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Microstructural and Mechanical Properties of TiC, TiB_2 and VC with Low Carbon Steel Surface Alloy Fabricated by High Energy Electron Beam Irradiation

机译:用高能电子束照射制造的低碳钢表面合金的Tic,Tib_2和Vc的微观结构和力学性能

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Because of its excellent process advantages such as high energy efficiency, short irradiation time and rapid heating, high energy electron beam (HEEB) irradiation is becoming of interest as a future surface modification technology. In this study, surface alloying of TiC, TiB_2 and VC ceramic particles with a low carbon steel substrate was carried out using HEEB of 1.4 MeV. Surface alloyed layers of all the specimens were about 2 mm thick and consisted of a melted region, an interface region, a heat affected zone (HAZ) and the matrix. In all the specimens, the hardness at the surface was the highest, and then decreased sharply into the interior reaching the lowest values at the matrix. A remarkable increase in the mechanical properties was observed for the VC surface alloyed specimen. Vanadium carbides of large (approx 5 mu m) and fine sizes (approx 20 nm) were formed uniformly, which resulted in an increase of hardness to 2-3 times of that of the matrix, and highest wear resistance.
机译:由于其优异的过程优势,例如高能量效率,短照射时间和快速加热,高能量电子束(HEEB)照射作为未来的表面改性技术的感兴趣。在该研究中,使用110mV的HEEB进行具有低碳钢基板的TiC,Tib_2和Vc陶瓷颗粒的表面合金化。所有样品的表面合金层厚度为约2mm,由熔化区域,界面区域,热影响区(HAZ)和基质组成。在所有标本中,表面的硬度最高,然后急剧地降低到内部达到基质处的最低值。对于VC表面合金标本,观察到机械性能显着增加。均匀地形成大(大约5μm)和细尺寸(大约20nm)的钒碳化物,导致硬度增加至基质的2-3倍,最高的耐磨性。

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