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Effects of Alloying Elements on Hydrogen Entry to Low Alloy Steels under a Cyclic Corrosion Condition

机译:循环腐蚀条件下合金元素对低合金钢氢进入的影响

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Hydrogen entry in low alloy steels and effects of alloying elements were investigated using a hydrogen permeation technique under a simulated atmospheric corrosion condition and an acidic solution. In the base steel, the hydrogen permeation coefficient sensitively varied depending upon the wetting and drying processes in the cyclic corrosion condition.Additions of Mo, Cu and Ni to the base steel were effective for suppressing hydrogen entry under the cyclic corrosion condition. These elements were also effective in the acidic solution with an initial pH of 3.5. The mechanism of the beneficial effects of these elements was considered to be a change in hydrogen overpotential, which leads to a decrease in hydrogen surface coverage.S was also effective for suppressing hydrogen entry under the cyclic corrosion condition, although it drastically promoted hydrogen entry in the acidic solution. The detrimental effect in the acidic solution was considered to relate the production of H_(2)S, a catalytic promoter of hydrogen entry, accompanying with the chemical dissolution of soluble sulfide inclusions such as MnS. On the contrary, under the cyclic corrosion condition, dissolution of MnS inclusions would lead to an increase in pH because of the consumption of H~(+) ions in the thin water layer on the steel surface, resulting in the suppression of hydrogen entry.
机译:在模拟的大气腐蚀条件和酸性溶液中,使用氢渗透技术研究了低合金钢中的氢进入和合金元素的影响。在基体钢中,氢的渗透系数根据循环腐蚀条件下的湿润和干燥过程而灵敏地变化。在基体钢中添加Mo,Cu和Ni可有效抑制循环腐蚀条件下的氢进入。这些元素在初始pH为3.5的酸性溶液中也有效。这些元素产生有益作用的机理被认为是氢超电势的变化,这导致氢表面覆盖率的降低.S在抑制循环腐蚀条件下的氢进入方面也很有效,尽管它极大地促进了氢的进入。酸性溶液。酸性溶液中的有害作用被认为与H_(2)S的产生有关,H_(2)S是氢进入的催化促进剂,并伴随着可溶性硫化物包裹体(例如MnS)的化学溶解。相反,在循环腐蚀条件下,由于钢表面薄水层中H〜(+)离子的消耗,MnS夹杂物的溶解会导致pH值增加,从而抑制了氢的进入。

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