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CFRP Origami Metamaterial with Tunable Buckling Loads: A Numerical Study

机译:CFRP Origami Metomaterial可调谐屈曲负荷:数值研究

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摘要

Origami has played an increasingly central role in designing a broad range of novel structures due to its simple concept and its lightweight and extraordinary mechanical properties. Nonetheless, most of the research focuses on mechanical responses by using homogeneous materials and limited studies involving buckling loads. In this study, we have designed a carbon fiber reinforced plastic (CFRP) origami metamaterial based on the classical Miura sheet and composite material. The finite element (FE) modelling process’s accuracy is first proved by utilizing a CFRP plate that has an analytical solution of the buckling load. Based on the validated FE modelling process, we then thoroughly study the buckling resistance ability of the proposed CFRP origami metamaterial numerically by varying the folding angle, layer order, and material properties, finding that the buckling loads can be tuned to as large as approximately 2.5 times for mode 5 by altering the folding angle from 10° to 130°. With the identical rate of increase, the shear modulus has a more significant influence on the buckling load than Young’s modulus. Outcomes reported reveal that tunable buckling loads can be achieved in two ways, i.e., origami technique and the CFRP material with fruitful design freedoms. This study provides an easy way of merely adjusting and controlling the buckling load of lightweight structures for practical engineering.
机译:由于其简单的概念及其轻质和非凡的机械性能,折纸在设计广泛的新颖结构方面发挥了越来越核心的作用。尽管如此,大多数研究通过使用均匀材料和涉及屈曲负荷的有限研究,重点介绍机械响应。在这项研究中,我们设计了一种基于经典Miura板和复合材料的碳纤维增强塑料(CFRP)折纸超材料。通过利用具有屈曲负荷分析载荷的CFRP板,首先证明有限元(FE)建模过程的精度。基于经过验证的FE模型过程,我们通过改变折叠角度,层序和材料性能,彻底研究了所提出的CFRP折纸超材料的屈曲能力,发现屈曲负载可以调谐到大约2.5模式5通过将折叠角从10°改为10°至130°的时间。具有相同的增加速率,剪切模量对屈曲负荷的影响比杨氏模量更大。结果报告说明可以通过两种方式,即折纸技术和CFRP材料实现可调谐屈曲载荷,具有富有成效的设计自由。本研究提供了一种简单的方法,仅仅是调节和控制实用工程的轻质结构的屈曲负荷。

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