G4(°C) 100 95 100 95 90

Bearing lubrication/cooling method External ReverseFlanges ANSI150Lb RF, JPI150Lb RF ANSI300Lb, JPI300Lb RF

Explosion-proof d2G4 d2G4constructionMotorVoltage (50Hz) 400V (50Hz) 400V

Operation monitoring/detectors - Remote

Casing SCS14 SCS13Impeller SCS14 SCS13

Shaft SUS316 SUS304MaterialBearing Carbon/SUS316+stellite hard facing Carbon/SUS316+stellite hard facing

Silicon carbide/silicon carbide Silicon carbide/silicon carbideCan Hastelloy C, SUS304L SUS304L

SXB / SXH

STAINLESS STEEL CANNED MOTOR PUMPS

Standardspecifications

Standard accessories

Base plate

Foundation bolts

Optionalspecifications

Optional accessories

Companion FlangePressure gaugeDry operationprevention relayDisassembly tool

Model SXB Model SXHName Water, chemicals Liquefied gas, chemicals

Temperature -30-100°C (d2G3) -50-130°C (d2G3)Liquid handled

Density 700kg/m3 and over 400kg/m3 and overViscosity below 100mPa • s(100cP) below 100mPa • s(100cP)

Max. working pressure 1MPa (10.2kgf/cm2) 2.45MPa (25kgf/cm2)Impeller Enclosed EnclosedBearings Sleeve bearings/thrust disk Sleeve bearing/thrust disk

PumpBearing lubrication Pumping liquid (with external piping) Pumping liquid (internal recirculation)cooling method

Flanges JIS10K RF JIS20K RF

Thermal class Class H Class 190Protection Pressure-resistant, explosion-proof, outdoor installation Pressure-resistant, explosion-proof, outdoor installation

Explosion-proofMotor d2G3 d2G3Construction

Safety devices Thermostat, b-contact Thermostat, b-contactVoltage (50Hz)200V (50Hz)200V

Bearing wear sensor (electrical), radial/thrust Bearing wear sensor (electrical), radial/thrust Operation monitoring/detectors Warning lamp, reverse rotation/missing phase. Warning lamp, reverse rotation/missing phase.

Casing SCS13 SCS14Impeller SCS13 SCS14

Shaft SUS304 SUS316Bearing Carbon/SUS304+hard chrome plating Carbon/SUS304+hard chrome plating

Material Can SUS316L Hastelloy CMotor frame SUS304 SUS304

Gasket PTFE O-ring Non-asbestos, seat-packingBase plate SS400 SS400Terminal bx FC200 FC200

Page 22: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

368

SXB / SXH

STAINLESS STEEL CANNED MOTOR PUMPS

APPLICATIONSHaving no shaft seal, the SEAL-X is suitable as a vacuum line, as well as for handling harmful liquids, dangerousliquids, expensive liquids, crystallized/dissolved liquids, high-temperature liquids and low-temperature liquids.There is no danger of pollution to the environment or loss of liquid due to leakage.

FEATURES• Easy maintenance

A non-shaft seal and non-lubricant system simplifies maintenance and reduces the number of maintenance personnel.• Electrical bearing wear sensor installed as standard equipment

An electrical bearing wear sensor is installed as the operation monitor to detect bearing wear in both directions ofradial thrust.

• Detection of reverse rotationSafety is maintained since the warning lamp lights up whenever reverse rotation is detected.

• Stainless steel motorIn addition to wetted parts, the motor frame is constructed of stainless steel (SUS304) as well, to facilitateinstallation in corrosive environments.

• Compact size for easy installationThe pump and motor are designed as a single, compact unit which requires little space, is light weight, and doesnot require alignment, all of which make for easy installation.

• Low noiseNoise levels have been decreased due to no motor-cooling fan and no anti-friction bearings.

• Dry operation prevention relayA relay that prevents problems arising from dry operation is available as optional accessory.

Page 23: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

369

Model SXB

SXB / SXH

CANNED MOTOR PUMP VARIATION

On canned motor pump series, variations as follows can be applicable per specification.

• Pumping liquid (with external piping) • Injection from external source (for dirty liquid)

Basic type below 100°C (d2G3)

Note: Flow direction

Model SXB High temperature and pressure type below 155°C (d2G3)

• Pumping liquid (internal recirculation) • Reverse circulation (for volatile liquid)

• Pumping liquid (internal recirculation)with a water cooled jacket 2)

• Reverse circulation (for volatile liquid)with a water cooled jacket 2)

Note: 1) Flow direction2) Refer to the left specification on temperature

Page 24: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

370

SXB / SXH

SELECTION CHART 3000 min-1

(SXB)

(SXH)

Page 25: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

371

Pump/motor Base plate Foundation boltSize Output MassModel sizeøSxød kW A B C D H L P BM BN BX BY Fd Fa Fb Fl kg

32X32SXB2F5.4 0.4 65 392 142 140 422 457 10 260 50 265 240 M10 15 40 200 4932X32SXB2F5.75 0.75 65 412 142 140 422 477 10 280 50 265 240 M10 15 40 200 51

32X3232X32SXB2G1.5 1.5 80 452 162 160 442 532 10 320 50 315 290 M10 15 40 200 5832X32SXB2G52.2 2.2 80 482 162 160 442 562 10 350 50 315 290 M10 15 40 200 6240X32SXB2F5.4 0.4 65 392 142 140 422 457 10 260 50 265 240 M10 15 40 200 48

40X32SXB2F5.75 0.75 65 412 142 140 422 477 10 280 50 265 240 M10 15 40 200 5040X32

40X32SXB2G51.5 1.5 80 452 162 160 442 532 10 320 50 315 290 M10 15 40 200 5840X32SXB2G52.2 2.2 80 482 162 160 442 562 10 350 50 315 290 M10 15 40 200 62

50X40SXB2E5.75 0.75 80 412 142 140 422 492 10 280 50 265 240 M10 15 40 200 5050X40SXB2F51.5 1.5 80 452 142 140 422 532 10 320 50 265 240 M10 15 40 200 55

50X40 50X40SXB2G52.2 2.2 80 482 162 160 442 562 10 350 50 315 290 M10 15 40 200 6250X40SXB2H53.7 3.7 80 530 190 180 478 610 10 400 50 315 290 M12 20 50 250 8150X40SXB2H55.5 5.5 80 575 190 180 478 655 10 440 50 315 290 M12 20 50 250 8865X50SXB2E51.5 1.5 80 452 142 140 422 532 10 320 50 265 240 M10 15 40 200 5665X50SXB2F52.2 2.2 80 482 142 140 422 562 10 350 50 285 260 M10 15 40 200 6265X50SXB2G53.7 3.7 80 530 162 160 450 610 10 400 50 315 290 M12 20 50 250 78

65X5065X50SXB2H55.5 5.5 100 575 190 180 478 675 10 440 50 340 315 M12 20 50 250 90

65X50SXB2H57.5 7.5 100 635 190 180 478 735 10 500 50 340 315 M12 20 50 250 10065X50SXB2J511 11 100 673 220 225 535 773 10 530 65 395 370 M12 20 50 250 13580X65SXB2F52.2 2.2 100 481 162 160 442 581 10 350 50 315 290 M10 15 40 200 6480X65SXB2F53.7 3.7 100 530 162 160 450 630 10 400 50 315 290 M12 20 50 250 77

80X65 80X65SXB2G55.5 5.5 100 575 190 180 478 678 10 440 50 340 315 M12 20 50 250 8880X65SXB2G57.5 7.5 100 635 190 180 478 735 10 500 50 340 315 M12 20 50 250 98

80X65SXB2H511 11 100 673 200 200 515 773 10 540 50 340 315 M12 20 50 250 131100X80SXB2F55.5 5.5 100 575 190 180 478 675 10 430 65 355 330 M12 20 50 250 95

100X80 100X80SXB2F57.5 7.5 100 635 190 180 478 735 10 490 65 355 330 M12 20 50 250 105

100X80SXB2G511 11 100 703 200 200 515 803 10 550 65 355 330 M12 20 50 250 135

SXB / SXH

DIMENSION

Size g e F t t1 n hØ32 76 100 135 16 2 4 1940 81 105 140 16 2 4 1950 96 120 155 16 2 4 1965 116 140 175 18 2 4 1980 126 150 185 18 2 8 19

100 151 175 210 18 2 8 19

• Flange Dimension Table JIS 10KRF

Unit : mm

❈ When inserting the external lead wire, adopt either the pressure resistant packing method or the cable tubepressure resistant screw connection method in accordance with explosion-proof standards.

Model SXB

Page 26: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

372

SXB / SXH

DIMENSION

Model SXH

Size g e F t t1 n hØ25 67 90 125 16 1 4 1940 81 105 140 18 2 4 1950 96 120 155 18 2 8 1965 116 140 175 20 2 8 1980 132 160 200 22 2 8 23

100 160 185 225 24 2 8 23

• Flange Dimension Table JIS 20KRF

Unit : mm

❈ When inserting the external lead wire, adopt either the pressure resistant packing method or the cable tubepressure resistant screw connection method in accordance with explosion-proof standards.

Pump/motor Base plate Foundation boltOutput MassModel sizeøs x ød - flame kW A B C D H L P BM BN BX BY Fd Fa Fb Fl kg

0.4 105 392 200 165 506 497 5 300 50 285 260 M10 20 40 200 59

0.75 105 412 200 165 506 517 5 300 50 285 260 M10 20 40 200 7140 X 25 - 125 1.5 105 452 200 165 506 557 5 380 50 285 260 M10 20 40 200 76

2.2 105 482 200 165 506 587 5 380 50 285 260 M10 20 40 200 803.7 105 538 200 165 515 643 5 480 50 285 260 M12 25 50 250 941.5 105 452 200 285 506 557 5 380 50 315 290 M10 20 40 200 812.2 105 482 200 185 506 587 5 380 50 315 290 M10 20 40 200 85

40 X 25 - 160 3.7 105 538 200 185 515 643 5 480 50 315 290 M12 25 50 250 995.5 105 583 200 185 515 688 5 480 50 315 290 M12 25 50 250 1057.5 105 643 200 185 515 748 5 540 50 315 290 M12 25 50 250 1162.2 115 482 220 205 526 597 5 380 50 315 290 M10 20 40 200 923.7 115 538 220 205 535 653 5 480 50 315 290 M12 25 50 250 105

40 X 25 - 200 5.5 115 583 220 205 535 698 5 480 50 315 290 M12 25 50 250 1127.5 115 643 220 205 535 758 5 540 50 315 290 M12 25 50 250 12311 115 685 220 205 562 800 5 620 50 315 290 M12 25 50 250 152

0.75 110 412 200 170 506 522 5 300 50 285 260 M10 20 40 200 751.5 110 452 200 170 506 562 5 380 50 285 260 M10 20 40 200 80

50 X 40 - 125 2.2 110 482 200 170 506 592 5 380 50 285 260 M10 20 40 200 843.7 110 538 200 170 515 648 5 480 50 285 260 M12 25 50 250 98

5.5 110 583 200 170 515 693 5 480 50 285 260 M12 25 50 250 1053.7 120 538 200 190 515 658 5 480 50 315 290 M12 25 50 250 1035.5 120 583 200 190 515 703 5 480 50 315 290 M12 25 50 250 110

50 X 40 - 1607.5 120 643 200 190 515 763 5 540 50 315 290 M12 25 50 250 12111 120 685 200 190 542 805 5 620 50 315 290 M12 25 50 250 150

5.5 120 583 220 205 535 703 5 480 50 315 290 M12 25 50 250 1157.5 120 643 220 205 535 763 5 540 50 315 290 M12 25 50 250 126

50 X 40 - 20011 120 685 220 205 562 805 5 620 50 315 290 M12 25 50 250 15515 120 745 220 205 562 865 5 680 50 315 290 M12 25 50 250 168

7.5 135 643 265 250 580 778 5 510 65 395 370 M12 25 50 250 14750 X 40 - 250 11 135 685 265 250 607 820 5 590 65 395 370 M12 25 50 250 175

15 135 745 265 250 607 880 5 650 65 395 370 M12 25 50 250 188

Page 27: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

373

SXB / SXH

DIMENSION

Unit : mm

Pump/motor Base plate Foundation boltOutput MassModel sizeøs x ød - flame kW A B C D H L P BM BN BX BY Fd Fa Fb Fl kg

1.5 110 452 200 175 506 562 5 380 50 285 260 M10 20 40 200 82

2.2 110 482 200 175 506 592 5 380 50 285 260 M10 20 40 200 8665 X 50 -125 3.7 110 538 200 175 515 648 5 480 50 285 260 M12 25 50 250 100

5.5 110 583 200 175 515 693 5 480 50 285 260 M12 25 50 250 1077.5 110 643 200 175 515 753 5 540 50 285 260 M12 25 50 250 1185.5 120 583 200 190 515 703 5 480 50 315 290 M12 25 50 250 1137.5 120 643 200 190 515 763 5 540 50 315 290 M12 25 50 250 124

65 x 50 -16011 120 685 200 190 542 805 5 620 50 315 290 M12 25 50 250 15315 120 745 200 190 542 865 5 680 50 315 290 M12 25 50 250 166

7.5 120 643 220 210 535 763 5 540 50 355 330 M12 25 50 250 13065 X 40 - 200 11 120 685 220 210 562 805 5 620 50 355 330 M12 25 50 250 159

15 120 745 220 210 562 865 5 680 50 355 330 M12 25 50 250 17211 135 685 265 255 607 820 5 590 65 395 370 M12 25 50 250 180

65 X 40 - 25015 135 745 265 255 607 880 5 650 65 395 370 M12 25 50 250 1933.7 125 538 200 195 515 663 5 480 50 315 290 M12 25 50 250 1075.5 125 583 200 195 515 708 5 480 50 315 290 M12 25 50 250 114

80 X 65 - 125 7.5 125 643 200 195 515 768 5 540 50 315 290 M12 25 50 250 12511 125 735 200 195 542 860 5 620 50 315 290 M12 25 50 250 15715 125 795 200 195 542 920 5 680 50 315 290 M12 25 50 250 1707.5 120 643 200 210 515 763 5 540 50 355 330 M12 25 50 250 130

80 X 65 - 160 11 120 685 200 210 542 805 5 620 50 355 330 M12 25 50 250 15915 120 745 200 210 542 865 5 680 50 355 330 M12 25 50 250 17211 135 685 220 230 562 820 5 620 50 355 330 M12 25 50 250 165

80 X 50 - 20015 135 745 220 230 562 880 5 680 50 355 330 M12 25 50 250 1785.5 135 583 220 215 535 718 5 480 50 355 330 M12 25 50 250 1277.5 135 643 220 215 535 778 5 540 50 355 330 M12 25 50 250 138

100 X 80 - 12511 135 735 220 215 562 870 5 620 50 355 330 M12 25 50 250 17115 135 795 220 215 562 930 5 680 65 355 330 M12 25 50 250 1837.5 125 643 220 235 535 768 5 510 65 355 330 M12 25 50 250 142

100 X 80 - 160 11 125 685 220 235 562 810 5 590 65 355 330 M12 25 50 250 171

15 125 745 220 235 562 870 5 650 355 330 M12 25 50 250 184

Page 28: EBARA PUMPS e.CATALOGUE Pumps... · 350 SAL ABOUT WEAR AND CORROSION RESISTANCE • The impellers, which are subject to the greatest possibility of wear, are of tough high chrome

374

SXB / SXH

OPERATION

Precaution for Use

Dry operationIf the pump is operated empty, the bearingswill seize and be damaged due to insufficientlubrication, resulting in damage to the entirepump. After connecting the motor, alwaysprime the pump when checking the directionof rotation before starting it up.

Slurry, crystallizationSlurry contamination liquids or crystallizingliquids will cause abnormal wear to thebearings and dramatically shorten the lifeof the pump.

Operating water levelWhen the pump is being used as adrain pump, or when the liquid is beingdrained from the inside of the tank, usethe level switch to stop the pump, andcheck the suction side water level toprevent dry operation.

Adhesive liquidsLiquids which adhere to the inner surfaceof the pump, such as calcium carbonate,zinc phosphate, and non-electrolytic plating,will cause insufficient lubrication to thebearings and operation lock.

CavitationThe occurrence of cavitation causes axialvibration in the rotor, resulting in damage tothe pump.

Precaution for Use• This list is based on corrosion resistant data from material manufacturers. Corrosion due to hydraulic friction is not taken into consideration.• The basis for these decisions is made by considering only corrosion resistance. The specific gravity, viscosity and vapor pressure of the liquidsare not taken into consideration. • Examinations of capacity, total head, shaft power, and suction head due to specific gravity, viscosity, and vaporpressure should be considered separately. Crystallization and adhesion to the pump interior due to the properties of the liquid should also beconsidered separately.

Liquid Liquid Liquid Liquid Liquid

Acrylic asid 50 Fruit acid Salad oil Petroleum benzine Heptyl alcohol

Ethyl acrtlate Fruit juices Sour oil Soap solution 40 BenzineMethyl acrylate 20 70 Cellosolve Benzaldehyde

Potassium hydroxide Trichloroethylene 25Acrylonitrile 40 70 Dyeing solution 80 BenzeneSodium nitrile 40 20 70 Diacetone alcohol Soybean oil Boric asid 2

Sodium hydroxideAcetaldehyde 40 70 Potassium cyanide 30 50 Ammonium carbonate 50 Formalin 35 50Acetone Gasoline Sodium cyanide 20 50 Potassium 15 Mineral spirits

Linseed oil Potassium permanganate 4 Diethyl benzene 70 Sodium carbonate 10 50 MilkAmyl alcohol Mustard oil Diethylene glycol Tannic acid 10 70 Methyl alcoholAllyl alcohol Xylene Carbon tetrachloride Thiophenol Methyl isobutyl ketone

20 Citric acid 40 80 Dioxane 25 Turpentine oil Methyl rthyl ketone 25Ammonia water

30 Glycerin 100 Cyclohexane 25 Starch solution Methyl chloroform25

Isooctane 25 Cresol Dichloropentane Maize oil TrichlorothaneIsoproppyl alcohol 70 Sodium silicate Dichlorobenzene 25 Toluene Monoethylene glycol

Ink Light oil Potassium bromide 10 25 Rape seed oil Potassium iodide 50Isopropyl benzene Whale oil Sodium bromide 10 25 Naptha Ethyl butyrate 80Isobutyl alcohol 25 Kerosene Sodium hydrogensulfite Emulsion oil Methyl butyrate

Isobutyl methyl ketone Coconut oil Potassium dichromate 10 Carbon disulfide 25 Arachis oilIsoamyl alcohol Acetic acid Ammonium bicarbonate Castor oil Sodium sulfide 30 25Whiskey Amyl acetate Sodium bicarbonate Butanol Aluminum sulfate 20Ethanol Allyl acetate Tartaric acid 40 80 Fusel oil Potassium sulfate 20Ethyl benzene Ethyl acetate 50 Lubricating oil Diethyl phthalate Sodium sulfate 10 80Ethylene glycol Cellulose acetate 50 Ammonium nitrate 40 Butyl ether Ferrous sulfate 15 25

Perilla oil Sodium acetate 50 Potassium nitrate 20 Wine Copper sulfate 5 100Amyl chloride 75 Butyl acetate 50 Ferric nitrate 10 40 Furtural alcohol Nickel sulfate 20Ethylene dichloride Propyl acetate Copper nitrate 10 40 Brake oil Magnesium sulfate 25

Barium chloride 10 25 Benzyl acetate Soy sauce Propylene glycol Ammonium phosphate 17Octanol Sake Vegetable oil Hexanol Sodium phosphate 4 25Octane Sugar solutions Vinegar Hexane LigroinOleic acid Hydraulic fluids Styrene Heptane

Max.concen-tration

(%)

Max.tempe-rature(°C)

Max.concen-tration

(%)

Max.tempe-rature(°C)

Max.concen-tration

(%)

Max.tempe-rature(°C)

Max.concen-tration

(%)

Max.tempe-rature(°C)

Max.concen-tration

(%)

Max.tempe-rature(°C)

20-100

Satu-ration