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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of minor Sr addition on microstructure and mechanical properties of the as-cast Mg-4.5Zn-4.5Sn-2Al-based alloy system
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Effects of minor Sr addition on microstructure and mechanical properties of the as-cast Mg-4.5Zn-4.5Sn-2Al-based alloy system

机译:微量Sr对铸态Mg-4.5Zn-4.5Sn-2Al基合金体系显微组织和力学性能的影响

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摘要

Effects of minor Sr addition (0, 0.2, 0.4, 0.6 and 1.0 mass%) on microstructure and mechanical properties of the as-cast Mg-4.5Zn-4.5Sn-2Al-based alloy system are investigated by SEM, XRD and mechanical testing. The alloy castings are produced by water-cooling steel casting. The Sr-free alloy is composed of four phases i.e. α-Mg, Mg_2Sn, Mg_(51)Zn_(20) and Mg_(32)(Al, Zn)_(49), while the alloys with the Sr addition of 0.6% or higher consist of α-Mg, Mg_2Sn, Mg_(51)Zn_(20), Mg_(32)(Al, Zn)_(49) and MgSnSr. Minor Sr addition can effectively refine grains, dendrites and grain-boundary compounds and this effect is more obvious with a higher Sr addition. However, a smaller amount of grain-boundary compounds and a larger amount of the intra-crystalline intermetallics are detected with a higher Sr addition, seemly indicating that the minor Sr addition plays a role in suppressing the eutectic transformation and promoting the formation of the MgSnSr phase. The as-cast alloy with 0.2%Sr addition exhibits the best combined mechanical properties at ambient temperature with the ultimate tensile strength and elongation of 238 MPa and 12.1% respectively. However, excessive Sr addition results in the decline of strength and plasticity. Fractograph-ic analysis demonstrates that quasi-cleavage fracture is the dominant mechanism of these alloys. Furthermore, the Sr addition in the range of 0.2% and 1.0% has no obvious beneficial effect on the ultimate tensile strength of the as-cast alloys and leads to plasticity loss at 175 °C.
机译:通过SEM,XRD和力学性能测试研究了微量添加Sr(0、0.2、0.4、0.6和1.0质量%)对铸态Mg-4.5Zn-4.5Sn-2Al基合金体系的组织和力学性能的影响。 。合金铸件是通过水冷钢铸件生产的。无Sr合金由四个相组成,即α-Mg,Mg_2Sn,Mg_(51)Zn_(20)和Mg_(32)(Al,Zn)_(49),而添加了0.6%Sr的合金或更高的元素包括α-Mg,Mg_2Sn,Mg_(51)Zn_(20),Mg_(32)(Al,Zn)_(49)和MgSnSr。少量添加Sr可以有效地细化晶粒,树枝状晶和晶界化合物,而添加更高的Sr则更明显。但是,Sr添加量较高时,可检测到少量的晶界化合物和大量的晶内金属间化合物,这似乎表明微量的Sr添加量可抑制共晶转变并促进MgSnSr的形成。相。添加0.2%Sr的铸态合金在环境温度下表现出最佳的综合机械性能,极限抗拉强度和伸长率分别为238 MPa和12.1%。但是,过量添加Sr会导致强度和可塑性下降。分形分析表明,准解理断裂是这些合金的主要机理。此外,Sr的添加量在0.2%和1.0%的范围内对铸态合金的极限拉伸强度没有明显的有益作用,并且导致在175℃下的塑性损失。

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