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An Overview of Bioinspired and Biomimetic Self-Repairing Materials

机译:仿生仿生自修复材料概述

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摘要

During the 3.8 billion years of biological evolution, a multitude of functional principles has been developed in all kingdoms of life enabling the sealing and healing of diverse types of damage. Inspired by this treasure trove, biologists and engineers have become increasingly interested in learning from biological insights for the development of self-repairing materials. In this review, particular attention is paid to the systematic transfer of knowledge from wound reactions in biological role models to technical applications with self-repair function. This knowledge transfer includes bioinspiration in terms of the conscious implementation of an idea from nature or biomimetics in the form of a systematic transfer of underlying functional principles found in selected biological role models. The current overview presents a selection of breakthroughs regarding bioinspired or biomimetic self-repairing materials, including the initial basic publications and the recent publications of the last eight years. Each reviewed publication is presented with reference to three key criteria: (i) self-repair mechanisms in plants or animals as role models; (ii) knowledge transfer from living nature to technology; and (iii) bioinspired or biomimetic materials with self-repair function. Finally, damage control is discussed with a focus on damage prevention and damage management.
机译:在38亿年的生物进化过程中,已在所有生命王国中开发了多种功能原理,从而能够密封和治愈各种类型的损害。受这个宝库的启发,生物学家和工程师对从生物学见识中学习自我修复材料的兴趣越来越浓厚。在这篇综述中,要特别注意将知识从生物学角色模型中的伤口反应系统转移到具有自我修复功能的技术应用中。这种知识转移包括有意识地从自然界或仿生体实现思想的形式的生物启发,形式是在选定的生物学榜样中发现的潜在功能原理的系统转移。本概述介绍了有关仿生或仿生自我修复材料的一系列突破,包括最初的基础出版物和最近八年的最新出版物。每个审阅的出版物均参考三个关键标准:(i)植物或动物的自我修复机制作为榜样; (ii)知识从自然界向技术界转移; (iii)具有自我修复功能的仿生或仿生材料。最后,讨论了损害控制,重点是损害预防和损害管理。

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