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以X70管线钢为实验材料进行了在役焊接修复的研究,测定了在役焊接的热循环曲线,并与空冷焊接对比研究了粗晶区的组织和硬度.研究结果表明,在役焊接热循环曲线和常规空冷焊接有很大不同,高温停留时间和t8/5都远远小于常规空冷焊接.过快的冷却速度导致粗晶区生成了大量非平衡组织,如马氏体、板条铁素体,并使粗晶区的硬度值增大,增加了氢致裂纹敏感性.

参考文献

[1] Belanger R.J.;Patchett B.M. .The Influence of Working Fluid Physical Properties on Weld Qualification for In-Service Pipelines[J].Welding Journal,2000(8):(209-s)-(214-s).
[2] A.P. Cisilino;M.D. Chapetti;J.L. Otegui .Minimum thickness for circumferential sleeve repair fillet welds in corroded gas pipelines[J].International Journal of Pressure Vessels and Piping,2002(1):67-76.
[3] P.N. Sabapathy;M.A. Wahaba .The prediction of burn-through during in-service welding of gas pipelines[J].International Journal of Pressure Vessels and Piping,2000(11):669-677.
[4] I.-W. Bang;Y.-P. SON;K.H. OH .Numerical Simulation of Sleeve Repair Welding of In-Service Gas Pipelines[J].Welding Journal,2002(12):(273-S)-(282-S)-0.
[5] J. L. Otegui;A. Cisilino;A. E. Rivas;M. Chapetti;G. Soula .Influence of multiple sleeve repairs on the structural integrity of gas pipelines[J].International Journal of Pressure Vessels and Piping,2002(11):759-765.
[6] William A Bruce .Repair ofin-service pipelines by welding[J].Pipes & Pipelines International,2001(5):5-12.
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