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Effect of Residual Stresses on Delamination Cracks in Fiber Reinforced Composites

机译:残余应力对纤维增强复合材料分层裂纹的影响

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摘要

In the processing of cross-ply fiber reinforced materials, residual stresses, as well as possible transverse cracking may arise. These affect the stress field about a delamination between two layers. In this investigation, the effect of residual stresses resulting from curing and transverse cracks is examined. A 0°/90°/0° ply system is considered with a delamination assumed between one of the 0°and 90°layers. The residual stresses along the interface without the delamination are calculated. First, this analysis is done neglecting the transverse cracks in the 90°layer. Then, the transverse cracks are included and several methods are employed to calculate the residual stresses. These include the shear lag method, a semi-analytic method and the finite element. Method. It is seen that the latter two methods produce similar results. By means of the superposition principle, the stress intensity factors resulting from the residual stresses are obtained for the delamination. Use is made of the conservative M-integral with tractions along the crack faces.
机译:在交叉纤维增强材料的加工中,可能会产生残余应力以及可能的横向裂纹。这些会影响两层之间分层的应力场。在这项研究中,研究了由于固化和横向裂纹而产生的残余应力的影响。考虑使用0°/ 90°/ 0°层系统,并假设在0°和90°层之一之间存在分层。计算没有分层时沿界面的残余应力。首先,忽略了90°层中的横向裂纹,进行了此分析。然后,包括横向裂纹,并采用几种方法来计算残余应力。其中包括剪切滞后法,半解析法和有限元。方法。可以看出,后两种方法产生相似的结果。通过叠加原理,获得了由残余应力产生的应力强度因子以进行分层。使用沿裂纹面具有牵引力的保守M积分。

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