首页> 外文会议>ASME India International Oil and Gas Pipeline Conference >ESTABLISHMENT OF COLD WIRE ADDITION TECHNOLOGY IN MULTIWIRE SUBMERGED ARC WELDING FOR LINE PIPE MANUFACTURING TO IMPROVE THE WELDMENT QUALITY
【24h】

ESTABLISHMENT OF COLD WIRE ADDITION TECHNOLOGY IN MULTIWIRE SUBMERGED ARC WELDING FOR LINE PIPE MANUFACTURING TO IMPROVE THE WELDMENT QUALITY

机译:用于线管制造的多瓦淹没电弧焊接冷丝加成技术的建立,提高焊接质量

获取原文

摘要

For achieving high productivity multiple wire submerged arc welding such as tandem wire, three wires and five wires submerged arc welding was introduced in recent past years. Due to adding of additional wires in a pipe mill faced process difficulties such as controlling the current supply to each wire and further challenges for consumable design in order to give effective slag characteristics and bead shape control at these higher welding speeds and heat inputs. To gain maximum productivity, welding speed must be as fast as possible (in excess of 2 m/min) consistent with reliable high speed wire feeding and the characteristics of the SAW flux considering these factors in determining the balance of heat input, penetration, bead shape, dilution, weld metal chemistry and mechanical properties such as toughness. Steels containing high strength low alloying elements like Manganese, Molybdenum, Titanium and boron have favorable physical properties such as higher subzero toughness, resistance to improve the mechanical properties because of which there is substantial saving in the material. High strength low alloy steels materials are utilized in offshore and onshore at critical services. However, such benefits can be exploited provided these steels can be welded with appropriate development of welding process such as cold wire addition in multi wires with process controller using WINCC programmer, Z5 version to give better weldments, which will not compromise the integrity, and operating condition. To obtain higher productivity and quality, it is necessary to develop a welding procedure for butt joint of line pipe steels. This paper describes the recent work carried out by Welspun, in this regard to establish the welding procedure using GMAW and submerged arc welding process and evaluation of mechanical properties. Macro and micro structural analysis were also made to characterize the weld metal properties.
机译:为了实现高生产率,近年来引入了诸如串联线,三根电线和五根线淹没电弧焊接的多线浸没弧焊。由于在管道磨机中增加了额外的电线,诸如控制每个电线的电流供应以及用于消耗性设计的进一步挑战,以便在这些较高的焊接速度和热输入处提供有效的矿渣特性和珠子形状控制。为了获得最大的生产率,焊接速度必须尽可能快(超过2米/分钟),这与可靠的高速送丝和锯通量的特性考虑在确定热量输入,渗透,珠子的平衡时形状,稀释,焊接金属化学和机械性能,如韧性。含有高强度低合金元素的钢材,如锰,钼,钛和硼等物理性质,如较高的亚单韧性,抗性改善机械性能,因为它的材料具有很大的节省。高强度低合金钢材料在关键服务中的海上和陆上使用。但是,可以利用这种效益,提供这些钢可以通过适当的焊接过程焊接,例如使用WinCC程序员,Z5版本的加工控制器中的多线的冷丝加法,以提供更好的焊接,这不会损害完整性和操作状况。为了获得更高的生产率和质量,有必要开发线管钢的对接接头的焊接程序。本文介绍了Welspun最近进行的工作,在这方面建立了使用GMAW和浸没的电弧焊接过程和机械性能评估的焊接程序。还进行了宏观和微结构分析以表征焊接金属性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号