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© 2012 Eaton Corporation. All rights reserved.

Cable Support Solutions

B-Line by Eaton

Technology Day Japan 2013

© 2012 Eaton Corporation. All rights reserved.

© 2012 Eaton Corporation. All rights reserved.

4 © 2013 Eaton, All Rights Reserved.

Manufacturing Facilities

Global Cable Tray Capabilities M

5 © 2013 Eaton, All Rights Reserved.

Cable Ladder

Strut Accessories

Cable Tray

Strut Systems Trefoil and Single

Product Portfolio

Cable Ladder Fittings Cable Tray Fittings

Cable Cleats

6 © 2013 Eaton, All Rights Reserved.

Cooper Specifier Center - CoSPEC

CAD

PDMS

BIM Graphics

Web-based specifier destination featuring a 3D-powered catalog

Select, view and download content for CBL products

Content in nearly 100 formats including: Proprietary and standard 2D & 3D CAD

Aveva Plant PDMS

Intergraph® SmartPlant® 3D

Autodesk® Revit®

Product information and submittals

Graphic files

Leading scope, depth and breadth of outputs

World Class Design Tool

Industry Leading Resource for Design Content

7 © 2013 Eaton, All Rights Reserved.

Finding CoSPEC

• Home page → Resources tab

→ CoSPEC Specifier Center

• http://www.cooperbline.com/

CoSPEC

Connect to CoSPEC via main page or URL

8 © 2013 Eaton, All Rights Reserved.

View Selected Products in 2D and 3D

• Click 3D Preview tab to

generate 3D view (requires

Active X control install)

• Full-featured viewer move,

zoom in/out, snap to views,

move around, etc.

• Stereoscopic 3D feature

works with 3D glasses to

float in the screen

Three Dimensional View – Also With 3D Glasses

9 © 2013 Eaton, All Rights Reserved.

Download Design Content

• Click ‘CAD Download’ tab to begin download

• Select any one of nearly 100 output formats including:

• 2D or 3D standard, non-proprietary

• 2D or 3D proprietary, native files

• Graphics

• Aveva Plant PDMS Equipment Spec

• Intergraph SP3D

• PDF cut sheets / submittals

Download in Any One of Nearly 100 Formats

10 © 2013 Eaton, All Rights Reserved.

Design Tools - PDMS & SP3D Models

• AVEVA PDMS Library available

• With and without UDA’s

• Spec content also in Excel

• Intergraph SP3D Library available

• With and without UDA’s

• Spec content also in Excel

• Design usage and import instructions located within .zip file

Download via CoSPEC website

Direct Link: B-Line PDMS

© 2012 Eaton Corporation. All rights reserved.

Cable Tray Basics: Materials and applications

I-Beam construction

Fitting construction

Standard and specialty splicing

High performance cover clamps

12 © 2013 Eaton, All Rights Reserved.

Hot Dip Galvanized After Fabrication (HDGAF) Steel Cable Tray

Application - Hot-Dip Galvanized Steel

Indoor 260°C / 500°F Max. Temperature

Outdoor - Non-Saline -29°C / -20°F Min. Temperature

Outdoor - Saline Strength to Weight Ratio

Acids/Chlorines Electrical Conductivity

Steel Hot Dip Galvanized Finish to ASTM A123 Salt Spray Test Results

24 hours exposure 96 hours exposure 240 hours exposure 504 hours exposure

Conclusion – Not Acceptable for Saline Environments

13 © 2013 Eaton, All Rights Reserved.

Aluminum Cable Tray

Application - Aluminum

Indoor 93°C / 200°F Max. Temperature

Outdoor - Non-Saline -129°C / -200°F Min. Temperature

Outdoor - Saline Strength to Weight Ratio

Acids/Chlorines Electrical Conductivity

Aluminum 6063-T6 Salt Spray Test Results

96 hours exposure 240 hours exposure 504 hours exposure 1032 hours exposure

Conclusion – No Degradation of Strength; Rate of Weight Loss Decreases

14 © 2013 Eaton, All Rights Reserved.

Fiberglass Cable Tray

Application – Fiberglass (Polyester, Vinyl-Ester, Low Smoke/Dis-stat)

Indoor 93°C / 200°F Max. Temperature

Outdoor - Non-Saline -129°C / -200°F Min. Temperature

Outdoor - Saline Strength to Weight Ratio

Acids/Chlorines Electrical Conductivity

(FA Series)

Vinyl Ester Salt Spray Test Results

96 hours exposure 240 hours exposure 504 hours exposure 1032 hours exposure

Conclusion – Acceptable for any Environment

15 © 2013 Eaton, All Rights Reserved.

Stainless Steel Cable Tray

Application - Stainless Steel

Indoor 426°C / 800°F Max. Temperature

Outdoor - Non-Saline -184°C / -300°F Min. Temperature

Outdoor - Saline Strength to Weight Ratio

Acids/Chlorines Electrical Conductivity

Stainless Steel AISI 316 Salt Spray Test Results

96 hours exposure 240 hours exposure 504 hours exposure 1032 hours exposure

Conclusion – Acceptable for any Environment

16 © 2013 Eaton, All Rights Reserved.

I-Beam Side Rail Profile - Steel

• I-Beam profile is the most efficient structural shape

• Features

1. Roll formed for extra strength

2. Enlarged top flange for stiffness

3. Structural grade, traceable steel

4. Rung top lock and weld bead

5. Positive rung support

6. Marked every 450mm with company name, part number, material, and heat trace

Engineered Side Rail Design Provides High Strength

1

2

3

4

5

6

17 © 2013 Eaton, All Rights Reserved.

I-Beam Side Rail Profile - Aluminum

• I-Beam profile is the most efficient structural shape

• Features

1. I-beam side rail maximizes strength to weight ratio

2. Thick top flange for stiffness

3. Rung top lock and weld bead

4. Positive rung support

5. Thick outside flanges for accessory attachment

1

2

3

4

5

6 1

2

3

4

5

6

Engineered Side Rail Design Provides High Strength

18 © 2013 Eaton, All Rights Reserved.

Common side rail

designs:

C-shape without weld

bead.

C-shape curved flange.

C-shape with weld bead.

Offset C-shape

I-Beam Engineering Outperforms all Other C-Shapes

Common Side Rail Shapes

19 © 2013 Eaton, All Rights Reserved.

I-Beam vs. C-Shaped Rails

19

C-shape side rail profile: - 150mm high x 1.5mm thick (16 gauge) side rail

- 184kg/m on a 3.0m span

- Based on simple beam destructive load test to NEMA VE-1

I-beam side rail profile: - 150mm high x 1.5mm thick (16 gauge) side rail

- 446kg/m on a 3.0m span

- Based on simple beam load test to NEMA VE-1

I-Beam Profile Carries 2.3X Greater Load than C-Shape Profile

20 © 2013 Eaton, All Rights Reserved.

Fitting Design

Fitting Designs Help Maximize System Strength

Features:

• 300mm, 600mm, 900mm & 1200mm Standard Radius

• Smooth radius for cable protection

• Positive rung support

• Requires fewer supports to carry design load that NEMA VE-2 diagrams

• 75mm and 100mm Tangent

• Maximizes Splice Plate Contact

• Improves Electrical Continuity

21 © 2013 Eaton, All Rights Reserved.

Splices & Specialty Splices

• AL ‘Wedge-lock’

• Structurally integral

• Self-Supporting

• Fast, simple, and safe installation

• Steel Splice

• Maximizes rail to splice engagement

• Unique hole pattern

• Heavy Duty Expansion

• Minimize structural supports

• Minimize deflection

• Increase system flexibility

Splice Plates Enhance Structural Integrity

22 © 2013 Eaton, All Rights Reserved.

High Performance Cover Clamps

Recommended for any application – indoor and outdoor

• Available in stainless steel 316 and mechanical zinc

• Works with B-Line HPL, SDL, and HDL Series

• Reduces cover sagging and warping

Cyclonic Wind Rated

• Withstands 76m/s (170mph) Standard

Two Styles to Select From

• Standard – flush with top of ladder

• Raised (35mm) - for ventilation

23 © 2013 Eaton, All Rights Reserved.

Why B-Line Cable Ladder ????

24 © 2013 Eaton, All Rights Reserved.

B-Line Cable Ladder Construction =

*** Strongest in the Industry ***

25 © 2013 Eaton, All Rights Reserved.

If Not B-Line Ladder ????

26 © 2013 Eaton, All Rights Reserved.

Car Crash!!!!

© 2012 Eaton Corporation. All rights reserved.

Structural Steel Savings:

Reduce Procurement Cost and Engineering Complexity

28 © 2013 Eaton, All Rights Reserved.

Opportunity: Cable Tray Supports

Trapeze Support

$75 - $250 / support Engineered Pipe Racks

$1,500 - $15,000 / support

Supports for Cable Ladder can Exceed the Price of Cable Ladder

29 © 2013 Eaton, All Rights Reserved.

Current State – Fitting Supports

Horizontal Bend – 8 Supports

30 © 2013 Eaton, All Rights Reserved.

Why the current state?

• NEMA VE 2, BEAMA, and Manufacturers supply recommendations for the installation

of cable tray including support locations for fittings

That’s the way we’ve always done it…

Horizontal Bend Vertical Bend

31 © 2013 Eaton, All Rights Reserved.

How Can B-Line Help You?

Minimize Required Steel for Fittings

32 © 2013 Eaton, All Rights Reserved.

B-Line Recommendations – Horizontal Bend

Added Flexibility for Horizontal Fittings

33 © 2013 Eaton, All Rights Reserved.

B-Line Recommendations – Vertical Bend

Added Flexibility for ALL Fittings

34 © 2013 Eaton, All Rights Reserved.

Implementation…

Use Manufacturers Recommended Support Locations

35 © 2013 Eaton, All Rights Reserved.

The Math…

• 90° Horizontal Bend Fitting:

• Steel weighs approx. 52 kg/m

• Opportunity to reduce approx. 12 linear meters of steel for 1 x horizontal bend.

• Results in ~ 624 kg of steel removed.

• Therefore:

• 1 x example of a horizontal bend saves 624kg & $546 of steel

• 200mm x 100mm Steel I-beam = Yen 76,000 ($875) / 1000kg (Japan Metal Bulletin)

• Question:

• How many horizontal bends on your current project?

• How much steel weight and $$$ can be saved?

What if the Competition Gives Their Tray Away for Free?

36 © 2013 Eaton, All Rights Reserved.

Straight Sections

3m Support Spacing – Only for the Competition

37 © 2013 Eaton, All Rights Reserved.

Straight Sections – Removing Supports

6m Support Spacing – Removes 50% of the Supports from a 3m Span

38 © 2013 Eaton, All Rights Reserved.

Straight Sections – Up to 12m!

Removes 50% of the Supports Of a 6m Span

39 © 2013 Eaton, All Rights Reserved.

Success Story:

Situation:

• TOTAL completing a refinery expansion in Louisiana. Supports for cable ladder run to a flare 213m from existing structures cost $30,000/support due to soil conditions

• 6m support span = 35 supports x $30k = $1.05M

Solution:

• Substitute 6m straight section cable ladder with 12m straight section cable ladder

• 12m support span = 18 supports x $30k = $0.54M

Results:

• Reduced the number of supports required for the 213m run by 50%, reducing the support cost from $1.05M to $0.54M

• Saved $510,000

Longer Spans Save Significant Time and Money

40 © 2013 Eaton, All Rights Reserved.

Estimated Project Savings:

Save: $3,233,413 support spans + $2,023,125 fitting supports + $1,128,974 expansion splice supports

TOTAL SAVING $6,385,512.00

Instructions: Make changes in yellow shaded areas for specified project.

Select choice from blue drop down menus.

Quantity ***

Units of Measurement (PLEASE SELECT) Metric Support Install

Time (minutes)**

Splice Install Time

(minutes)****

Horizontal Bends 545

Labor Rate ($/hr) $50.00 Horizontal Tees 780

Cable Tray Straight Run Length (m) 19,932 Horizontal Crosses 90

Individual Support Structure Weight (kg) 500 30 10 Vertical Bends 310

Cable Tray Material Steel

Temperature Differential (⁰C) 55.6 Fitting/Intermediate Support Cost $300

Maximum Expansion Splice Interval Spacing (m) 39.0

Support Span Savings Tray Price

per Meter* Support Span (m)

Individual Support Cost

**

Number of Supports Required

Labor Per Support Location

Labor Per Splice Location

Cable Tray & Support Cost

Cable Tray and Support Savings

EXCLUDING SUPPORTS REQUIRED FOR EXPANSION

JOINTS

$ 10.00 3 $ 1,000.00 6,644 $ 25.00 $ 8.33 = $ 7,064,786.67 $ 3,233,413.33

$ 20.00 6 $ 1,000.00 3,322 $ 25.00 $ 8.33 = $ 3,831,373.33

Expansion

Splice Price Support Span (m)

Cost of each Support **

Number of Supports Required

Labor Per Support Location

Labor Per Splice Location

Expansion Splice and/or

Additional Support Cost

Additional Support Savings

Expansion Splice Locations

Standard Expansion Splice $ 15.00 (Each Pair) 6 $ 1,000.00 1,106 $ 25.00 $ 8.33 = $ 1,150,329.68 $ 1,128,973.97

Heavy Duty Expansion Splice $ 45.00 (Each Pair) 6 $ 1,000.00 0 $ 25.00 $ 8.33 = $ 21,355.71

Steel HDG Cable Ladder MTO Value = $1.5 million

41 © 2013 Eaton, All Rights Reserved.

Combine all Features = Total System Solution

42 © 2013 Eaton, All Rights Reserved.

Questions

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