论文标题
Fe-GA合金中示踪剂扩散系数的组成依赖性:通过示踪剂互扩散方法的案例研究
Composition dependence of tracer diffusion coefficients in Fe-Ga alloys: a case study by a tracer-interdiffusion couple method
论文作者
论文摘要
即使在其中一个组件之一的合适的放射性同位素以及没有可靠的热力学参数的情况下,即使在不存在适当的放射性同位素的情况下,也可以利用一种新型的示踪剂互扩散夫妇技术来解决示踪剂扩散系数的估计问题。通过在Fe-GA系统的合金中生成可靠且可重复的迁移率数据,具有强大的扩散系数依赖性。示踪剂(59FE)和间隙同时在1143 K时在三对夫妻Fe/Fe/Fe-16ga,Fe/Fe/Fe/Fe-24ga和Fe-16Ga/Fe-24GA中进行测量。与彼此之间,与不同末端成员获得的夫妻获得的结果非常吻合,以彼此一致。评估了摩尔体积对测得的示踪剂(59FE)和扩散系数的影响。使用热力学计算,GA示踪剂扩散系数和空位风因通过对0-24 at。%GA的组成范围的黑暗管理关系确定。结果证实了示踪剂 - 互化夫妇技术的可靠性,用于在目前的fe-ga系统中优化fe-ga系统的流动性描述,以生成非常准确的扩散数据。通过实验确定Kirkendall标记平面上Fe和Ga示踪剂扩散的比率,进一步估算了GA示踪剂扩散系数,并利用了通过放射性射击方法直接测量的Fe Tracer扩散系数。
The problem of estimation of the tracer diffusion coefficients is solved by utilizing a novel tracer-interdiffusion couple technique even in the absence suitable radioisotope of one of the components and absence of reliable thermodynamic parameters. This is demonstrated by generating reliable and reproducible mobility data in the alloys of the Fe-Ga system with a strong composition dependence of the diffusion coefficients. Tracer- (59Fe) and inter-diffusion are simultaneously measured in three couples Fe/Fe-16Ga, Fe/Fe-24Ga and Fe-16Ga/Fe-24Ga at 1143 K. The results obtained for the couples with different end-members are in an excellent agreement with each other for the overlapping composition intervals. The influence of the molar volume on the measured tracer- (59Fe) and inter-diffusion coefficients is evaluated. Using thermodynamic calculations, the Ga tracer diffusion coefficient and the vacancy wind factor are determined via the Darken-Manning relation for the composition range of 0-24 at.% Ga. The results confirm the reliability of the tracer-interdiffusion couple technique for producing highly accurate diffusion data, in the present case for optimizing the mobility description of the bcc phase of the Fe-Ga system. The Ga tracer diffusion coefficients are further estimated via experimental determination of the ratio of the Fe and Ga tracer diffusivities at the Kirkendall marker planes and utilizing the Fe tracer diffusion coefficients measured directly by the radiotracer method.