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Effects of Soil Type of Shanghai and Electrode Potential on Near-Neutral pH Stress Corrosion Cracking of Pipeline Steel X60

机译:上海土壤型和电极潜力对近中立的pH近中立pH应激腐蚀裂缝的影响X60

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The effects of soil type of Shanghai and electrode potential from cathodic protection point on near-neutral pH stress corrosion cracking (SCC) behavior of pipeline steel X60 has been investigated for structural integrity assessment. The SCC behavior was evaluated through slow strain rate tests (SSRT) at various electrode potentials in three solutions containing different typical soils. Results showed that the SCC susceptibility generally increased with decreasing electrode potential in all the three environments, with quick increase happening in the range from -1500 to -700mV(SCE). It is suggested that hydrogen induced cracking should dominate the SCC at low potentials. In cathodic potential range, the rank of the SCC susceptibility for soil type was Near-city soil > Cyan-purple soil > Cyan-yellow soil. In anodic potential range, SCC susceptibility curves mixed each other in the three solutions.
机译:研究了地层钢X60近中性pH应激腐蚀裂纹(SCC)对近中性pH应激腐蚀裂纹(SCC)行为的影响。通过含有不同典型土壤的三种溶液的各个电极电位的慢应变速率测试(SSRT)评估SCC行为。结果表明,在所有三种环境中,SCC易感性通常随着电极电位的降低而增加,随着-1500至-700mV(SCE)的范围内的快速增长。建议氢诱导的裂缝应以低电位支配SCC。在阴极势范围中,土壤型SCC易感性的级别是近城市土壤>青紫坪土壤>青色土壤。在阳极电位范围内,SCC易感性曲线在三种解决方案中互相混合。

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