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Numerical Simulation of Textile Composite Stamping On Double Dome

机译:双圆顶上纺织复合踩踏的数值模拟

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Stamping is one of the most effective ways to form textile composites in industry for providing high-strength, low-weight and cost-effective products. This paper presents a fully continuum mechanics-based approach for stamping simulation of textile fiber reinforced composites by using finite element (FE) method. A previously developed non-orthogonal constitutive model is used to represent the anisotropic mechanical behavior of textile composites under large deformation during stamping. Simulation are performed on a balanced plain weave composite with 0 deg/90 deg and +-45 deg as initial yarn orientation over a benchmark double dome device. Simulation results show good agreement with experimental output in terms of a number of parameters selected for comparison.
机译:冲压是在工业中形成纺织复合材料的最有效方法之一,用于提供高强度,低重量和成本效益的产品。本文采用了采用有限元(Fe)法对纺织纤维增强复合材料进行冲压模拟的全连续力学方法。先前显影的非正交构件模型用于在冲压期间在大变形下表示纺织复合材料的各向异性力学行为。在具有0°/ 90°和+ -45°的平衡普通编织复合材料上进行模拟,作为基准双圆顶设备的初始纱线方向。仿真结果表明,与选择进行比较的一些参数的实验输出显示良好的一致性。

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