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An optimization approach for path planning of high-quality and uniform additive manufacturing

机译:高质量和均匀添加剂制造路径规划优化方法

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摘要

Material extrusion-based additive manufacturing (AM) is an effective tool in producing prototypes and final parts without geometrical complexity limitations. Despite having widespread applications and enormous advantages over conventional manufacturing techniques, the proliferation of extrusion-based AM has been limited by the low deposition quality and the poor surface finish of printed parts. To address these issues, an optimized path planning technique is proposed in this paper. The sharp corners and the non-uniform spacing between adjacent path elements in the final planned path are two major causes of unevenness of the deposited surface. The proposed method tries to decrease the number of sharp corners by using an implicit algorithm derived from the level sets of the input contours. The curvature information is used to smooth the generated contour paths. Subsequently, to achieve uniform spacing, local optimization is applied on the smoothed path by adaptively adjusting the locations of points on the path. These optimizations lead to a smoother part surface, when compared to those of typical fill path techniques. The proposed method is validated using several examples of parts, many of which are then constructed using a 3D printer.
机译:材料挤出的添加剂制造(AM)是在没有几何复杂性限制的情况下生产原型和最终部件的有效工具。尽管具有广泛的应用和与传统制造技术的巨大优点,但挤出的AM的增殖受到低沉积质量和印刷部件的差的表面光洁度的限制。为了解决这些问题,本文提出了优化的路径规划技术。在最终计划路径中相邻路径元件之间的尖角和不均匀间隔是沉积表面不均匀的两个主要原因。所提出的方法尝试通过使用从输入轮廓的级别组衍生的隐式算法来减少尖角的数量。曲率信息用于平滑生成的轮廓路径。随后,为了实现均匀的间隔,通过自适应地调节路径上的点的位置,在平滑路径上施加局部优化。与典型的填充路径技术相比,这些优化导致侧表面更平滑。使用若干部件的示例验证所提出的方法,然后使用3D打印机构造其中许多。

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