Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging
碩士 === 國立高雄大學 === 電機工程學系碩士班 === 98 === In the industry, the forging die design mainly depends on the trial-and-error experiences. These technical approaches can not improve die design effectively and efficiently. This study will apply the method of CAD (Computer Aided Design) and CAE (Computer Aided...
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ndltd-TW-098NUK054420132016-06-15T04:17:52Z http://ndltd.ncl.edu.tw/handle/46584803594221319226 Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging 冷鍛頭模具鍛造參數最佳化設計 Chia-hung Chiang 蔣佳宏 碩士 國立高雄大學 電機工程學系碩士班 98 In the industry, the forging die design mainly depends on the trial-and-error experiences. These technical approaches can not improve die design effectively and efficiently. This study will apply the method of CAD (Computer Aided Design) and CAE (Computer Aided Engineering) in resolving the above mentioned issues. And it is expected to shorten the time of on-site testing through the DEFORM-3D software which uses FEM (Finite Element Method) for heading and thread rolling simulation. So as to reduce the actual mold testing time and control the parameters of forming processes.On the other hand, this research combine the standard 3D design software (SolidWorks) . This system not only could construct CAD model of the screw, blank, and mold fastly, but also could transfer the files in *.STL format to DEFORM-3D for processes simulation. Simultaneously coordinates the field mouth test plan law to carry on the simulation analysis plan in view of the main parameter, responds the analysis by Tian Koushi to be possible to respond each factor during different standard the difference, then knew each factor has what influence regarding the mold withstanding stress, and obtains a group of optimization design the parameter combination. May reduce the mold stress load after the field pretext proven prescription law analysis, this result may provide the mold to design the entrepreneur to Reference, and is helpful to the experience accumulation and the technical inheritance. Ming Chang Shih Jone Ming Hsieh 施明昌 博士 謝忠明 博士 2010 學位論文 ; thesis 84 zh-TW |
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碩士 === 國立高雄大學 === 電機工程學系碩士班 === 98 === In the industry, the forging die design mainly depends on the trial-and-error experiences. These technical approaches can not improve die design effectively and efficiently. This study will apply the method of CAD (Computer Aided Design) and CAE (Computer Aided Engineering) in resolving the above mentioned issues. And it is expected to shorten the time of on-site testing through the DEFORM-3D software which uses FEM (Finite Element Method) for heading and thread rolling simulation. So as to reduce the actual mold testing time and control the parameters of forming processes.On the other hand, this research combine the standard 3D design software (SolidWorks) . This system not only could construct CAD model of the screw, blank, and mold fastly, but also could transfer the files in *.STL format to DEFORM-3D for processes simulation.
Simultaneously coordinates the field mouth test plan law to carry on the simulation analysis plan in view of the main parameter, responds the analysis by Tian Koushi to be possible to respond each factor during different standard the difference, then knew each factor has what influence regarding the mold withstanding stress, and obtains a group of optimization design the parameter combination. May reduce the mold stress load after the field pretext proven prescription law analysis, this result may provide the mold to design the entrepreneur to Reference, and is helpful to the experience accumulation and the technical inheritance.
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author2 |
Ming Chang Shih |
author_facet |
Ming Chang Shih Chia-hung Chiang 蔣佳宏 |
author |
Chia-hung Chiang 蔣佳宏 |
spellingShingle |
Chia-hung Chiang 蔣佳宏 Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging |
author_sort |
Chia-hung Chiang |
title |
Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging |
title_short |
Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging |
title_full |
Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging |
title_fullStr |
Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging |
title_full_unstemmed |
Studies on Tool Wear Analysis and Parameters Design Optimization for Cold Forging |
title_sort |
studies on tool wear analysis and parameters design optimization for cold forging |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/46584803594221319226 |
work_keys_str_mv |
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