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POLYMER INTERFACIAL FRACTURE SIMULATIONS USING COHESIVE ELEMENTS

机译:使用粘性元素的聚合物界面断裂模拟

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摘要

A family of cohesive elements is presented based on cohesive zone models to describe polymer interfacial fracture. Their capabilities are demonstrated in three case studies of interfacial failure. The first is a simulation of the t-peel test for the determination of adhesion between two elastomers. This case is characterized by large, inelastic deformation that is difficult to model using classical fracture mechanics and analytic cohesive zone approaches. The formulation allows simulation of crack growth in the presence of large global strains and the identification of peak viscous loss zones in the peel arms. The second case study is the analysis of a compressive shear test to determine adhesion between a viscoelastic elastomer and a rigid substrate. An experimentally observed transition from stable to unstable fracture is described accurately by the model, providing appropriate cohesive zone parameters are established. The third example treats interfacial failure in a multilayer elasto-plastic polymer system. The approach illustrates a capability to capture crack nucleation and propagation in systems with complex microstructures compris- ing of multiple layered phases and associated interfaces.
机译:基于内聚区模型介绍了一系列内聚元素,以描述聚合物界面断裂。他们的能力在界面失败的三个案例研究中得到了证明。首先是模拟t剥离测试,以确定两种弹性体之间的粘合力。这种情况的特点是较大的非弹性变形,很难使用经典的断裂力学和分析性粘性带方法来模拟。该配方可以模拟存在大的整体应变时的裂纹扩展,并可以确定剥离臂中的峰值粘性损失区。第二个案例研究是对压缩剪切试验的分析,以确定粘弹性弹性体和刚性基材之间的粘附性。如果建立了适当的内聚区参数,该模型可以准确地描述从稳定断裂到不稳定断裂的实验观察到的转变。第三个示例处理了多层弹塑性聚合物系统中的界面破坏。该方法说明了在具有包含多个相和相关界面的复杂微结构的系统中捕获裂纹成核和扩展的能力。

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