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首页> 外文期刊>Transactions of the Indian Institute of Metals >Effect of Heat Treatment on Mechanical Properties and Corrosion Behaviour of API X70 Linepipe Steel in Different Environments
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Effect of Heat Treatment on Mechanical Properties and Corrosion Behaviour of API X70 Linepipe Steel in Different Environments

机译:热处理对不同环境API X70线管钢力学性能和腐蚀行为的影响

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摘要

Linepipe steels find application in oil and gas transportation, pressure vessels, offshore and other engineering parts because of its high strength as well as high ductility. The reason behind the combination of high strength and ductility is the very fine-grained microstructure. In the present work, a heat treatment procedure was used to alter the microstructure of as-received parent metal and to study its effect on the corrosion behaviour of as-received X70 linepipe steel. One-step austenitizing followed by quenching and subsequent tempering was performed at 300 degrees C, 450 degrees C and 600 degrees C temperatures to alter the microstructure of as-received base metal. To find the corrosion behaviour due to weight loss, as-received steel specimens were exposed in four different environments for 30days (normal water pH-7, seawater pH-8.2, 5%NaCl+10(-2)mol/l sodium thiosulphate pH-3 and 5%NaCl+10(-3)mol/l sodium thiosulphate pH-5). Microstructure of different heat-treated samples shows the presence of different phases developed during heat treatment. Macrostructure examination of different immersed specimens reveals the presence of pits on the outer surface. Different pH and concentration of various exposed solutions affect the corrosion behaviour of heat-treated samples. Microhardness and impact strength of heat-treated samples were evaluated.
机译:LinePipe Steels由于其高强度以及高延性而在石油和天然气运输,压力容器,近海和其他工程部件中找到应用。高强度和延展性结合背后的原因是非常细粒度的微观结构。在本作本作中,使用热处理程序来改变接收的母体金属的微观结构,并研究其对接收X70线管钢的腐蚀行为的影响。在300℃,450℃和600℃温度下进行淬火和随后的回火进行一步奥氏体化,以改变由接收的基础金属的微观结构。为了找到由于体重减轻导致的腐蚀行为,接收的钢样品在四种不同的环境中暴露30天(正常水pH-7,海水pH-8.2,5%NaCl + 10(-2)Mol / L硫代硫酸钠pH值-3和5%NaCl + 10(-3)Mol / L硫代硫酸钠pH-5)。不同热处理样品的微观结构显示出在热处理期间产生的不同阶段的存在。不同浸渍标本的宏观结构检查显示出外表面上的凹坑。不同的pH和各种​​暴露溶液的浓度影响热处理样品的腐蚀行为。评估了热处理样品的显微硬度和冲击强度。

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