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章鱼般的吸盘:从天然解决方案到人工解决方案

Octopus-like suction cups: from natural to artificial solutions.

作者信息

Tramacere F, Follador M, Pugno N M, Mazzolai B

机构信息

Center for Micro-BioRobotics, Istituto Italiano di Tecnologia, Viale Rinaldo Piaggio 34, 56025 Pontedera, Italy.

出版信息

Bioinspir Biomim. 2015 May 13;10(3):035004. doi: 10.1088/1748-3190/10/3/035004.

Abstract

Octopus suckers are able to attach to all nonporous surfaces and generate a very strong attachment force. The well-known attachment features of this animal result from the softness of the sucker tissues and the surface morphology of the portion of the sucker that is in contact with objects or substrates. Unlike artificial suction cups, octopus suckers are characterized by a series of radial grooves that increase the area subjected to pressure reduction during attachment. In this study, we constructed artificial suction cups with different surface geometries and tested their attachment performances using a pull-off setup. First, smooth suction cups were obtained for casting; then, sucker surfaces were engraved with a laser cutter. As expected, for all the tested cases, the engraving treatment enhanced the attachment performance of the elastomeric suction cups compared with that of the smooth versions. Moreover, the results indicated that the surface geometry with the best attachment performance was the geometry most similar to octopus sucker morphology. The results obtained in this work can be utilized to design artificial suction cups with higher wet attachment performance.

摘要

章鱼的吸盘能够附着在所有无孔表面上,并产生非常强大的附着力。这种动物广为人知的附着特性源于吸盘组织的柔软性以及吸盘与物体或基质接触部分的表面形态。与人工吸盘不同,章鱼吸盘的特点是有一系列径向凹槽,这些凹槽在附着过程中增加了承受减压的面积。在本研究中,我们构建了具有不同表面几何形状的人工吸盘,并使用拉脱装置测试了它们的附着性能。首先,通过铸造获得光滑的吸盘;然后,用激光切割机在吸盘表面雕刻。正如预期的那样,在所有测试案例中,与光滑版本相比,雕刻处理提高了弹性体吸盘的附着性能。此外,结果表明,附着性能最佳的表面几何形状是与章鱼吸盘形态最相似的几何形状。这项工作中获得的结果可用于设计具有更高湿附着性能的人工吸盘。

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