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DEVELOPMENT OF X80 GRADE INDUCTION BEND PIPE

机译:X80级感应弯管的开发

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摘要

API X80 grade induction bend pipe was developed using longitudinally submerged arc welded pipe as a mother pipe and applying subsequent quenching after induction heating and tempering in the full length portion. As a preliminary study for optimizing manufacturing process, the effect of heating process in induction bending had been investigated, and full length quenching and tempering process was recommended in order to obtain satisfying strength as X80 grade and superior toughness for the bend portion and tangent, as well. Based on the above examination, API X80 grade induction bend pipe with the pipe size of 761.0mmOD x 20.7mmWT, bending radius of three times the pipe diameter and bending angle of 90 degree, was manufactured by applying the full length quenching and tempering process, using a UOE pipe which has relatively lower chemistry with Ceq of 0.44%. It was proved that the trial X80 bend pipe has sufficient tensile properties for all portion in the transverse and longitudinal direction, measured by round bar tensile specimens. However, by using API standard full-thickness specimen, yield strength of all portion in the transverse direction and yield strength of the intrados in the longitudinal direction showed lower value than those obtained by round bar specimens because of the Bauschinger effect caused by flattening of the specimen. Owing to low chemistry of the mother pipe and optimized induction bending condition, the bend portion as well as the tangent showed quite low Charpy transition temperature and large absorbed energy even under -60℃, and superior toughness was also achieved in the seam weldment.
机译:API X80级感应弯管是使用纵向埋弧焊管作为母管并在感应加热和回火后在全长部分进行随后的淬火而开发的。作为优化制造工艺的初步研究,研究了感应弯曲中加热工艺的影响,并建议进行全长淬火和回火工艺,以获得令人满意的X80级强度以及弯曲部分和切线的优异韧性,好。在以上检查的基础上,采用全长淬火和回火工艺制造出API X80级感应弯管,其管径为761.0mmOD x 20.7mmWT,弯曲半径为管径的三倍,弯曲角度为90度,使用化学相对较低的UOE管,其Ceq为0.44%。实验证明,用圆棒拉伸试样测量,试验的X80弯管在横向和纵向的所有部分都具有足够的拉伸性能。但是,使用API​​标准的全厚度试样,由于圆角试样的扁平化而产生的包辛格效应,横向的所有部位的屈服强度和纵向上的内构件的屈服强度均比圆棒试样低。样品。由于母管化学成分低和优化的感应弯曲条件,弯曲部分和切线即使在-60℃时也具有相当低的夏比转变温度和较大的吸收能,并且在接缝处也具有优异的韧性。

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