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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Optimal tool shape selection based on surface geometry for three-axis CNC machining
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Optimal tool shape selection based on surface geometry for three-axis CNC machining

机译:基于曲面几何的三轴CNC加工最优刀具形状选择

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摘要

The 3D models of personalized custom products are unique, and to machine each model, a unique tool path is required. The manual generation of the tool paths is not economically viable for the mass production of these products; a viable option is to generate the tool path automatically. The tool paths depend on the tool shape, and an essential part of optimal machining of sculptured surfaces is the selection of the cutter shape. This paper focuses on optimal tool shape selection for the mass production of custom wooden signs. Ball nose and radiused end milling cutters are positioned at a given point along a defined tool path footprint. These tool positions are compared to determine which cutter achieves maximum material removal or surface roughness, i.e., scallop height. The scallops and the material removed are calculated for the cutter at all points along the tool path and are processed in order to determine the best tool or tools for machining the surface. Results show that the surface geometry has a great impact on the type of tool required to machine a surface.
机译:个性化定制产品的3D模型是唯一的,并且要加工每种模型,都需要唯一的刀具路径。对于这些产品的批量生产,手动生成刀具路径在经济上不可行。一个可行的选择是自动生成刀具路径。刀具路径取决于刀具形状,而对雕刻表面进行最佳加工的重要部分是刀具形状的选择。本文着重于批量生产定制木标牌的最佳工具形状选择。球头和倒角立铣刀位于沿定义的刀具轨迹足迹的给定点处。比较这些工具的位置,以确定哪个刀具达到最大的材料去除率或表面粗糙度,即扇贝高度。在刀具沿刀具路径的所有点上计算出扇贝和去除的材料,并对它们进行处理,以确定用于加工表面的最佳刀具。结果表明,表面几何形状对加工表面所需的工具类型有很大影响。

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