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Development of Wear-resistant Complex for High-speed Steel Tool when Using Process of Combined Cathodic Vacuum Arc Deposition

机译:阴极真空电弧复合沉积工艺高速钢刀具耐磨配合物的研制

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The paper studies the technique for increasing efficiency of high-speed steel tools by forming wear-resistant complexes when using processes of combined cathodic vacuum arc deposition with filtration vapour ion flow. Based on analysis of the causes of premature destruction of standard coatings on high-speed steel tools, provisions were designed to increase the effectiveness of wear-resistant coatings by increasing their operating life till partial or complete destruction. For that purposes, architecture of wear- resistant complex was developed for formation on substrates of high-speed steel. Wear-resistant complex includes thermally stabilizing layer and three-element multi-layered composition nano-dispersion coating, and it can be formed by using the combined process of cathodic vacuum arc deposition with filtration vapour ion flow. The paper presents data on the optimization of the conditions for formation of the wear-resistant complex elements that provide a significant increase in tool life of high-speed steel tool both with continuous and interrupted cutting.
机译:本文研究了在结合阴极真空电弧沉积和过滤蒸汽离子流的过程中通过形成耐磨配合物来提高高速钢工具效率的技术。在对高速钢工具上标准涂层过早破坏的原因进行分析的基础上,制定了相应的规定,旨在通过延长使用寿命直至部分或完全破坏耐磨涂层来提高其有效性。为了这个目的,开发了用于在高速钢的基底上形成的耐磨复合物的体系结构。耐磨复合物包括热稳定层和三元多层组合物纳米分散涂层,可以通过阴极真空电弧沉积与过滤蒸汽离子流的组合工艺形成。本文介绍了有关优化耐磨复合元件形成条件的数据,这些数据可显着提高连续切削和间断切削的高速钢刀具的刀具寿命。

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