Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage
碩士 === 國立雲林科技大學 === 機械工程系碩士班 === 90 === The CARD (computer-aided research and development) technique,which is in- tegrated by advanced design analysis tools, have been developed rapidly as computer technology. The main purpose of this research is to apply CARD technique to analyze system behavior of...
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ndltd-TW-090YUNTE4890302016-06-24T04:15:30Z http://ndltd.ncl.edu.tw/handle/19146947469222149016 Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage 虛擬雙軸線性滑動平台剛性分析及動態模擬 Shang-Feng Hsieh 謝尚峰 碩士 國立雲林科技大學 機械工程系碩士班 90 The CARD (computer-aided research and development) technique,which is in- tegrated by advanced design analysis tools, have been developed rapidly as computer technology. The main purpose of this research is to apply CARD technique to analyze system behavior of the widely used XY linear motion stage. First, deriving the math- hematical equations of stiffness for the stage, simulate with advanced design tools I-DEAS and automatic dynamics analysis of mechanical system tools ADAMS using virtual-prototyped concepts. Second, a XY linear motion stage is designed and constructed, and the system stiffness, natural frequency, and dynamic behavior are analyzed in it. At last, concepts a flex stage by advanced FEA analyze tools ANSYS, and compare with the rigid stage to investigate into the error of both. Jyun-Cheng Cheng 鄭俊誠 2002 學位論文 ; thesis 86 zh-TW |
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碩士 === 國立雲林科技大學 === 機械工程系碩士班 === 90 === The CARD (computer-aided research and development) technique,which is in- tegrated by advanced design analysis tools, have been developed rapidly as computer technology. The main purpose of this research is to apply CARD technique to analyze system behavior of the widely used XY linear motion stage. First, deriving the math- hematical equations of stiffness for the stage, simulate with advanced design tools I-DEAS and automatic dynamics analysis of mechanical system tools ADAMS using virtual-prototyped concepts. Second, a XY linear motion stage is designed and constructed, and the system stiffness, natural frequency, and dynamic behavior are analyzed in it. At last, concepts a flex stage by advanced FEA analyze tools ANSYS, and compare with the rigid stage to investigate into the error of both.
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Jyun-Cheng Cheng |
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Jyun-Cheng Cheng Shang-Feng Hsieh 謝尚峰 |
author |
Shang-Feng Hsieh 謝尚峰 |
spellingShingle |
Shang-Feng Hsieh 謝尚峰 Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage |
author_sort |
Shang-Feng Hsieh |
title |
Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage |
title_short |
Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage |
title_full |
Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage |
title_fullStr |
Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage |
title_full_unstemmed |
Stiffness Analysis and Dynamic Simulation for Virtual XY Linear Motion stage |
title_sort |
stiffness analysis and dynamic simulation for virtual xy linear motion stage |
publishDate |
2002 |
url |
http://ndltd.ncl.edu.tw/handle/19146947469222149016 |
work_keys_str_mv |
AT shangfenghsieh stiffnessanalysisanddynamicsimulationforvirtualxylinearmotionstage AT xièshàngfēng stiffnessanalysisanddynamicsimulationforvirtualxylinearmotionstage AT shangfenghsieh xūnǐshuāngzhóuxiànxìnghuádòngpíngtáigāngxìngfēnxījídòngtàimónǐ AT xièshàngfēng xūnǐshuāngzhóuxiànxìnghuádòngpíngtáigāngxìngfēnxījídòngtàimónǐ |
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