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Vacuum heat treatment, deep cryogenic treatment and simultaneous pulse plasma nitriding and tempering of P/M S390MC steel

机译:P / M S390MC钢的真空热处理,深低温处理以及脉冲等离子体氮化和回火

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摘要

Vacuum heat treatment, deep cryogenic treatment and pulse plasma nitriding are efficient techniques to improve the properties of tool and high speed steels. Sometimes the influence of subzero treatment could be directly ascribed to a specific metallurgical transformation. It is the case of the transformation of retained austenite into martensite, causing a general increase in hardness and higher wear resistance. In other cases, however, the increase in wear resistance is not supported by higher hardness and several theories were proposed to explain the observed results. However, poor experimental evidence was reported in the literature for this phenomenon. Specific attention is paid to the influence of subzero treatment just after quenching and solubilization in the vacuum heat treatment or simultaneous pulse plasma nitriding and tempering (PPNT) cycle of the P/M S390MC high speed steel, respectively. Special emphasis was put on resistance to galling and abrasive wear resistance under dry sliding conditions. From obtained results it can be concluded, that the application of deep-cryogenic treatment results in a significantly higher wear resistance of high speed steels, but no significant improvements in fracture toughness have been noticed.
机译:真空热处理,深低温处理和脉冲等离子渗氮是提高工具钢和高速钢性能的有效技术。有时,零度以下处理的影响可能直接归因于特定的冶金转变。在这种情况下,残余奥氏体转变为马氏体,导致硬度普遍增加,耐磨性更高。但是,在其他情况下,较高的硬度不能支持耐磨性的提高,因此提出了几种理论来解释观察到的结果。但是,文献报道了这种现象的实验证据不充分。在P / M S390MC高速钢的真空热处理或同时进行的脉冲等离子氮化和回火(PPNT)循环中,淬火和增溶后立即进行亚零以下处理的影响尤其要引起注意。特别强调在干滑条件下的耐磨损性和耐磨性。从获得的结果可以得出结论,深冷处理的应用导致高速钢的耐磨性明显提高,但断裂韧性没有明显改善。

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