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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Multi-objective optimization of support structures for metal additive manufacturing
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Multi-objective optimization of support structures for metal additive manufacturing

机译:金属增材制造支撑结构的多目标优化

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摘要

Electron-beam melting (EBM) is a rapidly developing metal additive manufacturing (AM) method. It is more effective with complex and customized parts manufactured in low volumes. In contrast to traditional manufacturing, it offers reduced lead time and efficient material management. However, this technology has difficulties with regard to the construction of overhang structures. Production of overhangs using EBM without support structures results in distorted objects, and the addition of a support structure increases the material consumption and necessitates post-processing. The objective of this study was to design support structures for metal AM that are easy to remove and consume lower support material without affecting the quality of the part. The design of experiment methodology was incorporated to evaluate the support parameters. The multi-objective optimization minimizing support volume and support removal time along with constrained deformation was performed using multi-objective genetic algorithm (MOGA-II). The optimal solution was characterized by a large tooth height (4 mm), large tooth base interval (4 mm), large fragmented separation width (2.5 mm), high beam current (6 mm), and low beam scan speed (1200 mm/s).
机译:电子束熔炼 (EBM) 是一种快速发展的金属增材制造 (AM) 方法。对于小批量生产的复杂和定制零件,它更有效。与传统制造相比,它缩短了交货时间,并实现了高效的材料管理。然而,该技术在悬垂结构的建造方面存在困难。使用没有支撑结构的EBM生产悬伸物会导致物体变形,并且增加支撑结构会增加材料消耗并需要后处理。本研究的目的是设计金属增材制造的支撑结构,这些结构易于拆卸并消耗较低的支撑材料,而不会影响零件的质量。结合试验方法设计对支撑参数进行评价。采用多目标遗传算法(MOGA-II)进行多目标优化,最小化支座体积和支座移除时间,并限制变形。最佳解的特点是齿高大(4 mm)、齿底间距大(4 mm)、碎片分离宽度大(2.5 mm)、高光束电流(6 mm)和低光束扫描速度(1200 mm/s)。

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