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首页> 外文期刊>International Journal of Computer Applications in Technology >A composite B-spline method for cutter path generation on free-form surfaces
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A composite B-spline method for cutter path generation on free-form surfaces

机译:在自由曲面上生成刀具路径的复合B样条方法

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This paper presents a composite B-spline method for cutter path generation on free-form surfaces on a point-by-point basis, with appropriate radial offset and interference checking along the cutter path. It is aimed at developing a more efficient and accurate free-form surface machining method for an open-architecture CNC system with B-spline interpolation capability. In this method, the cutter paths over the free-form surface are composed of a sequence of B-spline segments. The length of each spline segment is determined by the desired deviation, within some given tolerance, from the curve of the surface over which the cutter path is to be generated. If the spline segment does not satisfy the specified dimensional tolerance, control points of the spline segment are adjusted to modify the curve shape according to the required accuracy. As a result, the deviation between the actual cutter paths and the desired surface curves will always fall within the allowable tolerance. In addition, by adjusting the position of the control points, the adjacent spline segments are made at least C{sup}1 geometrically continuous. The distance between adjacent cutter paths in the side step direction is determined by checking the scallop height between them. To make the cutting process more efficient, a modified adaptive iso-parametric curve generation approach is employed. The resulting cutter paths are more compact and accurate compared with those from commonly used cutter path generation techniques.
机译:本文提出了一种复合的B样条方法,用于逐点在自由曲面上生成刀具路径,并在刀具路径上进行适当的径向偏移和干涉检查。目的是为具有B样条插值功能的开放式结构CNC系统开发一种更有效,更准确的自由曲面加工方法。在这种方法中,自由曲面上的刀具路径由一系列B样条段组成。每个花键段的长度由在一定给定公差内与要在其上生成刀具路径的表面曲线的所需偏差确定。如果样条线段不满足指定的尺寸公差,则根据所需的精度调整样条线段的控制点以修改曲线形状。结果,实际刀具路径和所需表面曲线之间的偏差将始终落在允许公差内。另外,通过调节控制点的位置,相邻的样条段至少在几何上连续为C {sup} 1。通过检查相邻切刀路径之间的扇贝高度,可以确定相邻切刀路径之间在侧步方向上的距离。为了使切割过程更有效率,采用了一种改进的自适应等参曲线生成方法。与通常使用的刀具路径生成技术相比,生成的刀具路径更加紧凑和准确。

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