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AN AUTOMATED AND OPTIMAL TOOL PATH PLANNING SYSTEM FOR THE 31/21/2-AXIS CNC MACHINING OF SCULPTURED PARTS

机译:用于31 / 21/2轴CNC加工的自动化和最佳刀具路径规划系统雕刻件的加工

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摘要

Some sculptured parts with complex free-form surfaces usually require expensive 5-axis CNC machining. In this work, a cost-effective and practical solution to the 5-axis sculptured part machining - 31/21/2-axis CNC machining scheme - is discussed. An automatic and optimal tool path planning system for 31/21/2-axis CNC machining is introduced. The system uses fuzzy pattern recognition method and Voronoi diagram to subdivide a complex sculptured surface into an optimal number of uniform surface patches, finds the optimal cutter/part orientation for each surface patch, and plans 3-axis CNC tool paths for them. This type of machining is carried out by rotating the part to the cutter/part orientations discretely and sequentially using a tilt-rotary table attached to the 3-axis CNC machine. Under each orientation, the corresponding surface patch is machined using the 3-axis CNC tool paths. This tool path planning system can automatically generate efficient tool paths for sculptured parts and make the 31/21/1-axis CNC machining scheme as an applicable alternative of 5-axis CNC machining method.
机译:具有复杂自由形状表面的一些雕刻部件通常需要昂贵的5轴CNC加工。在这项工作中,讨论了5轴雕刻部件加工 - 31 / 21/2轴CNC加工方案的经济有效和实用的解决方案。引入了用于31 / 21/2轴CNC加工的自动和最佳的刀具路径规划系统。系统使用模糊模式识别方法和Voronoi图来将复杂的雕刻表面细分为最佳数量的均匀表面贴片,找到每个表面贴片的最佳刀具/部分取向,并为它们提供3轴CNC刀具路径。通过在使用附接到3轴CNC机器的倾斜旋转台旋转和顺序地旋转刀具/部分取向来执行这种类型的加工。在每个方向下,使用3轴CNC刀具路径加工相应的表面贴片。该工具路径规划系统可以自动为雕刻部件产生有效的刀具路径,并使31/21/1轴CNC加工方案作为5轴CNC加工方法的适用替代。

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