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Ply-Cracking Damage Theory for Cross-Ply Laminate and Its Application to Finite Element Method

机译:交叉层板的层间开裂损伤理论及其在有限元方法中的应用

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This paper deals with a theory of ply-cracking damage on 90°and 0 °plies in cross-ply laminate and its application to finite element method. An energy approach is extended to predict the initiation and evolution of ply-cracking damage on 90°and 0°plies and the corresponding nonlinear stress- strain behavior of the cross-ply laminate under multi-axial in plane loading. In this approach, the stress and strain conditions for the progressive damage are determined by equating the decrease in potential energy to the released energy, where the former and latter are estimated from the stiffness reduction due to ply-cracking damage and from the mixed-mode critical energy release rate for cracking of unidirectional ply, respectively. This approach provides us with the constitutive relation of cross-ply laminates including the progressive ply-cracking damage. This theory is applied to the finite element method in order to analyze the ply-cracking damage and stress/strain distributions of the structures made of cross-ply laminates. As an example, finite element analysis is carried out on the seven kinds of CFRP cross-ply laminates with a circular hole. The numerical results show that the transverse cracking damage in 90°ply is widely spread out on the ligament of the plate, and the splitting damage in 0°ply extends in the longitudinal direction from the edge of the hole. The details of the damage evolution around a circular hole in CFRP cross-ply laminate dapend on the stacking lay--up.
机译:本文讨论了交叉层板中90°和0°层上的层破裂裂纹的理论及其在有限元方法中的应用。扩展了能量方法,以预测在90°和0°折叠时层裂的破坏的发生和发展,以及在多轴平面载荷下交叉层板的相应非线性应力-应变行为。在这种方法中,通过将势能的减小等同于释放的能量来确定渐进式破坏的应力和应变条件,其中前者和后者是根据层裂裂纹所导致的刚度降低以及混合模式来估算的单向层破裂的临界能量释放速率。这种方法为我们提供了交叉层状层压板的本构关系,包括渐进的层状开裂损伤。该理论被应用到有限元方法中,以分析由交叉层板制成的结构的层开裂损伤和应力/应变分布。例如,对7种带圆孔的CFRP交叉层压板进行了有限元分析。数值结果表明,90°ply的横向开裂损伤在板的韧带上广泛分布,0°ply的开裂损伤从孔的边缘沿纵向延伸。 CFRP交叉层压板的圆形孔周围的损伤演变的细节悬挂在堆积层上。

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