The Optimal Parameters of Loudspeaker Panel
碩士 === 國立交通大學 === 機械工程系所 === 94 === The influence of each parameter of rectangular pane1 on its SPL curve is discussed, including the panel’s aspect ratio and structure, the coil diameter, and the system’s damping. The harmonic analysis of the panel is performed using the FE software ANSYS. Experime...
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ndltd-TW-094NCTU54891012016-05-27T04:18:55Z http://ndltd.ncl.edu.tw/handle/30926551802486000410 The Optimal Parameters of Loudspeaker Panel 揚聲平板之最佳設計參數研究 Jian-Shiun Chen 陳建勳 碩士 國立交通大學 機械工程系所 94 The influence of each parameter of rectangular pane1 on its SPL curve is discussed, including the panel’s aspect ratio and structure, the coil diameter, and the system’s damping. The harmonic analysis of the panel is performed using the FE software ANSYS. Experiments are performed to insure its correctness. Then, based on the FE model, the displacement response spectrum of the panel determined in the FEA is used to calculate the sound pressure radiated from the vibrating panel. The SPL curve of the panel is constructed in the sound radiation study of the panel. The influence of the changes of the parameters on SPL curve is studied, so as to find the optimal aspect ratio range of the rectangular panel. In the sensitivity analysis, it has been shown that the optimal aspect ratios for panels mode of pure balsa(E1/E2=67.273), foaming panel(E1/E2=1), carbon sandwich panel(E1/E2=18.322) are in the range from 1.6 to 1.9. Besides, for panels with aspect ratios out of the above specified range, it has been shown that use of carbon composite reinforced panel can make the loudspeaker produce better and pleasing sound. Tai-Yan Kam 金大仁 2006 學位論文 ; thesis 92 zh-TW |
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碩士 === 國立交通大學 === 機械工程系所 === 94 === The influence of each parameter of rectangular pane1 on its SPL curve is discussed, including the panel’s aspect ratio and structure, the coil diameter, and the system’s damping. The harmonic analysis of the panel is performed using the FE software ANSYS. Experiments are performed to insure its correctness. Then, based on the FE model, the displacement response spectrum of the panel determined in the FEA is used to calculate the sound pressure radiated from the vibrating panel. The SPL curve of the panel is constructed in the sound radiation study of the panel. The influence of the changes of the parameters on SPL curve is studied, so as to find the optimal aspect ratio range of the rectangular panel. In the sensitivity analysis, it has been shown that the optimal aspect ratios for panels mode of pure balsa(E1/E2=67.273), foaming panel(E1/E2=1), carbon sandwich panel(E1/E2=18.322) are in the range from 1.6 to 1.9. Besides, for panels with aspect ratios out of the above specified range, it has been shown that use of carbon composite reinforced panel can make the loudspeaker produce better and pleasing sound.
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author2 |
Tai-Yan Kam |
author_facet |
Tai-Yan Kam Jian-Shiun Chen 陳建勳 |
author |
Jian-Shiun Chen 陳建勳 |
spellingShingle |
Jian-Shiun Chen 陳建勳 The Optimal Parameters of Loudspeaker Panel |
author_sort |
Jian-Shiun Chen |
title |
The Optimal Parameters of Loudspeaker Panel |
title_short |
The Optimal Parameters of Loudspeaker Panel |
title_full |
The Optimal Parameters of Loudspeaker Panel |
title_fullStr |
The Optimal Parameters of Loudspeaker Panel |
title_full_unstemmed |
The Optimal Parameters of Loudspeaker Panel |
title_sort |
optimal parameters of loudspeaker panel |
publishDate |
2006 |
url |
http://ndltd.ncl.edu.tw/handle/30926551802486000410 |
work_keys_str_mv |
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