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Effect of Ca Concentration on Microstructure and Mechanical Properties of As-Cast and As-Extruded Quasicrystal-Strengthened Mg-7.2Zn-2.4Gd Alloy

机译:Ca浓度对浇铸和挤出的外晶 - 加强Mg-7.2Zn-2.4gd合金微观结构和机械性能的影响

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摘要

Quasicrystal-strengthened Mg-Zn-RE (RE = rare-earth element) alloys have been investigated extensively due to their excellent mechanical properties. Here, we prepare quasicrystal-strengthened Mg-7.2Zn-2.4Gd (wt.%) alloy with different concentrations of Ca addition (0, 0.16, 0.32, and 0.64 wt.%) by traditional gravity casting, followed by extrusion at 573 K with the extrusion ratio of 9 : 1. The microstructure and room temperature tensile properties of as-cast and as-extruded alloys are characterized. With the addition of the trace amount of Ca, the I-phase tends to transfer into W-phase due to the appearance of Mg2Ca and Mg6Zn3Ca2. As a consequence, the mechanical properties of the as-cast Ca containing alloys are downgraded. After extrusion, in comparison to the as-cast alloys, microstructure of the four types of alloys is refined and mechanical property is enhanced greatly. With the increasing of Ca concentration, the grain size is decreased gradually. However, the yield strength of the alloys is decreased to about 230 MPa and then up to 269 MPa, while the elongation increases first from 12.9% to 13.6% yet then decreases to 9.9%.
机译:由于其优异的机械性能,已经在广泛研究了拟CRYSTAL强化的MG-ZN-RE(RE =稀土元素)合金。在此,通过传统的重力铸件,用不同浓度的Ca加入(0,0.16,0.32和0.64重量%)制备拟晶的Mg-7.2Zn-2.4gd(wt.%)合金,然后在573k下挤出挤出比为9:1。表征浇铸和挤出合金的微观结构和室温拉伸性能。随着痕量Ca的添加,I相引起由于Mg2Ca和Mg6Zn3Ca2的出现而转移到W相中。结果,降级了含有As-梯形Ca合金的机械性能。挤出后,与铸造合金相比,精制四种合金的微观结构是精制的,并且机械性能大大提高。随着Ca浓度的增加,晶粒尺寸逐渐降低。然而,合金的屈服强度降低至约230MPa,然后高达269MPa,而伸长率从12.9%增加至13.6%,然后减少至9.9%。

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