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首页> 外文期刊>The Journal of Experimental Biology >van der Waals and hygroscopic forces of adhesion generated by spider capture threads
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van der Waals and hygroscopic forces of adhesion generated by spider capture threads

机译:蜘蛛捕获线产生的范德华力和吸湿力

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Cribellar thread is the most primitive type of sticky prey capture thread found in aerial spider webs. Its outer surface is formed of thousands of fine fibrils that issue from a cribellum spinning field. The fibrils of primitive cribellar thread are cylindrical, whereas those of derived threads have nodes. Cribellar threads snag on insect setae but also adhere to smooth surfaces. A previous study showed empirically that cylindrical fibrils use only van der Waals forces to stick to smooth surfaces, as their stickiness is the same under different humidity. By contrast, noded fibrils are stickier under high humidity, where they are presumed to adsorb atmospheric water and implement hygroscopic (capillary) adhesion. Here, we model thread stickiness according to these two adhesive mechanisms. These models equate stickiness with the force necessary to overcome the adhesion of fibril contact points in a narrow band along each edge of the contact surface and to initiate peeling of the thread from the surface. Modeled and measured thread stickiness values are similar, supporting the operation of the hypothesized adhesive forces and portraying an important transition in the evolution of spider threads. Cribellar threads initially relied only on van der Waals forces to stick to smooth surfaces. The appearance of fibril nodes introduced hydrophilic sites that implemented hygroscopic force and increased thread stickiness under intermediate and high humidity.
机译:bell骨线是空中蜘蛛网中发现的最原始的粘性猎物捕获线。它的外表面由成千上万的细纤维构成,这些细纤维是从bell骨纺丝领域产生的。原始骨螺纹的原纤维是圆柱形的,而衍生的螺纹的原纤维则具有结点。 bell骨线附着在昆虫刚毛上,但也附着在光滑的表面上。先前的一项研究从经验上表明,圆柱形原纤维仅使用范德华力粘附在光滑表面上,因为它们在不同湿度下的粘性相同。相比之下,结节状原纤维在高湿度下更粘,据推测它们可吸附大气中的水并具有吸湿性(毛细管)粘附力。在这里,我们根据这两种粘合机制对线粘性进行建模。这些模型将粘性等同于克服沿接触表面的每个边缘的窄带中的原纤维接触点的粘附并引发线从表面剥离所需的力。建模和测量的线粘性值相似,支持假设的粘合力的操作并描绘了蜘蛛线演变过程中的重要过渡。最初,骨螺纹仅依靠范德华力才能粘在光滑的表面上。原纤维节的出现引入了亲水位点,该位点在中高湿度下实现了吸湿力并增加了线的粘性。

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