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VOLUMETRIC ERROR CONTROL IN LAYERED MANUFACTURING

机译:分层制造中的体积误差控制

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摘要

This paper presents a novel method for adaptive slicing based on volumetric error considerations for Layered Manufacturing (LM). In the general LM process uses constant layer thickness throughout the part height which leads to poor surface finish at inclined surfaces. Therefore, adaptive slicing was proposed to control the surface roughness by adaptively selecting the layer thickness based on surface finish at a particular angle or slope of the surface. Most of the researchers used the cusp height concept for adaptive slicing. However, limitation of cusp height based adaptive slicing procedure is that, it does not have any direct control on volumetric error and it is quite possible that with a very little variation in cusp height a large variation in volumetric error may occur on steep slopes of surface. In the proposed work an algorithm is developed and implemented for adaptive slicing to control/select layer thickness based on user specified volumetric error/loss. A model is developed to calculate volumetric loss for the particular layer considering the geometry of the model.
机译:本文提出了一种基于分层制造(LM)的体积误差考虑的自适应切片新方法。通常,LM工艺会在整个零件高度使用恒定的层厚度,这会导致倾斜表面的表面光洁度差。因此,提出了自适应切片以通过基于表面的特定角度或斜率的表面光洁度来自适应地选择层厚度来控制表面粗糙度。大多数研究人员使用尖顶高度概念进行自适应切片。然而,基于尖端高度的自适应切片程序的局限性在于,它对体积误差没有任何直接控制,并且在尖端高度变化很小的情况下,很可能在表面的陡坡上发生体积误差的大变化。 。在提出的工作中,开发并实现了一种算法,用于根据用户指定的体积误差/损耗进行自适应切片,以控制/选择层厚度。考虑到模型的几何形状,开发了一个模型来计算特定层的体积损失。

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