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首页> 外文期刊>Journal of Phase Equilibria and Diffusion >Diffusion Coefficients and Phase Equilibria of the Cu-Zn Binary System Studied Using Diffusion Couples
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Diffusion Coefficients and Phase Equilibria of the Cu-Zn Binary System Studied Using Diffusion Couples

机译:使用扩散耦合研究的Cu-Zn二元系的扩散系数和相平衡

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The diffusion behavior and phase equilibria in the Cu-Zn binary system were investigated using solid-solid and solid-liquid diffusion couples. Heat treatments at temperatures ranging from 100 to 750 degrees C were performed and the samples were examined using optical microscopy, energy dispersive x-ray spectroscopy, and electron probe microanalysis to identify the phases and to obtain composition profiles. Solubility limits of both solid solution and intermetallic phases were then evaluated, and a forward-simulation analysis (FSA) was applied to extract interdiffusion coefficients. The composition profiles from Hoxha et al. were also re-analyzed using FSA to obtain more reliable diffusion coefficient data without the assumption of constant diffusion coefficients for the intermetallic phases. A comprehensive assessment of the interdiffusion coefficients in three intermetallic phases of the Cu-Zn system was performed based on the results from the current study as well as those in the literature. Activation energies and Arrhenius pre-factors were evaluated for each phase as a function of composition. The fitted equations based on the comprehensive assessment have the capabilities of computing the interdiffusion coefficients of each of the phases at a given composition and temperature. Suggested modifications to the Cu-Zn binary phase diagram were presented based on the new experimental information gathered from the present study. A clear explanation is provided for the puzzling low Zn concentrations often observed in the Cu-rich fcc phase of Cu-Zn diffusion couples in comparison with the expected high solubility values based on the equilibrium Cu-Zn phase diagram.
机译:利用固-固和固液扩散偶研究了Cu-Zn二元体系的扩散行为和相平衡。在100至750℃的温度范围内进行热处理,并使用光学显微镜、能量色散x射线光谱仪和电子探针显微分析对样品进行检查,以确定相并获得成分分布。然后评估固溶体和金属间相的溶解度极限,并应用正向模拟分析(FSA)提取互扩散系数。Hoxha等人的成分分布也使用FSA进行了重新分析,以获得更可靠的扩散系数数据,而无需假设金属间相的扩散系数恒定。根据目前的研究结果和文献中的结果,对Cu-Zn系三种金属间相的互扩散系数进行了综合评估。每个相的活化能和阿累尼乌斯预因子作为组成的函数进行了评估。基于综合评估的拟合方程能够计算给定成分和温度下各相的互扩散系数。根据本研究收集的新实验信息,提出了对Cu-Zn二元相图的修改建议。与基于平衡Cu-Zn相图的预期高溶解度值相比,在Cu-Zn扩散偶的富Cu fcc相中经常观察到令人费解的低Zn浓度,这提供了一个明确的解释。

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