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A novel interface constitutive model for prediction of stiffness and strength in 3D braided composites

机译:一种新的三维编织复合材料刚度和强度预测界面本构模型

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摘要

Owing to the excellent integrated mechanical properties, 3D braided composites have a broad range of engineering applications in aeronautics and astronautics industry. The interface is a critical constituent of 3D braided composites, which plays an important role in the control of mechanical properties of the composites. In this paper, a meso-scale finite element model considering the interface is established to numerically predict the stiffness and strength properties of 3D braided composites. A novel damage-friction combination interface constitutive model is utilized to capture the interface debonding behavior, while 3D Hashin criteria with maximum stress criteria and a gradual degradation scheme are applied to predict the damage evolution of yarns and matrix. A user-material subroutine VUMAT based on finite element package ABAQUS/Explicit is developed for these constitutive models. The stiffness and strength properties of 3D braided composites are derived from the calculated stress-strain curves under typical loading cases. The damage mechanism of constituents especially the interface is revealed in these simulation processes. The effects of the interface parameters on the mechanical properties of composites are investigated, which provides a reference for optimizing design and control of the interface properties of 3D braided composites.
机译:由于出色的综合机械性能,3D编织复合材料在航空和航天工业中具有广泛的工程应用。界面是3D编织复合材料的关键组成部分,它在控制复合材料的机械性能中起着重要作用。在本文中,建立了考虑界面的中尺度有限元模型,以数值方式预测3D编织复合材料的刚度和强度特性。利用一种新颖的损伤-摩擦组合界面本构模型来捕获界面的脱粘行为,同时采用具有最大应力准则的3D Hashin准则和渐进降解方案来预测纱线和基体的损害演变。针对这些本构模型,开发了基于有限元软件包ABAQUS / Explicit的用户材料子例程VUMAT。 3D编织复合材料的刚度和强度特性是从典型载荷情况下计算出的应力-应变曲线得出的。在这些模拟过程中揭示了成分尤其是界面的损坏机理。研究了界面参数对复合材料力学性能的影响,为优化3D编织复合材料界面性能的设计和控制提供了参考。

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