Effects of brazing atmospheres on interfacial microstructure between diamond grits and brazing alloy

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作者
Jiangsu Key Laboratory of Precision and Micro-Manufacturing Technology, NUAA, 29 Yudao Street, Nanjing 210016, China [1 ]
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来源
Trans. Nanjing Univ. Aero. Astro. | 2008年 / 4卷 / 248-253期
关键词
Carbides - Microstructure - Argon - Diamonds - Scanning electron microscopy - Structure (composition) - X ray diffraction - Chromium alloys - Energy dispersive spectroscopy - Oxygen - Vacuum furnaces - Chromium compounds - Binary alloys;
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摘要
The samples of brazed diamond grits with NiCr brazing alloy are prepared in vacuum and argon gas. The microstructures are analyzed with scanning electron microscope (SEM), energy dispersive X-ray spectroscopy (EDS) and X-ray diffraction (XRD). The effects of brazing atmospheres on the as-brazed NiCr brazing alloy composite structures and interfacial microstructure are studied between diamond grits and brazing alloy. Results show that: (1) There are different composite structures of as-brazed NiCr brazing alloy under different oxygen partial pressures in vacuum and argon gas. B2O3 exists on the surface of the brazed samples under argon gas furnace brazing. It indicates that oxygen plays an important role in the resultants of as-brazed NiCr brazing alloy during the brazing process. (2) There are different interfacial microstructures in different brazing atmospheres, but the main reaction product is chromium carbides. The chromium carbides in argon gas furnace brazing grow in a disordered form, but those in vacuum furnace brazing grow radiated. And the scale of grains in argon gas is smaller than those in vacuum.
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