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An experimental investigation of homogeneous fatigue damage in a random short-fiber composite under combined tension-torsion loading.

机译:复合短拉复合材料在随机短纤维复合材料中均匀疲劳损伤的实验研究。

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摘要

An experimental study is conducted to examine the effects of the state of stress on the fundamental nature of distributed fatigue damage in a random short fiber composite. The project consists of two different tasks: first, to develop a new experimental method, for conducting combined shear and axial fatigue damage in composites which are difficult to fabricate in axisymmetric configurations; and second, to study the evolution of the multiaxial fatigue damage in the material. A sandwich specimen, consisting of SMC composite skins bonded to an aluminum honeycomb core, is proposed. Anisotropic finite element analyses are used to obtain detailed stress and deformation fields in the composite facing and in the core of specimens with optimum geometry. The macroscopic fatigue damage is defined and measured as the relative change in the elastic stiffness tensor of the composite. Multiaxial extensometry is developed for strain measurements, and an approximate analytical technique is evolved for online prediction of the multiaxial stress state in the damaged material. Measurements of residual modulus are conducted, after multiaxial fatiguing, to provide additional information on the residual stiffness of the composite. The magnitude and rate of stiffness degradation are found to depend not only on the level of stress but also on the state of stress. Combined stress states are found to be particularly detrimental to the degradation rate of shear modulus. Microscopic damage parameters such as crack length distribution and crack orientation distribution are monitored through non-destructive replication and subsequent quantitative microscopy techniques.
机译:进行实验研究以检查应力状态对随机短纤维复合材料中分布疲劳损伤的基本性质的影响。该项目包括两个不同的任务:首先,开发一种新的实验方法,以对轴对称构造中难以制造的复合材料进行组合的剪切和轴向疲劳损伤;其次,研究材料中多轴疲劳损伤的演变。提出了一个三明治样本,该样本由结合到铝蜂窝芯的SMC复合材料表皮组成。使用各向异性有限元分析来获得具有最佳几何形状的复合材料面板和试样核心中的详细应力和变形场。宏观疲劳损伤定义为复合材料的弹性刚度张量的相对变化并进行测量。多轴引伸计被开发用于应变测量,并且发展了一种近似分析技术来在线预测受损材料中的多轴应力状态。在多轴疲劳之后,进行残余模量的测量,以提供有关复合材料残余刚度的更多信息。发现刚度降低的幅度和速率不仅取决于应力水平,而且取决于应力状态。发现组合的应力状态对剪切模量的降解速率特别有害。通过无损复制和随后的定量显微镜技术来监测微观损伤参数,例如裂纹长度分布和裂纹取向分布。

著录项

  • 作者

    Dasgupta, Abhijit.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Mechanics.;Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1989
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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