Chemical compound formation and diffusion – as parallel processes in grain boundary

Petelin Al, Bokstein Bs, A. Novikov, Novikov Ea
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Abstract

The Fischer’s model1 is the base of the standard description of the diffusion along grain boundary (GB) with leakage to grain bulk. Various versions of calculation diffusant concentration field were realized: for self diffusion and hetero diffusion, with a grain boundary segregation2,3 and formation of atomic complexes in GB,4‒6 for various temperature areas7 and various structural types of GBs.8 It may seem strange, but the model describing influence of chemical processes in GB, which bind a part of diffusing atoms, on the rate of their moving in GB wasn’t developed. Though the experimental fact of grain boundary diffusion (GBD) delay due to precipitation of nanoparticles in GB is well-known, it is usually connected with the idea that fine particles which are formed in GB reduce the section of boundary and diffusive flux. The direction of this investigation is the development the Fisher’s model of GBD taking into account simultaneous chemical interaction of diffusive and matrix atoms in GB. The events of this kind – parallel carrying out two processes with participation of the same atoms – are well-known in heterogeneous kinetics.9 As a typical example of those processes it can be considered the steel nitration process.
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晶界中化合物形成与扩散的平行过程
Fischer模型1是沿晶界扩散(GB)的标准描述的基础。实现了不同版本的扩散剂浓度场的计算:自扩散和异扩散,具有晶界偏析2、3和原子配合物的形成,4-6适用于不同温度区域7和不同结构类型的GB这可能看起来很奇怪,但描述GB中化学过程影响的模型,这些过程结合了一部分扩散原子,对它们在GB中的移动速度的影响并没有发展起来。虽然纳米颗粒在晶界中析出导致晶界扩散延迟的实验事实是众所周知的,但这通常与在晶界中形成的细颗粒减少了晶界的截面和扩散通量有关。本研究的方向是发展考虑扩散原子和基体原子同时化学相互作用的GBD的Fisher模型。这类事件——在相同原子的参与下并行进行两个过程——在异质动力学中是众所周知的作为这些过程的一个典型例子,可以认为是钢的氮化过程。
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