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Keyhole GTAW with Dynamic Wire Feeding Applied to Orbital Welding of 304L SS Pipes

机译:锁孔GTAW采用动态送丝施用于304L SS管道的轨道焊接

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摘要

Abstract Currently, in the Brazilian Oil and Gas scenario the execution of welding processes for stainless steel consists mostly of manual applications, rendering hard any increase in productivity and repeatability. Therefore, the automation of this step allows several advances such as more reliable results, lower costs and healthier condition for welders. With the aim of developing automation for GTAW welding of these applications, experimental tests were carried out in a 304L stainless steel pipe laid out at 5G position. The samples were orbitally welded by GTAW with dynamic wire feeding process, using a robotic manipulator in two steps of 180?o in vertical down progression. The welding parameters and the stable condition obtained are discussed and the weld pool behavior during the root pass was online monitored by HDR (High Dynamic Range) videography. It was possible to reach high welding speed in the root pass, 50 cm/min in a keyhole mode. The wire dynamic movement contributed to reach great process stability and robustness for all joint passes, from root to finishing. The macrographs and x-ray analysis did not indicate discontinuities as porosity nor lack of fusion.
机译:摘要目前,在巴西石油和天然气情景中,不锈钢的焊接工艺的执行主要是手动应用,造成生产力和可重复性的难以增加。因此,该步骤的自动化允许多种预付款,例如更可靠的结果,降低成本和焊工的更健康状况。凭借这些应用的GTAW焊接的自动化,实验测试是在5G位置布置的304L不锈钢管中进行的。通过GTAA驱动用动态送丝工艺甘露焊接样品,在垂直下降进展中,使用180°O的两个步骤使用机器人操纵器。讨论焊接参数和所获得的稳定条件,并通过HDR(高动态范围)摄像机监测根通过期间的焊接池行为。在钥匙孔模式下,可以在根通过,50cm / min中达到高焊接速度。电线动态运动有助于达到所有关节通行证的巨大工艺稳定性和鲁棒性,从根到整理。宏观照片和X射线分析并未表示不连续性作为孔隙率也不缺乏融合。

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