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Formation process of AZ31B semi-solid microstructures through strain-induced melt activation method

机译:应变诱导熔体活化法形成AZ31B半固态组织的过程

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摘要

A semi-solid microstructure of AZ31B magnesium alloy containing spherical solid particles was studied. This material was subjected to a series of spheroidizing treatments for various holding times at 863-893 K after being compressed by 28-30 percent in length at 573 K. The effects of heating temperature and holding time on microstructures were studied and the surface composition and line scans of the samples were investigated by energy-dispersive X-ray spectroscopy. It was found that increasing the heating temperature could accelerate the spheroidizing process, resulting in small spherical semi-solid microstructures. With a longer holding time, the solid content slightly changed and the solid particles became irregular. The concentrations of Al and Zn in the liquid phase were higher than those in the spheroidal solid phase and the peak intensity simultaneously changed. The macula observed through the microscope were thought to be possibly a Mn compound. Finally, the mechanism of formation of the semi-solid microstructure was discussed.
机译:研究了含球形固体颗粒的AZ31B镁合金的半固态组织。将该材料在573 K下压缩28-30%的长度后,在863-893 K上进行了一系列球化处理,使其保持时间不同。研究了加热温度和保持时间对显微组织的影响,并研究了表面成分和样品的线扫描通过能量色散X射线光谱法研究。已经发现,提高加热温度可以加速球化过程,从而产生小的球形半固体微结构。在较长的保持时间下,固体含量略有变化并且固体颗粒变得不规则。液相中Al和Zn的浓度高于球状固相中的浓度,并且峰强度同时变化。通过显微镜观察到的黄斑可能被认为是锰化合物。最后,讨论了半固态组织的形成机理。

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