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Adaptive Spiral Tool Path Generation for Diamond Turning of Large Aperture Freeform Optics

机译:大孔径自由曲面光学系统中金刚石车削的自适应螺旋刀具路径生成

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摘要

Slow tool servo (STS) diamond turning is a well-developed technique for freeform optics machining. Due to low machining efficiency, fluctuations in side-feeding motion and redundant control points for large aperture optics, this paper reports a novel adaptive tool path generation (ATPG) for STS diamond turning. In ATPG, the sampling intervals both in feeding and cutting direction are independently controlled according to interpolation error and cutting residual tolerance. A smooth curve is approximated to the side-feeding motion for reducing the fluctuations in feeding direction. Comparison of surface generation of typical freeform surfaces with ATPG and commercial software DiffSys is conducted both theoretically and experimentally. The result demonstrates that the ATPG can effectively reduce the volume of control points, decrease the vibration of side-feeding motion and improve machining efficiency while surface quality is well maintained for large aperture freeform optics.
机译:慢刀伺服(STS)金刚石车削是一种用于自由曲面光学加工的先进技术。由于加工效率低,侧进给运动的波动以及大光圈光学器件的冗余控制点,本文报道了一种用于STS金刚石车削的新型自适应刀具路径生成(ATPG)。在ATPG中,进给和切削方向的采样间隔均根据插补误差和切削残余公差独立控制。平滑的曲线近似于侧进给运动,以减少进给方向的波动。在理论上和实验上,都使用ATPG和商业软件DiffSys对典型自由曲面的表面生成进行了比较。结果表明,ATPG可以有效减少控制点的数量,减少侧进给运动的振动并提高加工效率,同时大口径自由曲面光学器件的表面质量得到很好的保持。

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