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Modelling and simulation methodology for unidirectional composite laminates in a Virtual Test Lab framework

机译:虚拟测试实验室框架中单向复合材料层压板的建模和仿真方法

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摘要

A reliable virtual testing framework for unidirectionally laminated composites is presented that allows the prediction of failure loads and modes of general in-plane coupons with great realism. This is a toolset based on finite element analysis that relies on a cohesive-frictional constitutive formulation coupled with the kinematics of penalty-based contact surfaces, on sophisticated three-dimensional continuum damage models, and overall on a modelling approach based on mesh structuring and crack-band erosion to capture the appropriate crack paths in unidirectional fibre reinforced plies. An extensive and rigorous validation of the overall approach is presented, demonstrating that the virtual testing laboratory is robust and can be reliably used in for composite materials screening, design and certification.
机译:提出了一种用于单向层压复合材料的可靠虚拟测试框架,该框架可以非常真实地预测失效载荷和普通面内试样的模式。这是一个基于有限元分析的工具集,该工具集依赖于基于摩擦的本构公式和基于惩罚的接触面的运动学,基于复杂的三维连续损伤模型,总体上基于基于网格结构和裂纹的建模方法带腐蚀,以捕获单向纤维增强层中的适当裂纹路径。提出了对整个方法的广泛而严格的验证,表明虚拟测试实验室功能强大,可以可靠地用于复合材料的筛选,设计和认证。

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