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Effect of cyclic plasticity on internal stresses in a metal matrix composite

机译:循环塑性对金属基复合材料内应力的影响

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Neutron diffraction has been used to measure the elastic strains in a silicon carbide particle-reinforced aluminum alloy during cyclic plasticity. Strains were recorded in both phases of the material, in sufficient directions to allow for calculation of the internal stresses. The shape misfit stress in the composite was calculated from the macroscopic stress data using an Eshelby-based model. Changes in the misfit stress caused by plastic deformation can be clearly observed. Local plastic anisotropy of the matrix material is also seen and was monitored by comparing results from the two diffraction planes, {111} and {200}, that were measured. The results have been compared to those obtained using an elasto-plastic self-consistent modeling approach, which shows the evolution of load sharing between the matrix and reinforcement, as well as the origin of the plastic anisotropy strains in the aluminum.
机译:在循环可塑性过程中,中子衍射已用于测量碳化硅颗粒增强铝合金中的弹性应变。在材料的两个相中以足够的方向记录应变,以允许计算内部应力。使用基于Eshelby的模型,根据宏观应力数据计算出复合材料中的形状失配应力。可以清楚地观察到由塑性变形引起的失配应力的变化。还可以观察到基体材料的局部塑性各向异性,并通过比较两个衍射平面{111}和{200}的测量结果进行监控。将结果与使用弹塑性自洽建模方法获得的结果进行了比较,该模型方法显示了基体和钢筋之间的载荷分担的演变以及铝中塑性各向异性应变的起源。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2006年第6期|1977-1986|共10页
  • 作者单位

    Department of Mechanical and Materials Engineering Queen’s University K7L 3N6 Kingston Canada;

    Department of Materials Engineering The Open University MK7 6AA Milton Keynes U.K.;

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