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Precipitates in Additively Manufactured Inconel 625 Superalloy

机译:添加制造的Inconel 625高温合金中的沉淀

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摘要

Laser-based additive manufacturing processes are increasingly used for fabricating components made of nickel-based superalloys. The microstructure development, and in particular the precipitation of secondary phases, is of great importance for the properties of additively manufactured nickel-based superalloys. This paper summarizes the literature data on the microstructure of Inconel 625 superalloy manufactured using laser-based powder-bed fusion and directed energy deposition processes, with particular emphasis on the phase identification of precipitates. The microstructure of Inconel 625 manufactured by laser-based directed energy deposition in as-built condition is investigated by means of light microscopy and transmission electron microscopy. Phase analysis of precipitates is performed by the combination of selected area electron diffraction and microanalysis of chemical composition. Precipitates present in the interdendritic areas of as-built Inconel 625 are identified as MC and M23C6 carbides as well as the Laves phase.
机译:基于激光的增材制造工艺越来越多地用于制造由镍基高温合金制成的部件。微观结构的发展,特别是第二相的析出,对于增材制造的镍基高温合金的性能非常重要。本文总结了有关使用激光基粉末床熔合和定向能量沉积工艺制造的Inconel 625超级合金的微观结构的文献数据,尤其着重于沉淀物的相识别。通过光学显微镜和透射电子显微镜研究了在建造状态下通过基于激光的定向能量沉积制造的Inconel 625的微观结构。沉淀物的相分析是通过选择区域电子衍射和化学成分的微分析相结合进行的。建成的Inconel 625的枝晶间区域中存在的沉淀被识别为MC和M23C6碳化物以及Laves相。

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