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Stress corrosion cracking for 316 stainless steel clips in a condensate stabilizer

机译:冷凝液稳定器中316不锈钢卡箍的应力腐蚀开裂

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In one of the gas processing facilities in Abu Dhabi, UAE; a case of 316L stainless steel material failure occurred in the fractionating column due to stress cracking corrosion twice in a cycle of less than 2 years. This paper studies the stress corrosion cracking behavior of the 316L stainless steel in an accelerated corrosion environment and compares it with a higher corrosion resistant nickel alloy (Inconel 625). The experimental work was designed according to ASTM G36 standard, the samples were immersed in a boiling magnesium chloride medium which provided the accelerated corrosion environment and the tested samples were shaped into U-bend specimens as they underwent both plastic and elastic stresses. The specimens were then tested to determine the time required for cracks to initiate. The results of the experimental work showed that the main mode of failure was stress corrosion cracking initiated by the proven presence of chlorides, hydrogen sulfide, and water at elevated temperatures. Inconel 625 samples placed in the controlled environment showed better corrosion resistance as it took them an average of 56 days to initiate cracks, whereas it took an average of 24 days to initiate cracks in the stainless steel 316L samples. The scanning electron microscopy (SEM) micrographs showed that the cracks in the stainless steel 316L samples were longer, wider, and deeper compared to the cracks of Inconel 625.
机译:在阿联酋阿布扎比的一个天然气处理设施中;在不到2年的周期内两次因应力开裂腐蚀而在分馏塔中发生316L不锈钢材料故障的情况。本文研究了316L不锈钢在加速腐蚀环境下的应力腐蚀开裂行为,并将其与耐腐蚀性能更高的镍合金(Inconel 625)进行了比较。根据ASTM G36标准设计实验工作,将样品浸入沸腾的氯化镁介质中,该介质提供了加速的腐蚀环境,并且在经受塑性和弹性应力的情况下,将测试样品成型为U型弯曲样品。然后测试样品以确定裂纹产生所需的时间。实验工作的结果表明,主要的破坏方式是应力腐蚀开裂,该腐蚀开裂是由高温下已证明存在的氯化物,硫化氢和水引发的。放置在受控环境中的Inconel 625样品显示出更好的耐腐蚀性,因为它们平均需要56天才能开始产生裂纹,而不锈钢316L样品平均要花费24天才能产生裂纹。扫描电子显微镜(SEM)显微照片显示,与Inconel 625的裂纹相比,不锈钢316L样品中的裂纹更长,更宽,更深。

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