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Electron microscopy investigation of Inconel 625 weld overlay on boiler steel

机译:电子显微镜调查Inconel 625焊接覆盖锅钢上的焊接覆盖物

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The investigation was focused on the microstructure characterization as well as changes in chemical composition and hardness of water wall tubing weld overlaid with Inconel 625. The analysis comprised studies in a light and electron microscopy scale that included the evaluation of weld overlays microstructure and microsegregation of alloying elements across the overlay and base metal interface. The particular attention was turned to the distribution of the main element content (Fe, Ni, Mo, Nb, Cr) in the base metal fusion zone as well as in the weld overlay itself. It was shown that the solidification process resulted in significant segregation in alloying elements giving rise to the substantial differences in chemical composition between dendrite cores and interdendritic spaces. It is believed that the microsegregation together with precipitation of secondary phases may contribute to the deterioration of corrosion resistance and overall mechanical properties of weld overlay including ductility and fracture toughness.
机译:研究专注于微观结构表征,以及具有Inconth 625的水壁管焊缝的化学成分和硬度的变化。分析包括在光和电子显微镜测量中的研究包括焊接覆盖微观结构和微量测定的焊接覆盖微观结构和微量测定的研究覆盖层和基础金属接口的元素。特别注意的是基础金属融合区以及焊接覆盖层中的主要元素含量(Fe,Ni,Mo,Nb,Cr)的分布。结果表明,凝固过程导致合金元素中的显着偏析,从而产生树突芯与植物间隙之间的化学成分的显着差异。据信,与二次阶段的沉淀一起可以有助于耐腐蚀性的劣化和焊缝覆盖层的整体力学性能,包括延展性和断裂韧性。

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