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High Temperature Corrosion studies on Pulsed Current Gas Tungsten Arc Welded Alloy C-276 in Molten Salt Environment

机译:熔盐环境中脉冲电流钨弧焊焊接合金C-276的高温腐蚀研究

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Alloy C-276 is widely used in the power plant environment due to high strength and corrosion in highly aggressive environment. The investigation on high-temperature corrosion resistance of the alloy C-276 PCGTA weldment is necessary for prolonged service lifetime of the components used in corrosive environments. Investigation has been carried out on Pulsed Current Gas Tungsten Arc Welding by autogenous and different filler wires (ERNiCrMo-3 and ERNiCrMo-4) under molten state of K2SO4-60% NaCl environment at 675°C under cyclic condition. Thermogravimetric technique was used to establish the kinetics of corrosion. Weight gained in the molten salt reveals a steady-state parabolic rate law while the kinetics with salt deposits displays multi-stage growth rates. PCGTA ERNiCrMo-3 shows the higher parabolic constant compared to others. The scale formed on the weldment samples upon hot corrosion was characterized by using X-ray diffraction, SEM and EDAX analysis to understand the degradation mechanisms. From the results of the experiment the major phases are identified as Cr2O3, Fe2O3, and NICr2O4. The result showed that weld fabricated by ERNiCrMo-3 found to be more prone to degradation than base metal and ERNiCrMo-4 filler wire due to higher segregation of alloying element of Mo and W in the weldment
机译:由于高强度和腐蚀性在高度侵略性环境中,合金C-276广泛用于电厂环境。对腐蚀环境中使用的部件的长时间使用寿命需要对合金C-276 PCGTA焊接的高温耐腐蚀性的研究。通过在675℃下在循环条件下在K2SO4-60%NaCl环境下的熔融状态下进行自动和不同的填充线(Ernicrmo-3和Ernicrmo-4)对脉冲电流钨弧焊接进行研究。热重定技术用于建立腐蚀的动力学。在熔盐中获得的体重显示出稳态抛物率定律,而盐沉积物的动力学显示出多阶段的生长速率。 PCGTA ernicrmo-3显示与他人相比的抛物线常数较高。通过使用X射线衍射,SEM和EDAX分析来表征在热腐蚀时形成在热腐蚀时形成的刻度以了解降解机制。从实验结果,主要阶段被鉴定为Cr2O3,Fe2O3和Nicr2O4。结果表明,由于焊接中的Mo和W的合金元素较高,发现由erniCrmo-3制造的焊缝比基础金属和欧尔尼亚烃-4填充丝填充线更容易降解。

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