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A Comparative Study between Polymer and Metal Additive Manufacturing Approaches in Investigating Stiffened Hexagonal Cells

机译:研究加强六方细胞聚合物与金属添加剂制造方法的比较研究

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摘要

Recent polymer and metal additive manufacturing technologies were proven capable of building complex structures with high accuracy. Although their final products differ significantly in terms of mechanical properties and building cost, many structural optimization studies were performed with either one without systematic justification. Therefore, this study investigated whether the Direct Metal Laser Sintering (DMLS) and Fused Deposition Modelling (FDM) methodologies can provide similar conclusions when performing geometrical manipulations for optimizing structural crashworthiness. Two identical sets of four shapes of stiffened hexagonal cells were built and crushed under quasi-static loading. The results were compared in terms of collapsing behavior, load-carrying performance, and energy-absorption capability. Although the observed failure modes were different since the base-materials differ, similar improvement trends in performance were observed between both fabrication approaches. Therefore, FDM was recommended as a fabrication method to optimize thin-walled cellular hexagonal parameters since it was 80% more time-efficient and 53.6% cheaper than the DMLS technique.
机译:最近的聚合物和金属添加剂制造技术被证明能够高精度地构建复杂结构。虽然它们的最终产品在机械性能和建筑成本方面有显着差异,但在没有系统的理由的情况下,使用任何一个结构优化研究都进行了许多结构优化研究。因此,本研究研究了直接金属激光烧结(DMLS)和融合沉积建模(FDM)方法可以在执行几何操纵时提供类似的结论,以优化结构持续性崩溃。在准静态载荷下构建并粉碎两组相同的四种环状的加强六方细胞。在折叠行为,承载性能和能量吸收能力方面进行比较结果。尽管观察到的失效模式不同,因为基本材料的差异不同,但在两种制造方法之间观察到了类似的性能的改善趋势。因此,建议FDM作为制造方法,以优化薄壁细胞六边形参数,因为它比DMLS技术便宜80%和53.6%。

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