Microstructures and Mechanical Properties of Al-Zn-Sn Bearing Alloys for High Performance Applications

N. A. Abdelhakim, R. Shalaby
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引用次数: 3

Abstract

The mechanical behavior and indentation creep of Al-20 wt% Zn bearing alloy has been modified with adding 0.2 wt%, 0.5 wt%, 1 wt%, 1.5 wt% Sn. These bearing alloys were prepared by melt spinning technique. The scanning electron microscopy (SEM) was used to study the morphology of the melt spun alloys and x-ray diffractometer (XRD) for the identification of the phases pre- sent in these melt-spun bearing alloys. The results show that the structure of Al80-x-Zn20-SnX (X = 0.2%, 0.5%, 1% and 1.5%) bearing alloys is characterized by the presence of α-Al of FCC structure and SnZn intermetallic compound of anorthic structure. The Al-20Zn-1.5Sn has a smaller crystallite size and grain size as indicated from X-ray and SEM analysis respectively, which leading to the enhancement of the mechanical properties. The mechanical properties and indentation creep of these bearing alloys were studied by tensile test machine and vickers indentation testing at room temperature, respectively. The Al-20Zn-1.5Sn has higher hardness value and creep resistance than other alloys. This was attributed to the strengthen effect of Sn as a strong solid solution element in Al-matrix. The stress exponent values in the range 2.4 - 4.2 indicate that the grain boundary sliding is the possible mechanism during room temperature creep deformation of melt-spun Al-Zn-Sn bearing alloys.
高性能Al-Zn-Sn承载合金的显微组织和力学性能
添加0.2 wt%、0.5 wt%、1 wt%、1.5 wt%的Sn后,Al-20 wt% Zn轴承合金的力学性能和压痕蠕变得到了改善。这些轴承合金是用熔体纺丝技术制备的。利用扫描电子显微镜(SEM)研究了熔融纺丝合金的形貌,并用x射线衍射仪(XRD)鉴定了这些熔融纺丝轴承合金中存在的相。结果表明:Al80-x-Zn20-SnX (X = 0.2%, 0.5%, 1%和1.5%)合金的结构以FCC结构的α-Al和阳极结构的SnZn金属间化合物的存在为特征;x射线和扫描电镜分析表明,Al-20Zn-1.5Sn的晶粒尺寸和晶粒尺寸都较小,从而提高了材料的力学性能。分别采用拉伸试验机和室温维氏压痕试验研究了这些轴承合金的力学性能和压痕蠕变。Al-20Zn-1.5Sn合金具有较高的硬度值和抗蠕变性能。这是由于Sn作为强固溶体元素在al基体中的强化作用所致。应力指数在2.4 ~ 4.2范围内,表明晶界滑动是Al-Zn-Sn合金室温蠕变的可能机制。
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