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Geometric algorithms for rapidly reconfigurable mold manufacturing of free-form objects

机译:几何算法可快速重构自由形状物体的模具

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This paper presents geometric algorithms for developing a re-configurable tooling system for fabrication of freeform objects. The proposed method involves a mold block, with n faces, in which the mold cavity is formed by moving a set of discrete pins on each face of the block. The part surfaces are approximated in the mold cavity using the pins from the suitable mold block faces. The geometric algorithms detailed in this paper analyze the part and determine the face of mold block from which the part model is approximated best. Further, the algorithms detect possible interference between pins from different faces, and suitably alter the approximating face to alleviate interferences. By moving these pins in and out of the mold block, the shape of the mold cavity is reconfigured rapidly to suit the changes in part geometry. Since, the proposed method approximates free-form objects with discrete pins, a surface-error calculation method is also developed to control the accuracy. Computer implementation and examples are also presented in this paper.
机译:本文介绍了用于开发可重构工具系统以制造自由形状对象的几何算法。所提出的方法涉及具有n个面的模具块,其中通过在模具块的每个面上移动一组离散的销来形成模具型腔。使用合适的模块表面上的销钉在型腔中近似零件表面。本文详细介绍的几何算法分析了零件并确定了最能逼近零件模型的模具面。此外,该算法检测来自不同面的引脚之间的可能干扰,并适当更改近似面以减轻干扰。通过将这些销钉移入和移出模具块,可以快速重新配置型腔的形状,以适应零件几何形状的变化。由于所提出的方法用离散的销钉近似自由形状的物体,因此还开发了一种表面误差计算方法来控制精度。本文还介绍了计算机实现和示例。

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