Perricone Valentina, Santulli Carlo, Rendina Francesco, Langella Carla
Department of Engineering, University of Campania Luigi Vanvitelli, Via Roma 29, 81031 Aversa, Italy.
School of Science and Technology, Università di Camerino, Via Gentile III da Varano 7, 62032 Camerino, Italy.
Biomimetics (Basel). 2021 Sep 28;6(4):56. doi: 10.3390/biomimetics6040056.
Organisms and their features represent a complex system of solutions that can efficiently inspire the development of original and cutting-edge design applications: the related discipline is known as biomimetics. From the smallest to the largest, every species has developed and adapted different working principles based on their relative dimensional realm. In nature, size changes determine remarkable effects in organismal structures, functions, and evolutionary innovations. Similarly, size and scaling rules need to be considered in the biomimetic transfer of solutions to different dimensions, from nature to artefacts. The observation of principles that occur at very small scales, such as for nano- and microstructures, can often be seen and transferred to a macroscopic scale. However, this transfer is not always possible; numerous biological structures lose their functionality when applied to different scale dimensions. Hence, the evaluation of the effects and changes in scaling biological working principles to the final design dimension is crucial for the success of any biomimetic transfer process. This review intends to provide biologists and designers with an overview regarding scale-related principles in organismal design and their application to technical projects regarding mechanics, optics, electricity, and acoustics.
生物体及其特征代表了一个复杂的解决方案系统,能够有效地激发原创和前沿设计应用的发展:相关学科被称为仿生学。从最小的到最大的,每个物种都基于其相对的尺寸范围发展并适应了不同的工作原理。在自然界中,尺寸变化会在生物体结构、功能和进化创新方面产生显著影响。同样,在从自然界到人工制品的解决方案的仿生转移中,需要考虑尺寸和缩放规则。对在非常小的尺度上出现的原理的观察,例如纳米和微观结构的原理,通常可以被看到并转移到宏观尺度。然而,这种转移并非总是可行的;许多生物结构应用于不同尺度维度时会失去其功能。因此,评估将生物工作原理缩放至最终设计尺寸时的效果和变化,对于任何仿生转移过程的成功至关重要。本综述旨在为生物学家和设计师提供关于生物体设计中与尺度相关的原理及其在机械、光学、电学和声学等技术项目中的应用的概述。