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Consolidation of machined magnesium alloy chips by hot extrusion utilizing superplastic flow

机译:利用超塑性流热挤压固结加工的镁合金切屑

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摘要

An examination of consolidation conditions by hot extrusion of AZ31 magnesium alloy machined chips was conducted to enhance the bonding of individual chips, in order to improve the mechanical properties. Hot extrusions were carried out in the superplastic and non-superplastic region. Microstructural observations revealed that grain refinement was attained by extruding machined chips, and the grain sizes of the chip-extruded materials were smaller than 5 μm. The interfaces of individual chips of extruded materials were not identified when the chips were extruded in the superplastic region. The ultimate tensile strength was about 300 MPa and elongation-to-failure was about 10% for chip-extruded materials that were extruded in the superplastic region. These materials were comparable with the as-received alloy with respect to the room temperature strength, although the ductility was reduced to half. It was confirmed that chip consolidation utilizing superplastic flow is useful to enhance the bonding of individual grains.
机译:通过热挤压AZ31镁合金加工后的切屑来检查固结条件,以增强单个切屑的结合力,从而改善机械性能。在超塑性和非超塑性区域进行热挤压。显微组织观察表明,通过挤压加工的切屑可以实现晶粒细化,并且切屑挤压材料的晶粒尺寸小于5μm。当芯片在超塑性区中挤出时,未识别出单个挤出材料芯片的界面。对于在超塑性区域中挤出的切屑挤出材料,极限拉伸强度约为300 MPa,断裂伸长率约为10%。尽管延展性降低了一半,但这些材料在室温强度方面与按原样合金相当。已证实利用超塑性流动的碎屑固结可用于增强单个晶粒的结合。

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