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Nonlinear numerical predictions of three-dimensional orthogonal woven composite under low-cycle tension using multiscale repeating unit cells

机译:低尺度张力下三维正交编织复合材料的多尺度重复单元非线性数值预测

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摘要

This paper reports the low-cyclic tensile responses of three-dimensional orthogonal woven composites based on the micro/meso-scale repetitive unit cells with elastic/viscoelastic models. The repetitive unit cell models for the resin impregnated fiber tows and the three-dimensional orthogonal woven composites at the fabric microstructure level were established. In the micro/meso-repetitive unit cells model, a nonlinear viscoelastic relationship with switch rule is introduced to characterize the mechanical behavior of the resin for the loading/unloading conditions. The fiber/fiber tows are characterized with linear elastic models. And damage initiation and postdamage constitutive models are also included for matrix/fiber and matrix impregnated fiber tows in the finite element analysis. The fatigue model with the mechanical parameters transferred from micro-scale to meso-scale model is numerically simulated with user-defined material subroutine and incorporated into commercial finite element software ABAQUS/Standard. The calculated results manifest the multiscale fatigue behaviors of three-dimensional orthogonal woven composites, such as the global stiffness degradation, decrease of peak stress, and even local damage behavior. The fatigue behaviors are also verified with the data in experimental and indicated that the model is an efficient strategy to predict the low-cyclic fatigue behaviors of polymer matrix composites.
机译:本文基于具有弹性/粘弹性模型的微观/中尺度重复性晶胞,报道了三维正交机织复合材料的低循环拉伸响应。建立了在织物微观结构水平上树脂浸渍纤维束和三维正交机织复合材料的重复单元模型。在微/中-重复单元格模型中,引入了具有开关规则的非线性粘弹性关系,以表征树脂在加载/卸载条件下的机械性能。纤维束/纤维束具有线性弹性模型。在有限元分析中,还包括基质/纤维和基质浸渍纤维束的损伤引发和损伤后本构模型。用用户定义的材料子程序对具有从微观尺度到中尺度尺度的机械参数转移的疲劳模型进行数值模拟,并将其纳入商业有限元软件ABAQUS / Standard。计算结果表明三维正交编织复合材料的多尺度疲劳行为,如整体刚度下降,峰值应力降低,甚至局部破坏行为。疲劳行为也得到了实验数据的验证,表明该模型是预测聚合物基复合材料低周期疲劳行为的有效策略。

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