首页> 外文期刊>International Journal of Fracture >The effect of residual thermal stresses on transverse cracking in cross-ply laminates: an application of the coupled criterion of the finite fracture mechanics
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The effect of residual thermal stresses on transverse cracking in cross-ply laminates: an application of the coupled criterion of the finite fracture mechanics

机译:残余热应力对十字层层压板横向开裂的影响:有限裂缝力学耦合标准的应用

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摘要

A model to predict transverse cracking in cross-ply laminates in the presence of residual thermal stresses is developed here. This model is based on the coupled criterion of the finite fracture mechanics. This criterion has been successfully used for different materials, structures and scales to predict crack initiation. It is based on two main hypotheses: (i) crack initiation occurs as a finite-length crack onset and (ii) the crack onset requires that both stress and energy criteria are fulfilled simultaneously. The present model is developed under the generalized-plane-strain hypotheses combining the results obtained using the laminate theory and a boundary element code. The present analysis shows that the residual thermal stresses affect both the stress and the energy criteria in the form of adding a residual elastic-strain to the strain imposed by external mechanical loads. An explicit expression for this residual elastic-strain is provided. For certain composite materials as carbon/epoxy the value of this residual elastic-strain is shown to be relatively large in comparison with the nominal critical transverse strain of the material. The comparison with experiments shows that considering the residual thermal stresses using the strategy proposed here improves drastically the accuracy of the model predictions.
机译:在此开发了一种用于预测在残留热应力存在下的交叉层层压板中的横向裂缝的模型。该模型基于有限骨折力学的耦合标准。该标准已成功用于不同的材料,结构和尺度以预测破裂启动。它基于两个主要假设:(i)作为有限长度裂缝发作和(ii)裂缝发作的裂纹开始需要同时满足应力和能量标准。本模型在广义平面 - 应变假设下进行显影,这些假设组合使用层压理论和边界元件代码获得的结果。本分析表明,残余热应力影响应力和能量标准,以添加残余弹性应变为由外部机械负载施加的应变。提供了这种残余弹性应变的明确表达。对于某些复合材料作为碳/环氧树脂,与材料的标称临界横向菌株相比,该残余弹性应变的值相对较大。与实验的比较表明,考虑使用此处提出的策略的剩余热应力急剧地提高了模型预测的准确性。

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