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首页> 外文期刊>Journal of Materials Engineering and Performance >Effect of Cryogenic Treatment on AISI M2 High Speed Steel: Metallurgical and Mechanical Characterization
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Effect of Cryogenic Treatment on AISI M2 High Speed Steel: Metallurgical and Mechanical Characterization

机译:深冷处理对AISI M2高速钢的影响:冶金和力学性能

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摘要

This study aims to present the metallurgical and mechanical characterization of cryogenically treated AISI M2 high speed steel (HSS) in terms of carbide precipitation and wear behavior. The samples of commercially available conventionally quenched and tempered AISI M2 HSS were procured and subjected to cryogenic treatment at two levels -110℃ (shallow treatment) and -196℃ (deep treatment) of temperature. The microstructures obtained after cryogenic treatments have been characterized with a prominence to comprehend the influence of cryogenic treatment vis-a-vis conventional quenching and tempering on the nature, size, and distribution of carbides. The mechanical properties such as hardness and wear rate of the specimens have also been compared by performing Rockwell C hardness test and pin-on-disc wear test, respectively. Microstructures, hardness, wear rate and analysis of worn surface reveal the underlying metallurgical mechanism responsible for the improving mechanical properties of the AISI M2 HSS.
机译:这项研究的目的是根据碳化物沉淀和磨损行为,介绍经过深冷处理的AISI M2高速钢(HSS)的冶金和力学性能。采购可商购的常规淬火和回火的AISI M2 HSS样品,并在-110℃(浅处理)和-196℃(深处理)两个温度下进行低温处理。低温处理后获得的微观结构的特点是突出了与常规淬火和回火相比,低温处理对碳化物的性质,尺寸和分布的影响。还分别通过执行Rockwell C硬度测试和销钉盘式磨损测试比较了样品的机械性能,例如硬度和磨损率。显微组织,硬度,磨损率和磨损表面分析揭示了潜在的冶金机理,这些机理是改善AISI M2 HSS机械性能的原因。

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