Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels
碩士 === 國立屏東科技大學 === 機械工程系 === 91 === This work presents the evaluation of continuous, bolt-jointed structure with different tighten levels. Finite element analysis (FEA) and experimental modal analysis (EMA) are adopted to characterize the dynamic properties of free-free bolt-jointed plate structure...
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ndltd-TW-091NPUST4890232016-12-22T04:12:25Z http://ndltd.ncl.edu.tw/handle/64463862220204083720 Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels 連續螺栓結構螺栓鎖緊程度之檢驗評估 Chia- Hua Chang 張家華 碩士 國立屏東科技大學 機械工程系 91 This work presents the evaluation of continuous, bolt-jointed structure with different tighten levels. Finite element analysis (FEA) and experimental modal analysis (EMA) are adopted to characterize the dynamic properties of free-free bolt-jointed plate structure. Three methods, including the mode shape difference method, the slope of mode shape difference method and the strain energy method, are developed and applied to detect the untighten bolted location on the bolt-jointed plate. The structural model verification of bolt-jointed plate structure is performed. The system modal parameters including natural frequencies, mode shapes and frequency response function(FRF) can then be validated. Results show the less tighten levels of bolted plate reveal lower natural frequencies. The variation of mode shapes among different tighten levels of bolts are also observed. Both the numerical and experimental prediction of untighten bolt location are presented to show the effectiveness of the prediction method. Bor-Tsuen Wang 王栢村 2003 學位論文 ; thesis 97 zh-TW |
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碩士 === 國立屏東科技大學 === 機械工程系 === 91 === This work presents the evaluation of continuous, bolt-jointed structure with different tighten levels. Finite element analysis (FEA) and experimental modal analysis (EMA) are adopted to characterize the dynamic properties of free-free bolt-jointed plate structure. Three methods, including the mode shape difference method, the slope of mode shape difference method and the strain energy method, are developed and applied to detect the untighten bolted location on the bolt-jointed plate. The structural model verification of bolt-jointed plate structure is performed. The system modal parameters including natural frequencies, mode shapes and frequency response function(FRF) can then be validated. Results show the less tighten levels of bolted plate reveal lower natural frequencies. The variation of mode shapes among different tighten levels of bolts are also observed. Both the numerical and experimental prediction of untighten bolt location are presented to show the effectiveness of the prediction method.
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Bor-Tsuen Wang |
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Bor-Tsuen Wang Chia- Hua Chang 張家華 |
author |
Chia- Hua Chang 張家華 |
spellingShingle |
Chia- Hua Chang 張家華 Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels |
author_sort |
Chia- Hua Chang |
title |
Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels |
title_short |
Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels |
title_full |
Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels |
title_fullStr |
Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels |
title_full_unstemmed |
Inspection and Evaluation of Continuous Bolt-Jointed Structure with Different Tighten Levels |
title_sort |
inspection and evaluation of continuous bolt-jointed structure with different tighten levels |
publishDate |
2003 |
url |
http://ndltd.ncl.edu.tw/handle/64463862220204083720 |
work_keys_str_mv |
AT chiahuachang inspectionandevaluationofcontinuousboltjointedstructurewithdifferenttightenlevels AT zhāngjiāhuá inspectionandevaluationofcontinuousboltjointedstructurewithdifferenttightenlevels AT chiahuachang liánxùluóshuānjiégòuluóshuānsuǒjǐnchéngdùzhījiǎnyànpínggū AT zhāngjiāhuá liánxùluóshuānjiégòuluóshuānsuǒjǐnchéngdùzhījiǎnyànpínggū |
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1718402976850116608 |