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Constituent materials micro-damage modeling in predicting progressive failure of braided fiber composites

机译:预测编织纤维复合材料渐进破坏的成分材料微损伤模型

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Braided textile composite exhibits an efficient mechanism to distribute loads throughout its structure and have excellent impact resistant properties. Despite many works in the past, the successful prediction of braided textile composites strength still remains a challenge today. In this paper, a numerical simulation model based on a meso-scale approach is presented to predict the strength and damage behavior of braided textile composites. A meso-scale homogenized representative unit cell was built for the study using finite element analysis (FEA) method. 3D-Hashin and Stassi failure criteria were respectively selected for the yarn and the pure matrix, and coded in a subroutine in Abaqus finite element solver to study the individual constituents damages. From the different numerical studies, the failure mechanisms were observed to change with the braiding angle. The meso-scale computed results were also seen to agree closely with experimental and simulation results computed using a micro-mechanics failure approach. (C) 2016 Elsevier Ltd. All rights reserved.
机译:编织的纺织复合材料表现出一种有效的机制,可以在整个结构中分配载荷,并具有出色的抗冲击性能。尽管过去进行了许多工作,但是编织纤维复合材料强度的成功预测仍然是当今的挑战。本文提出了一种基于中尺度方法的数值模拟模型,以预测编织复合材料的强度和损伤行为。使用有限元分析(FEA)方法为研究建立了中尺度均质化的代表性晶胞。分别为纱线和纯基质选择3D-Hashin和Stassi破坏准则,并在Abaqus有限元求解器的子例程中进行编码,以研究各个成分的破坏。从不同的数值研究中,观察到破坏机理随编织角的变化而变化。中尺度计算结果也被认为与使用微机械故障方法计算的实验和模拟结果非常吻合。 (C)2016 Elsevier Ltd.保留所有权利。

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