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Effect of grain size and indium addition on tensile characteristics of Al-1Si alloy

机译:晶粒度和铟添加量对Al-1Si合金拉伸性能的影响

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摘要

The effect of grain size and indium addition on the workhardening characteristics of Al-1Si (wt-%) alloy has been investigated at room temperature (RT). The samples were preaged at different temperatures in the range 523-623 K. The yield stress, the fracture stress, the fracture time and the linear workhardening coefficient generally decreased with increasing temperature and/or grain size, while the fracture strain and dislocation slip distance increased. The yield and fracture stresses for different grain sizes at different temperatures were found to be linearly related to grain diameters. Indium addition caused general increase for all the measured strength parameters. As concluded from transmission electron microscope (TEM) investigations, In addition to Al-Si alloy may retard the coarsening of Si particles. The energies activating the operating fracture mechanisms were found to be 79·6±0·4 and 32·4±0·4 kJ mol−1 for alloys Al-1Si and Al-1Si-0·2In respectively. This suggests a value of 47·2 kJ mol−1 as a binding energy between Si and In atoms in Al matrix.
机译:在室温(RT)下研究了晶粒尺寸和铟添加量对Al-1Si(wt-%)合金的加工硬化特性的影响。样品在523-623 K范围内的不同温度下进行过时效处理。屈服应力,断裂应力,断裂时间和线性加工硬化系数通常随温度和/或晶粒尺寸的增加而降低,而断裂应变和位错滑移距离增加。发现在不同温度下不同晶粒尺寸的屈服应力和断裂应力与晶粒直径线性相关。铟的添加导致所有测得的强度参数普遍增加。根据透射电子显微镜(TEM)研究得出的结论,除Al-Si合金外,还可以阻止Si颗粒的粗化。发现合金Al-1Si和Al-1Si-0·2In的激活断裂机理的能量分别为79·6±0·4和32·4±0·4 kJ mol-1。这表明Al基体中Si和In原子之间的键能为47·2 kJ mol-1。

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