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Surface Characteristics Analysis of Gas Carburized New Hot Working Tool Steel

机译:气体渗碳新型热作工具钢的表面特性分析

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摘要

Gaseous carburizing effects on improvement of performance of a new grade hot working tool steel close to as either chromium AISI H11/H13 are investigated.Such treatments are performed at 930°C for various processing times.Formed layers that are characterized by their basic properties (i.e.thickness, depth, formed phases, hardness distributions, carbon/carbides distributions and redistribution of alloys in the carburized layers) show a close dependence of both time-temperature process and chemical composition of material.Test results indicate that retained austenite amount act to improve significantly the wear resistance of components despite their relatively lower hardness.In addition, it is addressed that performance and productivity of the as-new material could be extensively enhanced when the above treatment is used.Metallurgical evaluations are carried out using metallographic techniques, optical, scanning electron microscopy equipped with an energy-dispersive X-Ray spectrometer and X-ray diffraction techniques.Mechanical properties are achieved mainly by standard hardness and wear tests.
机译:研究了气态渗碳对新型热加工工具钢性能的影响,该热加工工具钢的硬度接近于AISI H11 / H13铬。在930°C下进行了各种处理时间的处理。渗碳层中合金的厚度,深度,形成相,硬度分布,碳/碳化物分布和合金的重新分布都与时间-温度过程和材料的化学组成密切相关。测试结果表明,残余奥氏体量起着改善作用。尽管它们的硬度相对较低,但仍显着提高了部件的耐磨性。此外,已解决的是,使用上述处理方法可以大大提高新材料的性能和生产率。冶金分析是使用金相技术,光学技术,配有能量色散X射线光谱仪的扫描电子显微镜和d X射线衍射技术。机械性能主要通过标准的硬度和磨损测试来实现。

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