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On effect of shear-tension coupling in forming simulation of woven fabric reinforcements

机译:剪力耦合在机织物增强材料成形模拟中的作用

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Optimization of forming process of fabric reinforced composites requires a multifaceted characterization of the reinforcement material and its implementation in customized simulations. This manuscript investigates the effect of inclusion of 'shear-tension coupling' (interaction) in woven fabric models on the ensuing predictions of forming simulations. To this end, a constitutive model estimating the shear stiffness as a function of axial tension along warp and weft in a typical glass plain weave has been selected. The model was implemented into the Abaqus numerical package using a customized fabric element, capable of simulating the non-orthogonal behaviour of the fabric as well as its tension-shear interaction. Subsequently, the model was employed for studying forming processes with three different punch geometries including hemisphere, double-dome, and tetrahedral shapes. In each case, comparisons were made between the model with the effect of shear-tension interaction and the conventional model assuming the shear stiffness is merely a function of shear angle (i.e., with no interaction). Results revealed that although the conventional models could be acceptable in predicting the general shear deformation pattern of the fabric (in particular in the presence of sufficient blank holder forces), the forming models that included the shear-tension interaction had lower formation of local wrinkles as well as notably higher residual stresses in all simulation cases, especially in critical sharp corners of the part and the fabric free regions. (C) 2016 Elsevier Ltd. All rights reserved.
机译:织物增强复合材料成型工艺的优化要求增强材料的多方面表征及其在定制模拟中的实现。该手稿研究了机织织物模型中包含“剪切-张力耦合”(相互作用)对随后的成型模拟预测的影响。为此,已经选择了本构模型,该模型估计了典型玻璃平纹组织中剪切刚度与沿经纱和纬纱的轴向张力的关系。该模型使用定制的织物元素实施到Abaqus数值软件包中,能够模拟织物的非正交行为及其张力-剪切相互作用。随后,该模型用于研究具有三种不同冲头几何形状(包括半球,双圆顶和四面体形状)的成型过程。在每种情况下,在假定剪切刚度仅是剪切角的函数(即没有相互作用)的情况下,在具有剪力相互作用的模型与常规模型之间进行了比较。结果表明,尽管常规模型可以预测织物的一般剪切变形模式(特别是在存在足够的毛坯夹持力的情况下),但包括剪切-拉伸相互作用的成形模型具有较低的局部皱纹形成能力,因为在所有模拟情况下,尤其是在零件的关键尖角和无织物区域中的残余应力明显更高。 (C)2016 Elsevier Ltd.保留所有权利。

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