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Propagation of ultrasonic waves in materials under bending forces

机译:超声波在弯曲力下在材料中的传播

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Ultrasound longitudinal and linearly polarised shear waves propagating through a piece submitted to bending stresses rely on some physical properties such as the volume density, the elastic constants and the strain resulting from the applied forces. The present paper deals with the acoustoelasticity theory in stressed and elastically deformed media under simple bending forces. For a piece made of carbon steel (C 35) with known macroscopic properties, acoustoelastic measurements have been achieved in three zones under bending stresses (compressed, central and extended fibres). The waveforms provided by ultrasound transducers correspond to the average value of the applied stress on their surface. These responses have been simulated numerically by dividing of the transducer in slices. Simulated and measured ultrasonic waveforms in transmission configuration allow the verification of the delay effect induced by bending stresses and the amplitude modification resulting from the effect of averaging over the transducer according to its finite dimension. This method constitutes an investigating tool for the evaluation of the acoustic properties of homogeneous materials loaded elastically by variable or heterogeneous stresses.
机译:超声纵波和线偏振切变波在弯曲应力作用下传播,这取决于某些物理性质,例如体积密度,弹性常数和作用力产生的应变。本文研究了在简单弯曲力作用下受应力和弹性变形的介质中的声弹性理论。对于具有已知宏观性能的碳钢(C 35)制成的零件,在弯曲应力(压缩纤维,中心纤维和延伸纤维)的三个区域中已完成了声弹性测量。超声换能器提供的波形对应于其表面上施加的应力的平均值。通过将换能器分成多个切片,可以对这些响应进行数值模拟。在传输配置中仿真和测量的超声波波形可以验证弯曲应力引起的延迟效应以及根据换能器的有限尺寸对换能器求平均值产生的振幅变化。该方法构成了一种研究工具,用于评估通过可变或非均匀应力弹性加载的均质材料的声学特性。

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