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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Mechanical model of bio-inspired composites with sutural tessellation
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Mechanical model of bio-inspired composites with sutural tessellation

机译:具有缝合细分的生物启发复合材料的力学模型

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Architectured composites with sutural tessellations across all length scales are found in the armor systems of many fauna and flora species in nature. These composites are typically composed of relatively stiff building blocks articulated via compliant wavy suture seam, showing a remarkable jigsaw-puzzle-like sutural tessellation. Inspired by these interesting natural architecture materials, bio-inspired designs of composite plates with hexagonal, diamond and rectangular building blocks and triangular suture tessellations were developed. Generalized closed-form analytical expressions for the effective stiffnesses along major axes of symmetry of these designs were derived and finite element (FE) simulations were performed to verify the analytical solution. Suture tessellation was shown to be essential in determining the mechanical properties of the composite plates. The influences of suture waviness, suture dominancy, the shape of the building blocks and the stiffness ratio of the suture tessellation were evaluated. The results provide design guidelines for widely tuning the mechanical properties of the biomimetic composite plates via tailoring suture tessellation. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在自然界中许多动植物物种的装甲系统中都发现了具有各种长度尺度的缝合线镶嵌的建筑复合材料。这些复合材料通常由相对坚硬的结构块组成,这些结构块通过顺应性的波浪形缝线进行铰接,表现出非凡的拼图般的缝线镶嵌效果。受到这些有趣的自然建筑材料的启发,开发了具有六角形,菱形和矩形构造块以及三角形缝线镶嵌的复合板的生物启发设计。推导了这些设计沿对称主轴线的有效刚度的广义封闭式解析表达式,并进行了有限元(FE)仿真,以验证解析解。缝合线细分化在确定复合板的机械性能中至关重要。评估了缝线波纹度,缝线优势度,结构块的形状以及缝线细分的刚度比的影响。结果提供了设计指南,可通过定制缝线细分来广泛调节仿生复合材料板的机械性能。 (C)2018 Elsevier Ltd.保留所有权利。

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