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Process and properties of TiC_(0.7)N_(0.3)-based cermet coating deposition on steel by electrospark deposition technique

机译:通过电动扫描技术通过钢的TiC_(0.7)N_(0.3)基于金属陶瓷涂层沉积的过程和性能

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摘要

Electrospark deposition (ESD) method is a promising process to produce hard and wear--resistant coatings on metallic substrates. In this study, ESD has been successfully applied to deposit TiC_(0.7)N_(0.3)-based cermet coatings on steel substrate. It has been possible to obtain a fully dense and strong adherent coating layer with a thickness of 20 urn. The microstructures of the deposited coatings were characterized by X-ray diffraction (XRD) and scanning electron microscopy. In addition, the friction and wear properties of the coatings and substrates were investigated systematically by conducting ball-on-disc sliding wear tests. The experimental results demonstrate that the wear resistance of the steel substrate, which contains a TiCN coating deposited via the ESD process, is noticeably enhanced under the dry sliding wear conditions. In addition, while the microhardness of substrate is 232 HV on average, the microhardness of the coating reaches 870 HV onto the surface.
机译:Electrospart沉积(ESD)方法是在金属基材上生产硬度和耐磨涂层的有希望的方法。 在本研究中,ESD已成功应用于在钢基材上沉积TiC_(0.7)N_(0.3)的基础金属陶瓷涂层。 可以获得具有厚度为20瓮的完全密集和强的粘附涂层。 X射线衍射(XRD)和扫描电子显微镜的特征在于沉积涂层的微观结构。 此外,通过导电盘滑动磨损试验系统地系统地研究涂层和基板的摩擦和磨损性能。 实验结果表明,在干燥滑动磨损条件下,含有沉积的沉积沉积的TiCN涂层的钢基板的耐磨性。 另外,虽然衬底的显微硬度平均为232HV,但涂层的显微硬度达到表面上的870HV。

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