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Investigation on Effective Modulus and Stress Concentration Factor of 3D Reinforced Composite by Finite Element Analysis Method

机译:有限元分析方法研究3D增强复合材料的有效模量和应力集中系数

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摘要

Micromechanics of Composites aims to analyze the localized stresses inside any given constituents of the composite structure. This Thesis is focused on Calculating the effective modulus and the Stress concentration factor of the 3D straight Fiber Composite using Finite Element(FE). The compressive and a Shear response of a 3D Straight fiber composite comprising three directional E Glass Fibers reinforced in an epoxy matrix is analysed. This result is the 10% of overall Composite Ductility and a 10% of overall Shear displacement load in the orthogonal directions. FE calculations are reported to analyse the response of 3d reinforcement as of with the reduced fiber volume fractions in the respective orthogonal directions. The FE calculations demonstrate that the three dimensionality of the microstructure constrains the kinks, and this results in the stable load response. Integrated Stresses of Constituents are formulated by FE to calculate the Effective Modulus and then Stress concentration factor (SCF) to understand the behavior along the orthogonally varied volume fraction models. SCF Gives us the vital information on how concentrated the stress are in loaded constituents when there is change in volume fraction orthogonally and would help in predicting the failure methods and fatigue life of the material.
机译:复合材料的微力学旨在分析复合材料结构中任何给定成分内部的局部应力。本文的重点是利用有限元(FE)计算3D直纤维复合材料的有效模量和应力集中系数。分析了3D直纤维复合材料的压缩响应和剪切响应,该复合材料包括在环氧基质中增强的三向E玻璃纤维。该结果是在正交方向上总复合材料延展性的10%和总剪切位移载荷的10%。据报道,有限元计算可以分析3d增强材料在相应正交方向上纤维体积分数减少时的响应。有限元计算表明,微观结构的三维限制了扭结,这导致了稳定的载荷响应。有限元确定了成分的综合应力,以计算有效模量,然后由应力集中因子(SCF)来了解沿正交变化的体积分数模型的行为。 SCF为我们提供了至关重要的信息,即当体积分数正交变化时,应力在载荷成分中的集中程度如何,将有助于预测材料的失效方法和疲劳寿命。

著录项

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Mechanical engineering.;Aerospace engineering.;Materials science.
  • 学位 M.S.M.E.
  • 年度 2018
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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