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Genetic algorithm reconstruction of orthotropic composite plate elastic constants from a single non-symmetric plane ultrasonic velocity data

机译:基于单个非对称平面超声速度数据的正交异性复合板弹性常数的遗传算法重构

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摘要

This paper reports a Genetic Algorithm (GA) based reconstruction procedure to determine the elastic constants of an orthotropic plate from ultrasonic velocity data. Phase velocity measurements are carried out using ultrasonic back-reflection technique on laminated unidirectional graphite-epoxy (0)_(16) and quasi-isotropic graphite-epoxy (+45, -45, 0, 90)_(7s) fiber reinforced composite plates. A forward model to generate the slowness curves from elastic constants has been used to verify the quality of the reconstruction. The sensitivity of the chosen GA parameters is studied. As expected, out of 9 orthotropic elastic constants to be determined, the C_(23) and C_(44) found to be insensitive. The GA based reconstruction using data obtained from multiple planes were evaluated and it is shown that the single plane reconstruction at a non-symmetric plane was sufficient for the computation of the seven elastic constants.
机译:本文报道了一种基于遗传算法(GA)的重建程序,可从超声速度数据确定正交各向异性板的弹性常数。相速度测量是使用超声后向反射技术对层压的单向石墨-环氧树脂(0)_(16)和准各向同性石墨-环氧树脂(+ 45,-45、0、90)_(7s)纤维增强复合材料进行的板。从弹性常数生成慢度曲线的正向模型已用于验证重建的质量。研究了所选GA参数的灵敏度。不出所料,在要确定的9个正交各向异性弹性常数中,C_(23)和C_(44)不敏感。使用从多个平面获得的数据对基于GA的重建进行了评估,结果表明,在非对称平面上进行单平面重建足以计算七个弹性常数。

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