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The effect of grain size and aging on hydrogen embrittlement of a maraging steel

机译:晶粒度和时效对马氏体时效钢氢脆性的影响

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Notched tensile tests were conducted under a slow displacement rate to evaluate the influences of grain size and aging on hydrogen embrittlement (HE) of T-200 maraging steel. In addition, an electrochemical permeation method was employed to measure the effective diffusivity (D_(eff)) and apparent solubility (C_(app)) for hydrogen of various heat-treated specimens. The results indicated that the aged (482 ℃/4 h) specimens comprised of numerous precipitates led to a raised C_(app) and a decreased hydrogen diffusivity as compared to those of the solution-treated ones. The solution-treated specimens were resistant to gaseous HE, whereas aged specimens were susceptible to it, implying the strength level was the controlling factor to affect the HE susceptibility of the specimens. Nevertheless, all specimens suffered from sulfide stress corrosion cracking (SSCC) severely but to different degrees. The aged specimens were more likely to form intergranular (IG) fractures in H_2S but quasi-cleavage (QC) in H_2. For the solution-treated specimens, a fine-grained structure was susceptible to HE in H_2S and revealed mainly QC that differed from the IG fracture of the coarse-grained one. The fracture mode of the specimens could also be related to the transport path and / or the supply of hydrogen to the plastic zone of notched specimens in hydrogen-containing environments.
机译:在低位移速率下进行缺口拉伸试验,以评估晶粒度和时效对T-200马氏体时效钢的氢脆(HE)的影响。另外,采用电化学渗透方法来测量各种热处理样品的氢的有效扩散率(D_(eff))和表观溶解度(C_(app))。结果表明,与固溶处理的试样相比,老化的试样(482℃/ 4 h)包含大量沉淀物,导致C_(app)升高,氢扩散系数降低。固溶处理后的样品对气态HE具有抵抗力,而老化的样品易受其影响,这表明强度水平是影响样品对HE敏感性的控制因素。尽管如此,所有标本都遭受了严重的硫化物应力腐蚀开裂(SSCC),但程度不同。时效标本在H_2S中更容易形成晶间(IG)断裂,而在H_2中则形成准裂解(QC)断裂。对于固溶处理的标本,细颗粒结构在H_2S中易受HE的影响,并且主要表现出与粗颗粒IG断裂不同的QC。样品的断裂模式也可能与含氢环境中带槽样品的塑性区的运输路径和/或氢供应有关。

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