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Improvement of cutting performance for carbide tools via chlorine ion implantation

机译:通过氯离子植入改善碳化物工具的切割性能

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Recent demand for reduction of environmental burdens requires minimum use of lubricant oils even in machining the automotive parts. In order to put this dry machining into practice, the tribological properties of cutting tools must be significantly improved. The self-lubrication has been proposed for TiN coating films on the high-speed tool steel via the chlorine ion implantation. Since the implanted chlorine works as a catalyst for surface reaction from TiN to TiOx (1QxQ2) in the wear track, the wear volume, as well as the friction coefficient, is significantly reduced by successive formation of lubricious oxides, i.e. TiOx. In the present paper, a turning test is employed to investigate the effect of this chlorine implantation on the cutting performance of various carbide tools. The cutting performance is compared among three tools: carbide tools without coating, TiN- or TiCN-coated carbide tools and Cl-implanted carbide tools with or without TiCN coating. Direct measurement of cutting forces reveals that the friction coefficient and wear are significantly reduced when using the Cl-implanted tools. In addition, adhesive wear is suppressed by using this Cl-implanted cutting tool, so that high-speed machining could be conducted up to a cutting speed of 500 m/min.
机译:最近对减少环境负担的需求,即使在加工汽车部件时也需要最低使用润滑油。为了使这种干加工成实践,必须显着改善切割工具的摩擦学性质。通过氯离子注入,已经提出了自润滑的高速刀钢上的锡涂膜。由于植入氯作为从耐磨轨道中的表面反应(1QxQ2)的表面反应的催化剂,因此通过连续形成润滑氧化物,即TiOx,磨损体积以及摩擦系数显着降低。在本文中,采用转动试验来研究这种氯植入对各种碳化物工具的切割性能的影响。在三种工具中比较了切割性能:碳化物工具,无涂层,镀锡或涂层碳化物工具和具有或不具有TiCN涂层的Cl注入的硬质合金工具。直接测量切割力揭示了使用CL型工具时显着降低的摩擦系数和磨损。另外,通过使用该CL型切割工具抑制粘合磨损,使得可以将高速加工达到500m / min的切削速度。

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