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A topological hierarchy-based approach to layered manufacturing of functionally graded multi-material objects

机译:基于拓扑层次的方法,用于分层制造功能梯度的多材料对象

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摘要

This paper presents an approach based on topological hierarchy to representation and subsequent fabrication of functionally graded multi-material (FGM) objects by layered manufacturing. The approach represents an FGM object by material control functions and discretisation of slice contours. Based on the topological hierarchy of slice contours, material control functions are associated with contour families of some representative layers across the X-Y plane and along the Z-plane. The material composition at any location is calculated from the control functions, and the slice contours are discretised into sub-regions of constant material composition. The discretisation resolution can be varied to suit display and fabrication requirements. In comparison with pixel- or voxel-based representation schemes, this approach is computationally efficient, requires little memory, and facilitates fabrication of large and complex objects, which can be assemblies of FGM and discrete materials. The proposed approach has been incorporated with a virtual prototyping system to provide a practical and effective tool for processing FGM objects. © 2009.
机译:本文提出了一种基于拓扑层次结构的方法,用于通过分层制造来表示和随后制造功能渐变的多材料(FGM)对象。该方法通过材料控制功能和切片轮廓的离散化来表示FGM对象。基于切片轮廓的拓扑层次,将材料控制功能与X-Y平面上和Z平面上的某些代表性层的轮廓族相关联。根据控制函数可以计算出任意位置的材料成分,并将切片轮廓离散为恒定材料成分的子区域。离散分辨率可以变化以适合显示和制造要求。与基于像素或基于体素的表示方案相比,此方法在计算上有效,需要很少的内存,并且便于制造大型复杂对象,这些对象可以是FGM和离散材料的组合。所提出的方法已经与虚拟原型系统结合在一起,以提供一种实用有效的工具来处理FGM对象。 ©2009。

著录项

  • 作者

    Choi SH; Cheung HH;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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