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A parametric and adaptive slicing (PAS) technique: general method and experimental validation

机译:参数和自适应切片(PAS)技术:一般方法和实验验证

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Purpose The purpose of this paper is to describe an innovative Parametric and Adaptive Slicing (PAS) technique to be used for generating material addition paths along three-dimensional surfaces. Design/methodology/approach The method is grounded on the possibility to generate layers starting from multiple reference surfaces (already available in the model or created on purpose). These are used for mathematically deriving a family of parametric surfaces whose shape and spacing (the layer thickness) can be tuned to get the desired aesthetic, technical and functional characteristics. The adhesion among layers is obtained guaranteeing a smooth transition among these surfaces. Findings The examples described in the paper demonstrate that the PAS technique enables the addition of the material along non-planar paths and, hence, the elimination of the staircase effect. In addition, objects printed using this technique show improved mechanical properties with respect to those printed using standard planar layers.
机译:目的本文的目的是描述一种创新的参数和自适应切片(PAS)技术,用于沿三维表面产生材料添加路径。设计/方法/方法该方法接地,可以生成从多个参考曲面开始的层(在模型中已有或故意创建的)。这些用于数学上得出的一系列参数表面,其形状和间隔(层厚度)可以被调整以获得所需的美学,技术和功能特性。可以获得层之间的粘附,保证这些表面之间的平滑过渡。结果表明PAS技术能够沿着非平面路径添加材料,并且因此消除楼梯效应。另外,使用该技术打印的物体示出了相对于使用标准平面层印刷的物品的改进的机械性能。

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