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An analytical nonlinear model for plain-woven composites under off-axis loads

机译:离轴载荷作用下平纹复合材料的解析非线性模型

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摘要

Woven composite is a kind of thin-wall structure that is widely used in the structural strengthening for constructions. A deep understanding of the nonlinear behavior of a woven composite is essential for its application to complex load cases. An analytical model is presented to describe the nonlinear behavior of a plain-woven composite under off-axis loads. The model is developed by combining a discrete method of a plain-woven RVE and a novel nonlinear three-phase micromechanical bridging model of a unidirectional composite. Specifically, a plain-woven RVE is firstly divided into several sub-cells. Then, each sub-cell is seen as a micro laminate consisting of at most two unidirectional composite layers and two pure matrix layers. Further, a three-phase micromechanical bridging model is applied to simulate the nonlinear behavior of the unidirectional composite layer, where the matrix elastoplastic behavior and the interface damage are involved. The matrix deformation is described by a J2 flow rule with consideration of stress concentration factors. The interface damage is simulated by interphase with progressive stiffness degradation. The present nonlinear model is validated by comparing with experimental data of three kinds of plain-woven composites under off-axis tensile or compressive loads.
机译:编织复合材料是一种薄壁结构,广泛用于建筑结构加固。深入了解编织复合材料的非线性行为对于将其应用于复杂荷载工况至关重要。提出了一个解析模型来描述平织复合材料在离轴载荷下的非线性行为。该模型是将平织RVE的离散方法与单向复合材料的新型非线性三相微机械桥接模型相结合而建立的。具体来说,首先将平纹RVE分为几个子单元。然后,将每个子单元视为由最多两个单向复合层和两个纯基质层组成的微层压板。此外,应用三相微观力学桥接模型模拟了单向复合层的非线性行为,其中涉及基体弹塑性行为和界面损伤。基体变形由考虑应力集中因子的 J2 流动规则描述。界面损伤通过刚度逐渐退化的相间模拟。通过与3种平纹复合材料在离轴拉伸或压缩载荷作用下的试验数据进行对比,验证了本非线性模型的有效性。

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