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Effects of vanadium precipitates on hydrogen trapping efficiency and hydrogen induced cracking resistance in X80 pipeline steel

机译:钒沉淀物对X80管线钢的氢捕获效率和氢致开裂性的影响

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In this study, the number and size distribution of vanadium precipitates and their effects on hydrogen trapping efficiency and hydrogen-induced cracking (HIC) susceptibility were investigated in X80 pipeline steel. The results showed that as the vanadium content increased, the number of nanoscale vanadium precipitates clearly increased. Furthermore, the amount of hydrogen atoms trapped by vanadium precipitates gradually increased and the hydrogen diffusion coefficient decreased from 4.74 x 10(-6) cm(2) s(-1) in the vanadium-free V0 steel to 8.48 x 10(-7) cm(2) s(-1) in the V4 steel with 0.16% V, according to hydrogen permeation results. It also reduced the possibility of hydrogen atoms diffusing into the sites of harmful defects such as large-size oxides and elongated MnS inclusions, where cracks were caused more easily. In addition, the V3 steel with 0.12% V, containing the largest number of vanadium carbide particles of less than 60 nm, had the lowest HIC susceptibility. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了X80管线钢中钒沉淀物的数量和大小分布及其对氢捕集效率和氢诱导裂化(HIC)敏感性的影响。结果表明,随着钒含量的增加,纳米级钒沉淀物的数量明显增加。此外,被钒沉淀物俘获的氢原子数量逐渐增加,氢扩散系数从无钒V0钢中的4.74 x 10(-6)cm(2)s(-1)降至8.48 x 10(-7)根据氢渗透结果,在V4钢(含0.16%V)中的cm(2)s(-1)。它还减少了氢原子扩散到有害缺陷(例如大尺寸氧化物和细长的MnS夹杂物)部位的可能性,在这些部位更容易引起裂纹。此外,含0.12%V的V3钢含有最多数量的小于60 nm的碳化钒颗粒,其HIC敏感性最低。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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