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Fractal raster tool paths for layered manufacturing of porous objects

机译:分形栅格工具路径,用于分层制造多孔物体

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摘要

The present work describes an approach for layered manufacturing (LM) of porous objects using an appropriate modelling scheme, a pre-processing algorithm for slicing and a raster tool path generation based on the porosity information. Initially an overall framework of modelling and data transfer that includes controlled porosity information apart from the external geometry of porous objects and its transfer for LM is presented. A novel raster path generation methodology using space-filling fractal curves for LM of porous models is presented later. Specifically, the geometry and space-filling characteristics of fractal curves are studied for application to raster tool path generation in LM. Finally, boundary-constrained raster patterns are generated based on the surface geometry. The resulting data can be translated into a machine language file that can be imported by an LM system. Case studies are presented to illustrate the efficacy of this approach.
机译:本工作描述了一种使用适当的建模方案对多孔物体进行分层制造(LM)的方法,用于切片的预处理算法以及基于孔隙率信息生成栅格工具路径的方法。最初,提出了一个建模和数据传输的总体框架,该框架包括除多孔物体的外部几何形状及其对LM的传递之外的受控孔隙率信息。稍后将提出一种使用空间填充分形曲线求解多孔模型LM的新颖光栅路径生成方法。具体来说,研究了分形曲线的几何形状和空间填充特性,以将其应用于LM中的栅格工具路径生成。最后,基于表面几何形状生成边界约束的光栅图案。可以将结果数据转换成可以由LM系统导入的机器语言文件。案例研究表明了这种方法的有效性。

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