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体心立方Ti-Mo-Zr合金中的扩散系数与原子迁移率

Diffusivities and Atomic Mobilities in bcc Ti-Mo-Zr Alloys.

作者信息

Bai Weimin, Xu Guanglong, Tan Mingyue, Yang Zhijie, Zeng Lijun, Wu Di, Liu Libin, Zhang Ligang

机构信息

School of Material Science and Engineering, Central South University, Changsha 410083, China.

Tech Institute for Advanced Materials & School of Materials Science and Engineering, Nanjing Tech University, Nanjing 211800, China.

出版信息

Materials (Basel). 2018 Oct 8;11(10):1909. doi: 10.3390/ma11101909.

Abstract

β-type (with bcc structure) titanium alloys have been widely used as artificial implants in the medical field due to their favorable properties. Among them, Ti-Mo alloy attracted numerous interests as metallic biomaterials. Understanding of kinetic characteristics of Ti alloys is critical to understand and manipulate the phase transformation and microstructure evolution during homogenization and precipitation. In this work, diffusion couple technique was employed to investigate the diffusion behaviors in bcc Ti-Mo-Zr alloys. The diffusion couples were prepared and annealed at 1373 K for 72 h and 1473 K for 48 h, respectively. The composition-distance profiles were obtained via electron probe micro-analysis (EPMA). The chemical diffusion coefficients and impurity diffusion coefficients were extracted via the Whittle-Green method and Hall method. The obtained diffusion coefficients were assessed to develop a self-consistent atomic mobility database of bcc phase in Ti-Mo-Zr system. The calculated diffusion coefficients were compared with the experimental results. They showed good agreement. Simulations were implemented by Dictra Module in Thermo-Calc software. The predicted composition-distance profiles, inter-diffusion flux, and diffusion paths are consistent with experimental data, confirming the accuracy of the database.

摘要

β型(具有体心立方结构)钛合金因其优良性能在医学领域被广泛用作人工植入物。其中,Ti-Mo合金作为金属生物材料引起了众多关注。了解钛合金的动力学特性对于理解和控制均匀化及析出过程中的相变和微观结构演变至关重要。在这项工作中,采用扩散偶技术研究体心立方结构的Ti-Mo-Zr合金中的扩散行为。制备扩散偶并分别在1373 K下退火72小时和在1473 K下退火48小时。通过电子探针微分析(EPMA)获得成分-距离分布。通过惠特尔-格林方法和霍尔方法提取化学扩散系数和杂质扩散系数。对获得的扩散系数进行评估以建立Ti-Mo-Zr体系体心立方相自洽的原子迁移率数据库。将计算得到的扩散系数与实验结果进行比较。结果显示出良好的一致性。通过Thermo-Calc软件中的Dictra模块进行模拟。预测的成分-距离分布、互扩散通量和扩散路径与实验数据一致,证实了该数据库的准确性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4200/6212804/64309800f8e2/materials-11-01909-g001.jpg

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