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The Design of Free Surface Interpolator for CNC Machining

机译:数控加工自由表面插补器的设计

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This article provides a design for the real-time interpolator of the B-Spline free surface. The goal is to increase both the accuracy and the speed of manufacturing production by eliminating the bottleneck caused by the off-line interpolator of the CNC tool machines, by reducing manufacturing errors, and by resolving the issue of long numeric' control code (NC code). The design of the surface interpolator includes location planning using the real-time cutter contact data, the interpolation of the cutter contact data, and the cutting compensation of the cutter location data. This paper provides a surface interpolation method for reading the surface NC code of a three-dimensional surface and for implementing the surface interpolation. To simplify the complexity of the calculation, one can first use knot interpolation to decompose the B-Spline surface into sections of Bezier surface, which are then used as the surface for real-time surface interpolation. Subsequently, the approximation of the second order Taylor expansion is used to obtain the location interpolation points. Fixed machining parameters are adopted to avoid the low efficiency and low quality of manufacturing caused by variation of the feeding speed. The derived cutting locations are further combined to obtain the cutting locations of the original B-Spline surface. The verification of the experiments is shown with comparing the manufacturing profile errors and any variation of the feeding speed derived from computer simulation and the corresponding data obtained from the off-line interpolators.
机译:本文为B样条自由曲面的实时插值器提供了一种设计。目标是通过消除由CNC工具机的离线插补器引起的瓶颈,减少制造错误并解决长数字控制代码(NC代码)的问题,从而提高制造精度和生产速度。 )。表面插值器的设计包括使用实时刀具接触数据进行位置规划,刀具接触数据的插值以及刀具位置数据的切削补偿。本文提供了一种表面插值方法,用于读取三维表面的表面NC代码并实现表面插值。为了简化计算的复杂性,可以首先使用结插值法将B样条曲面分解为Bezier曲面的部分,然后将其用作实时曲面插值的曲面。随后,使用二阶泰勒展开式的近似值来获得位置插值点。采用固定的加工参数以避免由于进给速度的变化而导致的低效率和低质量。进一步合并派生的切割位置,以获得原始B样条曲面的切割位置。通过比较制造轮廓误差和从计算机仿真得出的进给速度的任何变化以及从离​​线插值器获得的相应数据,可以显示对实验的验证。

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