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Adaptive slicing with cubic patch approximation

机译:三次面片逼近的自适应切片

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In adaptive slicing, the number of layers is drastically reduced by using sloping layer walls. For both vertical (2.5D slices) and sloping (ruled slices) outer walls, the strategies for determining slice height generally consider a number of vertical sections along the contour of a slice. Surface deviation error is calculated at these sections and slice height subsequently determined. Instead, a method is proposed which calculates error at every part of the surface. This method approximates the outer wall between two successive contours by a series of taut cubic spline patches. It is proposed that the deviation between such a patch and the actual surface is a better and more exhaustive estimate of surface error. Results show that the predicted number of slices is slightly higher than that predicted by existing methods for sloping layer walls.
机译:在自适应切片中,通过使用倾斜的层壁可以大大减少层数。对于垂直(2.5D切片)和倾斜(规则切片)外壁,确定切片高度的策略通常考虑沿切片轮廓的多个垂直切片。在这些部分计算表面偏差误差,然后确定切片高度。取而代之的是,提出了一种计算表面各部分误差的方法。该方法通过一系列拉紧的三次样条曲线补丁来逼近两个连续轮廓之间的外壁。提出这样的补丁和实际表面之间的偏差是对表面误差的更好和更详尽的估计。结果表明,预计的切片数量略高于现有的倾斜层壁方法的预计数量。

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