Microstructural and mechanical properties of a new Er-modified cast and homogenized AlSiCuMg alloys

IF 5.8 2区 材料科学 Q2 CHEMISTRY, PHYSICAL
Essam B. Moustafa , Waheed Sami Abushanab , Ahmad H. Milyani , Ahmed O. Mosleh , Asmaa M. Khalil
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引用次数: 0

Abstract

The effect of the addition of 0.3 % Er on the microstructure and the mechanical properties of the cast Al–10Si–1.1Cu–0.7Mg-0.3Zr alloy have been investigated after the solid solution at 530 °C then quenching and aging with different temperatures and times. The findings demonstrated that the microstructure was refined, and novel intermetallic phases were formed due to the addition of Er. The presence of Erbium additives slightly modifies and increases the uniformity of the dendritic grain structure of the cast alloy. The formed phase particles, during solidification, do not change their morphology or dissolve upon homogenization. The new intermetallic phase strengthened the alloy, which was stable at high temperatures. The addition of 0.5 wt% Er enhanced the alloy's tensile strength and yield strength by 10 % and 5 %, respectively. Er also significantly improves its thermal conductivity. In addition, the modified alloy demonstrated a rapture. σ100250 equal 94 MPa, which indicates the high thermal stability of this alloy. According to the findings, Er is a potential alloying element that could enhance the functionality of piston alloys made of Al, Si, Cu, and Mg. The effect of adding 0.3 % erbium (Er) to an Al-Si-Cu-Mg alloy refines the microstructure, forms new intermetallic phases, increases strength and thermal conductivity, and improves creep resistance compared to a reference Al-Si alloy. The Er-modified alloy exhibits superior hardness compared to similar Al-Si-Cu-Mg alloys, exceeding the peak hardness of a reference alloy aged at 170 °C by 15 HV.
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来源期刊
Journal of Alloys and Compounds
Journal of Alloys and Compounds 工程技术-材料科学:综合
CiteScore
11.10
自引率
14.50%
发文量
5146
审稿时长
67 days
期刊介绍: The Journal of Alloys and Compounds is intended to serve as an international medium for the publication of work on solid materials comprising compounds as well as alloys. Its great strength lies in the diversity of discipline which it encompasses, drawing together results from materials science, solid-state chemistry and physics.
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