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Constitutive relation, deformation, failure and strength of composites reinforced with continuous/short fibers or particles

机译:用连续/短纤维或颗粒加固复合材料的组成关系,变形,失效和强度

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摘要

Various issues on the constitutive relation, deformation, failure, and strength of a composite reinforced with either continuous or short fibers, or particles are systematically addressed based on Bridging Model and the true stress concept. The internal stresses in the fiber (standing for the reinforcement) and matrix obtained by Bridging Model or any other micromechanics model are homogenized quantities. They must be converted into true values. The conversion details are summarized in the paper. A constitutive relation of the composite outside an elastic region is affected by constituent plasticity, true stress effect and relative slippage displacement between debonded fiber and matrix interfaces, and has been established in the paper. Using the true stresses, various composite failures including ultimate strengths of a laminated composite can be predicted mainly against the fiber and matrix properties. Only the prediction for a processing dependent failure, either interface debonding, laminate delamination or fiber kinking failure, needs additionally an ultimate data of a unidirectional laminate measured upon existing standards. One of the best advantages of this paper is in that probably a minimum effort is needed to prepare the input data for a composite design. Another advantage is in that all of the involved formulae are analytical and in closed form, making the analysis for a composite structure comparable in computational amount to that made of an isotropic material.
机译:基于桥接模型和真正的应力概念,系统地解决了与连续或短纤维的复合材料的组成关系,变形,失效和强度的各种问题。通过桥接模型或任何其他微机械模型获得的纤维中的内部应力(驻扎的增强件)和基质是均质的量。它们必须转换为真正的值。转换细节总结在论文中。弹性区域外部的复合材料的构成关系受到构成可塑性的影响,真正的应力效应和剥离纤维和矩阵接口之间的相对滑动位移,并且已经在纸上建立。使用真正的应力,可以主要针对纤维和基质特性预测包括层压复合材料的极限强度的各种复合故障。只有对处理依赖性故障的预测,界面剥离,层压分层或纤维扭结故障,需要另外在现有标准上测量单向层压板的最终数据。本文的最佳优点之一在于,需要最低努力来准备复合设计的输入数据。另一个优点在于,所有所涉及的公式都是分析和封闭形式的,使得在计算量与各向同性材料制成的复合结构的分析。

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