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Adaptive slicing for the FDM process revisited

机译:重新审视FDM过程的自适应切片

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摘要

Adaptively computing the layer heights for 3D-printed parts has the potential to achieve high quality results while maintaining a reasonably short printing time. The basic concept, several error measures and variations of the algorithm have been around in the literature for two decades now, but never showed significant impact on widely used slicing software. Users of our early test implementations reported two major drawbacks of the existing approaches: the control measures are not intuitively usable and the resulting height distribution in many cases is not optimal for an object, requiring extensive post-editing. In this paper, we propose a more intuitive control measure and implementation based on the volumetric surface error and a subsequent manual refinement of layer heights by manipulating an interpolated height-curve. We describe the efficient computation of adaptive layers by analyzing the model surface over the full layer height. All implementations are available as ready-to-use open source software.
机译:自适应地计算3D印刷部件的层高度具有达到高质量结果的可能性,同时保持相当短的打印时间。基本概念,算法的几个误差措施和变体已经在文献中已经存在了二十年,但从未对广泛使用的切片软件产生了重大影响。我们的早期测试实施的用户报告了现有方法的两个主要缺点:控制措施不直观地使用,并且在许多情况下产生的高度分布对于对象来说是不适的,需要进行广泛的编辑。在本文中,我们通过操纵内插高度曲线提出了基于体积表面误差的更直观的控制测量和实现层高度的后续手动细化。我们通过在全层高度上分析模型表面来描述自适应层的有效计算。所有实现都可用作即用待使用的开源软件。

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