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A New, Highly Stable Corrosion Resistant Alloy for Severe Oil Gas and CPI Environments

机译:一种新的高稳定性耐腐蚀合金,适用于恶劣的油气和CPI环境

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ATI has developed ATI 642TM alloy, a new Ni-Cr-Mo corrosion-resistant alloy that displays significant resistance to sensitization from the effects of hot-clad bonding and welding operations. The new alloy is unique because of its substantial Fe content, which gives it a significant cost advantage over Ni-based alloys of similar performance, while still containing enough Ni to provide SCC resistance superior to 6Mo stainless steels. It has a PREN value in excess of 40, which provides useful resistance to chloride environments such as seawater. This paper will present the results of chloride stress-corrosion cracking (SCC), intergranular attack (IGA), and critical pitting temperature (CPT) corrosion tests, as well as results of tensile tests and Charpy impact energy tests. Testing was conducted in both the solution-annealed condition and following a sensitizing heat treatment that simulates typical exposure during the hot-clad bonding fabrication process. The microstructures of the new alloy in the solution-annealed, sensitization-heat-treated, and welded conditions will also be shown and discussed. The test results and microstructures will be compared to those of other alloys traditionally used by the oil and gas and chemical processing industries.
机译:ATI已开发出ATI 642TM合金,这是一种新型耐镍铬钼腐蚀合金,可显著抵抗热覆焊和焊接操作的影响。这种新合金之所以独特,是因为它含有大量的铁,这使它比性能类似的镍基合金具有显著的成本优势,同时仍然含有足够的镍,以提供优于6Mo不锈钢的抗SCC性能。它的PREN值超过40,可以有效抵抗海水等氯化物环境。本文将介绍氯化物应力腐蚀开裂(SCC)、晶间腐蚀(IGA)和临界点蚀温度(CPT)腐蚀试验的结果,以及拉伸试验和夏比冲击能试验的结果。测试在固溶退火条件下进行,并在敏化热处理后进行,敏化热处理模拟了热包层粘接制造过程中的典型暴露。还将展示和讨论新合金在固溶退火、敏化热处理和焊接条件下的微观结构。测试结果和微观结构将与石油天然气和化学加工行业传统使用的其他合金进行比较。

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