首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Low heat input gas metal arc welding for dissimilar metal weld overlays part I: the heat-affected zone
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Low heat input gas metal arc welding for dissimilar metal weld overlays part I: the heat-affected zone

机译:异种金属堆焊层的低热量输入气体金属电弧焊第一部分:热影响区

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摘要

Dissimilar metal weld overlays of nickel base alloys on low alloy steel components are commonly used in the oil and gas, petro-chemical, and power generation industries to provide corrosion and oxidation resistance in a wide range of service environments and temperatures. Traditionally, weld overlays are produced using cold or hot wire gas tungsten arc welding (GTAW). Potential advantages of cold metal transfer (CMT) welding, a low heat input gas metal arc welding process, over the conventional GTAW in production of weld overlays were evaluated. Metallurgical characterization was performed on CMT overlays of Alloy 625 filler metal on Grade 11 and Grade 22 steels. Significant grain refinement was found in the high temperature HAZ compared to the traditional coarse-grained HAZ in arc welding. Evidences of incomplete carbide dissolution, limited carbon diffusion, and incomplete transformation to austenite were also found. These phenomena were related to high heating and cooling rates and short dwell times of the high-temperature HAZ in austenitic state. Tempering effects in the steel HAZ were identified, showing a potential for development of CMT temperbead procedures. Based on the results of this study, the steel HAZ regions in CMT overlays were classified as high-temperature HAZ and intercritical HAZ.
机译:低合金钢部件上镍基合金的异种金属堆焊层通常用于石油和天然气,石油化工和发电行业,以在广泛的服务环境和温度下提供耐腐蚀和抗氧化性能。传统上,使用冷焊丝或热焊丝钨极氩弧焊(GTAW)来生产焊缝。与传统的GTAW相比,冷金属转移(CMT)焊接(一种低热量输入的气体金属电弧焊工艺)在堆焊层生产中的潜在优势得到了评估。在11级和22级钢上对625合金填充金属的CMT堆焊层进行了冶金表征。与传统的电弧焊粗晶粒热影响区相比,高温热影响区具有明显的晶粒细化。还发现了碳化物不完全溶解,有限的碳扩散和不完全转变成奥氏体的证据。这些现象与奥氏体状态下的高温热影响区的高加热和冷却速率以及较短的停留时间有关。确定了钢热影响区的回火效果,显示出发展CMT回火程序的潜力。根据这项研究的结果,将CMT覆盖层中的钢热影响区分为高温热影响区和临界间热影响区。

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