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Influence of aging parameters on the mechanical properties of 6063 aluminium alloy

机译:时效参数对6063铝合金力学性能的影响

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The 6063 aluminium alloy were given various heat treatments at under-aged, peak-aged and over-aged temperatures. The effect of precipitation on the tensile strength, yield strength, hardness, ductility and number of cycles required to fail the alloy at constant stress was investigated. The variation in time and temperature have improved the mechanical properties of the Al-alloy, whereas the ductility has decreased. The experimental work has revealed that time and temperature play a very important role in the precipitation hardening process of the Al-alloy. The initial increase in the tensile strength, yield strength, hardness and fatigue is due to vacancies assisted diffusion mechanism and formation of high volume fraction of guinier preston (GP) zones, which disturbs the regularity in the lattices. In over-aging of the alloy, the size of the individual particle increases, but the number of particles decreases. This causes few obstacles to the movement of dislocations, therefore, the mechanical properties decreases. The scanning electron microscope (SEM) study of the under-aged alloy have exhibited facet fatigue fracture surface, whereas the peak-aged and over-aged alloy show a mixed mode of fracture, i.e. facet fracture with striation and also intergranular fracture.
机译:对6063铝合金进行了时效不足,峰值时效和过时效的各种热处理。研究了沉淀对使合金在恒定应力下失效所需的拉伸强度,屈服强度,硬度,延展性和循环次数的影响。时间和温度的变化改善了铝合金的机械性能,而延展性下降。实验工作表明,时间和温度在铝合金的沉淀硬化过程中起着非常重要的作用。拉伸强度,屈服强度,硬度和疲劳强度的最初增加是由于空位辅助的扩散机制和吉尼斯普雷斯顿(GP)区高体积分数的形成,这扰乱了晶格的规则性。在合金的过时效中,单个颗粒的尺寸增加,但是颗粒的数量减少。这几乎不引起位错运动的障碍,因此机械性能降低。扫描电子显微镜(SEM)对未时效合金的研究显示出小面疲劳断裂面,而峰时效和过时效合金则显示出混合的断裂方式,即具有条纹的小面断裂以及晶间断裂。

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