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首页> 外文期刊>Calphad: Computer Coupling of Phase Diagrams and Thermochemistry >Investigations on diffusion behaviors in Ti-rich Ti-Nb-Zr-Cr system: Experimental measurement and CALPHAD modeling
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Investigations on diffusion behaviors in Ti-rich Ti-Nb-Zr-Cr system: Experimental measurement and CALPHAD modeling

机译:Ti-NB-ZR-CR系统扩散行为的调查:实验测量和CALPHAD建模

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摘要

Accurate diffusivities are essential for the design and production of biomedical alloys with excellent properties. In the present work, ternary and quaternary interdiffusion behaviors in Ti-rich Ti-Nb-Cr, Ti-Zr-Cr and Ti-Nb-Zr-Cr systems at 1273 K were experimentally investigated via the diffusion couple technique. Ternary interdiffusivities of bcc Ti-Nb-Cr alloys were then determined using the Matano-Kirkaldy method. Subsequently, on the basis of the presently obtained interdiffusivities together with the diffusivity and mobility parameters of Ti-Nb-Zr-Cr sub-binary and sub-ternary systems and the thermodynamic descriptions for bcc Ti-Nb-Zr-Cr system, the atomic mobilities of Ti,Nb, Zr and Cr in bcc Ti-Nb-Zr-Cr alloys were assessed by means of CALPHAD (CALculation of PHAse Diagrams) method. Moreover, the comprehensive comparisons between the experimental diffusion properties of bcc Ti-Nb-Cr, Ti-Zr-Cr and Ti-Nb-Zr-Cr systems (i.e., interdiffusivities, composition profiles, interdiffusion fluxes and diffusion paths) and the calculated/model-predicted data due to the present atomic mobilities were conducted in order to verify the reliability of the mobilities. The present atomic mobilities for bcc Ti-Nb-Zr-Cr system can provide the accurate ternary and quaternary interdiffusivity matrices over a wide composition range.
机译:精确的扩散性对于生物医学合金的设计和生产具有优异的性能必不可少。在目前的工作中,通过扩散耦合技术实验研究了在1273K的Ti-Zr-Cr,Ti-Zr-Cr和Ti-Nb-Zr-Cr系统中的三元和季族间歇性行为。然后使用Matano-Kirkaldy方法测定BCC Ti-Nb-Cr合金的三元间隙。随后,基于目前获得的间隔性,与TI-NB-ZR-CR副二进制和亚三元系统的扩散性和迁移率参数以及BCC TI-NB-ZR-CR系统的热力学描述,原子学通过Calphad评估BCC Ti-NB-ZR-Cr合金中Ti,Nb,Zr和Cr的迁移率(相图的计算)方法。此外,BCC Ti-NB-CR,Ti-Zr-Cr和Ti-Nb-Zr-Cr系统的实验扩散性能之间的综合比较(即,间隔,组成轮廓,间隔通量和扩散路径)和计算/由于目前的原子迁移率而导致的模型预测数据以验证迁移率的可靠性。 BCC TI-NB-ZR-CR系统的目前原子迁移率可以在宽的组成范围内提供精确的三元和四元间相交矩阵。

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