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Composition and substrate-dependent strength of the silken attachment discs in spiders

机译:蜘蛛丝连接盘的组成和取决于基底的强度

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摘要

Araneomorph spiders have evolved different silks with dissimilar material properties, serving different purposes. The two-compound pyriform secretion is used to glue silk threads to substrates or to other threads. It is applied in distinct patterns, called attachment discs. Although ubiquitously found in spider silk applications and hypothesized to be strong and versatile at low material consumption, the performance of attachment discs on different substrates remains unknown. Here, we analyse the detachment forces and fracture mechanics of the attachment discs spun by five different species on three different substrates, by pulling on the upstream part of the attached thread. Results show that although the adhesion of the pyriform glue is heavily affected by the substrate, even on Teflon it is frequently strong enough to hold the spider's weight. As plant surfaces are often difficult to wet, they are hypothesized to be the major driving force for evolution of the pyriform secretion.
机译:Araneomorph蜘蛛进化出了具有不同材料特性的不同丝,用于不同目的。两化合物的梨形分泌物用于将丝线粘合到基材或其他丝上。它以不同的方式应用,称为附件光盘。尽管普遍存在于蜘蛛丝应用中,并且假设其在低材料消耗下具有坚固性和通用性,但在不同基材上的附着盘性能仍然未知。在这里,我们通过拉动附着螺纹的上游部分来分析由五个不同物种在三种不同基底上旋转产生的附着盘的分离力和断裂力学。结果表明,尽管梨形胶的附着力受基材的影响很大,但即使在特氟隆上,其强度通常也足以支撑蜘蛛的重量。由于植物表面通常很难润湿,因此可以认为它们是梨形分泌物进化的主要驱动力。

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