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A string-based cohesive zone model for interlaminar delamination

机译:基于串的InterlaInar Delamination的粘性区模型

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The objective of this paper is to develop a string-based cohesive zone model (CZM) for interlaminar delamination, whose associated cohesive elements behave reliably and consistently when deformed along complex separation paths and can display experimental critical energy release rate-mode mixture ratio relationships. Each cohesive element is idealized as a deformable string exhibiting path dependent damage behavior, and the thermodynamic equations are formulated in a generalized standard manner. A damage model having a path dependence function is developed. The rate form of the cohesive law is subsequently derived. The path dependence function is constructed such that each cohesive element can exhibit designated, possibly sophisticated mixed-mode behavior. The interface parameters associated with the present CZM are calibrated from experimental data. The present CZM is validated through simulating a series of flexural tests using Abaqus/Explicit. It is found to be capable of producing reliable simulation results. The interfacial strength is found to affect the predicted applied load-load point displacement curves. The present CZM may be amended to handle other types of fracture or interfacial debonding. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文的目的是开发用于层间分层的基于串的粘性区域模型(CZM),其相关的粘性元件在沿复杂的分离路径变形时,可以在变形时可靠且一致性地显示实验临界能量释放率 - 模式混合比率关系。每个粘性元件理想化为表现出路径依赖性损伤行为的可变形串,并且热力学方程以广义的标准方式配制。开发了具有路径依赖函数的损坏模型。随后衍生粘性法的速率形式。构建路径依赖性函数,使得每个粘性元件可以表现出指定的,可能复杂的混合模式行为。与本CZM相关联的接口参数从实验数据校准。通过使用ABAQUS /显式模拟一系列弯曲测试来验证本CZM。发现能够产生可靠的模拟结果。发现界面强度影响预测的施加的负载负载点位移曲线。可以修改本CZM以处理其他类型的骨折或界面剥离。 (c)2017 Elsevier Ltd.保留所有权利。

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