具有阻尼特性的仿生结构的发展:概念、工具和应用

Antônio Roberto Miranda de Oliveira, Amilton Arruda, E. Arruda
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摘要

在建筑和设计中,新材料可以用来创造更耐用、更可持续、更美观的产品,这些产品更轻、更坚固。本研究通过仿生学的方法,利用扫描电子显微镜(SEM)、微计算机断层扫描(Micro-CT)和三维计算机重建技术,对橙子、百香果、可可和石榴4种热带水果结构进行分析,生成具有阻尼和耗散特性的新结构。结果,基于橙子中果皮(反照率)中发现的细胞壁排列,开发了一种仿生结构。通过这种开发的结构,可以通过数字制造在树脂中进行计算测试和原型制作。因此,开发生物启发材料以更好地吸收冲击和阻尼是很重要的,因为它可以帮助提高从运动器材到医疗设备等各种产品的安全性和有效性,除了有助于可持续性和能源效率之外,还可以引起各个知识领域的极大兴趣,并有助于探索新材料。
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Development of bioinspired structure with damping properties: concepts, tools and applications
In architecture and design, new materials can be used to create more durable, sustainable, and aesthetically pleasing products that are lighter and stronger. Through biomimetics, this study analyzed 4 tropical fruit structures - orange, passion fruit, cocoa and pomegranate - to generate a new structure with damping and energy dissipation properties with the aid of scanning electron microscopy (SEM), micro-computed tomography (Micro-CT) and three-dimensional computerized reconstruction. As a result a bio-inspired structure was developed based on the cell wall arrangements found in the mesocarp (albedo) of the orange - Citrus sinensis. Through this developed structure it was possible to make computational tests and its prototyping in resin through digital fabrication. Thus, the development of bio-inspired materials for better impact absorption and damping is important because it can help improve the safety and effectiveness of a wide variety of products, from sports equipment to medical equipment, in addition to contributing to sustainability and energy efficiency, points of great interest for various areas of knowledge and contribution to the exploration of new materials.
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