Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation
碩士 === 國立成功大學 === 機械工程學系碩博士班 === 93 === The forgeability of a material is a good indicator when evaluating different materials for industrial use. Normally, upsetting tests can help to create the forming limit diagram (FLD) of a material, which shows the forgeability of a material in various strai...
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ndltd-TW-093NCKU54901102017-06-05T04:45:22Z http://ndltd.ncl.edu.tw/handle/25088769640639121518 Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation 利用不同凹槽設計於圓柱壓縮實驗以進行可鍛造性評估 Yen-Ju Chen 陳彥儒 碩士 國立成功大學 機械工程學系碩博士班 93 The forgeability of a material is a good indicator when evaluating different materials for industrial use. Normally, upsetting tests can help to create the forming limit diagram (FLD) of a material, which shows the forgeability of a material in various strain paths. Experimental results show that after large deformation, fractures do not occur on a free surface when testing materials with high ductility. Therefore, a notched upsetting test is proposed in this thesis. Applying notch designs on specimens would help to accelerate the fracture initiation. With different notch designs on a specimen, one can obtain different acceleration effects on the specimen. Also, compared to the specimen without notch design, various notch designs on the specimen would lead to different concentration effects on energy consumption. These concepts and results were demonstrated and supported by the results from finite element analysis, and were verified by notched upsetting tests. An indicator called the Energy Consumption Rate (ECR) was proposed for evaluating the effect of notch designs, and it showed good capability for forgeability evaluation. Rong-Shean Lee 李榮顯 2005 學位論文 ; thesis 71 zh-TW |
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碩士 === 國立成功大學 === 機械工程學系碩博士班 === 93 === The forgeability of a material is a good indicator when evaluating different materials for industrial use. Normally, upsetting tests can help to create the forming limit diagram (FLD) of a material, which shows the forgeability of a material in various strain paths. Experimental results show that after large deformation, fractures do not occur on a free surface when testing materials with high ductility. Therefore, a notched upsetting test is proposed in this thesis. Applying notch designs on specimens would help to accelerate the fracture initiation. With different notch designs on a specimen, one can obtain different acceleration effects on the specimen. Also, compared to the specimen without notch design, various notch designs on the specimen would lead to different concentration effects on energy consumption. These concepts and results were demonstrated and supported by the results from finite element analysis, and were verified by notched upsetting tests. An indicator called the Energy Consumption Rate (ECR) was proposed for evaluating the effect of notch designs, and it showed good capability for forgeability evaluation.
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author2 |
Rong-Shean Lee |
author_facet |
Rong-Shean Lee Yen-Ju Chen 陳彥儒 |
author |
Yen-Ju Chen 陳彥儒 |
spellingShingle |
Yen-Ju Chen 陳彥儒 Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation |
author_sort |
Yen-Ju Chen |
title |
Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation |
title_short |
Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation |
title_full |
Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation |
title_fullStr |
Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation |
title_full_unstemmed |
Utilizing Different Notch Designs on Upsetting Test for Forgeability Evaluation |
title_sort |
utilizing different notch designs on upsetting test for forgeability evaluation |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/25088769640639121518 |
work_keys_str_mv |
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