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Hydrogen diffusion and trapping in A 42CrMo4 quenched and tempered steel: Influence of tempering temperature

机译:42Crmo4淬火和钢化钢中的氢气扩散和捕获:回火温度的影响

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A 42CrMo4 steel quenched and tempered at different temperatures was tested via a combination of electrochemical hydrogen transient build-up permeation tests and thermal desorption analysis (TDA). The evolution of the apparent diffusion coefficient, D-app, versus the applied cathodic current density as microstructural hydrogen traps are progressively filled, was obtained until reaching the value of the lattice diffusion coefficient, D-L (hydrogen diffusion in the steel when all its traps are filled). TDA analyses were additionally performed to determine the binding energies related to the different microstructural traps present in the microstructures of these steel grades.Hydrogen binding energies of 11.8, 17 and 27.4 kJ/mol were determined, these values being found not to depend on the tempering temperature. It was also demonstrated that the most energetic peak was associated with dislocations. Furthermore, both hydrogen diffusivities, D-app and D-L, decrease while hydrogen solubility, C-oapp, (subsurface hydrogen concentration at the entry side when all traps are filled), and the density of hydrogen traps, N-t, increase with the hardness of the steel (hardness varies linearly with the tempering temperature in this 42CrMo4 quenched and tempered steel). (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过电化学氢气瞬变积聚渗透试验和热解吸分析(TDA)的组合来测试在不同温度下淬灭和回火的42crmo4钢。逐渐填充表观扩散系数,D-APP,与施加的阴极电流密度的施加阴极电流密度的演变,直至达到晶格扩散系数的值,DL(当所有陷阱时钢中的氢气扩散)填充)。另外进行TDA分析以确定与这些钢等级的微观结构中存在的不同微观结构陷阱有关的结合能。确定了11.8,17和27.4kJ / mol的氢结合能量,这些值被发现不依赖于回火温度。还表明,最有能量的峰与位错有关。此外,氢气扩散性,D-APP和DL,在氢溶解度,C-OAPP的同时降低,(当入口侧的进入侧的地下氢气浓度填充时),以及氢疏水阀的密度随着硬度而增加钢(硬度随着42crMO4淬火和淬火钢的回火温度而线性变化)。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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