The hydrostatic pressure tolerance of spherical-cymbal transducer was investigated. Theoretical Von Mises stress analysis was carried out using finite element method. Effects of cavity geometry and material selection on limits pressure were evaluated. It shows that cavity depth, end-cap thickness and end-cap materials have strong effects on pressure tolerance of spherical-cymbal transducers. The comparison analysis indicates that the pressure tolerance of spherical-cymbal transducers with reference dimensions is higher than that of traditional cymbal transducers.
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吴石林,张玘,黄芝平. Spherical-cymbal换能器静水压性能研究[J].国防科技大学学报,2010,32(3):127-132. WU Shilin, ZHANG Qi, HUANG Zhiping. Hydrostatic Pressure Performance of Spherical-cymbal Transducers[J]. Journal of National University of Defense Technology,2010,32(3):127-132.