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首页> 外文期刊>Metals and Materials International >Interpretation of High-Temperature Tensile Properties by Thermodynamically Calculated Equilibrium Phase Diagrams of Heat-Resistant Austenitic Cast Steels
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Interpretation of High-Temperature Tensile Properties by Thermodynamically Calculated Equilibrium Phase Diagrams of Heat-Resistant Austenitic Cast Steels

机译:通过热力计算的耐热奥氏体铸钢的热力学计算平衡相的解释高温拉伸性能

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摘要

High-temperature tensile properties of three heat-resistant austenitic cast steels fabricated by varying W, Mo, and Al contents were interpreted by thermodynamically calculated equilibrium phase diagrams of austenite, ferrite, and carbides as well as microstructural analyses. A two-step calculation method was adopted to cast steel microstructures below the liquid dissolution temperature because the casting route was not an equilibrium state. Thermodynamically calculated fractions of equilibrium phases were well matched with experimentally measured fractions. Ferrites existed at room and high temperatures in both equilibrium phase diagrams and actual microstructures, which has not been reported in previous researches on austenitic cast steels. In the W2Mo1Al1 steel, 38% and 12% of ferrite existed in the equilibrium phase diagram and actual microstructure, respectively, and led to the void initiation and coalescence at ferrites and consequently to the serious deterioration of high-temperature strengths. The present equilibrium phase diagrams, besides detailed microstructural analyses, effectively evaluated the high-temperature performance by estimating high-temperature equilibrium phases, and provided an important idea on whether ferrite were formed or not in the heat-resistant austenitic cast steels.
机译:通过不同W,Mo和Al含量制造的三种耐热奥氏体铸钢的高温拉伸性能通过热力学计算的奥氏体,铁氧体和碳化物以及微观结构分析来解释。采用两步计算方法对液体溶解温度低于液体溶解温度的铸造方法,因为铸造途径不是平衡状态。热力学计算的平衡阶段的级分与实验测量的级分良好匹配。在均衡相和实际微观结构的室内和高温下存在铁氧体,并且在先前的奥氏体铸钢研究中尚未报道。在W2MO1AL1钢中,38%和12%的铁素体分别存在于平衡相位图和实际微观结构中,并导致铁氧体的空隙引发和聚结,从而严重劣化的高温强度。除了详细的微观结构分析之外,本发明的平衡相图通过估计高温平衡阶段有效地评估了高温性能,并为铁氧体形成是否在耐热性奥氏体铸钢中提供了重要思路。

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