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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Tool path generation by offsetting curves on polyhedral surfaces based on mesh flattening
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Tool path generation by offsetting curves on polyhedral surfaces based on mesh flattening

机译:通过基于网格平整度在多面曲面上偏移曲线来生成刀具路径

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摘要

Polyhedral surfaces are used as representation model for CAM and process planning purposes because of its simplicity for data exchange and geometric computation. However, there are few tool path planning strategies for such surfaces but isoplanar method. This paper presents a contour offset approach to tool path generation for three-axis ball-end milling of polyhedral surfaces, based on a novel method for offsetting curves on polyhedral surfaces. One of its salient features is to reduce the task of removing complex interfering of offsets from 3D physical surfaces to 2D plane by flattening mesh surfaces and avoid costly 3D Boolean set operations and relatively expensive distance calculation. Moreover, in practical implement, the procedures of calculating offset points and removing interfering loops are merged and carried out simultaneously results in an efficient tool path generation method. Empirical examples illustrate the feasibility of the proposed method.
机译:多面曲面由于用于数据交换和几何计算的简单性而被用作CAM和过程规划目的的表示模型。但是,很少有针对此类曲面的刀具路径规划策略,而是等平面方法。本文提出了一种用于多面体表面三轴球头铣削刀具轮廓生成的轮廓偏移方法,该方法基于一种在多面体表面上偏移曲线的新方法。它的显着特征之一是减少了通过使网格表面变平来消除从3D物理表面到2D平面的偏移的复杂干扰的任务,并避免了昂贵的3D布尔集运算和相对昂贵的距离计算。此外,在实际实施中,合并偏移点和消除干扰环的过程并同时进行,从而产生了一种有效的刀具路径生成方法。经验例子说明了该方法的可行性。

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