Modeling of Surface Fracture in Friction Interaction of Fiber Composites

I. Goryacheva, A. Meshcheryakova
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Abstract

The model of the frictional interaction of a fiber composite material with a rigid non- wearing body is proposed, which makes it possible to study the effect of the mechanical and strength characteristics of the fiber and matrix materials and the composite structure on its stress state, in particular, at the fiber-matrix interface. Analysis of the stress distribution in the subsurface layers of the composite was carried out for different values of the ratio of matrix to fiber materials hardness, the sliding friction coefficient and the distance between the fibers. For the known failure criteria of fiber composites, the conclusions about the effect of the structure and relative strength properties of a fiber (fiber bundle) and matrix on the pattern of subsurface fracture of the composite under sliding friction conditions are made
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纤维复合材料摩擦相互作用中表面断裂的建模
提出了纤维复合材料与刚性非磨损体的摩擦相互作用模型,使研究纤维与基体材料的力学特性和强度特性以及复合材料结构对其应力状态的影响成为可能,特别是在纤维-基体界面处。在不同的基体与纤维材料硬度比、滑动摩擦系数和纤维间距下,分析了复合材料亚表层的应力分布。针对已知的纤维复合材料的破坏准则,得出了纤维(纤维束)和基体的结构和相对强度特性对复合材料在滑动摩擦条件下的地下断裂模式的影响结论
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CiteScore
0.90
自引率
0.00%
发文量
26
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