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Numerical investigation on vibration characteristics of a micro-speaker diaphragm considering thermoforming effects

机译:考虑热成型效应的微扬声器振膜振动特性的数值研究

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摘要

Micro-speaker diaphragms play an important role in generating desired sound responses, and are designed to have thin membrane shapes for flexibility in the axial direction. The micro-speaker diaphragms are formed from thin polymer film through the thermoforming process, in which local thickness reductions occur due to strain localization. This thickness reduction results in a change in vibration characteristics of the diaphragm and different sound responses from that of the original design. In this study, the effect of this thickness change in the diaphragm on its vibration characteristics is numerically investigated by coupling thermoforming simulation, structural analysis and modal analysis. Thus, the thickness change in the diaphragm is calculated from the thermoforming simulation, and reflected in the further structural and modal analyses in order to estimate the relevant stiffness and vibration modes. Comparing these simulation results with those from a diaphragm with the uniform thickness, it is found that a local thickness reduction results in the stiffness reduction and the relevant change in the natural frequencies and the corresponding vibration modes.
机译:微型扬声器的振动膜在产生所需的声音响应中起着重要的作用,并且设计成具有薄膜形状,从而在轴向上具有柔韧性。微型扬声器膜片是通过热成型工艺由聚合物薄膜制成的,其中由于应变局部化而导致局部厚度减小。这种厚度的减小导致振动膜片的振动特性的变化以及与原始设计不同的声音响应。在这项研究中,通过耦合热成型模拟,结构分析和模态分析,数值研究了膜片厚度变化对其振动特性的影响。因此,隔膜的厚度变化是通过热成型模拟计算得出的,并反映在进一步的结构和模态分析中,以估算相关的刚度和振动模式。将这些模拟结果与具有均匀厚度的膜片的模拟结果进行比较,发现局部厚度减小会导致刚度减小以及固有频率和相应振动模式的相应变化。

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