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Multi-criteria selection of structural adhesives to bond ABS parts obtained by rapid prototyping

机译:结构粘合剂的多标准选择,用于粘合通过快速成型获得的ABS零件

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摘要

One of the most used methods in rapidprototyping is Fused Deposition Modeling (FDM), which provides components with a reasonable strength in plastic materials such as ABS and has a low environmental impact. However, the FDM process exhibits low levels of surface finishing, difficulty in getting complex and/or small geometries and low consistency in “slim” elements of the parts. Furthermore, “cantilever” elements need large material structures to be supported. The solution of these deficiencies requires a comprehensive review of the three-dimensional part design to enhance advantages and performances of FDM and reduce their constraints. As a key feature of this redesign a novel method of construction by assembling parts with structuraladhesive joints is proposed. These adhesive joints should be designed specifically to fit the plastic substrate and the FDM manufacturing technology. To achieve this, the most suitable structuraladhesiveselection is firstly required. Therefore, the present work analyzes five different families of adhesives (cyanoacrylate, polyurethane, epoxy, acrylic and silicone), and, by means of the application of technical multi-criteria decision analysis based on the analytic hierarchy process (AHP), to select the structuraladhesive that better conjugates mechanical benefits and adaptation to the FDM manufacturing process
机译:快速原型制作中最常用的方法之一是熔融沉积建模(FDM),它可以在塑料材料(如ABS)中为组件提供合理的强度,并且对环境的影响很小。然而,FDM工艺表现出较低的表面光洁度,难以获得复杂和/或小的几何形状以及零件“细长”元件的一致性低。此外,“悬臂”元件需要大的材料结构来支撑。解决这些缺陷的方法需要全面审查三维零件设计,以增强FDM的优势和性能并减少其约束。作为此重新设计的关键特征,提出了一种通过将具有结构粘合缝的零件组装起来的新颖的构造方法。这些粘合接头应专门设计为适合塑料基材和FDM制造技术。为此,首先需要最合适的结构粘合剂选择。因此,本工作分析了五种不同的胶粘剂系列(氰基丙烯酸酯,聚氨酯,环氧树脂,丙烯酸和硅酮),并通过基于层次分析法(AHP)的技术多标准决策分析技术来选择更好地结合机械效益和对FDM制造工艺的适应性的结构胶

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