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Effects of anisotropy and regime of diffusion on the measurement of lattice diffusion coefficient of hydrogen in metals

机译:各向异性和扩散条件对金属氢气扩散系数测量的影响

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摘要

The lattice diffusion coefficient of hydrogen in metals is commonly measured by permeation tests. Such tests assume isotropic diffusivity with a set-up which measures permeation flux only along one direction. The measured values of the lattice diffusion coefficient are strongly influenced by the trapping of hydrogen at microstructural defects. These factors lead to highly inaccurate determination of the lattice diffusion coefficient, more so in an anisotropic medium. In this work, we present a three-dimensional (3D) diffusion equation in non-dimensional form for an anisotropicmedium with source and sink terms which account for detrapping and trapping of hydrogen. The concentration of hydrogen at lattice and trap sites is assumed to be in a local equilibrium. An initial boundary value problem of the permeation test is formulated and the governing partial differential equation is implemented in a 3D finite-element code. The influence of anisotropic diffusivity on the measurement of lattice diffusion coefficient is shown by numerical simulations. Asymptotic analysis of the governing equation reveals that the lattice diffusion coefficient can only be measured in certain regimes when performing permeation tests at varying temperatures. The nonlinear behaviour of Arrhenius plots of diffusion coefficient versus inverse of temperature due to trapping is analytically and numerically predicted.
机译:金属中氢气的晶格扩散系数通常通过渗透测试测量。这种测试采用各向同性扩散性,设置,该设定仅沿一个方向测量渗透通量。晶格扩散系数的测量值受到微观结构缺陷的氢捕获的强烈影响。这些因素导致晶格扩散系数的高度不准确测定,在各向异性培养基中更具如此。在这项工作中,我们以具有源和水槽术语的源极和水槽术语向非尺寸形式的三维(3D)扩散方程以源极和捕获的源极和捕获。假设晶格和阱位点的氢浓度在局部平衡中。制定渗透测试的初始边值问题,并在3D有限元码中实现了控制局部微分方程。通过数值模拟显示了各向异性扩散性对晶格扩散系数测量的影响。控制方程的渐近分析表明,当在不同温度下进行渗透测试时,晶格扩散系数只能在某些方案中测量。分析和数值预测扩散系数的扩散系数与温度逆逆的非线性行为。

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