溶质添加对Al-Si-Cu合金组织和硬度的影响

H. M. Medrano-Prieto, C. Garay-Reyes, C. Gómez-Esparza, R. Martínez-Sánchez
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引用次数: 1

摘要

铝铜硅系列商品铝合金因其较高的浇注性能而广泛应用于铸造和成型工艺中。这些合金的主要特点是良好的重量/强度关系以及耐磨损和耐腐蚀性。此外,这些合金的机械性能可以通过热处理来提高。在Al - A319合金中,Cu和Mg是T6热处理后Al2Cu和Mg2Si以及Al2CuMg相析出而提高力学性能的主要原因[1]。Ni和Cu的共同作用在相对较高的温度下提高了强度和硬度[2]。由于Ni在Al中的溶解度较低(0.04%),有报道称形成feal9feni型金属间化合物,使用铝合金的典型固溶处理不能完全溶解[3]。Hayajneh等人发现al - cu合金中金属间化合物Al3Ni、Al3(CuNi)2和Al7Cu4Ni的含量增加,硬度增加[4]。采用维氏显微硬度(VHN)、洛氏B硬度(HRB)、X射线衍射(XRD)、光学显微镜(OM)、扫描电镜(SEM)等方法研究了Ni添加量和固溶处理时间对Al A319合金显微组织和硬度的影响。
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Influence of Solute Addition in the Microstructure and Hardness of the Al-Si-Cu Alloys
Commercial aluminum alloys corresponding to Al-Cu-Si family are commonly used in casting and molding process because their high castability. The main characteristics of these alloys are the excellent weight/strength relation in conjunction with wear and corrosion resistance. Additionally, the mechanical properties of these alloys could be enhanced by heat treatment. In Al A319 alloys, Cu and Mg are the main responsible to increase the mechanical properties after T6 heat treatment due to the precipitation of Al2Cu and Mg2Si and Al2CuMg phase [1]. Combined effects of Ni and Cu improve strength and hardness at relatively elevated temperature [2], Due to the low solubility of Ni in Al (0.04%), it has been reported the formation of FeAl9FeNi-type intermetallic, which is not totally dissolved with the typical solution treatments used in aluminum alloys [3]. Hayajneh et al., found that increasing amounts of intermetallic compounds Al3Ni, Al3(CuNi)2 and Al7Cu4Ni in Al-Cu alloy, the hardness increase [4]. The effect of Ni addition and solution treatment time on the microstructure and hardness of the Al A319 alloy are studied by Vickers microhardness (VHN), Rockwell B hardness (HRB), X Ray Diffraction (XRD), Optical Microscopy (OM), Scanning Electron Microscopy (SEM).
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