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DLP-Based 3D Printing of Low-Density Composite Formulations for Unit Cells for Mechanical Metamaterials

机译:基于DLP的3D打印低密度复合配方,用于机械超材料的单元电池

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Mechanical metamaterials with tuned and functionally graded (FG) dynamic properties have potential for control of wave propagation in structures, as they exhibit dynamic behavior not normally observed in homogenous and natural materials. Along with the structure, the performance of metamaterials depends on the base material properties, specifically density and elastic modulus. DLP-based 3D printing has been shown as a promising technique to manufacture complex composite structures with high volume fraction of reinforcements, and which would be beneficial to achieve the required density and modulus. Commercially available resins enable good printing of complex structures; however, the resins are restricted in their intrinsic properties, which limits the design space of the metamaterials. This limitation motivates the development of new resin system that expands the design space of the metamaterial structures, thereby enhancing their performance. This paper focuses on DLP-based printing of preliminary metamaterial structures with an acrylate-based, commercially available resin (PR48), incorporation of low-density reinforcements into PR48, and discusses the need for modified formulations as greater filler concentrations are incorporated.
机译:具有调谐和功能分级(FG)动态性质的机械超材料具有控制结构中波传播的可能性,因为它们表现出在均匀和天然材料中通常观察到的动态行为。随着该结构,超材料的性能取决于基材性质,具体的密度和弹性模量。基于DLP的3D印刷已被示为制造具有高容积增强体积的复合复合结构的有希望的技术,并且可以利用实现所需的密度和模量是有益的。市售树脂可以良好地印刷复杂结构;然而,树脂受到其内在性质的限制,这限制了超材料的设计空间。这种限制激励了开发新的树脂系统,这些树脂系统扩展了超材料结构的设计空间,从而提高了它们的性能。本文重点介绍基于DLP的初步超材料结构,丙烯酸酯类的市售树脂(PR48),将低密度增强物掺入PR48,并讨论了改性配方的需求,因为掺入了更大的填充浓度。

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