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Investigation on welding parameters and bonding characteristics of underwater wet friction taper plug welding for pipeline steel

机译:管道钢水下湿式摩擦锥塞焊的焊接参数及结合特性研究

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摘要

The Q235 and X65 steel tapered plugs were used to perform friction taper plug welding (FTPW) on X65 pipeline steel in underwater wet condition. The work concentrates on defect formation, torque variation, energy input during FTPW, and also the weld microstructures and hardness. Energy input is proportional to torque-time integration under constant rotating speed and is critical to realize metallurgical bonding between the hole and plug. Increasing burn-off can prolong welding time, thus enhancing energy input, so that defect can be eliminated. Using X65 plug can produce defect-free welds since the energy input is adequate. However, when Q235 plug is used, lack of bonding is commonly found as a kind of root defect in friction taper plug (FTP) weld owing to the insufficient energy input. The weld zone microstructure mainly consists of upper bainite in X65 plug weld, but Widmanstatten structure in Q235 weld. In heat-affected zone, the microstructure is found as upper bainite in both X65 and Q235 plug welds.
机译:Q235和X65钢制锥形塞用于在水下潮湿条件下对X65管线钢进行摩擦锥度塞焊(FTPW)。研究工作集中在缺陷形成,扭矩变化,FTPW期间的能量输入以及焊缝的显微组织和硬度上。在恒定转速下,能量输入与转矩-时间积分成正比,对于实现孔与塞之间的冶金结合至关重要。增加烧尽可以延长焊接时间,从而增加能量输入,从而可以消除缺陷。由于能量输入足够,使用X65堵头可以产生无缺陷的焊接。然而,当使用Q235堵头时,由于能量输入不足,通常会​​发现粘结力不足是摩擦锥形堵头(FTP)焊缝中的一种根本缺陷。焊缝区的显微组织主要由X65塞焊的上贝氏体组成,而Q235焊缝的为Widmanstatten结构。在热影响区,X65和Q235塞焊均发现其显微组织为上贝氏体。

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