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Improved hardness of laser alloyed X12CrNiMo martensitic stainless steel

机译:激光合金化的X12CrNiMo马氏体不锈钢的硬度提高

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The improvement in hardness of X12CrNiMo martensitic stainless steel laser alloyed with 99.9% pure titanium carbide, stellite 6 and two cases of premixed ratio of titanium carbide and stellite 6 [TiC (30 wt.%)- stellite 6 (70 wt.%) and TiC (70 wt.%)- stellite 6 (30 wt.%)] were examined. The powders were supplied through a pneumatically driven powder delivery system with a 4.4 kW continuous wave (CW) Nd:YAG laser. The microstructures of the alloyed zones were investigated by x-ray diffractometer (XRD), energy dispersive spectroscopy (EDS) and scanning electron microscopy (SEM). The alloyed zones obtained by alloying with premixed ratio of 70 wt.% TiC and 30 wt.% stellite 6 were free from dilution and crack that were in those of pure stellite 6. A significant increase in Vickers hardness value compared with that of the substrate was achieved with the powders and their premixed ratios; 608 HVN for TiC and 503 HVN for stellite 6, 763 HVN for 30 wt.% TiC and 1025 HVN for 70 wt.% TiC.
机译:X12CrNiMo马氏体不锈钢激光合金的硬度提高,该激光合金与99.9%的纯碳化钛,Stellite 6和两种情况的碳化钛和Stellite 6 [TiC(30 wt。%)– Stellite 6(70 wt。%)和检查了TiC(70 wt。%)-司太立6(30 wt。%)。通过带有4.4 kW连续波(CW)Nd:YAG激光器的气动粉末输送系统提供粉末。通过X射线衍射仪(XRD),能量色散谱仪(EDS)和扫描电子显微镜(SEM)研究了合金化区的微观结构。通过以70%(重量)的TiC和30%(重量)的司太立特6的预混合比例合金化而获得的合金化区域没有纯司太立特6中的稀释和裂纹。与基体相比,维氏硬度值显着增加用粉末及其预混合比例实现; TiC为608 HVN,Stellite 6为503 HVN,TiC 30重量%为763 HVN,TiC 70重量%为1025 HVN。

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