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Influence of weld overlaying methods on microstructure and chemical composition of Inconel 625 boiler pipe coatings

机译:堆焊方法对Inconel 625锅炉管道涂层组织和化学成分的影响

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The aim of this work was to identify the impact of the welding method of boiler pipes made from P235GH and 16Mo3 steels on the microstructure and chemical composition of coatings. The investigations were carried out on a boiler pipes weld overlaid by Inconel 625 welded under various conditions (cold metal transfer (CMT), gas metal arc welding (GMAW) and gas tungsten arc welding (GTAW)). The microstructural examinations were performed on longitudinal cross-sectioned samples. The qualitative and quantitative chemical composition analyses on metallograpic samples were determined on SEM by means of energy dispersive spectrometry (EDS). The investigations showed that regardless of welding method the overlays consisted of the following microstructural zones: fusion zone, partially mixed zone, partially melted zone and heat-affected zone. The content of Fe, observed in all deposited coatings, was higher than the concentration of Fe in the Inconel 625 wire, however, it was within the basic technological requirement for the Fe content (< 5 wt.%). The Fe content was clearly higher in the partially mixed zone than in the fusion zone and decreased with the distance from the interface towards the coating surface. Close to the coating surface the highest Fe content was identified in the weld overlays that exhibited the least uniform fusion boundary and the least smooth outer surface. The most uniform external surface was identified in the coating deposited by the GMAW and subsequently fused by the GTAW method.
机译:这项工作的目的是确定由P235GH和16Mo3钢制成的锅炉管道的焊接方法对涂层的微观结构和化学成分的影响。研究是在各种条件下(冷金属转移(CMT),气体金属电弧焊(GMAW)和气体钨极电弧焊(GTAW))用Inconel 625堆焊的锅炉管道焊缝上进行的。显微组织检查是在纵向截面的样品上进行的。通过能量色散光谱法(EDS)在SEM上确定了金属冶金样品的定性和定量化学成分分析。研究表明,无论采用何种焊接方法,堆焊层均由以下微结构区组成:熔合区,部分混合区,部分熔融区和热影响区。在所有沉积的涂层中观察到的Fe含量都高于Inconel 625焊丝中的Fe含量,但是,这在Fe含量的基本工艺要求之内(<5 wt。%)。铁的含量在部分混合区明显高于熔融区,并且随着界面到涂层表面的距离而降低。靠近涂层表面,在堆焊层中发现了最高的铁含量,这些堆焊层呈现出最不均匀的熔合边界和最不光滑的外表面。在GMAW沉积的涂层中鉴定出最均匀的外表面,然后通过GTAW方法将其熔融。

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