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The development of a general anisotropic material model with resonant ultrasound spectroscopy technology for the measurement of elastic constants of piezoelectric crystals

机译:用共振超声光谱技术开发通用各向异性材料模型以测量压电晶体的弹性常数

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The mechanical resonant response of a solid depends on its shape, density, and elastic moduli. We describe here the computational methods based on a general anisotropic material model for obtaining and analyzing the resonant frequencies of small samples, and provide examples to demonstrate the utilization and validation. Two new material types with six and thirteen independent elastic constants are formulated and tested with the instrumentation. This study will lead to expansion of software capability for the testing of novel materials with current instrumentation.
机译:固体的机械共振响应取决于其形状,密度和弹性模量。我们在此描述基于通用各向异性材料模型的计算方法,该方法用于获取和分析小样本的共振频率,并提供示例来演示利用和验证。仪器配制并测试了两种新材料类型,分别具有6个和13个独立的弹性常数。这项研究将导致使用当前仪器测试新型材料的软件功能的扩展。

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