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Study on the Viscoelasticity Measurement of Materials Based on Surface Reflected Waves

机译:基于表面反射波的材料粘弹性测量研究

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摘要

The reflected waves received from ultrasonic waves propagating in materials contain information that constitutes the physical properties, material composition, defects, and degradation states. When measuring the dynamic viscoelasticity, the traditional bottom reflection method (BRM) cannot be used to measure the bottom irregular samples. In this paper, the storage modulus, loss modulus, and loss tangent are extracted by the surface reflection method (SRM) to evaluate the elastomer sample viscoelasticity. A theoretical study on the phase change caused by multiple reflections in the case of non-thin layer coupling is conducted. Based on this research, the experimental system is built. The results show that considering the thickness of the coupling layer can optimize the determination of viscoelasticity and reduce the error of the viscoelastic evaluation results of an elastomer with the traditional BRM. Finally, based on the principle of the SRM, the density of the elastomers is measured, and the feasibility and overall efficiency of this method are verified by experiments.
机译:从在材料中传播的超声波接收的反射波包含构成物理性质,材料成分,缺陷和降解状态的信息。在测量动态粘弹性时,传统的底部反射法(BRM)不能用于测量底部不规则样品。本文通过表面反射法(SRM)提取储能模量,损耗模量和损耗角正切值,以评估弹性体样品的粘弹性。对非薄层耦合情况下多次反射引起的相变进行了理论研究。在此基础上,建立了实验系统。结果表明,考虑耦合层的厚度可以优化粘弹性的确定,并减少传统BRM弹性体的粘弹性评估结果的误差。最后,根据SRM原理,测量了弹性体的密度,并通过实验验证了该方法的可行性和整体效率。

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