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Non-destructive evaluation of brittle fracture resistance of operated gas pipeline steel using electrochemical fracture surface analysis

机译:电化学骨折表面分析,操作气体管道钢脆性断裂性的无损评价

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摘要

The use of effective non-destructive evaluation techniques for assessing degradation degree of pipeline steel would allow planning actions in order to correctly manage required emergency response at gas pipeline incident. In this paper, a new non-destructive evaluation technique based on electrochemical analysis of fracture surface for assessing in-service degradation degree of operated pipeline steels was developed. A significant difference between open-circuit potentials of the fracture surface (brittle fracture) and the polished surface of specimens made of operated pipeline steels observed after their long-term operation was associated with increased content of carbon compounds on the fracture surface. Embrittlement mechanism of ferrite-pearlite pipeline steels under operation was explained by carbides enrichment both grain boundaries and intragranular defects. The correlation dependence between operational changes in brittle fracture resistance of a metal and in open-circuit potential of its fracture surface being the basis of the developed electrochemical method for evaluation of operational degradation of pipeline steels was determined.
机译:使用有效的非破坏性评估技术来评估管道钢的退化程度将允许规划行动,以便在燃气管道事件中正确管理所需的应急响应。本文揭示了一种基于用于评估操作管道钢的裂缝表面裂缝表面电化学分析的新的非破坏性评价技术。断裂表面(脆性断裂)的开路电位与由操作管道钢制成的样品的抛光表面之间的显着差异与裂缝表面上的碳化合物的含量增加相关。碳化物富集晶界和鞘膜缺损,解释了铁素体 - 珠光体管道钢的脆性机制。确定了金属脆性断裂抗性的操作变化与其断裂表面的开路电位之间的相关性依赖性是所开发的电化学方法的基础,用于评估管道钢的操作降解的基础。

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