首页> 外文会议>Conference on Behavior and Mechanics of Multifunctional Materials XIII >Numerical and Experimental Investigation of 3D Printed Origami Unit Cells and Cores for Load Resistance
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Numerical and Experimental Investigation of 3D Printed Origami Unit Cells and Cores for Load Resistance

机译:3D印刷折纸单元电池和载荷芯的数值和实验研究

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Origami cores have the advantage of stiffness to weight ratio over conventional sandwich cores. The main idea ofdesigning sandwich cores is to have low-density structure with high stiffness, that allows the sandwiches towithstand compression and impact loads. Recently, the implementation of origami cores in sandwich structures hasattracted engineers to design and investigate different types of origami cores for compression and impactapplications. Such cores can give the sandwich structure, high stiffness to weight ratio, and they can dissipate theincoming loads by high strain deformation. In this work, we study numerically and experimentally, two differentorigami configurations; the study investigates origami unit cells’ and cores’ stiffness and load resistance. Origamiunit cells and cores are fabricated with fused deposition modeling. The results of the numerical simulation validatedwith the experimental results.
机译:Origami核心具有常规三明治芯的重量比的优点。主要思想设计夹心芯是具有高密度结构,具有高刚度,允许三明治承受压缩和冲击载荷。最近,夹层结构中的折纸核心的实施有吸引工程师设计和调查不同类型的折纸核心,用于压缩和冲击应用程序。这种芯可以给夹层结构,高刚度比重量比,它们可以消散通过高应变变形进入负载。在这项工作中,我们在数字和实验上学习两种不同折纸配置;该研究调查了折纸单元电池'和芯的刚度和负载性。折纸单位细胞和核心用熔融沉积建模制造。数值模拟的结果验证了实验结果。

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