Industrial application of micro geometrical cutting edge optimization for solid carbide boring tools

Tofana Vasile Gabriel, M. Popa, S. Sattel, Marius Bozga
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Abstract

This paper aims to establish the mechanism of quality optimization and geometrical improvements for the micro-geometry of solid carbide drills. The purpose of micro-geometrical optimization of the cutting edge tools of drills is to improve tool live, cutting speeds and minimizing cutting forces. The most important geometrical feature when drilling with solid carbide drills is the radius or chamfer of the cutting edge, which can be achieved through brushing under a certain angle. Improving this procedure by adding another step, soft granulated polishing, can positively influence on the cutting parameters and decrease the wear effects.
固体硬质合金镗刀微几何刃口优化的工业应用
本文旨在建立整体硬质合金钻头微观几何结构的质量优化和几何改进机理。钻头刃口刀具微观几何优化的目的是提高刀具寿命、提高切削速度和减小切削力。用整体硬质合金钻头钻孔时最重要的几何特征是切削刃的半径或倒角,这可以通过一定角度下的刷削来实现。通过增加软颗粒抛光来改进这一工艺,可以对切削参数产生积极影响,降低磨损效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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