College of Agricultural Engineering, Shanxi Agricultural University, Jinzhong, China.
Key Laboratory of Bionic Engineering, Ministry of Education, College of Biological and Agricultural Engineering, Jilin University, Changchun, China.
PLoS One. 2023 Jun 9;18(6):e0286567. doi: 10.1371/journal.pone.0286567. eCollection 2023.
Adhesion is the basic ability of many kinds of animals in nature, which ensures the survival and reproduction of animal populations. The aquatic abalone has a strong adhesion capacity. In this study, we observed the microscopic morphology of abalone abdominal foot surface, and found that the surface was covered with a large number of fibers. Then five types of force measuring plates were designed and processed for the adhesion test of abalone abdominal foot. According to the test results, the composition of abalone abdominal foot adhesion force was analyzed and the proportion of various adhesion force to the total adhesion force of abalone abdominal foot was calculated. Among them, the vacuum adhesion force accounts for more than half of the total adhesion force of abalone abdominal foot, and its proportion is more than 60%. Van der Waals force also plays an important role, and its proportion is more than 20%. The proportion of capillary force is very small, which is only about 1%. Its main role is to form a liquid film to prevent the gas from flowing into the sucker. The vacuum adhesion of abalone abdominal foot can be further divided into the whole adhesion of abdominal foot, the local adhesion of abdominal foot and the frictional equivalent vacuum adhesion. And the whole adhesion of abdominal foot is basically equivalent to the local adhesion of abdominal foot. This study quantifies the proportion of various adhesion forces to the total adhesion force of the abdominal foot, which provides a reference for the further study of other adhesive creatures and the design of bionic underwater adhesion devices.
黏附是自然界中许多动物的基本能力,它确保了动物种群的生存和繁殖。水生鲍鱼具有很强的黏附能力。在本研究中,我们观察了鲍鱼腹足的微观形貌,发现表面覆盖着大量的纤维。然后,我们设计并加工了五种类型的测力板,用于鲍鱼腹足的黏附测试。根据测试结果,分析了鲍鱼腹足黏附力的组成,并计算了各种黏附力在鲍鱼腹足总黏附力中的比例。其中,真空吸力占鲍鱼腹足总黏附力的一半以上,其比例超过 60%。范德华力也起着重要作用,其比例超过 20%。毛细力的比例很小,约为 1%。其主要作用是形成液体膜,防止气体流入吸盘。鲍鱼腹足的真空黏附可以进一步分为整个腹足的黏附、局部腹足的黏附以及等效的摩擦真空黏附。并且整个腹足的黏附基本等同于局部腹足的黏附。本研究量化了各种黏附力在腹足总黏附力中的比例,为进一步研究其他黏附生物和设计仿生水下黏附装置提供了参考。