Investigation of the Technology of Introducing Li, Mg and Zr Alloys into Aluminum Alloy

IF 0.8 Q4 METALLURGY & METALLURGICAL ENGINEERING
I. Ablakatov, M. Ismailov, L. M. Mustafa, A. Sanin
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引用次数: 0

Abstract

This article is devoted to the study of the initial phase of obtaining alloy 1420, namely, obtaining a primary material with the desired chemical composition. The effect of alloying magnesium, zirconium and lithium on the strength properties of the material. In the work, the following materials were used to obtain a cast aluminum alloy of the Al-Mg-Zr-Li system: aluminum of technical purity A0 or A5, magnesium Mg95, lithium LE-1, zirconium E100, aluminum-zirconium ligature AlZr5, aluminum-lithium ligature AlLi10. Two methods were used to introduce zirconium into the liquid Al-Mg alloy: the introduction of pure zirconium and the introduction of zirconium in the form of a ligature. Two methods were used to introduce lithium into the Al-Mg-Zr liquid alloy: the introduction of lithium in the form of a ligature and the introduction of pure lithium. Cast alloys of the Al-Mg-Zr-Li system with the following characteristics were obtained: chemical composition: Al-92.245%, Mg-5.00%, Zr-0.105%, Li-2.21%, Si-0.238%, impurities-0.202%. Mechanical properties: Brinell hardness 85 HB, microhardness 139 MPa, compressive strength 149.6 MPa, elastic modulus 12 GPa, compressive yield strength 175.2 MPa and plastic deformation modulus 0.83 GPa.
在铝合金中引入Li、Mg、Zr合金的工艺研究
本文致力于研究获得1420合金的初始阶段,即获得具有所需化学成分的原始材料。合金化镁、锆、锂对材料强度性能的影响。本文采用以下材料制备了Al-Mg-Zr-Li体系的铸铝合金:技术纯度为A0或A5的铝、镁Mg95、锂LE-1、锆E100、铝-锆结扎剂AlZr5、铝-锂结扎剂AlLi10。采用两种方法将锆引入液态铝镁合金:纯锆引入和以结扎形式引入锆。将锂引入Al-Mg-Zr液态合金的方法有两种:以结扎形式引入锂和纯锂引入。获得了Al-Mg-Zr-Li系铸造合金,化学成分:Al-92.245%, Mg-5.00%, Zr-0.105%, Li-2.21%, Si-0.238%,杂质-0.202%。力学性能:布氏硬度85 HB,显微硬度139 MPa,抗压强度149.6 MPa,弹性模量12 GPa,抗压屈服强度175.2 MPa,塑性变形模量0.83 GPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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42.90%
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