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Thermomechanical Analysis of Micromechanical Formation of Residual Stresses and Initial Matrix Failure in CFRP

机译:CFRP中残余应力微机械形成和初始基体破坏的热力学分析

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摘要

Process induced thermal residual stresses and matrix failure of unidirectional CFRP has been investigated by finite element methods. Partial discrete model composites consisting of a microscopic area of fibers and matrix surrounded by a homogeneous area were chosen. Four cases have been investigated concerning the formation of residual stresses and initial matrix failure: A free UD-laminate, a constrained UD-laminate, a cross ply laminate and a thick laminate which is subjected to a temperature gradient during cooling down. On the basis of experimental results from thermo-mechanical tests of the neat resin, the temperature dependent matrix stress-strain behavior as well as the parabolic failure criterion were formulated and introduced into the finite element program. The actual stress state on the microscopic level depending on different boundary condition could be described. The authors showed that the approach of a partial discrete model is suitable to determine the initial matrix failure of different macroscopic specimens under consideration of micro-mechanical effects. The results showed that high tri-axial stresses occur in the constrained laminate and the cross ply laminate, which lead to initial matrix failure in the 90°-ply. The consideration of a temperature gradient affects the stress distribution in the matrix though the influence on the maximum residual stress values is small. In this case, initial matrix failure can be excluded.
机译:通过有限元方法研究了过程诱导的热残余应力和单向CFRP的基体破坏。选择了由纤维的微观区域和被均质区域包围的基体组成的部分离散模型复合材料。关于残余应力的形成和初始基体破坏,已经研究了四个案例:一个自由的UD层压板,一个约束的UD层压板,一个交叉层压板和一个厚的层压板,该层压板在冷却过程中会受到温度梯度的影响。根据纯树脂热机械试验的实验结果,制定了随温度变化的基体应力-应变行为以及抛物线破坏准则,并将其引入有限元程序。可以描述取决于不同边界条件的微观水平上的实际应力状态。作者表明,在考虑微机械效应的情况下,采用局部离散模型的方法适合确定不同宏观样本的初始矩阵破坏。结果表明,约束层压板和交叉层压板中会出现高三轴应力,这会导致90°层压板中的初始基体破坏。尽管对最大残余应力值的影响很小,但考虑温度梯度会影响矩阵中的应力分布。在这种情况下,可以排除初始矩阵故障。

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