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Mode I Interlaminar Fracture of Glass/Epoxy Unidirectional Laminates. Part II: Numerical Analysis

机译:模式I玻璃/环氧单向层压层的InterlaMAR骨折。第二部分:数值分析

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摘要

The paper deals with numerical analysis of double cantilever beam (DCB) predefined to Mode I Interlaminar Fracture Tests of GRFP unidirectional laminates. The numerical analyses were performed in the ANSYS® program based on the finite element. In geometrically nonlinear analysis, two algorithms, responsible for initiation and propagation of delamination front, were applied: Virtual Crack Closure Technique (VCCT) and Cohesive zone method (CZM). Due to the unidirectional arrangement of layers of the laminate, the problem of DCB test was solved with the use of one- and three-dimensional models with the implementation of linear interface element and contact element. The present study highlights the limitations of existing formulae used to reliably reflect the behavior of DCB. The use of three-dimensional models allowed confirming the curved shape of the delamination front observed in experimental studies. The application of the VCCT in the three-dimensional model led to an underestimation of the global response (force–opening displacement curve) recorded during numerical DCB test.
机译:本文涉及预先义的双悬臂梁(DCB)的数值分析,该模型I的GRFP单向层压板的I InterlaMINAR裂缝试验。根据有限元在ANSYS®程序中进行数值分析。在几何非线性分析中,应用了两个算法,负责分层前锋的发起和传播,缩小闭合技术(VCCT)和粘性区法(CZM)。由于层压板层的单层排列,通过使用单向界面元件和接触元件的实现,使用单向和三维模型来解决DCB测试的问题。本研究强调了现有公式用于可靠地反映DCB行为的局限性。使用三维模型允许确认在实验研究中观察到的分层前部的弯曲形状。 VCCT在三维模型中的应用导致在数值DCB测试期间记录的全局响应(力打开位移曲线)的低估。

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