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Verification of the generalised chemical potential for stress-driven hydrogen diffusion in nickel

机译:核实镍中应力驱动氢气扩散的广义化学潜力

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Hydrogen embrittlement leads to time-dependent failure of structural components. Hydrogen absorption and diffusion contribute to the time dependency and are often treated by thermodynamic diffusion models, which consider the ideal-solution approach and spherical distortion of the lattice. The interaction of spherical lattice distortions with hydrostatic stress fields causes stress-driven hydrogen diffusion. In the present work, ab-initio calculations are used to verify and parametrise the stress dependency of the generalised chemical potential for hydrogen in nickel. Therefore, the partial molar volume for hydrogen in nickel is introduced. The assumption of linear elasticity and a linear dependency on the hydrostatic stress is sufficient to describe hydrogen diffusion on the macroscopic and mesoscopic scale. The work is concluded with hydrogen diffusion simulations, which reveal a minor influence of stress-driven hydrogen diffusion on the overall hydrogen distribution in nickel.
机译:氢脆导致结构部件的时间相关失效。氢吸收和扩散有助于时间依赖性,并且通常通过热力学扩散模型来处理,它考虑晶格的理想溶液方法和球面畸变。球形晶格畸变与静水应力场的相互作用导致应力驱动的氢扩散。在目前的工作中,从头计算用于验证和参数化镍中氢的广义化学势的应力依赖性。因此,引入了镍中氢的偏摩尔体积。线弹性假设和对静水应力的线性依赖性足以描述宏观和介观尺度上的氢扩散。氢扩散模拟结果表明,应力驱动的氢扩散对镍中氢的总体分布影响较小。

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