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Experimental study on corrosion resistance of coiled tubing welds in high temperature and pressure environment

机译:高温压力环境中卷绕管焊缝耐腐蚀性的实验研究

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摘要

Coiled tubing (CT) has been widely used for oil and gas exploitation, however corrosion of CT under high pressure and high temperature (HPHT) environment was often reported, also corrosion induced failures of CT welds were often observed to occur during service. Corrosion related behaviors of CT welds are not clear. Therefore, a study of the corrosion resistance of CT welds under HPHT environment is carried out. In order to efficiently evaluate the corrosion resistance of welds, some test samples were obtained by linear cutting out of a CT110 in service on the site. The water samples from gas field were used as the test reagent to simulate the actual corrosive medium. Based on the results of weight loss test under HPHT corrosive environment and tensile test under room conditions, the corrosion sensitivities of the welding seam and base material under various temperatures and partial pressures of CO2 as well as the mechanical properties of the corroded CT were compared and evaluated quantitatively, the corrosion morphologies and material products of the test samples were analyzed by scanning electron microscope (SEM). The test results showed that the corrosion rates of the welding seam in a HPHT caldron were 1.7, 2.0 and 1.2 times of the base metal's when the total pressure is 4MPa, and the temperature is 30°C, 60°C and 90°C, respectively. The corrosion rates of the welding seam is 2.0, 2.1 and 2.0 times of the base metal's when the partial pressure of CO2 is 0.1MPa, 0.2MPa and 0.3MPa, respectively. The yield strength of the weld seam after corrosion test was found to be reduced by 4.8% (the yield strength of the base metal was reduced by 4.0%) and its tensile strength was reduced by 8.2% (the base metal was reduced by 7.1%). This indicates that CT weld seam is more susceptible to corrosion than CT base material under service condition.
机译:连续油管(CT)已被广泛地用于石油和天然气的开采,CT的在高压和高温(HPHT)环境然而腐蚀经常报道,也CT焊缝的腐蚀引起的故障经常观察到的服务期间发生。 CT焊缝腐蚀有关的行为是不明确的。因此,HPHT环境下CT焊缝的耐腐蚀性的研究中进行。为了有效地评价焊接部的耐腐蚀性,通过线性在服务切出CT110的网站上获得的一些试验样品。从气田的水样品用作试验试剂来模拟实际腐蚀性介质。基于重量损失测试的HPHT腐蚀环境和拉伸试验中在室温条件下的结果,焊接接缝和基体材料的不同的温度和CO 2的分压以及CT的腐蚀机械性能下的腐蚀敏感性进行了比较,并定量评估,测试样品的腐蚀形貌和材料产物通过扫描型电子显微镜(SEM)分析。试验结果表明,在一个HPHT甑焊接接缝的腐蚀速率的基体金属的1.7,2.0和1.2倍时的总压力为4MPa的'S,和温度为30℃,60℃和90℃,分别。焊接接缝的腐蚀速率是基体金属的2.0,2.1和2.0倍是当CO 2的分压为0.1MPa,在0.2MPa和0.3MPa的分别。腐蚀试验后的焊缝的屈服强度被发现4.8%降低(基底金属的屈服强度降低了4.0%),并通过8.2%降低其拉伸强度(基底金属减少了7.1% )。这表明CT焊缝是耐腐蚀性比服务条件下CT基材更敏感。

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