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Microstructure Evolution of the Semi-Macro Segregation Induced Banded Structure in High Strength Oil Tubes During Quenching and Tempering Treatments

机译:高强度油管淬火和回火处理过程中半宏观偏析带状组织的组织演变

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摘要

C110 oil well casing tubes should have high strength and corrosion resistance which is commonly used for deep wells operation containing corrosive media. In this paper, the microstructure evolution of a kind of semi-macro segregation originated banded structure in casing tubes is studied under different heat treatments. It is shown that the characteristics of the banded structure will change significantly in subsequent hot working and heat treatment processes. For the hot-rolled ones, the banded structure is composed of pearlite plus bainite. After quenching, it evolves into martensite band with high concentration solute elements. Finally, the banded structure will change into a carbide banding under the following tempering process. The temperature and cooling rate of the tempering practice show an obvious effect on the final band structure. To improve anti-SSC (sulfide stress corrosion cracking) performance, the favorable QT (quenching and tempering) practice for C110 steel should be a higher tempering temperature and a quicker cooling rate, from which the banded structure defects can be decreased together with an obvious improvement of the tube wall hardness uniformity.
机译:C110油井套管应具有较高的强度和耐腐蚀性,这通常用于含有腐蚀性介质的深井作业。本文研究了在不同热处理条件下套管中一种半宏观偏析带状组织的微观结构演变。结果表明,在随后的热加工和热处理过程中,带状结构的特性将发生显着变化。对于热轧,带状组织由珠光体和贝氏体组成。淬火后,它演变成具有高浓度溶质元素的马氏体带。最后,在随后的回火过程中,带状组织将变为碳化物带状。回火过程的温度和冷却速率对最终的钢带结构显示出明显的影响。为了提高抗SSC(硫化物应力腐蚀开裂)性能,C110钢的良好QT(淬火和回火)实践应是较高的回火温度和更快的冷却速度,由此可以减少带状组织缺陷并明显降低改善管壁硬度均匀性。

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