Microstructure and thermal properties of an Al–Mg alloy solidified at high temperature in the argon atmosphere

K. Kamunur, N. K. Bekmurat, B. Milikhat, R. Abdulkarimova
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Abstract

In this study, phase formation, the microstructure and the thermal properties of an Al-Mg alloy solidified at high temperature in the argon atmosphere were investigated. The maximum formation of a single-phase Al-Mg alloy was determined by the ratio of the primary aluminum and magnesium components Al – 50 at.% Mg and argon gas flow at a temperature of 750 oC. After solidification at pressures of 1 MPa and 2 MPa, the main phases are the β and γ phases of Al-Mg alloy, in equilibrium condition. The thermal properties of the Al-Mg alloy were studied using DTA-TG (Tmelting = 458.4 oC, Тoxidation= 568.4 and 616.9 oC oxidation of pure Mg and pure Al, respectively).
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Al-Mg合金在氩气中高温凝固的组织和热性能
研究了Al-Mg合金在氩气中高温凝固后的相形成、显微组织和热性能。Al- 50at的比值决定了Al- mg单相合金的最大生成量。Mg和氩气在750℃的温度下流动。在1 MPa和2 MPa压力下凝固后,Al-Mg合金的主要相为β相和γ相,处于平衡状态。采用DTA-TG (Tmelting = 458.4 oC, Тoxidation= 568.4 oC,纯Mg和纯Al氧化616.9 oC)研究了Al-Mg合金的热性能。
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