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首页> 外文期刊>Materials Science and Engineering >Effect of Zn addition on the microstructure and mechanical properties of cast, rolled and extruded Mg-6Sn-xZn alloys
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Effect of Zn addition on the microstructure and mechanical properties of cast, rolled and extruded Mg-6Sn-xZn alloys

机译:锌的添加对Mg-6Sn-xZn合金铸造,轧制和挤压的组织和力学性能的影响

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摘要

Tin and zinc have great potential as alloying elements in magnesium alloys in which they have a wide range of solid solubility. In the present study, the microstructure and mechanical properties of Mg-6Sn-xZn (x=0, 2, and 4 wt%) were investigated and compared in cast/heat treated, rolled at 350 ℃ from 10 mm to 2 mm and extruded at 350 ℃ with a ratio 40:1. The alloy composition and the applied process affected the mechanical properties. The Young's modulus increased with increasing Zinc content up to 2% and reached a maximum value of 40 GPa for the Mg-6Sn-2Zn alloy. In the case of the cast/heat treated condition, the ultimate tensile strength (UTS) and elongation to rupture increased with the Zn content, reaching maximum values of 189.7 MPa and 7.15%, respectively, for the Mg-6Sn-4Zn alloy. The maximum strength of the alloys in the rolled conditions was achieved for Mg-6Sn-4Zn alloy with a value of 253 MPa with 12.32% elongation while in the extruded conditions the Mg-6Sn-4%Zn alloy exhibited a maximum combination of strength and elongation of 276.33 MPa and 23.1%, respectively. The results are discussed with respect to the microstructure evolution, grain size and precipitates in the alloys.
机译:锡和锌作为镁合金中的合金元素具有很大的潜力,其中它们具有广泛的固溶度。在本研究中,研究并比较了Mg-6Sn-xZn(x = 0、2和4 wt%)在铸造/热处理,在350℃下从10 mm轧制至2 mm并挤出后的显微组织和力学性能。在350℃下以40:1的比例。合金成分和所施加的过程影响机械性能。 Mg-6Sn-2Zn合金的杨氏模量随着锌含量的增加而增加,最高达到2%,并达到40 GPa的最大值。在铸造/热处理条件下,最终拉伸强度(UTS)和断裂伸长率随Zn含量的增加而增加,Mg-6Sn-4Zn合金的最大值分别达到189.7 MPa和7.15%。 Mg-6Sn-4Zn合金在压延条件下的最大强度达到253 MPa,伸长率为12.32%,而在挤压条件下,Mg-6Sn-4%Zn合金表现出强度和强度的最大组合。伸长率分别为276.33 MPa和23.1%。讨论了有关合金的组织演变,晶粒尺寸和沉淀的结果。

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