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Assisted nitriding of Inconel alloy: microstructural analysis

机译:铬镍铁合金的辅助氮化:显微组织分析

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Laser gas assisted treatment of pre-prepared Inconel 625 surface is carried out. A carbon film accommodating 5% TiC particles is formed at the surface prior to laser treatment process. The presence of carbon film hosts uniformly distributed TiC particles at the surface and enhances the absorption of incident laser beam. Metallurgical and morphological changes in the laser treated layer are examined using electron scanning microscope, energy dispersive spectroscopy and X-ray diffraction. The microhardness and the residual stress formed at the laser treated surface are measured. The X-ray diffraction technique is incorporated to measure the residual stress at the treated surface. It is found that laser treated surface is free from asperities including cavities, pores, and microcracks. Laser treated layer is almost 50 μm thick and it extends uniformly below the surface. The residual stress measured is on the order of 500 MPa.
机译:对预先准备的Inconel 625表面进行激光气体辅助处理。在激光处理工艺之前,在表面形成了可容纳5%TiC颗粒的碳膜。碳膜的存在使表面的TiC颗粒均匀分布,并增强了入射激光束的吸收。使用电子扫描显微镜,能量色散光谱法和X射线衍射检查激光处理层中的冶金和形态变化。测量在激光处理的表面上形成的显微​​硬度和残余应力。结合了X射线衍射技术来测量处理后表面的残余应力。发现经激光处理的表面没有包括腔,孔和微裂纹在内的凹凸。激光处理层的厚度几乎为50μm,并且在表面以下均匀地延伸。测得的残余应力约为500 MPa。

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