Huang Yi, Nie Jingjing, Bai Weimin, Hu Songsong, Wang Xinming, Zhang Ligang, Liu Libin
School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105, China.
Key Laboratory of Materials Design and Preparation Technology of Hunan Province, Xiangtan University, Xiangtan 411105, China.
Materials (Basel). 2024 Apr 22;17(8):1927. doi: 10.3390/ma17081927.
In this research, the diffusion behaviors within the Ti-Fe-Cr ternary system were examined at the temperatures of 1273 K and 1373 K through the diffusion couple technique. This study led to the determination of both ternary inter-diffusion and impurity diffusion coefficients in the body-centered cubic (bcc) phase for the Ti-Fe-Cr alloy, utilizing the Whittle-Green and Hall methods. The statistics show that the average diffusion coefficients D˜FeFeTi and D˜CrCrTi measured at 1273 K were 1.34 × 10 and 3.66 × 10, respectively. At 1373 K, the average values of D˜FeFeTi and D˜CrCrTi were 4.89 × 10 and 1.43 × 10. By adopting the CALPHAD method, a self-consistent database for atomic mobility in the bcc phase of the Ti-Fe-Cr system was established. This database underwent refinement by comparing the newly acquired diffusion coefficients with data from the existing literature. Diffusion simulations for the diffusion couples were performed, drawing on the established database. The error between the simulated diffusion coefficient and the experimental measurement data is within 15%, and the simulated data of the component distance distribution and diffusion path are in good agreement with the experimental data. The simulations generated results that aligned well with the observed experimental diffusion characteristics, thereby affirming the reliability and accuracy of the database.
在本研究中,通过扩散偶技术在1273 K和1373 K温度下研究了Ti-Fe-Cr三元系中的扩散行为。本研究利用惠特尔-格林法和霍尔法测定了Ti-Fe-Cr合金体心立方(bcc)相中的三元互扩散系数和杂质扩散系数。统计数据表明,在1273 K下测得的平均扩散系数D˜FeFeTi和D˜CrCrTi分别为1.34×10和3.66×10。在1373 K时,D˜FeFeTi和D˜CrCrTi的平均值分别为4.89×10和1.43×10。采用CALPHAD方法,建立了Ti-Fe-Cr体系bcc相原子迁移率的自洽数据库。通过将新获得的扩散系数与现有文献数据进行比较,对该数据库进行了优化。利用建立的数据库对扩散偶进行了扩散模拟。模拟扩散系数与实验测量数据之间的误差在15%以内,组分距离分布和扩散路径的模拟数据与实验数据吻合良好。模拟结果与观察到的实验扩散特征吻合良好,从而证实了数据库的可靠性和准确性。