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Changes in the Adhesive Properties of Spider Aggregate Glue During the Evolution of Cobwebs

机译:蜘蛛网演变过程中蜘蛛骨料胶黏附特性的变化

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摘要

We compare the prey capture glues produced by orb-weaving spiders (viscid glue) and their evolutionary descendents, the cobweb-weaving spiders (gumfoot glue). These glues are produced in homologous glands but exhibit contrasting structure, properties and response to changing humidity. Individual glue droplet stretching measurements indicate that the gumfoot glue behaves like a viscoelastic liquid in contrast to the viscid glue, which behaves like a viscoelastic solid. Moreover, the gumfoot glue is largely humidity-resistant – elasticity and adhesion are constant across variation in humidity and there is weak volume-dependence. Viscid glue, however, is highly humidity-sensitive. The glue expands an order of magnitude and demonstrates a monotonous reduction in elasticity under increased humidity, while glue adhesion optimizes at intermediate levels of humidity. We suggest that observed differences are due to different ‘tackifiers' used in these systems. These results shall inspire future efforts in fabricating stimuli-resistant and stimuli-sensitive materials.
机译:我们比较了球织蜘蛛产生的猎物捕获胶(粘性胶)和它们的进化后代,蜘蛛网编织蜘蛛(胶状胶)。这些胶水在同源的腺体中产生,但表现出对比的结构,性能和对湿度变化的响应。单独的胶滴拉伸测量结果表明,胶基脚胶的行为类似于粘弹性液体,而粘胶的行为类似于粘弹性固体。此外,口香糖胶具有很大的耐湿性-弹性和附着力在湿度变化中保持恒定,并且体积依赖性弱。但是,粘性胶对湿度非常敏感。胶水会扩展一个数量级,并在湿度增加的情况下表现出单调的弹性降低,而胶水的粘合力则在中等湿度下达到最佳状态。我们建议观察到的差异是由于这些系统中使用了不同的“增粘剂”。这些结果将激发未来在制造抗刺激和刺激敏感材料方面的努力。

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