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Determination of optimal build direction in rapid prototyping with variable slicing

机译:可变切片快速成型中最佳构建方向的确定

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摘要

Several important factors must be taken into consideration in order to maximize the efficiency of rapid prototyping (RP) processes. The ability to select the optimal orientation of the build direction is one of the most critical factors in using RP processes, since it affects part quality, build time, and part cost. This study aims to determine the optimal build-up direction when a part is built with the variable layer thickness for different RP systems. The average weighted surface roughness (AWSR) that is generated from the stair stepping effect, the build time, and the part cost using the variable layer thickness are all considered in the process. Using the multi-attribute decision-making method, the best orientation is determined among the orientation candidates chosen from the convex hull of a model. The validity of the algorithm is illustrated by an example. The algorithm can help RP users select the best build-up direction of the part and create an efficient process planning.
机译:为了使快速原型制作(RP)流程的效率最大化,必须考虑几个重要因素。选择构建方向的最佳方向的能力是使用RP工艺的最关键因素之一,因为它会影响零件质量,制造时间和零件成本。这项研究旨在确定在不同的RP系统中使用可变厚度的零件制造零件时的最佳堆积方向。在此过程中,均考虑了因阶梯效应,制造时间和使用可变层厚度而产生的零件成本而产生的平均加权表面粗糙度(AWSR)。使用多属性决策方法,可以从模型的凸包中选择最佳定向,从而确定最佳定向。举例说明了该算法的有效性。该算法可以帮助RP用户选择零件的最佳组装方向,并创建有效的工艺计划。

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