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EFFECTS OF REINFORCEMENT GEOMETRY ON THE ELASTIC AND PLASTIC BEHAVIOUR OF METAL MATRIX COMPOSITES

机译:补强几何形状对金属基复合材料弹塑性行为的影响

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摘要

The mechanical properties of an Al-SiC composite system are modelled using the Boundary Element Method. A unit cell approach, in three dimensions, is used to model the composites. The metal matrix is allowed to deform plastically, while the ceramic reinforcement is assumed to remain perfectly elastic. Several types of reinforcement are modelled, at various volume fractions, and with different degrees of clustering. The effects of thermal residual stresses, resulting from thermal processing, are also modelled. It is found that, even at relatively low volume fractions, the shape and orientation of the reinforcement phase has significant effects, both in the elastic and plastic domains. Orientation of the reinforcement is particularly critical if the aspect ratio of the reinforcement is high. The stress field within the reinforcement particle is also analysed.
机译:使用边界元方法对Al-SiC复合系统的力学性能进行建模。使用三维的单位单元方法对复合材料进行建模。金属基体被允许塑性变形,而陶瓷增强被认为保持完美的弹性。在不同的体积分数和不同的聚类程度下,对几种类型的钢筋进行了建模。还对由热处理产生的热残余应力的影响进行了建模。已经发现,即使在相对较低的体积分数下,增强相的形状和取向在弹性域和塑性域中也具有显着影响。如果增强件的纵横比高,则增强件的定向特别重要。还分析了增强颗粒内的应力场。

著录项

  • 来源
    《Acta Metallurgica et Materialia》 |1995年第10期|p.3743-3754|共12页
  • 作者

    A. A. MAMMOLI; M. B. BUSH;

  • 作者单位

    Department of Mechanical and Materials Engineering, The University of Western Australia, Nedlands 6009, Western Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 Tf;
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