提出并设计新的微型结构穹顶系列:基于仿生学的方法

IF 3.1 1区 艺术学 0 ARCHITECTURE Frontiers of Architectural Research Pub Date : 2024-03-12 DOI:10.1016/j.foar.2024.01.004
Nadir Rihani , Iatimad Akhrif , Mostapha El Jai
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引用次数: 0

摘要

在过去的十年中,微建筑结构因其轻质、坚固和热效率高的特性在学术界和工业界获得了极大的关注。受仿生学设计的启发,本文介绍了一种新颖的增材制造微结构穹顶(MAD)肋骨系列。该设计融合了四足金字塔单元格、基于黄金分割率的分形图案、肖恩最小陀螺和球形几何。研究重点是将穹顶半径、高度和方位角/仰角分区作为输入变量,主要输出为棱形微单元直径。通过问题解决和数值计算,确定了单位电池直径与输入变量之间的关系:与穹顶半径的线性关系,以及与方位角和仰角分区的双曲线关系。拟议的设计成功地遵循了肖恩最小陀螺仪的表面体积比,实现了 2.5% 的平均体积相对密度,证实了其轻质特性。通过使用丝熔制造技术制作三个试样,进一步证实了该设计的可行性。这项研究展示了受生物仿生学启发的微架构结构的潜力,为各个领域的创新应用铺平了道路。
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Proposition and design of a new Micro-Architected Domes family: A biomimicry-based approach

In the last decade, micro-architected structures have gained significant attention in academia and industry for their lightweight, strong, and thermally efficient properties. Inspired by biomimicry design, this paper presents a novel ribbed family of additively manufactured Micro-Architected Domes (MAD). The design incorporates tetrapod pyramid unit cells, golden ratio-based fractal patterns, Schoen's Minimal Gyroid, and spherical geometry. The study focuses on dome radius, height, and azimuth/elevation partitioning as input variables, with the main output being ribbed micro-cell diameter. The relationships between unit-cells’ diameter and input variables were established through problem-solving and numerical computations: linear dependency with the dome radius and hyperbolic dependency with the azimuth and elevation partitioning. The proposed design successfully adhered to the Surface-to-Volume ratio of Schoen's Minimal Gyroid, achieving an average volume relative density of 2.5%, confirming its lightweight nature. The feasibility of the design was further supported by fabricating three specimens using Filament Fused Fabrication. This research showcases the potential of biomimicry-inspired micro-architected structures, paving the way for innovative applications in various fields.

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来源期刊
CiteScore
6.20
自引率
2.90%
发文量
430
审稿时长
30 weeks
期刊介绍: Frontiers of Architectural Research is an international journal that publishes original research papers, review articles, and case studies to promote rapid communication and exchange among scholars, architects, and engineers. This journal introduces and reviews significant and pioneering achievements in the field of architecture research. Subject areas include the primary branches of architecture, such as architectural design and theory, architectural science and technology, urban planning, landscaping architecture, existing building renovation, and architectural heritage conservation. The journal encourages studies based on a rigorous scientific approach and state-of-the-art technology. All published papers reflect original research works and basic theories, models, computing, and design in architecture. High-quality papers addressing the social aspects of architecture are also welcome. This journal is strictly peer-reviewed and accepts only original manuscripts submitted in English.
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