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Correlation of Rolling Condition, Microstructure, and Low-Temperature Toughness of X70 Pipeline Steels

机译:X70管线钢的轧制条件,组织和低温韧性的相关性

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摘要

Correlation of rolling conditions, microstructure, and low-temperature toughness of high-toughness X70 pipeline steels was investigated in this study. Twelve kinds of steel specimens were fabricated by vacuum-induction melting and hot rolling, and their microstractures were varied by rolling conditions. Charpy V-notch (CVN) impact test and drop-weight tear test (DWTT) were conducted on the rolled steel specimens in order to analyze low-temperature fracture properties. Charpy impact test results indicated that the energy transition temperature (ETT) was below --100 deg C when the finish cooling temperature range was 350 deg C to 500 deg C, showing excellent low-temperature toughness. The ETT increased because of the formation of bainitic ferrite and martensite at low finish cooling temperatures and because of the increase in effective grain size due to the formation of coarse ferrites at high finish cooling temperatures. Most of the specimens also showed excellent DWTT properties as the percent shear area well exceeded 85 pet, irrespective of finish rolling temperatures or finish cooling temperatures, although a large amount of inverse fracture occurred at some finish cooling temperatures.
机译:研究了高韧性X70管线钢的轧制条件,组织和低温韧性的相关性。通过真空感应熔炼和热轧制造了十二种钢试样,其显微组织随轧制条件而变化。为了分析低温断裂性能,对轧制钢试样进行了夏比V型缺口(CVN)冲击试验和落锤撕裂试验(DWTT)。夏比冲击试验结果表明,当最终冷却温度范围为350摄氏度至500摄氏度时,能量转变温度(ETT)低于-100摄氏度,显示出优异的低温韧性。 ETT增加是因为在较低的最终冷却温度下会形成贝氏体铁素体和马氏体,并且由于在较高的最终冷却温度下会形成粗大的铁素体而导致有效晶粒尺寸增加。尽管在某些终冷温度下会发生大量的反向断裂,但大多数试样还显示出优异的DWTT性能,因为剪切面积百分比远超过85 pet,而与终轧温度或终冷温度无关。

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