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Build Orientation Optimization Problem in Additive Manufacturing

机译:增材制造中的构建方向优化问题

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Additive manufacturing (AM) is an emerging type of pro-duction technology to create three-dimensional objects layer-by-layer directly from a 3D CAD model. AM is being extensively used by engi-neers and designers. Build orientation is a critical issue in AM since it is associated with the object accuracy, the number of supports required and the processing time to produce the object. Finding the best build orientation in the AM will reduced significantly the building costs and will improve the object accuracy. This paper presents an optimization approach to solve the part build orientation problem considering the staircase effect, support area characteristics and the build time. Two global optimization methods, the Electromagnetism-like and the Stretched Simulated Annealing algorithms, are used to study the optimal orientation of four models. Preliminary experiments show that both optimization methods can effectively solve the build orientation problem in AM, finding several global solutions.
机译:增材制造(AM)是一种新兴的生产技术,可直接从3D CAD模型逐层创建三维对象。 AM被工程师和设计师广泛使用。在AM中,构建方向是一个关键问题,因为它与对象的准确性,所需支撑的数量以及生产对象的处理时间有关。在增材制造中找到最佳的构建方向将显着降低构建成本,并提高对象精度。本文提出了一种考虑楼梯效应,支撑区域特征和建造时间的,用于解决零件建造方向问题的优化方法。两种全局优化方法,如电磁法和拉伸模拟退火算法,用于研究四个模型的最佳方向。初步实验表明,两种优化方法都可以有效地解决增材制造中的建造方向问题,找到了几种全局解决方案。

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