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Real time adaptive slicing for fused deposition modelling

机译:用于熔融沉积建模的实时自适应切片

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摘要

Improvement of part surface quality and geometric accuracy in Rapid Prototyping has been a major concern. Reduction in build time and increase of part surface quality are two factors which contradict with each other as decreasing build time detracts part quality because of staircase effect. There has been a number of attempts to tackle this problem and adaptive slicing procedures are proposed. In these procedures the layer edge profiles are implicitly assumed as rectangular. But in real practice the edge profiles of a layer manufactured part are not rectangular and is found to be parabolic in case of Fused Deposition Modelling. A geometrical parameter known as cusp height is limited to a pre-specified value in existing adaptive slicing procedures, which is defined for rectangular edge profiles only. In this paper, a slicing procedure is proposed for Fused Deposition Modelling based on real time edge profile of deposited layers. The procedure is implemented and examples are included to explain the adaptive slicing method.
机译:快速原型制造中零件表面质量和几何精度的提高一直是人们关注的主要问题。减少制造时间和增加零件表面质量是两个相互矛盾的因素,因为减少制造时间会由于阶梯效应而降低零件质量。已经进行了许多尝试来解决这个问题,并且提出了自适应切片程序。在这些过程中,层边缘轮廓被隐式假定为矩形。但是在实际应用中,层制造零件的边缘轮廓不是矩形的,在熔融沉积建模的情况下发现是抛物线形的。在现有的自适应切片程序中,称为尖点高度的几何参数仅限于预先指定的值,该值仅针对矩形边缘轮廓进行定义。本文提出了一种基于沉积层实时边缘轮廓的熔融沉积建模切片程序。该过程已实现,并包含示例以说明自适应切片方法。

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