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Optimization of Build Time and Support Material Quantity for the Additive Manufacturing of Non-Assembly Mechanisms

机译:非装配机构添加剂制造的构建时间和支持材料量的优化

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In the context of modern industrial manufacturing, Additive Manufacturing processes are gaining more and more importance. Thus, the required quantity of material as well as the production time, which is mainly influenced by the build time required for the layerwise manufacturing process, are decisive for a successful industrial application. At component level, various approaches for minimizing the build time and the quantity of material are discussed in literature and are yet implemented in commercial software tools for preprocessing, the so-called slicing software. However, there is a lack of suitable methods for expediting the manufacturing process of non-assembly mechanisms. Although the positions and orientations of the individual, mutually movable linkages of a mechanism, which are defined in the CAD model, have a significant influence on the resulting build time and quantity of support material, the optimization potential has remained untapped so far. Motivated by this shortcoming, the paper introduces a method for achieving minimum build time and support material quantity using a meta-heuristic optimization technique. By integrating a suitable slicing software in the optimization process, the analysis of build time and support material quantity is based on the machine code, which is adapted to the applied machine and its various settings of the process parameters. The novelty of the contribution can be found in the optimization of build time and support material quantity for the additive manufacturing of non-assembly mechanisms by determining an optimal positioning of the individual movable links for the manufacturing process. A parallel 3RRR mechanism serves as a case study to show the benefits and the applicablity of the proposed method.
机译:在现代工业制造的背景下,添加剂制造过程越来越重要。因此,所需的材料和生产时间主要受到层制造过程所需的构建时间的影响,这对于成功的工业应用是决定性的。在组件级别,在文献中讨论了用于最小化构建时间和材料量的各种方法,并且在商业软件工具中尚未实现用于预处理,所谓的切片软件。然而,缺乏用于加速非装配机制的制造过程的合适方法。尽管在CAD模型中定义的个体的位置和取向,其在CAD模型中定义的机构具有显着影响,但到目前为止,优化电位仍未开发。通过这种缺点的动机,介绍了一种用于使用元启发式优化技术实现最小构建时间和支持材料量的方法。通过将合适的切片软件集成在优化过程中,构建时间和支持材料数量的分析基于机器代码,该机器代码适用于所应用的机器及其各种过程参数的各种设置。通过确定用于制造工艺的各个可移动链路的最佳定位,可以在建筑时间和支持材料量的优化中找到贡献的新颖性,并通过确定各个可移动链路的最佳定位。平行的3rrr机制用作案例研究,以显示所提出的方法的益处和适用性。

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