首页> 外文会议>ASME Pressure Vessels and Piping Conference >MODIFIED GTAW ORBITAL TUBE-TO-TUBESHEET WELDING TECHNIQUE, AND THE EFFECT OF A COPPER WELD RETAINER DURING WELDING OF ALLOY 825
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MODIFIED GTAW ORBITAL TUBE-TO-TUBESHEET WELDING TECHNIQUE, AND THE EFFECT OF A COPPER WELD RETAINER DURING WELDING OF ALLOY 825

机译:改性GTAW轨道管 - 管挡板焊接技术,以及铜焊固定器在焊接过程中的焊接825

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摘要

Tube-to-tubesheet welds are an essential part of the design of heat exchangers used in power generation, petro-chemical, chemical processing, pharmaceutical, and food processing industries. The tube-to-tubesheet welds are typically produced using gas tungsten arc welding (GTAW) with or without the addition of filler wire, and involve carbon steels and various creep and corrosion resistant alloys. The weld heat input in tube-to-tubesheet welds is an essential parameter that controls the productivity and weld quality, in terms of weld bead geometry and heat affected zone microstructure and properties. A modified GTAW tube-to-tubesheet orbital welding head that utilizes a copper weld retainer is described in this paper. The copper weld retainer provides a heat sink during welding, and supports the molten weld metal. This permits the use of a relatively high heat input, required for a single pass welding with filler wire addition. Furthermore, the copper retainer limits the amount of weld overlap into the tube bore. The application of the modified orbital welding technique, which helped for resolving a suspected liquation cracking problem in Alloy 825 tube to 316L stainless steel tubesheet welds, is presented.
机译:管 - 管道焊缝是发电,石油化工,化学加工,制药和食品加工行业的热交换器设计的重要组成部分。管 - 管板焊缝通常使用具有或不添加填充丝的汽油弧焊(GTAW)制造,并涉及碳钢和各种蠕变和耐腐蚀合金。管 - 管板焊缝中的焊接热输入是控制生产率和焊接质量的基本参数,焊缝几何形状和热影响区域微观结构和性能。本文描述了一种改进的GTAW管到管板轨道焊接头,其利用铜焊接保持器。铜焊接保持器在焊接期间提供散热器,并支撑熔融焊接金属。这允许使用具有填充线的单次通焊焊接所需的相对高的热输入。此外,铜固定器将焊接量重叠限制到管孔中。提出了改进的轨道焊接技术的应用,这有助于在合金825管中解析疑似的液化裂解问题到316L不锈钢管板焊缝。

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