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Estimation of fracture toughness of nitride compound layers on tool steel by application of the Vickers indentation method

机译:应用维氏压痕法估算工具钢上氮化物层的断裂韧性

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Nitriding and nitrocarburizing treatments are established methods of improving the wear performance of tool and die steels. However, our understanding of the relationship between nitriding process parameters, and microstructure and fracture behaviour of the surface layers is far from complete. This paper describes an investigation of the application of Vickers indentation fracture testing to nitrided and nitrocarburized AISI H11 hot work tool steel. Optical microscopy and microhardness testing were used to characterize structure and mechanical properties of the compound and diffusion layers. The results show that, where a sufficiently thick compound layer has formed, this method has the potential to be applied as a pseudo non-destructive method of monitoring the fracture properties of treated surfaces on actual tool parts. However, the validity of the method appears to be a function of the presence and thickness of the compound layer, and possibly the mechanical properties of the diffusion layer, and further work is proposed to establish the sensitivity of the method for fracture toughness calculations. (c) 2005 Elsevier B.V. All rights reserved.
机译:氮化和氮碳共渗处理是改善工具钢和模具钢磨损性能的既定方法。但是,我们对渗氮工艺参数与表面层的微观结构和断裂行为之间关系的理解还远远不够。本文介绍了维氏压痕断裂试验在氮化和碳氮化的AISI H11热作工具钢中的应用研究。使用光学显微镜和显微硬度测试来表征化合物和扩散层的结构和机械性能。结果表明,在已形成足够厚的复合层的情况下,该方法有可能被用作监视实际工具零件上被处理表面的断裂特性的伪无损方法。然而,该方法的有效性似乎取决于复合层的存在和厚度,以及扩散层的机械性能,并且提出了进一步的工作以建立该方法对断裂韧性计算的敏感性。 (c)2005 Elsevier B.V.保留所有权利。

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