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Wear Characterization of Cemented Carbide Multipoint Cutting Tool Machining AISI 4140 at High Cutting Speed: Criteria for Materials Selection

机译:高速切削AISI 4140的硬质合金多点切削刀具的磨损特性:材料选择标准

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The subject covered in this paper concerns the development of an innovative PVD coated multipoint cutting tool with cemented carbide brazed inserts for high-speed cutting of ferrous alloys. The aim of the research was to optimize the properties of the constituent materials in order to maximize their durability and provide a constant level of surface finishing of the machined parts. The results concerning the selection of the best cemented carbide grade for high-speed cutting application are presented in this work; both mixed and plain grades were considered. The optimal grade of cemented carbide was chosen by comparing microstructural and mechanical properties such as hardness and toughness with wear resistance in sliding condition against AISI 4140 pins on a pin on disc tribometer. After a proper design of the optimal tool geometry, tools were tested on a CNC milling machine and tool wear was characterized by optical and electronic microscopy.
机译:本文涵盖的主题涉及开发一种创新的PVD涂层多点切削刀具,该刀具具有用于硬质合金高速切削的硬质合金钎焊刀片。该研究的目的是优化组成材料的性能,以使其耐用性最大化并提供加工零件恒定的表面光洁度。这项工作提出了有关为高速切削应用选择最佳硬质合金等级的结果。混合等级和普通等级都考虑在内。通过比较盘式摩擦计销上的AISI 4140销的微观结构和机械性能(例如硬度和韧性以及在滑动条件下的耐磨性)来选择最佳的硬质合金等级。在对最佳刀具几何形状进行适当设计之后,在CNC铣床上对刀具进行了测试,并通过光学和电子显微镜对刀具的磨损进行了表征。

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