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Can Sub-Zero Treatment at −75 °C Bring Any Benefits to Tools Manufacturing?

机译:−75°C下的零度处理能否为工具制造带来任何好处?

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摘要

Vanadis 6 ledeburitic tool steel was subjected to sub-zero treatment at −75 °C for different durations, and for different subsequent tempering regimes. The impact of these treatments on the microstructure, hardness variations, and toughness characteristics of the steel was investigated. The obtained results infer that the retained austenite amount was reduced to one fourth by sub-zero treatment (SZT), and the population density of add-on carbides was increased by factor of three to seven, depending on the duration of SZT. Tempering always reduced the population density of these particles. A hardness increased by 30–60 HV10 was recorded after sub-zero treatment but tempering to the secondary hardness peak induced much more significant hardness decrease than what was established in conventionally quenched steel. The flexural strength was not negatively influenced by sub-zero treatment at −75 °C while the fracture toughness tests gave worse values of this quantity, except the case of steel tempered to the secondary hardness peak.
机译:对Vanadis 6的疏松工具钢在-75°C进行了零度以下的处理,持续时间不同,随后的回火方式也不同。研究了这些处理对钢的组织,硬度变化和韧性特征的影响。获得的结果表明,通过零以下处理(SZT),残余奥氏体量减少到四分之一,并且根据SZT的持续时间,附加碳化物的总体密度增加了三到七倍。回火总是会降低这些颗粒的密度。在零度以下处理后,硬度增加了30–60 HV10,但回火到次级硬度峰所引起的硬度下降比常规淬火钢明显得多。在-75°C下零下处理不会对弯曲强度产生负面影响,而断裂韧性测试给出的该值更差,除非钢回火至二次硬度峰。

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