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Characterization of inclusions of X80 pipeline steel and its correlation with hydrogen-induced cracking

机译:X80管线钢夹杂物的表征及其与氢致裂纹的关系

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摘要

In this work, the microstructures of an X80 pipeline steel were characterized, and their susceptibilities to hydrogen-induced cracking (HIC) were investigated by hydrogen-charging, electrochemical hydrogen permeation and surface characterization. It is found that the microstructure of X80 pipeline steel consists of a polygonal ferrite and bainitic ferrite matrix, with martensite/austenite (M/A) constituents distributing along grain boundaries. The inclusions existing in the steel include those enriched with Si, Al oxide, Si-ferric carbide and Al-Mg-Ca-0 mixture, respectively. The majority of inclusions are Si-enriched. Upon hydrogen-charging, cracks could be initiated in the steel in the absence of external stress. The cracks are primarily associated with the Si- and Al oxide-enriched inclusions. The diffusivity of hydrogen in X80 steel at room temperature is 2.0 × 10~(11) m~2/s, and the estimated hydrogen trapping density in the steel is as high as 3.33 × 10~(27)m~(-3).
机译:在这项工作中,对X80管线钢的显微组织进行了表征,并通过充氢,电化学氢渗透和表面表征研究了它们对氢致裂纹(HIC)的敏感性。发现X80管线钢的显微组织由多边形铁素体和贝氏体铁素体基体组成,马氏体/奥氏体(M / A)成分沿晶界分布。钢中存在的夹杂物包括分别富含Si,Al氧化物,Si-碳化铁和Al-Mg-Ca-0混合物的那些。大部分夹杂物富含硅。充氢后,在没有外部应力的情况下,钢中可能会产生裂纹。裂纹主要与富含Si和Al氧化物的夹杂物有关。室温下X80钢中氢的扩散系数为2.0×10〜(11)m〜2 / s,估计的钢中氢俘获密度高达3.33×10〜(27)m〜(-3) 。

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