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Giant Magnetostrictive Material Loudspeaker System Acoustic Radiation Simulation 被引量:2

Giant Magnetostrictive Material Loudspeaker System Acoustic Radiation Simulation
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摘要 An infinite panel model of giant magnetostrictive material loudspeaker system (GMMLS) is proposed by making use of finite element method(FEM). Bending wave eigenfunction is introduced to describe the acoustic radiation condition of the panel. Far-field response in different conditions is calculated by changing the mass surface density. Conclusion is obtained by analyzing the curves simulated, that panel which has larger mass surface density can hardly generate far-field acoustic radiation for lower frequency, while the panel has smaller mass surface density generates far-field acoustic radiation for lower frequency evenly and stronger. An infinite panel model of giant magnetostrictive material loudspeaker system (GMMLS) is proposed by making use of finite element method(FEM). Bending wave eigenfunction is introduced to describe the acoustic radiation condition of the panel. Far-field response in different conditions is calculated by changing the mass surface density. Conclusion is obtained by analyzing the curves simulated, that panel which has larger mass surface density can hardly generate far-field acoustic radiation for lower frequency, while the panel has smaller mass surface density generates far-field acoustic radiation for lower frequency evenly and stronger.
作者 王睿 张永发
机构地区 School of Science
出处 《Journal of Beijing Institute of Technology》 EI CAS 2008年第2期237-240,共4页 北京理工大学学报(英文版)
关键词 giant magnetostrictive material loudspeaker system bending wave wave number mass surface density acoustic radiation giant magnetostrictive material loudspeaker system bending wave wave number mass surface density acoustic radiation
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