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Deformation mechanisms of pure Mg materials fabricated by using pre-rolled powders

机译:用预轧粉制备的纯镁材料的变形机理

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In the present work, a powder rolling process was utilized in the fabrication of fine grained pure Mg via powder metallurgy. Mg flakes were obtained after each rolling process, and broken into pieces for further rolling or sintering. Mg samples of experiencing 0, 5 and 10 rolling passes were obtained following spark plasma sintering (SPS) and hot extrusion. Microstructural results from electron backscatter diffraction (EBSD) revealed that, without experiencing powder rolling, the specimen contained a great number of residual tensile twins; in contrast after powder rolling the specimen showed uniform and equiaxed grain structures. In addition, the average grain size was measured to be around 9.2, 2.9 and 2.1 μm for the samples subjected to 0, 5 and 10 rolling passes. The powder rolled specimens were found superior in mechanical properties. Post-loading microstructure examinations were also performed for the samples and a discussion regarding the relationship between their mechanical behavior and microstructures was provided.
机译:在目前的工作中,通过粉末冶金法将粉末轧制工艺用于制造细颗粒的纯Mg。在每个轧制过程之后获得镁片,并将其破碎成片以进一步轧制或烧结。在火花等离子体烧结(SPS)和热挤压之后,获得了经历0、5和10次轧制的镁样品。电子背散射衍射(EBSD)的显微结构结果表明,在没有粉末滚动的情况下,样品中含有大量的残余拉伸孪晶。相反,粉末轧制​​后,试样显示出均匀且等轴的晶粒结构。另外,对于经受0、5和10次轧制道次的样品,平均晶粒尺寸经测量为约9.2、2.9和2.1μm。发现粉末压延试样的机械性能优异。还对样品进行了加载后的微结构检查,并提供了有关其力学性能与微结构之间关系的讨论。

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