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Evaluation of Assembly Part Build Orientation in Additive Manufacturing Environment using Data Envelopment Analysis

机译:使用数据包络分析评估增材制造环境中装配零件的装配方向

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Whereas Subtractive Manufacturing (SM) is a process by which 3D objects are constructed by cutting material away from a solid block of material, such as milling and lathe machine; Additive Manufacturing (AM) is a synonym for 3D printing and other processes by which 3D objects are constructed by successively depositing material in layers. Recently, AM has become widespread for both industrial and personal use thanks to the freedom and benefits it provides in designing parts, reducing lead time, improving inventory, and supply chain. However, few studies examine process planning issues in AM. In addition, existing studies focus on production of an individual part alone. In this study, we examine the assembly orientation alternatives’ efficiency using Data Envelopment Analysis (DEA) technique for different AM technologies and their associated materials under conflicting criteria. A case study of hardware fasteners using bolt and nut fabrication is illustrated in the study. Our results show that different AM technologies and materials clearly impact efficiency of part production and thus suggest optimal orientation in AM process planning platform.
机译:减法制造(SM)是一种通过从诸如研磨机和车床之类的实体块切割掉材料来构造3D对象的过程;增材制造(AM)是3D打印和其他过程的同义词,通过这些过程,可以通过在层中连续沉积材料来构造3D对象。最近,由于AM在零件设计,减少交货时间,改善库存和供应链方面的自由和优势,它已广泛用于工业和个人用途。但是,很少有研究检查AM中的过程计划问题。另外,现有的研究仅集中于单个零件的生产。在这项研究中,我们使用数据包络分析(DEA)技术针对冲突条件下不同的增材制造技术及其相关材料,研究了组装方向替代品的效率。该研究说明了使用螺栓和螺母制造的五金紧固件的案例研究。我们的结果表明,不同的增材制造技术和材料显然会影响零件生产的效率,因此建议在增材制造工艺计划平台中进行最佳定向。

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