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Experimental study and thermodynamic modeling of the Al–Co–Cr–Ni system

机译:Al-Co-Cr-Ni系统的实验研究和热力学模型

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摘要

A thermodynamic database for the Al–Co–Cr–Ni system is built via the Calphad method by extrapolating re-assessed ternary subsystems. A minimum number of quaternary parameters are included, which are optimized using experimental phase equilibrium data obtained by electron probe micro-analysis and x-ray diffraction analysis of NiCoCrAlY alloys spanning a wide compositional range, after annealing at 900 °C, 1100 °C and 1200 °C, and water quenching. These temperatures are relevant to oxidation and corrosion resistant MCrAlY coatings, where M corresponds to some combination of nickel and cobalt. Comparisons of calculated and measured phase compositions show excellent agreement for the β–γ equilibrium, and good agreement for three-phase β–γ–σ and β–γ–α equilibria. An extensive comparison with existing Ni-base databases (TCNI6, TTNI8, NIST) is presented in terms of phase compositions.
机译:Al-Co-Cr-Ni系统的热力学数据库是通过Calphad方法通过外推重新评估的三元子系统而建立的。包括最少数量的四元参数,这些参数是通过在900°C,1100°C和900°C退火后,通过电子探针微分析和NiCoCrAlY合金的X射线衍射分析获得的,具有广泛组成范围的实验相平衡数据进行优化的。 1200°C,水淬。这些温度与抗氧化和耐腐蚀MCrAlY涂层有关,其中M对应于镍和钴的某种组合。计算和测量相组成的比较表明,β-γ平衡极好,三相β-γ-σ和β-γ-α平衡极好。在相组成方面,与现有的镍基数据库(TCNI6,TTNI8,NIST)进行了广泛的比较。

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