首页> 外文期刊>Electrochimica Acta >Determination of the Critical Plastic Strain-Induced Stress of X80 Steel through an Electrochemical Hydrogen Permeation Method
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Determination of the Critical Plastic Strain-Induced Stress of X80 Steel through an Electrochemical Hydrogen Permeation Method

机译:电化学氢渗透法确定X80钢的临界塑性应变诱发应力

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摘要

The determination of critical plastic strain-induced stress (sigma(cr)) is significant to clarify the influence of stress level on an environmental fracture. The sigma(cr) of high strength pipeline steel is difficult to define precisely based on conventional stress-strain curve. Hydrogen permeation behavior is sensitive to change in dislocations induced by plastic strain. Hence, a method of determining the sigma(cr) of X80 steel is introduced by conducting electrochemical permeation experiments under slow-strain-rate tension. Hydrogen permeation current density (i(H)) increases and then decreases with increased stress level within R-t0.5 (0.5% total extension). The stress at i(H,max) corresponds to sigma(cr). Prior to sigma(cr), the effective diffusion coefficient of atomic hydrogen D-eff is reversible. Once sigma(cr) is exceeded, D-eff becomes irreversible. Binding energy E-B of new hydrogen traps emerging during tension from 60% R-t0.5 to 90% R-t0.5 is close to that of dislocations in steel, which indicates that plastic deformation occurs in this tension stage. For X80 steel, the 95% confidence interval of sigma(cr) ranges from 62% to 65% R-t0.5. (C) 2016 Elsevier Ltd. All rights reserved.
机译:临界塑性应变诱导应力(sigma(cr))的确定对于阐明应力水平对环境裂缝的影响非常重要。高强度管线钢的sigma(cr)难以根据常规应力-应变曲线精确定义。氢的渗透行为对塑性应变引起的位错变化很敏感。因此,通过在慢应变速率张力下进行电化学渗透实验,引入了一种确定X80钢sigma(cr)的方法。氢渗透电流密度(i(H))随R-t0.5(总延伸量的0.5%)内应力水平的增加而增加,然后降低。 i(H,max)处的应力对应于sigma(cr)。在sigma(cr)之前,原子氢的有效扩散系数D-eff是可逆的。一旦超过sigma(cr),D-eff就变得不可逆。在从60%R-t0.5到90%R-t0.5的拉伸过程中出现的新氢阱的结合能E-B与钢中的位错接近,这表明在该拉伸阶段发生了塑性变形。对于X80钢,sigma(cr)的95%置信区间为62%至65%R-t0.5。 (C)2016 Elsevier Ltd.保留所有权利。

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