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Microstructure of Al-Si-Mg alloy processed by rotary-die equal channel angular pressing

机译:旋转模等通道转角挤压Al-Si-Mg合金的组织

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New rotary-die ECAP (RD-ECAP) was applied to a commercial Al-Si-Mg (AC4C) alloy to improve the ductility, and the microstructural developments and mechanical properties of ECAPed specimens were investigated. The as-cast Al alloy was used after machining to a cylindrical shape. ECAP was performed at 543, 603 and 673 K. The microstructure changes of samples were examined. The Vickers microhardness was measured with respect to RD-ECAP passes and the tensile test was conducted to check the high-temperature ductility. The samples after ECAP showed very clean external surface without any edge cracking. The grain size was drastically decreased and saturated into 2-3 μm after six passes because the dynamic recovery occurred during the process. After 10 passes, a very homogenous microstructure was obtained. The longation of the alloy increased from 25% to 125% after 10 passes, and the m value was 0.21 after 20 passes.
机译:将新型旋转模具ECAP(RD-ECAP)用于商业化的Al-Si-Mg(AC4C)合金以提高延展性,并研究了ECAPed试样的显微组织发展和力学性能。加工成圆柱形后使用铸态铝合金。 ECAP在543、603和673 K下进行。检查了样品的微观结构变化。测定相对于RD-ECAP通过的维氏显微硬度,并进行拉伸试验以检查高温延展性。 ECAP后的样品显示非常干净的外表面,没有任何边缘开裂。六次通过后,晶粒尺寸急剧减小并饱和至2-3μm,因为在此过程中发生了动态恢复。经过10次通过后,获得了非常均匀的微观结构。 10次​​通过后合金的伸长率从25%增加到125%,20次通过后m值为0.21。

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