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Identification of matrix cracking in cross-ply laminated composites using Lamb wave propagation

机译:利用兰姆波传播识别交叉层压复合材料中的基体开裂

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摘要

The purpose of the present study is to develop a nondestructive evaluation method and propose a model-independent viscoelastic characterization approach for the identification and classification of the matrix cracking in polymeric composites using the Lamb wave propagation method. To this end, cross-ply laminated composite specimens were fabricated and matrix cracking with different crack densities was induced in specimens using a tensile testing machine. The crack density was first measured by an optical microscope and compared with that of predicted by the Hashin model. Then, the fundamental anti-symmetric Lamb wave (A 0 ) at a frequency of 206 kHz was propagated in specimens using an ultrasound actuator and an ultrasound probe to obtain the characteristics of the induced waves including the displacement phase and the amplitude at different locations of the specimens along the propagation direction. Then, the corresponding inverse Lamb wave propagation problem was solved and the elastic and viscoelastic properties of specimens were estimated. The elastic modulus measured by the present method was in good agreement with the results obtained by an optical microscope and predicted by the Hashin model. The viscoelastic properties of specimens also showed good sensitivity to the severity of the induced matrix cracking.
机译:本研究的目的是开发一种无损评估方法,并提出一种与模型无关的粘弹性表征方法,用于使用兰姆波传播方法对聚合物复合材料中的基体裂纹进行识别和分类。为此,制造了交叉层压的复合材料试样,并使用拉伸试验机在试样中引起了具有不同裂纹密度的基体裂纹。首先通过光学显微镜测量裂纹密度,然后将其与Hashin模型预测的裂纹密度进行比较。然后,使用超声致动器和超声探头在标本中传播206 kHz频率的基本非对称Lamb波(A 0),以获得包括位移相位和振幅在不同位置的感应波的特性。标本沿传播方向。然后,解决了相应的逆兰姆波传播问题,并估计了样品的弹性和粘弹性。通过本方法测量的弹性模量与通过光学显微镜获得并由Hashin模型预测的结果非常吻合。样品的粘弹性还对诱导的基质开裂的严重程度表现出良好的敏感性。

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