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Effect of dissolved oxygen concentration on stress corrosion cracking behavior of pre-corroded X100 steel base metal and the welded joint in wet-dry cycle conditions

机译:溶解氧浓度对预腐蚀X100钢基金属和焊接循环条件焊接接头应力腐蚀开裂行为的影响

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摘要

The effects of different dissolved oxygen (DO) concentrations on the stress corrosion cracking (SCC) of pre-corroded X100 steel base metal (BM) and welded joint under wet-dry cycle conditions were investigated by slow strain rate and electrochemical tests. Studies have shown that changing the DO concentration in the solution has a significant effect on the SCC susceptibility of X100 steel. With increasing DO concentration, the SCC susceptibility of X100 steel increases initially and then decreases. This is because the increased DO concentration causes increased protection of corrosion product layers, which reduces the dissolution rate of the crack tip anode, thereby slowing the crack growth rate. In the wet-dry cycle environment, the SCC mechanism of the X100 steel BM and the welded joint is the anodic dissolution mechanism. At the same DO concentration, the welded joint exhibits a higher SCC susceptibility than BM due to changes in the material microstructure caused by the welding process and residual stress.
机译:通过慢应变率和电化学测试,研究了不同溶解氧(DO)浓度对预腐蚀X100钢基金属(BM)和焊接接头的应力腐蚀裂纹(SCC)的影响。研究表明,改变溶液中的DO浓度对X100钢的SCC易感性有显着影响。随着浓度的增加,X100钢的SCC易感性最初增加,然后减少。这是因为增加的DO浓度导致腐蚀产物层的增加,这降低了裂纹尖端阳极的溶出速率,从而减缓了裂缝生长速率。在湿干循环环境中,X100钢BM和焊接接头的SCC机构是阳极溶解机制。在相同的浓度下,由于由焊接过程和残余应力引起的材料微观结构的变化,焊接接头表现出比BM更高的SCC敏感性。

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