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首页> 外文期刊>Transactions of the Indian Institute of Metals >Thermodynamic Designing of Heat Treatable Mg–Zn–X (X = Sn, Y) Alloy Suitable for Semi-solid Processing
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Thermodynamic Designing of Heat Treatable Mg–Zn–X (X = Sn, Y) Alloy Suitable for Semi-solid Processing

机译:适用于半固态加工的可热处理Mg–Zn–X(X = Sn,Y)合金的热力学设计

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摘要

Current work outlines the thermodynamic prediction of Mg–Zn–X (X = Sn, Y) alloys amenable for both semi-solid metal (SSM) processing and age hardening treatment. Semi-solid processing capability of Mg–Zn–X (X = Sn, Y) alloy has been evaluated by measuring the metallurgical parameters such as ‘solidification interval’, ‘temperature liquid fraction sensitivity’ and ‘highest knee point’ from non-equilibrium Scheil solidification curve. According to thermodynamic prediction, binary Mg–Zn and ternary Mg–Zn–Sn alloys are suitable for heat treatment; however, wide solidification intervals in these systems restrict their SSM processing ability. Formation of binary Zn2Y and ternary W-Mg3Zn2Y3 intermetallic phases in Mg–Zn–Y alloy has been predicted to improve their SSM processing potential and at the same time Mg–Zn–Y alloy is found to be suitable for heat treatment process.
机译:当前的工作概述了适用于半固态金属(SSM)和时效硬化处理的Mg-Zn-X(X = Sn,Y)合金的热力学预测。 Mg-Zn-X(X = Sn,Y)合金的半固态加工能力已通过测量冶金参数进行了评估,例如``凝固间隔'',``温度液体分数敏感性''和``非平衡''的``最高拐点''席尔凝固曲线。根据热力学预测,二元Mg-Zn和三元Mg-Zn-Sn合金适用于热处理。但是,这些系统中较宽的固化间隔限制了它们的SSM处理能力。据预测在Mg-Zn-Y合金中形成二元Zn2Y和W-Mg3Zn2Y3三元金属间相可提高其SSM加工潜力,同时发现Mg-Zn-Y合金适用于热处理工艺。

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