A Tool Tilt Angle Calculation Method in 5-axis Flat-end Milling for Free Surface Machining

Gyong Wal Jang, N. Yu, Hyon Chol Hwang, Guan Sik Jang, Tae Jin Bang
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Abstract

This paper proposes a method for calculating the tilt angle of the tool and the machining strip width when the tool is inclined to the feed direction. Tilt angle of the tool and machining strip width are important factors which affect feed rate and machining quality in five-axis flat-end milling for free surface. There are some methods to calculate the tilt angle of the tool in five-axis flat-end milling for free surface, but mathematically complicated algorithm is applied to the calculation of tilt angle of the tool, so it is difficult to apply it in practice. We considered the geometry of the surface and the tool as well as the scallop height to determine the tool tilt angle, thus ensuring the tool to be contacted with the surface at two points. This allows us to calculate the tool tilt angle and the machining strip width by solving quadric equations based on the contact circle. Moreover, tool tilt angle and machining strip width are calculated analytically. Thus the speed of calculation is quick and easy to implement. An experiment of machining on the biquantic B-spline surface was performed and the results show that the proposed method has considerably higher machining efficiency than the CMM.
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自由曲面五轴平端铣削刀具倾角计算方法
提出了一种计算刀具倾斜进给方向时刀具倾斜角和加工带钢宽度的方法。自由曲面五轴平头铣削时,刀具倾角和加工带宽度是影响进给速度和加工质量的重要因素。自由曲面五轴平端面铣削中刀具倾斜角的计算已有一些方法,但刀具倾斜角的计算采用了数学上较为复杂的算法,难以在实际中应用。我们考虑了表面和刀具的几何形状以及扇形高度来确定刀具倾斜角度,从而确保刀具在两点上与表面接触。这使我们能够通过求解基于接触圆的二次方程来计算刀具倾角和加工带宽度。并对刀具倾角和加工带宽进行了解析计算。因此,计算速度快,易于实现。在双量b样条曲面上进行了加工实验,结果表明该方法的加工效率明显高于三坐标测量机。
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