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A new shell-beam element modeling method and its use in crash simulation of triaxial braided composites

机译:一种新的壳梁单元建模方法及其在三轴编织复合材料碰撞模拟中的应用

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To overcome the instability encountered in axial crash simulations of composite tubes with shell elements, a new modeling technique: the shell-beam (SB) element method, has been developed. This method creates an element which is capable of deforming in the through thickness direction while retaining the efficiency of the shell elements. The SB element was evaluated with virtual one-element, cantilever beam and in-plane compression tests. The results showed that the SB element is effective in terms of overcoming the instability and convergence issues of traditional 2D and 3D discretized elements under in-plane compression. The SB element was further evaluated together with an in-house material model, called the enhanced continuum damage mechanics (ECDM) model, in crash simulations of triaxial braided composite tubes with five configurations and seven test conditions. The simulations captured both the failure morphologies and force-displacement responses obtained in experiments. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了克服在具有壳单元的复合管轴向碰撞模拟中遇到的不稳定性,已经开发了一种新的建模技术:壳梁(SB)单元法。该方法产生了一种能够在保持厚度不变的同时保持壳元件效率的元件。通过虚拟的一元素,悬臂梁和面内压缩测试评估了SB元素。结果表明,SB元件在克服传统2D和3D离散元件在面内压缩下的不稳定性和收敛性方面很有效。在具有五种配置和七种测试条件的三轴编织复合管的碰撞模拟中,进一步对SB元素与内部材料模型(称为增强的连续损伤力学(ECDM)模型)进行了评估。仿真捕获了在实验中获得的失效形态和力-位移响应。 (C)2016 Elsevier Ltd.保留所有权利。

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