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The influence of Si and Mg rich phases on the mechanical properties of 6061 Al-matrix composites reinforced with Al2O3

机译:富Si和Mg相对Al2 O3 增强的6061 Al基复合材料力学性能的影响

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Besides altering the kinetics of precipitation, the reinforcements with alumina particles appear to alter the relative proportions of the various phases formed in the matrix alloy during ageing. Alumina also seems to reduce the volume fractions of hardening phase in these materials, especially at higher contents. One reason for this effect could be the dislocation relief of the matrix strain associated with the early precipitates. Additionally, the diffusion of Mg and its subsequent incorporation into the reinforcement at the Al2O3/Al interface could also result in Mg depletion from the matrix, accounting for the reduction of the β (Mg2Si) particle sizes. Magnesium incorporation into interfacial alumina to form MgAl2O4 has been observed in these materials. This paper shows that the nature and morphology of the second phases depend the heat treatment conditions on.
机译:除了改变沉淀动力学之外,用氧化铝颗粒增强似乎还可以改变时效过程中基体合金中形成的各种相的相对比例。氧化铝似乎也减少了这些材料中硬化相的体积分数,尤其是含量较高时。造成这种影响的一个原因可能是与早期沉淀物有关的基体应变的位错释放。此外,Mg的扩散及其随后在Al2 O3 / Al界面处的增强物中的掺入也可能导致Mg从基体中耗竭,这是β(Mg2 Si)粒径。在这些材料中已经观察到镁掺入界面氧化铝中形成MgAl2 O4 。本文表明,第二相的性质和形态取决于热处理条件。

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  • 来源
    《Journal of Materials Science》 |2002年第8期|1497-1502|共6页
  • 作者单位

    Departamento de Ciencia de los Materiales e Ingenieríta Metalúrgica Facultad de Ciencias Químicas Universidad Complutense de Madrid;

    Departamento de Ciencia de los Materiales e Ingenieríta Metalúrgica Facultad de Ciencias Químicas Universidad Complutense de Madrid;

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