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A New Method for Modeling of Initiation and Propagation of Delamination Between [0/θo] Layers of Laminated Composites

机译:层状复合材料[0 /θ o ]层之间层间起始和扩展分层的新方法

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摘要

In this article, initiation and propagation of delamination of a double cantilevered beam (DCB) is studied. The delamination of DCB specimen occurs between 0 o and θ 0 layers. Due to damage induced, during the loading, in the matrix of θ 0 layer, virtual crack closure technique (VCCT) as a well known method for simulation of initiation and propagation of the delamination for DCB is not able to model the propagation of delamination properly. To overcome this shortcoming, the stiffness of the damaged θ 0 layer is decreased with a developed technique in this study. The stiffness reduction technique (SR) is introduced in this paper to model the induced cracks in the matrix of the θ 0 layer. Then the stiffness reduction technique is coupled with the critical length parameter. The presented method is called stiffness reduction—critical length (SR-CL) method. By using SR-CL method, initiation and propagation of delamination for a configuration in which θ = 0o, 22.5o, 45o, 67.5o, 90o and for a cross ply laminate (0°/90°) 12 are modeled. The obtained results are in very good agreements with experimental data.
机译:在本文中,研究了双悬臂梁(DCB)分层的引发和传播。 DCB样品的分层发生在0 o 和θ 0 层之间。由于在加载过程中引起的损伤,因此在θ 0 层的矩阵中,虚拟裂纹闭合技术(VCCT)无法作为模拟DCB分层起始和扩展的众所周知的方法。正确地模拟分层的传播。为了克服这一缺点,本研究采用先进的技术降低了受损的θ 0 层的刚度。本文引入刚度降低技术(SR),对θ 0 层矩阵中的诱导裂纹进行建模。然后,将刚度降低技术与临界长度参数耦合。提出的方法称为刚度减小临界长度(SR-CL)方法。通过使用SR-CL方法,对于θ= 0 o ,22.5 o ,45 o ,67.5的配置,分层的发起和传播对 o ,90 o 和交叉层压板(0°/ 90°)进行建模 12 。所得结果与实验数据非常吻合。

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