Ultrastructural architecture and mechanical properties of attachment pads in Tettigonia viridissima (Orthoptera Tettigoniidae).

S Gorb, Y Jiao, M Scherge
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引用次数: 183

Abstract

Natural releasable attachment systems of insect legs, where attachment-detachment performances are often very fast, seem to be optimized to get a maximum of real contact to the substratum. Tarsi of Tettigonia viridissima bear flexible attachment pads with unusual ultrastructural architecture of the cuticle. The indentation of the attachment pads was measured under different loads using a force-tester. Since the mechanical properties are influenced by material structure, the freeze-substitution experiments were undertaken to investigate the influence of loads on material structure. Both profile changes of the surface and the orientation of cuticle microfibrils were visualized by means of scanning electron microscopy followed by fracturing of the frozen material. The results show that the flexible pad material deforms replicating the substrate profile down to the micrometer roughness. The pad material showed both elastic and viscous behavior under loads. Elastic deformation of the pad occurred under normal force applied for 4-6 s (elastic modulus 27.2 +/- 11.6 kPa). Two viscous relaxation processes were found, of time constants tau1 = 1.88+/-0.616 s and tau2 =41.2 +/- 9.95 s. Low stiffness of material studied here aids in surface replication and increase of area of real contact between the pad and the underlying substrate.

蛭形蛭甲附着垫的超微结构和力学性能。
昆虫腿的自然可释放附着系统,其附着-分离性能通常非常快,似乎被优化以获得与基质的最大实际接触。翠绿绒毡虫的跗关节具有柔软的附着垫,其角质层具有不同寻常的超微结构。在不同载荷下,用力计测量了附着垫的压痕。由于材料结构对材料的力学性能有影响,因此采用冻结取代试验研究了载荷对材料结构的影响。在冷冻材料破裂后,用扫描电镜观察了表皮微原纤维的表面和取向的变化。结果表明,柔性衬垫材料的变形可以将衬底轮廓复制到微米级的粗糙度。垫层材料在载荷作用下既有弹性又有粘性。垫块在法向力作用下4 ~ 6 s发生弹性变形(弹性模量27.2 +/- 11.6 kPa)。发现了两个时间常数为tau1 = 1.88+/-0.616 s和tau2 =41.2 +/- 9.95 s的粘性弛豫过程。这里研究的材料的低刚度有助于表面复制和增加垫与底层衬底之间的实际接触面积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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