Department of Civil Engineering, School of Engineering, University of Birmingham, Birmingham, B15 2TT, UK.
Shanghai Posts and Telecommunications Designing Consulting Institute Co., Ltd., Shanghai, China.
Sci Rep. 2020 Nov 5;10(1):19161. doi: 10.1038/s41598-020-76269-x.
Due to the high-efficiency energy absorption and high-tension strength material properties of spider silk, many researchers have studied the mechanical properties and microstructure of the spider web. The concept of spider web structure has been recognized to be adopted for structural engineering aspect. The structure of spider web and its material properties have been studied for decades. However, the fundamental free vibration mode shapes and their corresponding frequencies have never been fully investigated. This study investigates the nonlinear characteristics in the large-amplitude free vibration of imperfect spider web structures using finite element analysis. The spider web applies the concept of elastic cables taking only axial deformation into account. The finite element models of a spider web considering geometric nonlinearities are employed. It should be noted that spider web could experience large deformation when the spider uses its silk to catch prey. This research aims at analyzing the linear and geometric nonlinear behaviour of imperfect spider web structure. Four different types of imperfect spider web: spiral imperfect spider web, radial imperfect spider web, central imperfect spider web, and circular rings imperfect spider web, are considered. It is found that pretension in spider silk plays a significant role in nonlinear vibration characteristics of the spider web. Moreover, the radial thread damaged tends to have a greater effect on structural free vibration of spider web in comparison with other imperfections. The outcome will help a structural engineer to adapt the concept of spider web, its properties, and damage patterns for any larger structures.
由于蜘蛛丝具有高效的能量吸收和高强度的材料特性,许多研究人员研究了蜘蛛网的力学性能和微观结构。人们已经认识到蜘蛛网的结构可以应用于结构工程方面。几十年来,人们一直在研究蜘蛛网的结构及其材料特性。然而,基本的自由振动模态形状及其相应的频率从未得到充分研究。本研究使用有限元分析研究了不完美蜘蛛网结构的大振幅自由振动中的非线性特性。蜘蛛网采用仅考虑轴向变形的弹性索的概念。采用考虑几何非线性的蜘蛛网有限元模型。应该注意的是,当蜘蛛用丝捕捉猎物时,蜘蛛网可能会经历大变形。本研究旨在分析不完美蜘蛛网结构的线性和几何非线性行为。考虑了四种不同类型的不完美蜘蛛网:螺旋不完美蜘蛛网、径向不完美蜘蛛网、中心不完美蜘蛛网和圆形环不完美蜘蛛网。研究发现,蜘蛛丝中的预张力对蜘蛛网的非线性振动特性起着重要作用。此外,与其他缺陷相比,径向线损坏往往对蜘蛛网的结构自由振动有更大的影响。研究结果将有助于结构工程师适应蜘蛛网的概念、其特性和损坏模式,以用于任何更大的结构。