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首页> 外文期刊>Sodagem & inspecao >Influ?ancia da temperatura interpasse nas propriedades do a?§o inoxid??vel duplex durante a soldagem pelo processo a arco submerso
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Influ?ancia da temperatura interpasse nas propriedades do a?§o inoxid??vel duplex durante a soldagem pelo processo a arco submerso

机译:道间温度对埋弧焊双相不锈钢性能的影响

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Duplex stainless steels (DSS) are materials that present high corrosion resistance with high values of mechanical strength, therefore motivating their use in various components in the offshore industry. However, there are major challenges in the welding of these materials in terms of the productivity and quality of the joint produced, considering its extensive use for components of small thickness, such as umbilicals, to those of large thickness, such as salt water injection pipe lines. In relation to pipes of small thickness, the gas tungsten arc welding process (GTAW) is successfully used. In thick-walled pipes the automatic process of submerged arc welding (SAW) has been recently implemented in lines of pre-assembled piping, and this has considerably increased the productivity of the joints produced. Though, a great deal of time is required to perform a new weld pass, due to the fact that the maximum interpass temperature needs to be lower than 150?°C. This work presents the results of characterization and the evaluation of corrosion resistance of a welded joint corresponding to DSS UNS S31803, with a wall thickness of 21.4 mm, welded by the gas metal arc welding process (GMAW), in the root, and submerged arc welding process (SAW), in the filling and cap passes, employing an interpass temperature between 150 and 290?oC. The results of the characterization of the mechanical properties, chemical composition and corrosion resistance in different regions of the welded joint were compared with those obtained for the base metal of the pipe, as well as, with the minimum values required by the project standards. Therefore, this study has made an evaluation of the influence of the interpass temperature in the properties of the joints produced, motivated by a possible increase of productivity in pipe welding.
机译:双相不锈钢(DSS)是具有高耐腐蚀性和高机械强度的材料,因此促使它们在海上工业的各种组件中使用。但是,考虑到将这种材料广泛用于小厚度的组件(例如脐带)到大厚度的组件(例如盐水注入管),在这些材料的焊接方面,在生产的接头的生产率和质量方面存在重大挑战线。对于小厚度的管道,成功使用了气体钨极电弧焊工艺(GTAW)。在厚壁管道中,近来已在预组装管道的生产线上实施了自动埋弧焊(SAW)工艺,这大大提高了所生产接头的生产率。但是,由于最高层间温度必须低于150°C,因此需要大量时间来执行新的焊道。这项工作介绍了通过气体金属电弧焊工艺(GMAW)在根部和埋弧中焊接的,对应于DSS UNS S31803的壁厚为21.4 mm的焊接接头的表征和评估耐腐蚀性能的结果焊接过程(SAW),在填充和盖层焊道中,采用150到290oC之间的道次温度。将焊接接头不同区域的机械性能,化学成分和耐腐蚀性的表征结果与从管道母材获得的结果以及项目标准要求的最小值进行了比较。因此,这项研究对管道间温度对所产生的接头性能的影响进行了评估,这是由于可能提高了管道焊接的生产率。

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