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BMC www.Broad-Machinery.com BMC Training Training Presentation Presentation

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Page 1: BMC  BMC Training Presentation

BMC

www.Broad-Machinery.com

BMC

Training PresentationTraining Presentation

Page 2: BMC  BMC Training Presentation

BMC

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BMC

UNDERCARRIAGE SYSTEMUNDERCARRIAGE SYSTEM

Component AssemblyComponent Assembly

Operation PrinciplesOperation Principles

Page 3: BMC  BMC Training Presentation

BMC

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BMCBulldozer AssemblyBulldozer Assembly

Power Take-offPower Take-offTorque ConverterTorque ConverterUniversal JointUniversal JointTransmission UnitTransmission UnitMain DriveMain DriveSteering ClutchSteering ClutchSteering BrakeSteering BrakeFinal DriveFinal DriveTrack EquipmentTrack EquipmentControl SystemControl SystemWorking EquipmentWorking EquipmentCabinCabinFloor & FenderFloor & FenderTrack FrameTrack Frame

Page 4: BMC  BMC Training Presentation

BMC

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BMC Engine

Torque Converter

Universal Joint

Gear Box

Main Drive

Steering Clutch

Final Drive

Track System

Power TrainPower Train

Page 5: BMC  BMC Training Presentation

BMC

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BMCFunction:Function: PTO power

Equipment:Equipment:

Work system pump

Transmission pump

Steering Pump

Power Take-offPower Take-off

Page 6: BMC  BMC Training Presentation

BMC

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BMC• Type:

3-element

1 stage

1 phase• Assembly: Pump,

Turbine and Stator• There are many

vanes on these components for using oil to transfer power

Torque ConverterTorque Converter Assembly Assembly

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BMC• These 3 components

combined with oil, give us as smooth power transmission.

• Safety valve: fitted to oil input, ensures the input oil pressure is no more than 0.87MPa.

• Relief Valve: fitted on oil output, ensures the oil pressure inside the torque converter is maintained below 0.45MPa.

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BMC

Page 9: BMC  BMC Training Presentation

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BMC• Oil Flow: Pump→ Turbine

→ Stator→ pump• There is 2 mm clearance

between pump and Turbine, and transfers power by Oil. There is no mechanical impact, they protect each other

• Assist hydraulic system: to resist loss of oil; to maintain the normal oil temperature.

Principles of Principles of Torque ConverterTorque Converter

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BMC• When the load

increases, the dozer ground speed is reduced, causing turbine speed to slow down. But at this time the energy from the pump transfer to torque converter is not reduced. This energy is still transferring to the stator through the slowing turbine. Then the energy to stator from turbine, results in the turbine gaining torque, then the turbine output torque is increasing.

Operation of Operation of Torque ConverterTorque Converter

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BMC1.Change torque

automatically

2.Absorb vibration, prolong working life

3.Good power transmission capability, driving at slow speed

4.Simple operation

5. Start smoothly, eliminates any shocks in power train

6.Easy maintenance

Torque ConverterTorque Converter Operation Operation

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BMC Normally, SD22 Torque Converter Temperature of

output oil is 115-120oC. For a short time, a higher temperature of 130-135oC is allowed, but long term high temperature shows there is something wrong, for the following reasons:

1.1.Shortage of OilShortage of Oil Torque converter, transmission, main drive, steering

and final drive will take 30% of engine rated power. This power will transfer to heat energy, and increase the oil temperature. Therefore it requires enough oil to absorb this heat.

If the oil quantity is not sufficient, the oil temperature will be too high.

High Torque Converter Oil TemperatureHigh Torque Converter Oil Temperature

Page 13: BMC  BMC Training Presentation

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BMC2.Oil Pressure of input and output are incorrect2.Oil Pressure of input and output are incorrect If torque converter input oil pressure is not correct (Standard: 0.87MPa) or the oil is dirty, the piston of valve will stay at relief position, so the oil pressure to the torque converter is low. This leads to a loss of efficiency and excessive oil temperature.

If torque converter output oil pressure is not correct (Standard: 0.45MPa) or the oil supply is blocked, return oil temperature will be too high. The flow of oil to oil cooler is reduced, and the oil temperature too high

Page 14: BMC  BMC Training Presentation

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BMC3. Incorrect Operation3. Incorrect Operation Excessive use of low engine speed for extended time, torque converter will work at low efficiency. Torque converter will lose power, and transfer heat energy leading to high oil temperature.

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BMC• The types of Transmission Case:

Base Operation type: 1.Manual Gearshift; 2.Hydraulic booster; 3.PowershiftBase Transmission type: 1.mechanical type; 2.Planetary Gear

• Planetary type powershift transmission case type: Planetary Gear, Multi-disc clutch, Hydraulic control, forced lubrication.

• Function: 1.Enable forward and reverse 2.Select different gear ratio 3.Matched with the torque converter, enables a wide range of power output and ground speed

Power Transmission CasePower Transmission Case

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BMCThe system consists of: A: Sun GearB: Planetary GearsC: Ring GearD: Carrier

The planetary gears are installed on the carrier being in constant mesh with the sun gear and the ring gear

Planetary Gear SystemPlanetary Gear System

A

B

C D

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BMCPlanetary Gear systemPlanetary Gear system

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BMCPrinciple of Planetary Gear systemPrinciple of Planetary Gear system

A: Sun GearB: Planetary GearC: Ring GearD: Carrier

If the carrier is fixed, the torque is transmitted from sun gear to planetary gear, and is transmitted from planetary gear to ring gear to make the ring gear rotate. Rotation direction of ring gear is opposite from sun gear.

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BMC

A: Sun GearB: Planetary GearC: Ring GearD: Carrier

If the ring gear is fixed, the torque is transmitted from sun gear to planetary gear. The planetary gear rotates by itself, at the same time rotates around sun gear. Rotation direction of the planetary gear shaft is opposite from sun gear.

It is a slowdown outfit that power input from sun gear, output from carrier

Principle of Planetary Gear systemPrinciple of Planetary Gear system

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BMC

The above principles are structure principle of No.1,3,4 planetary gear system.

The sun gear is active in No.1 Planetary Gear systemThe carrier is active in No.3 & 4 Planetary Gear system

Page 21: BMC  BMC Training Presentation

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BMCThis is structure and principle of No.2 planetary gear system.

The rotate direction is contrary with No.1 planetary gear system.

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BMCSD22 powershift transmission systemSD22 powershift transmission system

Consists of 4 planetary gear systems with 4 clutches, and 1 locking clutch (no planetary gear system) and housing, input shaft, end gear and output bevel gear.

No.1 clutch is for Forward Gear No.2 clutch is for Reverse GearNo.3 clutch is for 3rd Gear ShiftNo.4 clutch is for 2nd Gear ShiftNo.5 lock clutch is for 1st Gear Shift

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BMCThe 4 planetary gear system clutch’s washers and disc are the

same, but the disc quantity is different. Its design is based on transmission torque.

SD22 powershift transmission systemSD22 powershift transmission system

The No. of Clutch Washer Q’ty Disc Q’ty

No.1 3 4No.2 2 3No.3 1 2No.4 1 2No.5 2 3

Page 25: BMC  BMC Training Presentation

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BMCNo.1- 4 planetary gear

systems’ structure are same, clutches’ washer and disc are same, but the disc quantity and piston is different.

Page 26: BMC  BMC Training Presentation

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BMCMethod of fixing of each planetary gear is as this figure, it is actuated by the clutch.

EngagementEngagement of clutch is actuated by oil pressure from control valve pushing piston 3.

Page 27: BMC  BMC Training Presentation

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BMCDisengagementDisengagement of clutch is actuated by return spring 33 which pushes piston 3 to original position after oil pressure is cut off.

The function of disc spring 42 is to improve operating speed of piston 3 and improve release the discs.

Page 28: BMC  BMC Training Presentation

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BMCThis figure is a drawing of No.5 locking clutch. When the clutch disengages, oil in the cylinder body 16 by the action of centrifugal force. Disks can’t disengage quickly, only by disk spring 29. This can make the clutch half disengage. This will cause difficulty for next gearshift. In order to eliminate this problem, the ball check valve 17 is incorporated in the piston after the rotary clutch.

Page 29: BMC  BMC Training Presentation

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BMCNo.5 Clutch is a lock No.5 Clutch is a lock clutch. clutch. When this clutch engages, pressure oil from controlling valve enters into oil cavity and pushes piston 26, at the same time, the oil pushes check valve ball 17 to plug the hole of valve. The clutch is engaged quickly.

Page 30: BMC  BMC Training Presentation

BMC

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BMCNo.5 Clutch is a lock No.5 Clutch is a lock clutch. clutch. When the pressure oil from controlling valve is cut off, by the action of centrifugal force, ball 17 can move to the direction of arrow in this figure. At this time, the hole of valve cage is opened and the oil is drained off.

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BMCForward 1Forward 1stst Speed Speed

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BMCForward 2nd SpeedForward 2nd Speed

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BMCForward 3rd SpeedForward 3rd Speed

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BMCTransmission Lubrication and Transmission Lubrication and Cooling:Cooling:

It’s a forced lubrication system, from above and below, two ways divided through a valve.

Transmission Case lubrication pressure is 0.124Mpa. Upper way lubricates the second half bearing and cools the second half discs; lower way lubricates the first half bearing and cools first half discs.

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BMCMain Drive (SD22)• Assembly:Assembly: Bevel gears Horizontal Shaft Bearings Sprocket Hub

• Functions:Functions: Power train gear

reduction to increase the final drive torque

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BMC• Function:Function: To disengage the shaft

drive and control steering

• Type:Type:Wet, multi-disc, spring loaded, hydraulic separated, normally engaged.

• Spring forceSpring force F=3.2 tons

Steering Clutch

Page 37: BMC  BMC Training Presentation

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BMCSteering Clutch Operation

Page 38: BMC  BMC Training Presentation

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BMCSteering Brake

• Function:Function: The brake on the

outside of steering clutch’s outside drum, reduced the rpm of the final drive on that side.

• Type:Type:Wet band, hydraulic boosted control

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BMCSteering Brake Operation

Forward Reverse

Page 40: BMC  BMC Training Presentation

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BMCLinkage through valvesLinkage through valves

Steering Brake Control

Page 41: BMC  BMC Training Presentation

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BMC• There are 3 associated components, Main drive,

Steering Clutch and Steering Brake. They are lubricated and cooled by the oil in steering case. The oil level can be checked with oil dipstick

• Steering case has a breather to balance inside and outside pressures.

Steering Case Lubrication and Breather

Page 42: BMC  BMC Training Presentation

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BMC• Final Drive: One Set

Final Drive on each side.

• 2 stage spur gears reduction. Floating Seal and O-ring to contain oil, then connected outside with breather.

• Assembling Sprocket hub and gear requires 60 tons force with special tools.

Final Drive

Page 43: BMC  BMC Training Presentation

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BMC• Assembly:Assembly:

Track Frames

Track Rollers

Carrier Rollers

Recoil system

Track Shoes

Equalizer

Track System --- Walking Gear

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BMC• Function:Function:

1. Maintain track tension

2 absorb the vibration of idler

• Note:Note:

the fixed pressure is 20.38 tons, it requires special fitting tools

Recoil system for Track

Page 45: BMC  BMC Training Presentation

BMC

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BMCuse a ruler placed on the track grousers between carrier roller and idler, the measure distance is C , C=20-30mm

SD32 track has more wide, the distance is bigger between carrier roller and idler, the measured distance is C=30-40mm

Measurement of Track Tension

Idler Carrier roller

Page 46: BMC  BMC Training Presentation

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BMC• Function:Function:

Gives guidance for track chain and maintains track tension

• LubricationLubrication

There are lub oil in the cage that is sealed by floating seal, between idler and support housing. The oil capacity is 70%.

Idler

Page 47: BMC  BMC Training Presentation

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BMC• If the clearance is over limit ,

the idler will swing, and track links off centre and will wear the sprocket.

• If Clearance in one sideA > 4mm, it must be adjusted into A=0.5-1mm

• If Clearance of up and down(B+C)≥5mm it must be adjusted into (B+C)=2mm 。

To Adjust Idler Clearance

Page 48: BMC  BMC Training Presentation

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BMC• First it carries dozer

weight, secondly it prevent track chain moving off centre of track frame

• Bushing and float seal is similar to idler

Track Roller

Page 49: BMC  BMC Training Presentation

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BMC• Supports all of the

dozer weight, and determines the ground pressure

• Four high strength bolts fix track shoe onto track link,

bolt torque:

SD16:70kg.m

SD22:76kg.m

SD32:100kg.m

Track Shoe Assembly

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BMCTrack supports 30 tons bulldozer weight, and if the working Track supports 30 tons bulldozer weight, and if the working conditions are bad, it will wear more quickly, so use and conditions are bad, it will wear more quickly, so use and maintain it correctly.maintain it correctly.

1. Often check the tension of track shoe. use a ruler put the track grousers between carrier roller and idler, the measure is C , C=20-30mm; SD32 track is more weight, the distance is more large between carrier roller and idler, the measure is C=30-40mm

When the work is hard, the track shoe ass’y will need to be adjust tighter; if the work is moderate , the track shoe ass’y tension can be adjusted back.

Use and Maintenance of Track Shoe

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BMC2. The sprocket segments need be replaced when the sprocket

segments wear under the limit.

3. Don’t drive dozer hard and avoid track damage and excessive wear.

4. If there is excessive track play and noise, you must stop and check tracks and machine.

5. When the dozer across the railway line, you must drive it across the railway at right angle, and don’t change speed, don’t stop and reverse, avoid track shoes locking in railway line.

7. After working, you must check tracks, and if there is something wrong. If there is something wrong, must repair or replace.

Use and Maintenance of Track Shoe

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BMCEnd of this Training Module

Thanks Your Cooperation !!!

End of this Training Module

Thanks Your Cooperation !!!