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Hydrogen Concentration Distribution in 2.25Cr-1Mo-0.25V Steel under the Electrochemical Hydrogen Charging and Its Influence on the Mechanical Properties

机译:电化学充氢条件下2.25Cr-1Mo-0.25V钢中氢浓度分布及其对力学性能的影响

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摘要

The deterioration of the mechanical properties of metal induced by hydrogen absorption threatens the safety of the equipment serviced in hydrogen environments. In this study, the hydrogen concentration distribution in 2.25Cr-1Mo-0.25V steel after hydrogen charging was analyzed following the hydrogen permeation and diffusion model. The diffusible hydrogen content in the 1-mm-thick specimen and its influence on the mechanical properties of the material were investigated by glycerol gas collecting test, static hydrogen charging tensile test, scanning electron microscopy (SEM) test, and microhardness test. The results indicate that the content of diffusible hydrogen tends to be the saturation state when the hydrogen charging time reaches 48 h. The simulation results suggest that the hydrogen concentration distribution can be effectively simulated by ABAQUS and the method can be used to analyze the hydrogen concentration in the material with complex structures or containing multiple microstructures. The influence of hydrogen on the mechanical properties is that the elongation of this material is reduced and the diffusible hydrogen will cause a decrease in the fracture toughness of the material, and thus hydrogen embrittlement (HE) will occur. Moreover, the Young’s modulus E and microhardness are increased due to hydrogen absorption, and the variation value is related to the hydrogen concentration introduced into the specimen.
机译:氢吸收引起的金属机械性能的下降威胁着在氢环境中使用的设备的安全性。在这项研究中,根据氢的渗透和扩散模型分析了2.25Cr-1Mo-0.25V钢中充氢后的氢浓度分布。通过甘油气体收集试验,静态氢充电拉伸试验,扫描电子显微镜(SEM)试验和显微硬度试验研究了厚度为1毫米的试样中可扩散氢含量及其对材料力学性能的影响。结果表明,当充氢时间达到48 h时,可扩散氢的含量趋于饱和。仿真结果表明,ABAQUS可以有效地模拟氢的浓度分布,可用于分析结构复杂或具有多个微观结构的材料中的氢浓度。氢对机械性能的影响在于该材料的伸长率降低,并且可扩散的氢将导致材料的断裂韧性降低,因此将发生氢脆(HE)。此外,由于氢的吸收,杨氏模量E和显微硬度增加,并且该变化值与引入样品中的氢浓度有关。

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