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Evaluation of stress corrosion cracking and hydrogen embrittlement in an API grade steel

机译:API级钢应力腐蚀裂纹和氢气脆化评价

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摘要

Stress corrosion cracking (SCC) and hydrogen embrittlement (HE) of pipeline steels in contact with soil was investigated. Different soils were prepared in order to determine their physical, chemical and bacteriological characteristics. Slow strain rate testing was carried out by using aqueous extracts from soil samples and NS4 standard solution. Stress vs. strain curves of API 5L grade X46 steel were obtained at different electrode potentials (E_(corr) 100 mV below E_(corr) and 300 mV below E_(corr)) with 9 × 10~(-6) s~(-1) and 9 ×10~(-7) s~(-1) strain rate. In addition, the hydrogen permeation tests were carried out in order to evaluate the susceptibility of hydrogen penetrates into theses steels. The results demonstrated the incidence of cracking and their dependence on the potential imposed. In that case, cracking occurred by stress corrosion cracking (SCC) and the hydrogen embrittlement (HE) had an important contribution to cracking initiation and propagation. Cracking morphology was similar to the SCC reported on field condition where transgranular cracking were detected in a pipeline collapsed by land creeping. It was important to point out that even under cathodic potentials the material showed the incidence of secondary cracking and a significant reduction of ductility.
机译:研究了对与土壤接触的管道钢的应力腐蚀开裂(SCC)和氢脆(HE)。制备不同的土壤以确定其物理,化学和细菌学特征。通过使用来自土壤样品和NS4标准溶液的水性提取物进行慢应变速率测试。在不同的电极电位(E_(erc)100mV以下的不同电极电位(E_(COR)下方)和300mV下方的e_(erc)下方的e_(corr))中获得应力与应变曲线,用9×10〜(ex)〜( -1)和9×10〜(-7)S〜(-1)应变率。此外,进行氢渗透试验以评估氢气渗透到钢材中的敏感性。结果表明了破裂的发生率及其对施加潜力的依赖性。在这种情况下,应力腐蚀裂化(SCC)发生破裂,氢气脆化(HE)对开裂和繁殖具有重要贡献。裂化形态类似于SCC报告的现场条件,其中在通过陆地爬行折叠的管道中检测到响囊裂纹的跨颅裂解。重要的是要指出,即使在阴极电位下,材料也显示出二次裂缝的发生率和显着降低延展性。

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