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Geometric deviations of ground micro-milling tools and their influences on the cutting performance

机译:地面微型铣削工具的几何偏差及其对切割性能的影响

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For micro-milling tools with decreasing diameter D < 0.5 mm the requirements for the manufacturing rise up and the risk of geometrical deviations of the cutting edges increase. In this investigation industrial produced micro-milling tools with a diameter of D = 0.2 mm made of cemented carbide were analysed. Micro-milling tools with variable macro geometry were selected and used for the machining of mould steel. The influence of the geometrical deviations on the wear behaviour and the surface roughness of the machined steel were examined. It is shown that the variable tool geometry lead to wear of the minor cutting edges S'. Furthermore, an influence on the surface roughness of the machined workpiece is determined.
机译:对于直径减小的微型铣削工具,D <0.5 mm的制造上升的要求和切削刃的几何偏差的风险增加。在本研究中,分析了工业生产的微铣刀,其直径为D = 0.2mm的碳化物碳化物制成。选择具有可变宏观几何的微铣刀,并用于模具钢的加工。研究了几何偏差对机加工钢的磨损行为和表面粗糙度的影响。结果表明,可变刀具几何形状导致小切削刃S'的磨损。此外,确定对加工工件的表面粗糙度的影响。

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