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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Development of wear-resistant coatings compounds for high-speed steel tool using a combined cathodic vacuum arc deposition
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Development of wear-resistant coatings compounds for high-speed steel tool using a combined cathodic vacuum arc deposition

机译:利用阴极真空电弧沉积技术开发用于高速钢工具的耐磨涂料

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摘要

This article presents the work on wear-resistance coatings (WRC), formed on the working surfaces of HSS tools, in order to increase their efficiency. The wear-resistant complex includes nitride layer, which increases the plastic strength of the HSS tool cutting wedge and cutting tool wear resistance, as well as a three-layer nano-structured composite coating that increases tool life. The equipment for the processes of ion nitriding in the gas plasma and the formation of nanostructured multi-layer composite coatings in the filtered metalgas plasma cathode vacuum arc discharge has been developed. Particular attention was paid to the regularities in the formation of the nitride layer and optimization of its parameters and structure, together with the study of the properties and structure of functional coating layers, depending on the parameters of the deposition process. The parameters of the combined cathodic vacuum arc processing (CCVAP), provides minimum intensity of tool wear during the cutting tests. Sample of coated tools were used to conduct a certification of the developed WRC. This allowed determining the optimal parameters WRC that provided the maximum increase in tool life for a variety of cutting conditions. The outcomes are compared with uncoated HSS tool and standard commercial coatings.
机译:本文介绍了在高速钢工具的工作表面上形成的耐磨涂层(WRC)的工作,以提高其效率。耐磨复合物包括氮化物层(可增加HSS工具切削楔的塑性强度和切削工具的耐磨性)以及三层纳米结构复合涂层,可延长工具寿命。开发了用于气体等离子体中离子氮化和在过滤后的金属气体等离子体阴极真空电弧放电中形成纳米结构多层复合涂层的设备。根据沉积工艺的参数,特别注意氮化物层的形成规律,氮化物层的参数和结构的优化以及功能涂层的特性和结构的研究。组合阴极真空电弧处理(CCVAP)的参数可在切削测试期间提供最小的刀具磨损强度。涂层工具样品用于对已开发的WRC进行认证。这样就可以确定最佳参数WRC,该参数可以在各种切削条件下最大程度地延长刀具寿命。将结果与未涂层的HSS工具和标准的商用涂层进行比较。

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