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Microstructure and mechanical properties of M62 high-speed steel powder consolidated by high-temperature gas extrusion

机译:高温气体挤压固结的M62高速钢粉的组织和力学性能

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Super high-speed steel (AISI M62) powder was consolidated using high-temperature gas extrusion(HTGE). Consolidation of powder at 1200℃ and 400 Mpa pressure using HTGE resulted in99.6% density while conventional extrusion (CE), at the same parameters resulted in 93%density. Variations in hardness with heat treatment were studied with respect to its microstructure,carbide size and distribution. The rods extruded using HTGE and CE and subsequentlyheat treated showed average matrix grain size of 1.6±0.5 μm and 6.0±2.0 μm along withhomogeneous distribution of carbides of size 0.56 ± 0.31 μm and 1.52±0.68 μm, respectively.Such an ultrafine-grained microstructure obtained in HTGE resulted in a hardness of 950±20 HV(>68 HRC) in the quenched and tempered condition, which is the highest ever reportedhardness value so far for this system, while Ceed sample showed a hardness of only 756±18HV (~62 HRC) under the same conditions.
机译:使用高温气体挤压(HTGE)固结超高速钢(AISI M62)粉末。使用HTGE在1200℃和400 Mpa的压力下固结粉末的密度为99.6%,而在相同参数下常规挤出(CE)的密度为93%。研究了热处理后硬度的变化,包括显微组织,碳化物尺寸和分布。用HTGE和CE挤压并随后进行热处理的棒材的平均基体晶粒尺寸为1.6±0.5μm和6.0±2.0μm,碳化物的均质分布分别为0.56±0.31μm和1.52±0.68μm。在HTGE中获得的结果在淬火和回火条件下的硬度为950±20 HV(> 68 HRC),这是该系统迄今为止迄今为止报道的最高硬度值,而Ceed样品的硬度仅为756±18HV(〜 62 HRC)。

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