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Meso-macro numerical modeling of noncircular braided composite parts based on braiding process parameters

机译:基于编织工艺参数的非圆形编织复合零件细观宏数值模拟

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In the past few decades, the applications of composite structures reinforced with braided preforms have been growing increasingly in various industries due to their intrinsic properties. Therefore, their mechanical properties are worth studying experimentally, analytically and numerically. In this respect, the goal of the current study is to perform a finite element modelling on biaxially and triaxially braided composites with constant arbitrary cross-section. Thus, the braid angles formed by clockwisely and counter-clockwisely moving of carriers on noncircular parts, have been initially demonstrated to be unequal, unlike in circular parts. As a result, considering a parallelogram shape for the representative unit cell (RUC), the geometrical relationships for a RUC of 2D biaxially and triaxially braided composite are derived and implemented in VUMAT subroutine. Then, after determination of 3D effective stiffness matrix for each RUC, the finite element modelling is performed to predict bending behavior of final braided composite part. In these simulations, the stiffness variation all over the part is considered and mechanical behavior of composite parts is predicted based on the initial parameters of the braiding process. The obtained results from both experimental and simulations showed an acceptable agreement.
机译:在过去的几十年中,由于编织预型件的固有特性,复合材料结构的应用在各个行业中都在不断增长。因此,它们的力学性能值得在实验,分析和数值上进行研究。在这方面,当前研究的目标是对具有恒定任意横截面的双轴和三轴编织复合材料进行有限元建模。因此,与圆形部分不同,最初已经证明了由载体在非圆形部分上的顺时针和逆时针运动形成的编织角是不相等的。结果,考虑到代表单位单元(RUC)的平行四边形形状,在VUMAT子例程中导出并实现了二维双轴和三轴编织复合材料的RUC的几何关系。然后,在确定每个RUC的3D有效刚度矩阵之后,执行有限元建模以预测最终编织复合零件的弯曲行为。在这些模拟中,考虑了整个零件的刚度变化,并根据编织过程的初始参数预测了复合零件的机械性能。从实验和模拟获得的结果都表明可以接受。

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