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首页> 外文期刊>Механика композитных материалов: Науч.-теорет. журн. >MICROMECHANICAL ANALYSIS OF INELASTIC DEFORMATION OF UNIDIRECTIONAL FIBROUS COMPOSITES UNDER MULTIAXIAL AND SHEAR LOADINGS
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MICROMECHANICAL ANALYSIS OF INELASTIC DEFORMATION OF UNIDIRECTIONAL FIBROUS COMPOSITES UNDER MULTIAXIAL AND SHEAR LOADINGS

机译:多轴和剪切载荷作用下单向纤维复合材料弹性变形的微观力学分析

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摘要

An algorithm is proposed for numerically solving nonlinear 3D problems of micromechanics of a unidirectionally reinforced composite with a regular structure. For the matrix, equations of the deformation theory of plasticity and relations of reduced rigidity in its failure zones are used, whereas the fibers are elastic and indestructible. According to the method of local approximation, fields of microstresses and microstrains are determined in a structural fragment containing nine periodic cells. Boundary conditions of the fragment correspond to an arbitrary combination of longitudinal, transverse, and shear microstresses occurring in the central part of the fragment. The solution to the nonlinear 3D problem is sought by the method of superposition with an iterational refinement based on the successive solution of an antiplane problem and a problem on a generalized plain strain state of the structural segment. Special features of the iteration procedure are considered. The calculated deformation diagrams and ultimate strengths of a unidirectional glass-epoxy composite are presented for several loading trajectories.
机译:提出了一种数值求解规则结构单向增强复合材料微力学非线性3D问题的算法。对于基体,使用可塑性变形理论的方程式以及在其破坏区域中刚度减小的关系,而纤维是弹性的且不可破坏的。根据局部近似方法,在包含九个周期单元的结构片段中确定微应力和微应变的场。片段的边界条件对应于片段中央部分中出现的纵向,横向和剪切微应力的任意组合。通过基于反平面问题和结构段的广义平面应变状态的问题的连续解的迭代细化的叠加方法,寻求非线性3D问题的解决方案。考虑迭代过程的特殊功能。给出了几种载荷轨迹的单向玻璃-环氧复合材料的变形图和极限强度。

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