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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Practical and reliable carbide drill grinding methods based on a five-axis CNC grinder
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Practical and reliable carbide drill grinding methods based on a five-axis CNC grinder

机译:基于五轴数控磨床的实用而可靠的硬质合金钻头磨削方法

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摘要

The carbide drill is an important hole-machining tool. Modern processing solutions set higher requirements for the accuracy and efficiency of carbide drill manufacturing. This paper presents a detailed study of mathematical models of the spiral groove, conical flank, and cutter clearance and proposes three practical and reliable grinding methods using only one standard straight wheel. The spiral groove is ground by controlling three crucial structure parameters: the spiral angle, core diameter, and rake angle. The conical flank is ground by controlling the relief angle, chisel edge angle, and apex angle. The cutter clearance is ground by controlling the ridge width and clearance depth. With these schemes, the wheel position parameters can be computed conveniently and quickly using computer programming, overcoming the low calculation accuracy of empirical formulae and thereby enhancing the efficiency. Using the wheel position parameters, the NC codes applicable to five-axis CNC grinders can be obtained. Furthermore, the reliability of the proposed grinding methods can be verified through CAD simulation and practical manufacture on a five-axis CNC grinder.
机译:硬质合金钻头是重要的孔加工工具。现代加工解决方案对硬质合金钻头制造的精度和效率提出了更高的要求。本文详细介绍了螺旋槽,圆锥形侧面和刀具间隙的数学模型,并提出了仅使用一个标准直轮的三种实用且可靠的磨削方法。通过控制三个关键结构参数可以磨削螺旋槽:螺旋角,铁心直径和前角。通过控制后角,凿边角和顶角来磨削圆锥形侧面。切刀间隙通过控制凸脊宽度和间隙深度来磨削。利用这些方案,可以使用计算机程序方便且快速地计算车轮位置参数,从而克服了经验公式的低计算精度,从而提高了效率。使用砂轮位置参数,可以获得适用于五轴CNC磨床的NC代码。此外,可以通过CAD模拟和五轴CNC磨床的实际制造来验证所提出的磨削方法的可靠性。

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