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首页> 外文期刊>Journal of the Royal Society Interface >Compliant threads maximize spider silk connection strength and toughness
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Compliant threads maximize spider silk connection strength and toughness

机译:柔顺的螺纹使蜘蛛丝的连接强度和韧性最大化

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摘要

Millions of years of evolution have adapted spider webs to achieve a range of functionalities, including the well-known capture of prey, with efficient use of material. One feature that has escaped extensive investigation is the silk-on-silk connection joints within spider webs, particularly from a structural mechanics perspective. We report a joint theoretical and computational analysis of an idealized silk-on-silk fibre junction. By modifying the theory of multiple peeling, we quantitatively compare the performance of the system while systematically increasing the rigidity of the anchor thread, by both scaling the stress-strain response and the introduction of an applied pre-strain. The results of our study indicate that compliance is a virtue—the more extensible the anchorage, the tougher and stronger the connection becomes. In consideration of the theoretical model, in comparison with rigid substrates, a compliant anchorage enormously increases the effective adhesion strength (work required to detach), independent of the adhered thread itself, attributed to a nonlinear alignment between thread and anchor (contact peeling angle). The results can direct novel engineering design principles to achieve possible load transfer from compliant fibre-to-fibre anchorages, be they silk-on-silk or another, as-yet undeveloped, system.
机译:数百万年的发展已经使蜘蛛网适应了各种功能,包括有效利用材料实现了众所周知的猎物捕获。蜘蛛网中的“丝绸对丝绸”连接接头,尤其是从结构力学的角度出发,是没有经过广泛研究的特征。我们报告了理想化的丝绸对丝绸纤维结的联合理论和计算分析。通过修改多次剥离的理论,我们通过缩放应力-应变响应和引入应用的预应变,定量地比较了系统的性能,同时系统地提高了锚固线的刚度。我们的研究结果表明,顺从性是一种美德-固定点可扩展性越强,连接就越坚固。考虑到理论模型,与刚性基材相比,顺应性锚固极大地提高了有效粘附强度(分离所需的功),而与粘附的螺纹本身无关,这归因于螺纹和锚固之间的非线性对齐(接触剥离角) 。结果可以指导新颖的工程设计原理,以实现可能的载荷从顺应性的纤维到纤维的锚固转移,无论它们是丝绸上还是丝绸上,还是其他尚未开发的系统。

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