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DEVELOPMENT OF TMCP TYPE ALLOY625/X65 CLAD STEEL PLATE FOR PIPE

机译:钢管用TMCP型合金625 / X65复合钢板的研制

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Demand for CRAs (Corrosion Resistant Alloys) clad steel is getting increased for pipeline application of oil and gas industry because of economic advantage over solid CRAs. CRAs clad steel consists of a CRAs layer for corrosion resistance and a carbon steel for mechanical properties. Nickel based Alloy625 is known to be suitable for harsh environmental condition such as high temperature and high pressure H_2S (hydrogen sulfide) condition. In this paper, the corrosion resistance of Alloy625/X65 clad steel plate for pipe produced by TMCP (Thermo-Mechanical Control Process) was investigated. TTP (Time - Temperature -Precipitation) and TTS (Time - Temperature - Sensitization) diagram of Alloy625 indicated precipitation nose, e.g. M_6C and M_(23)C_6 which would cause deterioration of corrosion resistance. TMCP enable Alloy625 to avoid long time exposure to the precipitation nose. In Huey test, the corrosion rate in TMCP was almost the same as that of solution treated Alloy625 and smaller than that in Q-T (Quench and Temper). In ferric chloride pitting test, no pitting was observed in Alloy625 layer of TMCP type clad steel. In addition, the corrosion test simulating service environment using autoclave apparatus was conducted under the condition of 0.39MPa H_2S - 0.53MPa CO_2 - Cl~- solution at 200°C. Alloy625 clad steel produced by TMCP showed neither SSC (Sulfide stress corrosion cracking) nor crevice corrosion. All the mechanical properties of base carbon steel satisfied API 5L grade X65 specification by optimizing TMCP conditions. It is notable that 85% SATT of DWTT was below -10 °C. Thus, Alloy625/X65 clad steel plate for pipe produced by TMCP with both superior corrosion resistance and low temperature toughness has been developed.
机译:由于与固态CRA相比具有经济优势,因此在石油和天然气行业的管道应用中,对CRA(耐腐蚀合金)复合钢的需求正在增加。 CRA包层钢由用于抗腐蚀的CRA层和用于机械性能的碳素钢组成。已知镍基合金625适用于苛刻的环境条件,例如高温和高压H_2S(硫化氢)条件。本文研究了通过TMCP(热机械控制工艺)生产的合金用625 / X65复合管材的耐蚀性。 Alloy625的TTP(时间-温度-沉淀)和TTS(时间-温度-敏化)图表明有沉淀鼻,例如M_6C和M_(23)C_6会导致耐蚀性下降。 TMCP使Alloy625避免长时间暴露在沉淀鼻中。在Huey试验中,TMCP的腐蚀速率与固溶处理的Alloy625几乎相同,并且比Q-T(淬火和回火)的腐蚀速率小。在氯化铁点蚀试验中,在TMCP型复合钢的合金625层中未观察到点蚀。此外,使用高压釜设备在200℃,0.39MPa H_2S-0.53MPa CO_2-Cl〜-溶液的条件下进行了模拟腐蚀试验的服务环境。由TMCP生产的Alloy625复合钢既没有显示SSC(硫化物应力腐蚀开裂),也没有缝隙腐蚀。通过优化TMCP条件,基础碳钢的所有机械性能均满足API 5L X65级规范。值得注意的是,DWTT的85%SATT低于-10°C。因此,已经开发出由TMCP生产的兼具优异的耐腐蚀性和低温韧性的Alloy625 / X65复合管用钢板。

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