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首页> 外文期刊>Materials Research >The Hydrogen Cold Work Peak in BCC Iron: Revisited, with First Principles Calculations and Implications for Hydrogen Embrittlement
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The Hydrogen Cold Work Peak in BCC Iron: Revisited, with First Principles Calculations and Implications for Hydrogen Embrittlement

机译:再谈BCC铁中的氢冷作功峰,并结合第一原理计算及其对氢脆的影响

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摘要

We examine experimental and theoretical results on the cold-work (Snoek-K?ster) peak in bcc Fe due to H using density functional theory (DFT). We reaffirm that Seeger’s interpretation of the H cold-work peak (Hcwp), involving motion of H with kinks on non-screw dislocations associated with the intrinsic-dislocation α peak, has experimental backing. Use of the solute-dragging theory of Schoeck suggests a H-mixed dislocation binding energy of 0.3 eV. The theory of Hirth, that the Hcwp involves H-screw dislocation interaction manifested as the temperature-reduced intrinsic-dislocation γ peak by the presence of H, has merit in that our DFT calculations disclose a similar magnitude, 0.2 eV, of H-screw dislocation binding. This result offers support for models of H-enhanced localized plasticity of H embrittlement. We also explore possible roles of H-vacancy binding, shown by DFT to be characterized by a binding energy of 0.6 eV, in H trapping and H embrittlement and lesser effects of H-solute binding involving small binding energies of ~ 0.1 eV.
机译:我们使用密度泛函理论(DFT)研究了由于H导致的密炼铁中冷加工(Snoek-K?ster)峰的实验和理论结果。我们重申,Seeger对H冷作峰(Hcwp)的解释涉及实验性的支持,其中涉及H在与固有位错α峰相关的非螺纹位错上的扭结运动。使用Schoeck的溶质拖曳理论表明,H混合位错的结合能为0.3 eV。 Hirth的理论(Hcwp涉及H螺钉位错相互作用,表现为因H的存在而导致温度降低的本征位错γ峰)的优点在于,我们的DFT计算揭示了类似的幅度,即0.2 eV,H螺钉位错结合。此结果为H增强H脆化的局部可塑性模型提供了支持。我们还探讨了H空位结合的可能作用,DFT显示其结合能为0.6 eV,表征了H捕获和H脆化,H溶质结合的影响较小,涉及〜0.1 eV的小结合能。

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