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Experimental study and finite element analysis based on equivalent load method for laser ultrasonic measurement of elastic constants

机译:基于等效载荷法的激光超声弹性常数测量实验研究与有限元分析

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摘要

The laser ultrasonic generation of Rayleigh surface wave and longitudinal wave in an elastic plate is studied by experiment and finite element method. In order to eliminate the measurement error and the time delay of the experimental system, the linear fitting method of experimental data is applied. The finite element analysis software ABAQUS is used to simulate the propagation of Rayleigh surface wave and longitudinal wave caused by laser excitation on a sheet metal sample surface. The equivalent load method is proposed and applied. The pulsed laser is equivalent to the surface load in time and space domain to meet the Gaussian profile. The relationship between the physical parameters of the laser and the load is established by the correction factor. The numerical solution is in good agreement with the experimental result. The simple and effective numerical and experimental methods for laser ultrasonic measurement of the elastic constants are demonstrated. (C) 2016 Published by Elsevier B.V.
机译:通过实验和有限元方法研究了弹性板中瑞利面波和纵波的激光超声产生。为了消除实验系统的测量误差和时延,采用了实验数据的线性拟合方法。有限元分析软件ABAQUS用于模拟激光激发在钣金样品表面上引起的瑞利表面波和纵向波的传播。提出并应用了等效荷载法。脉冲激光在时域和空域等效于表面载荷,以满足高斯分布。激光器的物理参数与负载之间的关系由校正因子确定。数值解与实验结果吻合良好。演示了简单有效的数值和实验方法,用于激光超声测量弹性常数。 (C)2016由Elsevier B.V.发布

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