Wahid Shah Abdul, Ha Seong-Ho, Kim Bong-Hwan, Yoon Young-Ok, Lim Hyun-Kyu, Kim Shae K
University of Science and Technology, Incheon, 21999, South Korea.
Advanced Process and Materials R&D Group, Korea Institute of Industrial Technology, Incheon, 21999, South Korea.
J Nanosci Nanotechnol. 2021 Mar 1;21(3):2005-2009. doi: 10.1166/jnn.2021.18936.
This study investigated the heat treatment response and tensile properties of Al-6 mass%Mg-Si ( = 1, 3, 5, and 7 mass%) ternary alloys. Further, the fracture behavior of these alloys in response to heat treatment for different temper conditions was also examined. Scanning electron microscopy-energy dispersive X-ray spectrometry (SEM-EDS) analysis of the as-cast alloys revealed, in all of them, the presence of iron-bearing phases (in a size range of 10˜60 μm) that did not dissolve or become refined upon heat treatment. Additionally, eutectic Mg₂Si and Al₃Mg₂ phases were found in Alloy I (Al-6Mg-1Si), while eutectic Mg₂Si and Si phases were found in the rest of the alloys. In the as-cast condition, the tensile properties of the examined alloys decreased in relation to increasing Si content. Nonetheless, after heat treatment, the yield strength of the alloys with high Si content (>3 mass%) increased significantly compared with that in the as-cast condition. A yield strength greater than 300 MPa was achieved in both Alloy III (Al-6Mg-5Si) and Alloy IV (Al-6Mg-7Si), although this was achieved at the expense of ductility. According to the fractography of the tensile-fractured surfaces undertaken using optical and scanning electron microscopy, fractures of the iron-bearing phases were found to be the source of cracking in alloys with high Si content. In the case of those with low Si content (≤3 mass%), cracks were believed to have been caused by the debonding of iron-bearing phases from the aluminum matrix.
本研究调查了Al-6质量%Mg-Si(=1、3、5和7质量%)三元合金的热处理响应和拉伸性能。此外,还研究了这些合金在不同回火条件下热处理后的断裂行为。对铸态合金进行扫描电子显微镜-能量色散X射线光谱(SEM-EDS)分析发现,所有合金中均存在含铁相(尺寸范围为10~60μm),这些相在热处理后未溶解或细化。此外,在合金I(Al-6Mg-1Si)中发现了共晶Mg₂Si和Al₃Mg₂相,而在其余合金中发现了共晶Mg₂Si和Si相。在铸态条件下,所研究合金的拉伸性能随Si含量的增加而降低。然而,热处理后,高Si含量(>3质量%)合金的屈服强度与铸态相比显著提高。合金III(Al-6Mg-5Si)和合金IV(Al-6Mg-7Si)均实现了大于300MPa的屈服强度,不过这是以牺牲延展性为代价的。根据使用光学显微镜和扫描电子显微镜对拉伸断裂表面进行的断口分析,发现含铁相的断裂是高Si含量合金中裂纹的来源。对于低Si含量(≤3质量%)的合金,裂纹被认为是由含铁相与铝基体的脱粘引起的。