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Effects of self-induced stress on the steady concentration distribution of hydrogen in fcc metallic membranes during hydrogen diffusion

机译:自感应应力对氢扩散过程中fcc金属膜中氢稳态浓度分布的影响

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Based on the thermodynamics involving the lattice expansion due to hydrogen insertion, the interaction between hydrogen atoms and the blocking effect in hydrogen diffusion, we discuss the profiles of hydrogen concentration and self-induced stress, and their interaction in the steady state during hydrogen diffusion across elastic membranes of fee metals or alloys. Contrary to the conventional viewpoint, it is found that the self-induced stress suppresses the departure of the concentration distribution from the linearity. The residual stress profile depends on the phase of metal-hydrogen system. However, the diffusion flux is independent of the existence and magnitude of self-stress; this conclusion means that the conventional steady-state method for measurement of the diffusion coefficient can be applied experimentally even while the self-stress effect is significant. Finally, although these results are obtained from the fee metal-hydrogen system, our conclusions can be extended to the diffusion problem of other interstitials in solid samples. [References: 41]
机译:基于涉及氢插入引起的晶格膨胀,氢原子之间的相互作用以及氢扩散中的阻断效应的热力学,我们讨论了氢浓度和自感应应力的分布图,以及在氢扩散过程中稳态下的相互作用。金属或合金的弹性膜。与传统观点相反,发现自感应应力抑制了浓度分布与线性的偏离。残余应力分布取决于金属-氢系统的相。但是,扩散通量与自应力的存在和大小无关。这一结论意味着,即使自应力效应很明显,传统的稳态方法也可以通过实验来测量扩散系数。最后,尽管这些结果是从低价金属-氢系统获得的,但我们的结论可以扩展到其他间隙在固体样品中的扩散问题。 [参考:41]

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