Evolutionary Biology of Invertebrates, Institute of Evolution and Ecology, University of Tübingen, Auf der Morgenstelle 28, 72076 Tübingen, Germany.
Bioinspir Biomim. 2017 Dec 13;13(1):016007. doi: 10.1088/1748-3190/aa967c.
Many successful examples of biomimetic products are available, and most research efforts in this emerging field are directed towards the development of specific applications. The theoretical and conceptual underpinnings of the knowledge transfer between biologists, engineers and architects are, however, poorly investigated. The present article addresses this gap. We use a 'technomorphic' approach, i.e. the application of conceptual tools derived from engineering design, to better understand the processes operating during a typical biomimetic research project. This helps to elucidate the formal connections between functions, working principles and constructions (in a broad sense)-because the 'form-function-relationship' is a recurring issue in biology and engineering. The presented schema also serves as a conceptual framework that can be implemented for future biomimetic projects. The concepts of 'function' and 'working principle' are identified as the core elements in the biomimetic knowledge transfer towards applications. This schema not only facilitates the development of a common language in the emerging science of biomimetics, but also promotes the interdisciplinary dialogue among its subdisciplines.
有许多仿生产品的成功案例,这个新兴领域的大多数研究工作都致力于开发特定的应用。然而,生物学家、工程师和建筑师之间知识转移的理论和概念基础研究得还很少。本文旨在弥补这一空白。我们使用“技术形态学”方法,即应用源自工程设计的概念工具,来更好地理解典型仿生研究项目中运行的过程。这有助于阐明功能、工作原理和结构(广义上)之间的形式联系,因为“形式-功能关系”是生物学和工程学中的一个反复出现的问题。所提出的方案还可用作概念框架,可用于未来的仿生项目。“功能”和“工作原理”的概念被确定为仿生学向应用领域知识转移的核心要素。该方案不仅促进了仿生学这一新兴科学领域的通用语言的发展,也促进了其各子学科之间的跨学科对话。