Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection
碩士 === 國立成功大學 === 航空太空工程學系碩博士班 === 93 === Applying the MEMS process, the sensing modulus can be fabricated to measure the acceleration due to impact. We can fabricate poly-silicon strain gauge with piezo-resistive property, and also fabricate PZT with piezo-electric property by sol-gel method. We...
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ndltd-TW-093NCKU52950782017-06-03T04:41:09Z http://ndltd.ncl.edu.tw/handle/48073556194904026511 Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection 應用MEMS微感測器於多層穿靶訊號之偵測 Kuang-Han Shen 沈廣漢 碩士 國立成功大學 航空太空工程學系碩博士班 93 Applying the MEMS process, the sensing modulus can be fabricated to measure the acceleration due to impact. We can fabricate poly-silicon strain gauge with piezo-resistive property, and also fabricate PZT with piezo-electric property by sol-gel method. We fabricated both sensors on the silicon wafer, and a cantilever silicon beam with these micro-strain sensors is used to measure the acceleration. The new design is not only smaller than before, but also has high sensing frequency and acceleration. It gives us a better view and more details of the transient behavior of impact. We can use this modulus to measure the impact acceleration signal when the punch impacts a single-layer or multi-layers target boards. In order to establish a system that is able to identify the layer number of target board, we also developed the impacting signal identification circuit and the counting circuit to count the layer number of board. These circuits can identity the signal successfully in double-layer target boards impact test. Finally, we can use commercial numerical analysis software “LS-Dyna” to simulate the impact test as well to verify the accuracy in the experiment, and have the good result. Syh-Tsang Jenq 鄭泗滄 2005 學位論文 ; thesis 98 zh-TW |
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碩士 === 國立成功大學 === 航空太空工程學系碩博士班 === 93 === Applying the MEMS process, the sensing modulus can be fabricated to measure the acceleration due to impact. We can fabricate poly-silicon strain gauge with piezo-resistive property, and also fabricate PZT with piezo-electric property by sol-gel method. We fabricated both sensors on the silicon wafer, and a cantilever silicon beam with these micro-strain sensors is used to measure the acceleration. The new design is not only smaller than before, but also has high sensing frequency and acceleration. It gives us a better view and more details of the transient behavior of impact. We can use this modulus to measure the impact acceleration signal when the punch impacts a single-layer or multi-layers target boards. In order to establish a system that is able to identify the layer number of target board, we also developed the impacting signal identification circuit and the counting circuit to count the layer number of board. These circuits can identity the signal successfully in double-layer target boards impact test. Finally, we can use commercial numerical analysis software “LS-Dyna” to simulate the impact test as well to verify the accuracy in the experiment, and have the good result.
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author2 |
Syh-Tsang Jenq |
author_facet |
Syh-Tsang Jenq Kuang-Han Shen 沈廣漢 |
author |
Kuang-Han Shen 沈廣漢 |
spellingShingle |
Kuang-Han Shen 沈廣漢 Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection |
author_sort |
Kuang-Han Shen |
title |
Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection |
title_short |
Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection |
title_full |
Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection |
title_fullStr |
Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection |
title_full_unstemmed |
Applying High G MEMS Accelerometer for Multi-layer Target Impact Signal Detection |
title_sort |
applying high g mems accelerometer for multi-layer target impact signal detection |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/48073556194904026511 |
work_keys_str_mv |
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