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An Investigation on the Usefulness and Performance of New Hot Working Tool Steel by Nitrocarburizing Process

机译:氮碳共渗工艺对新型热作工具钢有用性和性能的研究

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Salt bath nitrocarburizing effects on usefulness and performance of a new grade hot working tool steel close to as either chromium AISI H11/H13 are investigated. A continuous two-step treatment is performed, consisting in hardening sequence (i.e. austenization-1050°/15 min, quenching-oil medium and twice tempering-500 and 600°C/2 h) followed by a salt bath nitrocarburizing process at 580°C for various processing times. Prior treatments yield a reliable tempered martensitic microstructure without bainite, in which are embedded complex carbides without any retained austenite content, achieving satisfactory hardness value of 53HRC. Subsequent thermochemical treatments allow relative relevant properties such as surface hardness and wear behavior through formed layers that are characterized by their basic properties (i.e. thickness, formed phases, hardness distributions and redistribution of alloying elements in the nitrocarburized layers). Based on in-house experimental data, it can be outlined that salt bath nitrocarburizing process is suitable for improving surfaces characteristics of the as-studied treated material, in a shorter time with minimal cost compared to other similar processes. Metallurgical evaluations are carried out using metallographic techniques, optical and scanning electron microscopy equipped with an energy-dispersive X-Ray spectrometer as well as X-ray diffraction techniques. Mechanical properties are achieved mainly by standard hardness and wear tests. [DOI: 10.1380/ejssnt.2012.1]
机译:研究了盐浴氮碳共渗对一种新型热加工工具钢的效用和性能的影响,接近于任一铬AISI H11 / H13。进行连续的两步处理,包括硬化顺序(即奥氏体化-1050°/ 15分钟,淬火油介质并两次回火-500和600°C / 2 h),然后在580°下进行盐浴氮碳共渗过程C用于各种处理时间。先前的处理产生了可靠的回火马氏体组织,没有贝氏体,其中嵌入了复杂的碳化物,没有任何残留的奥氏体含量,达到了53HRC的令人满意的硬度值。随后的热化学处理允许相对相关的性质,例如通过形成的层的表面硬度和磨损行为,其特征在于它们的基本性质(即,厚度,形成的相,硬度分布和在氮碳共渗层中合金元素的重新分布)。根据内部实验数据,可以概述与其他类似工艺相比,盐浴氮碳共渗工艺适合于以较短的时间和最低的成本改善所研究材料的表面特性。冶金评估是使用金相技术,配备有能量色散X射线光谱仪的光学和扫描电子显微镜以及X射线衍射技术进行的。机械性能主要通过标准的硬度和磨损测试来实现。 [DOI:10.1380 / ejssnt.2012.1]

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