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An optimization strategy for 5-axis high-speed milling prostheses based on STL modeling

机译:基于STL建模的5轴高速铣削假体的优化策略

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Aiming at the linear-interpolation shortage of tangency discontinuities and too many interpolation-points along tool paths, an optimization strategy of tool path is presented for 5-axis high speed machining prostheses based on stereo lithography modeling. In the strategy, unnecessary interpolation points are removed, consequently all the tool paths are simplified; the surface of envelope cutter orientation is smoothed adopting the advantages of ruled surface; a new method that G-codes generated by linear-interpolation are transformed into Spline-codes is put forward to support spline-interpolation CNC system. On the basis of the strategy, molar crown prostheses are correctly and rapidly manufactured in Mikron UCP800 machine tool. The test results show that the profits of the optimization strategy concern the reduction of machining time as well as the quality of the machined parts compared to those of linear-interpolation. Indeed, the tool-path continuity avoids the appearance of marks and facets.
机译:针对相切不连续性的线性插补不足以及沿刀具路径的插补点过多的问题,提出了一种基于立体光刻建模的五轴高速加工假体刀具路径的优化策略。在该策略中,消除了不必要的插补点,因此简化了所有刀具路径。利用直纹表面的优点使信封切纸器的方向表面变得平滑。提出了一种将线性插值生成的G代码转换为样条代码的新方法,以支持样条插值数控系统。根据该策略,可以在Mikron UCP800机床上正确,快速地制造磨牙冠假体。测试结果表明,与线性插值方法相比,优化策略的收益与缩短加工时间以及降低零件质量有关。实际上,刀具路径的连续性可以避免出现痕迹和刻面。

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