Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design

This final project is part of a research project on reverse engineering of a single cylinder 600 cc lister diesel engine. The research is a collaboration of three research groups within the Faculty of Mechanical and Aerospace Engineering (FMAE), namely Energy Conversion, Mechanical Production Engine...

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Main Author: Dwi Wahyusyah, Rudy
Format: Final Project
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/39089
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:39089
spelling id-itb.:390892019-06-21T15:26:52ZReverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design Dwi Wahyusyah, Rudy Teknik (Rekayasa, enjinering dan kegiatan berkaitan) Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/39089 This final project is part of a research project on reverse engineering of a single cylinder 600 cc lister diesel engine. The research is a collaboration of three research groups within the Faculty of Mechanical and Aerospace Engineering (FMAE), namely Energy Conversion, Mechanical Production Engineering, and Mechanical Design. The focus of this final project is on the computer aided drafting (CAD) modeling as well as static and dynamic structural analysis. As a case study, we select the crankshaft. The reverse engineering activity starts by dismantling an imported lister diesel engine from India. All components are measured either by, coordinate measuring machine (CMM), or manual measurement. The results are compiled and transformed into CAD data, which will become an input for the static and dynamic analysis. Stress analyses are performed by the bundled ANSYS finite-element software available in ANSYS Workbench 13. Load data are taken from the maximum torque specification of the engine, which are combined with computer simulation to determine the configuration of the maximum torque. For static analysis, the maximum combined stress is compared to the yield strength of the material, and for dynamic analysis, the maximum and minimum stresses at the most critical point are processed and compared with fatigue strength. Based on the analyses, the stresses are well beyond the yield strength, and the components under investigation are safe from fatigue failure. The above facts show that the lister diesel engine was designed using a very conservative approach. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
topic Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
spellingShingle Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
Dwi Wahyusyah, Rudy
Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design
description This final project is part of a research project on reverse engineering of a single cylinder 600 cc lister diesel engine. The research is a collaboration of three research groups within the Faculty of Mechanical and Aerospace Engineering (FMAE), namely Energy Conversion, Mechanical Production Engineering, and Mechanical Design. The focus of this final project is on the computer aided drafting (CAD) modeling as well as static and dynamic structural analysis. As a case study, we select the crankshaft. The reverse engineering activity starts by dismantling an imported lister diesel engine from India. All components are measured either by, coordinate measuring machine (CMM), or manual measurement. The results are compiled and transformed into CAD data, which will become an input for the static and dynamic analysis. Stress analyses are performed by the bundled ANSYS finite-element software available in ANSYS Workbench 13. Load data are taken from the maximum torque specification of the engine, which are combined with computer simulation to determine the configuration of the maximum torque. For static analysis, the maximum combined stress is compared to the yield strength of the material, and for dynamic analysis, the maximum and minimum stresses at the most critical point are processed and compared with fatigue strength. Based on the analyses, the stresses are well beyond the yield strength, and the components under investigation are safe from fatigue failure. The above facts show that the lister diesel engine was designed using a very conservative approach.
format Final Project
author Dwi Wahyusyah, Rudy
author_facet Dwi Wahyusyah, Rudy
author_sort Dwi Wahyusyah, Rudy
title Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design
title_short Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design
title_full Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design
title_fullStr Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design
title_full_unstemmed Reverse Engineering of Single Cylinder 600 cc Lister Diesel Engine with Pure Plant Oil as Fuel. Case Study: Crankshaft Design
title_sort reverse engineering of single cylinder 600 cc lister diesel engine with pure plant oil as fuel. case study: crankshaft design
url https://digilib.itb.ac.id/gdl/view/39089
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