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Bending and wrinkling of composite fiber preforms and prepregs. A review and new developments in the draping simulations

机译:复合纤维预成型坯和预浸料的弯曲和起皱。悬垂模拟的回顾与新进展

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Bending properties play a significant role in the forming of textile composites reinforcements, particularly in determining the shape of wrinkles. The physics related to the bending of fibrous reinforcements is specific. Bending is due to slippage between the fibers and since the fibers are quasi-inextensible, standard plate and shell theories are irrelevant. To measure bending characteristics, three experimental tests (and their variants) have been developed in the last decades, and efforts are currently devoted to extending and improving these tests. From their results, simulations can be performed by introducing a flexural energy related to the bending moment and the curvature. In particular, wrinkles during forming can be simulated. In the case of 3D modeling of thick reinforcements, the use of generalized continuum mechanics model is necessary because of the bending stiffness of each fiber and the slippage between fibers. In order to simulate textile reinforcements with shells, some shell approaches, different of the standard theories, can correctly calculate the rotations of textile reinforcement normals.
机译:弯曲性能在纺织品复合材料增强材料的形成中起着重要作用,尤其是在确定皱纹形状方面。与纤维增强物弯曲有关的物理学是特定的。弯曲是由于纤维之间的滑动引起的,并且由于纤维是准不可拉伸的,因此标准的板和壳理论无关紧要。为了测量弯曲特性,在过去的几十年中已经开发了三个实验测试(及其变体),并且目前致力于扩展和改进这些测试。根据其结果,可以通过引入与弯矩和曲率有关的弯曲能来执行模拟。特别地,可以模拟成形期间的皱纹。对于厚钢筋的3D建模,由于每根纤维的弯曲刚度和纤维之间的滑动,必须使用广义连续力学模型。为了模拟带有壳体的织物增强材料,一些与标准理论不同的壳体方法可以正确计算织物增强材料法线的旋转。

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