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Modeling of Mechanical Properties and Structural Design of Spider Web

机译:蜘蛛网的力学性能建模和结构设计

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摘要

With a unique combination of strength and toughness among materials,spider silk is the model for engineering materials.This paper presents the stress-strain behavior of Nephila clavipes spider silk under tension,transverse compression,and torsional deformation obtained by a battery of micro testing equipment.The experimental results showed significantly higher toughness than the state-of-the-art fibers in tension and in transverse compression.Higher shear modulus was also observed for the spider silk comparing to other liquid crystalline fibers such as aramid fibers.On the basis of the experimental results finite element analysis is used to simulate static and dynamic properties of spider web and to explore the role of both material properties and architectural design in its structural integrity and mechanical performance.
机译:蜘蛛丝具有多种材料之间的强度和韧性的独特组合,是工程材料的模型。本文介绍了通过一系列微型测试设备获得的Nephila clavipes蜘蛛丝在拉伸,横向压缩和扭转变形下的应力-应变行为。实验结果表明,在拉伸和横向压缩方面,韧性比现有纤维明显更高;与其他液晶纤维(如芳族聚酰胺纤维)相比,蜘蛛丝的剪切模量也更高。实验结果通过有限元分析来模拟蜘蛛网的静态和动态特性,并探讨材料特性和建筑设计在其结构完整性和机械性能中的作用。

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