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Improvement of Adhesive Wear Behavior by Variable Heat Treatment of a Tool Steel for Sheet Metal Forming

机译:通过对板料成形工具钢进行可变热处理来改善其粘着磨损性能

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Vanadis 10 steel is a powder metallurgy (PM) processed tool steel. It is a ledeburitic steel with 8% Cr and 10% V. By deliberately varying the process parameters related to the quenching, tempering, and nitriding of these steels, the aim of this study is to determine which of these parameters have a significant influence on its adhesive wear resistance. The research methodology employed was a Design of Experiments (DoE) with six factors and two levels for each factor. The tempering temperature, number of temperings, and carrying out of a thermochemical nitriding treatment were found to have a significant effect. To increase adhesive wear resistance, austenitization at 1100 °C with air cooling is recommended, followed by three temperings at 500 °C and a subsequent nitriding treatment. It should be noted that the quench cooling medium does not have a significant influence on wear resistance. Furthermore, (Fe,Cr) 7 C 3 (M 7 C 3 carbides) are transformed into carbonitrides during nitriding. However, (Fe,V)C (MC carbides) are not affected by this nitriding process.
机译:Vanadis 10钢是粉末冶金(PM)处理的工具钢。它是一种含8%Cr和10%V的莱特贝里特体钢。通过有意地改变与这些钢的淬火,回火和氮化有关的工艺参数,本研究的目的是确定这些参数中的哪些对合金产生重大影响。其胶粘剂的耐磨性。所采用的研究方法是实验设计(DoE),其中包含六个因素,每个因素具有两个层次。发现回火温度,回火次数和进行热化学氮化处理具有显著作用。为了提高胶粘剂的耐磨性,建议在1100°C的温度下进行奥氏体化,然后进行空冷,然后在500°C的温度下进行三步回火,然后进行氮化处理。应当指出,淬火冷却介质对耐磨性没有显着影响。此外,在氮化过程中,(Fe,Cr)7 C 3(M 7 C 3碳化物)转变为碳氮化物。但是,(Fe,V)C(MC碳化物)不受此氮化过程的影响。

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