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Investigating the thermally induced acoustoelastic effect in isotropic media with Lamb waves

机译:用Lamb波研究各向同性介质中热诱发的声弹性效应

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摘要

Elastic wave velocities in metallic structures are affected by variations in environmental conditions such as changing temperature. This paper extends the theory of acoustoelasticity by allowing thermally induced strains in unconstrained isotropic media, and it experimentally examines the velocity variation of Lamb waves in aluminum plates (AL-6061) due to isothermal temperature deviations. This paper presents both thermally induced acoustoelastic constants and thermally varying effective Young's modulus and Poisson's ratio which include the third order elastic material constants. The experimental thermal sensitivity of the phase velocity (∂ vP/∂ θ) for both the symmetric and antisymmetric modes are bounded by two theories, the acoustoelastic Lamb wave theory with thermo-acoustoelastic tensors and the thermoelastic Lamb wave theory using an effective thermo-acoustoelastic moduli. This paper shows the theoretical thermally induced acoustoelastic Lamb wave thermal sensitivity (∂ vP/∂ θ) is an upper bound approximation of the experimental thermal changes, but the acoustoelastic Lamb wave theory is not valid for predicting the antisymmetric (A0) phase velocity at low frequency-thickness values,   1.55 MHz mm for various temperatures.
机译:金属结构中的弹性波速度受环境条件变化(例如温度变化)的影响。本文通过允许无约束各向同性介质中的热致应变扩展了声弹性理论,并通过实验研究了等温温度偏差引起的铝板(AL-6061)中兰姆波的速度变化。本文介绍了热诱导声弹性常数和热变化的有效杨氏模量和泊松比,其中包括三阶弹性材料常数。对称和反对称模式的相速度(∂vP /∂θ)的实验热灵敏度都受以下两个理论的限制:带热声弹张量的声弹Lamb波理论和使用有效热声弹弹性的热弹Lamb波理论。模量本文显示了理论上的热诱发声弹Lamb波热灵敏度(∂vP /∂θ)是实验热变化的上限近似值,但声弹Lamb波理论不适用于预测低温度下的反对称(A0)相速度在各种温度下的频率厚度值<1.551.5MHz mm。

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