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Experimental Study on Micro-Machinability of Hardened Tool Steel in Profile Micro-Milling

机译:型材微铣削钢化刀钢微型加工性的试验研究

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Components miniaturization in industry leads to intensive research and development of efficient micro-technologies through research of different production processes, machines and tools. This paper presents experimental research on machinability of inclined surfaces on hardened steel workpieces with long-neck micro-end-ball mills. Workpiece is hardened AISI D2 tool steel (X155CrVMo-5). Micro-parts of this material is usually produced by non-conventional technologies such as electro-discharge machining (EDM) and laser beam machining (LBM), that allows machining of 2D or simple 3D structures. The effects of geometrical and cutting parameters on output machinability parameters in ball micro-milling were evaluated. Analysis of tool deflection, surface roughness and tool wear was performed, in order to obtain the recommended cutting parameters for more precise, accurate and quality of micro-parts.
机译:通过对不同的生产工艺,机器和工具的研究,工业中的组件小型化导致高效微型技术的集约化研发。本文介绍了长颈部微末端球磨机硬化钢工件上倾斜表面的可加工性的实验研究。工件硬化AISI D2工具钢(X155CRVMO-5)。该材料的微零件通常由诸如电放电加工(EDM)和激光束加工(LBM)的非传统技术产生,其允许加工2D或简单的3D结构。评估了几何和切削参数对球微铣刀输出可加工性参数的影响。进行刀具偏转,表面粗糙度和工具磨损的分析,以获得推荐的切削参数,以获得更精确,准确和微零件的质量。

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