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Relationships between the Microstructure, Hardness and Fracture toughness of Differently Sub-Zero Treated Tool Steel

机译:不同亚零处理工具钢的微观结构,硬度和断裂韧性之间的关系

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A PM made Cr-V ledeburitic tool steel Vanadis 6 has been subjected to conventional austenitizing and quenching, which was followed by sub-zero treatment at different temperatures, and by tempering treatments. The microstructure, hardness and fracture toughness of sub-zero treated steel have been investigated with reference to the same material after conventional room temperature quenching. The main findings are that sub-zero treatments reduce the retained austenite amount, enhance the population density of small carbides, refine the martensite and change the precipitation of carbides during tempering. These alterations are reflected in elevated hardness after low-temperature tempering but slightly lowered hardness after tempering within the normal secondary hardening temperature range, except the specimens treated at -140°C where the hardness improvement was maintained. The fracture toughness is rather negatively influence by the sub-zero treatments, except the treatment at -140°C where no impact or rather improvement has been recorded; thus, the treatment at a temperature of -140°C seems to be a promising way how to improve the hardness and the fracture toughness pf the Vanadis 6 steel simultaneously.
机译:PM制造的CR-V LEDEBEIRIC TOOL钢凡内斯6经过常规的奥氏体化和淬火,然后在不同温度下进行次零治疗,并通过回火处理。在常规室温淬火后,研究了亚零处理钢的微观结构,硬度和断裂韧性。主要研究结果是,次零治疗减少保留的奥氏体量,增强小碳化物的人口密度,精炼马氏体并在回火过程中改变碳化物的沉淀。在低温回火后,这些改变反映在低温回火后的硬度升高,但在正常的继发硬化温度范围内稍微降低,除了在-140℃下处理的标本,维持硬度改善。除了在-140°C的处理外,骨折韧性对亚零治疗相当负面影响,没有记录撞击或相当改善的情况下;因此,在-140°C的温度下的处理似乎是如何同时改善硬度和裂缝韧性PF的有希望的方式。

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