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ASSESSING THE MECHANICAL PROPERTIES OF 3D PRINTED BIO-INSPIRED STRUCTURES AND INTEGRATING THEM INTO A PRODUCT

机译:评估3D印刷生物启发结构的机械性能并将它们集成到产品中

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The Honeycomb structure is one of the most common natural structures used in sandwich panel cores. The Enamel structure's mechanical properties were compared to the Honeycomb structure s mechanical properties to investigate if the Enamel structure can improve the compressive strength, stiffness and energy absorption capabilities of sandwich panel cores and potentially replace the common Honeycomb structure. Also, the optimal cellular configurations for the Honeycomb and Enamel structures were explored. Indeed, it was found the Enamel structure can potentially replace the Honeycomb structure and a wall thickness of 1.2 mm and a wall length/cell radius of 8.14 mm will maximize the natural structures mechanical properties. Furthermore, it was found that both the natural structures have good compressive strength. Therefore, the natural structures with their optimal cellular configurations were integrated into a novel automobile floor mat to ensure the mat possesses good compressive strength to resist failure or permanent deformation. Moreover, the novel automobile floor mat has a design feature that offers an efficient debris capturing and removal system that adds value to the automobile floor mat.
机译:蜂窝结构是夹层板芯中使用的最常见的天然结构之一。将牙釉质结构的机械性能与蜂窝结构S的机械性能进行比较,以研究搪瓷结构是否可以提高夹层面板芯的抗压强度,刚度和能量吸收能力,并且可能更换普通蜂窝结构。而且,探索了蜂窝和牙釉质结构的最佳细胞构造。实际上,发现搪瓷结构可能更换蜂窝结构,壁厚为1.2mm,壁长/电池半径为8.14mm,将最大化自然结构机械性能。此外,发现自然结构均具有良好的抗压强度。因此,具有最佳蜂窝结构的天然结构被整合到新型汽车地板垫中,以确保垫子具有良好的抗压强度来抵抗失效或永久性变形。此外,新颖的汽车地板垫具有设计特征,提供高效的碎片捕获和拆卸系统,为汽车地板垫增加了价值。

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