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Modification of a Macromechanical Finite-Element Based Model for Impact Analysis of Triaxially-Braided Composites

机译:基于宏力学有限元的三轴编织复合材料冲击分析模型的修改

摘要

A macro level finite element-based model has been developed to simulate the mechanical and impact response of triaxially-braided polymer matrix composites. In the analytical model, the triaxial braid architecture is simulated by using four parallel shell elements, each of which is modeled as a laminated composite. For the current analytical approach, each shell element is considered to be a smeared homogeneous material. The commercial transient dynamic finite element code LS-DYNA is used to conduct the simulations, and a continuum damage mechanics model internal to LS-DYNA is used as the material constitutive model. The constitutive model requires stiffness and strength properties of an equivalent unidirectional composite. Simplified micromechanics methods are used to determine the equivalent stiffness properties, and results from coupon level tests on the braided composite are utilized to back out the required strength properties. Simulations of quasi-static coupon tests of several representative braided composites are conducted to demonstrate the correlation of the model. Impact simulations of a represented braided composites are conducted to demonstrate the capability of the model to predict the penetration velocity and damage patterns obtained experimentally.
机译:已经开发了基于宏观有限元的模型来模拟三轴编织聚合物基复合材料的力学和冲击响应。在分析模型中,通过使用四个平行的壳单元来模拟三轴编织结构,每个壳单元都被建模为层压复合材料。对于当前的分析方法,每个壳单元都被视为涂抹均匀的材料。使用商业瞬态动态有限元代码LS-DYNA进行仿真,并使用LS-DYNA内部的连续损伤力学模型作为材料本构模型。本构模型需要等效单向复合材料的刚度和强度特性。简化的微力学方法用于确定等效的刚度特性,而对编织复合材料的试样水平测试得出的结果则用于证明所需的强度特性。进行了几种代表性编织复合材料准静态试样试验的仿真,以证明模型的相关性。进行了代表编织复合材料的冲击模拟,以证明该模型预测通过实验获得的穿透速度和破坏模式的能力。

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