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Finite Element Guidelines for Simulation of Delamination Dominated Failures in Composite Materials Validated by Case Studies

机译:通过案例研究验证的复合材料脱层主导失效模拟的有限元准则

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The focus of this paper is on the computational modelling of progressive damage in composite structures of fibre reinforced laminae. A general review of modelling approaches to failure in the context of the finite element method is first presented, with an emphasis on models based on continuum damage mechanics. The way in which delamination and matrix splitting (that may or may not interact with fibre-tension damage) should be addressed in the framework of a commercial finite element code is considered next. An important feature of the analysis is it does not rely on customized user-subroutines but solely on the analysis capabilities of the general purpose software Abaqus, thus ensuring that the numerical results can be universally reproduced. It is shown that the finite element simulations can accurately represent the physical mechanisms controlling damage development and progression and reproduce a number of phenomena including delamination, laminate in-plane failure and behaviour at notches. The paper ends giving guidelines for the generalized modelling methodology using Abaqus without user-subroutines.
机译:本文的重点是纤维增强薄板复合结构中渐进式损伤的计算模型。首先介绍了在有限元方法中对失效建模方法的一般回顾,重点是基于连续损伤机制的模型。接下来考虑在商业有限元代码的框架内解决分层和基质分裂(可能与纤维张力破坏相互作用或不相互作用)的方式。分析的一个重要特征是它不依赖于定制的用户子例程,而仅依赖于通用软件Abaqus的分析能力,从而确保了数值结果可以被普遍再现。结果表明,有限元模拟可以准确地表示控制损伤发展和发展的物理机制,并重现许多现象,包括分层,层压板面内破坏和缺口行为。本文最后给出了使用Abaqus而不使用用户子例程的通用建模方法的指南。

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