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Hydrogen induced cracking of pipeline and pressure vessel steels: A review

机译:氢气诱导管道和压力容器钢的裂缝:综述

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Pipelines and pressure vessels made of carbon and low alloy steels have suffered from Hydrogen Induced Cracking (HIC) in wet hydrogen sulfide environment in the oil & gas industry. Hydrogen which is produced at cathode due to corrosion reaction, diffuses into the steel and result in cracking in wet hydrogen sulfide environment. Hydrogen assisted cracking usually manifests in carbon and low alloy steels with unique crack initiation and propagation characteristics. The origin and morphology of cracks are dependent on various factors viz., mechanical properties & composition of the material, manufacturing process including heat treatment, applicable stresses etc. Hydrogen assisted cracking is commonly classified into three categories based on initiation, morphology and stress requirement in cracking as, Hydrogen Induced Cracking (HIC), Sulfide Stress Cracking (SSC) and Stress Oriented Hydrogen Induced Cracking (SOHIC).The current paper discusses the metallurgical factors which play a major role in Hydrogen Induced Cracking of flat rolled steels commonly used in manufacturing of pipelines and pressure vessels in oil & gas industry as found in several studies.
机译:由碳和低合金钢制成的管道和压力容器患有石油和天然气工业湿硫化氢环境中的氢诱导裂化(HIC)。由于腐蚀反应而在阴极产生的氢气,扩散到钢中并导致湿硫化氢环境中的裂缝。氢气辅助裂缝通常在碳和低合金钢中表现出独特的裂纹启动和传播特性。裂缝的起源和形态依赖于各种因素,材料,包括热处理,适用应力等的材料的机械性能和组成,包括热处理等氢气辅助裂缝,其三类基于启动,形态和应力要求。裂化为,氢诱导裂解(HIC),硫化物应力裂化(SSC)和应力取向氢诱导的裂化(SOHIC)。本文讨论了在氢气诱导的碳轧钢的裂缝中发挥着主要作用的冶金因素几项研究中发现的油气工业管道和压力容器的研究。

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