Design of Diesel-Electric Shunting Locomotive
Train is the most efficient and effective of all ground modes transportation. In an operation, train could deliver both passangers and also materials. Train operation is often supported by shunting operation. Shunting operation is an operation of switching rail track for a trainset. Shunting oper...
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id-itb.:407102019-07-09T09:05:08ZDesign of Diesel-Electric Shunting Locomotive Tirta Kurniawan, Franky Indonesia Final Project Electric Shunting Locomotive INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/40710 Train is the most efficient and effective of all ground modes transportation. In an operation, train could deliver both passangers and also materials. Train operation is often supported by shunting operation. Shunting operation is an operation of switching rail track for a trainset. Shunting operation is done by a specially designed locomotive which is called the Shunting Locomotive. This final project report is about the basic design of shunting locomotive, comprising of structural integrity of underframe and tractive performance required for shunting activity. Basic design results in the minimum tractive force requirement of 6,471.74 kgf in operation. Basic design of underframe structure results in the wheelbase of 5,500 mm with the derailment quotient value of 0.295, the maximum critical speed when curving is 55 km/h, and the dimensions of 7,850 mm length, and 2,800 mm wide. Calculation on the required power results in the selection of a of power generator with minimal power of 320 HP, i.e Diesel Engine CAT ACERT® C-9 with rated power of 350 HP. Structural integrity analysis of underframe results in a deflection value of 3.67 mm and maximum Von Misses stress value of 249.75 MPa which has Safety Factor value of 1.42 to SM490 material for the worst potential load case. From the analysis of both strength and deflection aspect, it can be concluded that the underframe structure could function well in shunting operation. text |
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Train is the most efficient and effective of all ground modes
transportation. In an operation, train could deliver both passangers and also
materials. Train operation is often supported by shunting operation. Shunting
operation is an operation of switching rail track for a trainset. Shunting operation
is done by a specially designed locomotive which is called the Shunting
Locomotive.
This final project report is about the basic design of shunting locomotive,
comprising of structural integrity of underframe and tractive performance
required for shunting activity. Basic design results in the minimum tractive force
requirement of 6,471.74 kgf in operation. Basic design of underframe structure
results in the wheelbase of 5,500 mm with the derailment quotient value of 0.295,
the maximum critical speed when curving is 55 km/h, and the dimensions of
7,850 mm length, and 2,800 mm wide. Calculation on the required power results
in the selection of a of power generator with minimal power of 320 HP, i.e Diesel
Engine CAT ACERT® C-9 with rated power of 350 HP. Structural integrity
analysis of underframe results in a deflection value of 3.67 mm and maximum
Von Misses stress value of 249.75 MPa which has Safety Factor value of 1.42 to
SM490 material for the worst potential load case. From the analysis of both
strength and deflection aspect, it can be concluded that the underframe structure
could function well in shunting operation. |
format |
Final Project |
author |
Tirta Kurniawan, Franky |
spellingShingle |
Tirta Kurniawan, Franky Design of Diesel-Electric Shunting Locomotive |
author_facet |
Tirta Kurniawan, Franky |
author_sort |
Tirta Kurniawan, Franky |
title |
Design of Diesel-Electric Shunting Locomotive |
title_short |
Design of Diesel-Electric Shunting Locomotive |
title_full |
Design of Diesel-Electric Shunting Locomotive |
title_fullStr |
Design of Diesel-Electric Shunting Locomotive |
title_full_unstemmed |
Design of Diesel-Electric Shunting Locomotive |
title_sort |
design of diesel-electric shunting locomotive |
url |
https://digilib.itb.ac.id/gdl/view/40710 |
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