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Tri-Dexel Model Based Geometric Simulation of Multi-axis Additive Manufacturing

机译:基于Tri-Dexel模型的多轴增材制造几何仿真

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摘要

This paper presents a novel geometric simulation technique for multi-axis Additive Manufacturing (AM). In the proposed methodology, additive swept volume elements, which are represented with Tri-dexel models, are formulated for updating the virtual additive material. Triangular meshes are extracted from the Tri-dexel models using Marching Cube Algorithm for visualization. With the proposed methodology, either three-axis or five-axis AM tool paths of sculpture surfaces can be simulated before actually manufactured. Workpieces after additive manufacturing can be used as blanks for further Subtractive Manufac-turing(SM). We developed a geometric simulation software based on the multi-axis AM simulation algorithm, and we carried out an actual three-axis AM experiment to compare with the simulation results. Computer implementation and practical example demonstrate the feasibility of the proposed multi-axis AM simulation method.
机译:本文提出了一种用于多轴增材制造(AM)的新颖几何仿真技术。在所提出的方法中,用Tri-dexel模型表示的添加剂清扫体积元素被公式化以更新虚拟添加剂材料。使用Marching Cube算法从Tri-dexel模型中提取三角形网格以进行可视化。利用所提出的方法,可以在实际制造之前模拟雕塑表面的三轴或五轴AM刀具路径。增材制造后的工件可用作进一步的减法制造(SM)的毛坯。我们开发了基于多轴AM仿真算法的几何仿真软件,并进行了实际的三轴AM实验以与仿真结果进行比较。计算机实现和实例验证了所提出的多轴AM仿真方法的可行性。

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