Wei Ming, Zhang Lijun
State Key Laboratory of Powder Metallurgy, Central South University, Changsha, Hunan, 410083, China.
Sci Rep. 2018 Mar 22;8(1):5071. doi: 10.1038/s41598-018-22992-5.
Diffusion couple technique in combination with the Boltzmann-Matano method is the widely used approach to evaluate the interdiffusion coefficients in the target systems. However, the quality of the evaluated interdiffusion coefficients due to the Boltzmann-Matano method strongly depends on the fitting degree of the utilized continuous function to the discrete experimental composition profiles. In this paper, the application of different types of distribution functions is proposed to solve this problem. For the simple D-c relations, the normal, pseudo-normal, skew normal, pseudo-skew normal distributions can be employed, while for the complex D-c relations, the superposed distributions should be used. Even for the cases with uphill diffusion, the combined superposition of distributions may be chosen. Through validation in several benchmarks and real alloy systems, accurate diffusion coefficients are proved to be successfully obtained by using the distribution functions. It is anticipated that the Boltzmann-Matano method together with the distribution functions may serve as the general solution for determining the accurate interdiffusion coefficients in different materials.
扩散偶技术与玻尔兹曼-马塔诺方法相结合是评估目标体系中互扩散系数广泛使用的方法。然而,由于玻尔兹曼-马塔诺方法,所评估的互扩散系数的质量很大程度上取决于所使用的连续函数与离散实验组成分布的拟合程度。本文提出应用不同类型的分布函数来解决这一问题。对于简单的D-c关系,可以采用正态、伪正态、偏态正态、伪偏态正态分布,而对于复杂的D-c关系,则应使用叠加分布。即使对于存在上坡扩散的情况,也可以选择分布的组合叠加。通过在几个基准和实际合金体系中的验证,证明使用分布函数能够成功获得准确的扩散系数。预计玻尔兹曼-马塔诺方法与分布函数一起可作为确定不同材料中准确互扩散系数的通用解决方案。