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A finishing cutter selection algorithm for additive/subtractive rapid pattern manufacturing

机译:加法/减法快速图案制造的精加工刀具选择算法

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摘要

The additive/subtractive rapid pattern manufacturing (RPM) process sequentially deposits thick material slabs and then machines them into desired geometries in a layer-by-layer manner. Although most rapid manufacturing systems mainly intend to increase flexibility in manufacturing rather than to reduce processing speed, it is still practical to choose the optimized sets of cutters and machining parameters specifically for each layer to improve both the machining quality and efficiency. This paper presents an algorithm to automatically select finishing cutter geometry, diameter, and calculate machining parameters for the RPM process. Inputs to this algorithm are StereoLithography file from a computer-aided design model and a cutter library. Finishing cutter selection is based on geometry accessibility and machining process efficiency analysis. The algorithm has been implemented in RPM automatic process planning software and the experimental result on a sample part is presented to show the efficacy of this algorithm.
机译:加法/减法快速图案制造(RPM)工艺顺序沉积厚的材料板,然后以逐层方式将它们加工成所需的几何形状。尽管大多数快速制造系统主要是为了提高制造灵活性而不是降低加工速度,但为每个层专门选择优化的刀具和加工参数集以提高加工质量和效率仍然是可行的。本文提出了一种算法,可以自动选择精加工刀具的几何形状,直径并计算RPM加工的加工参数。该算法的输入是来自计算机辅助设计模型和切割器库的StereoLithography文件。精加工刀具的选择基于几何可及性和加工过程效率分析。该算法已在RPM自动过程计划软件中实现,并在样本部分上给出了实验结果,以证明该算法的有效性。

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