Architectural hybrid material composites: computationally enabled techniques to control form generation

Architectural hybrid material composites: computationally enabled techniques to control form generation
复制标题

建筑混合材料复合材料:控制形状生成的计算技术

DOI:
--
复制
发表时间:
2020
影响因子:
2.3
通讯作者:
André G. P. Brown
André G. P. Brown
中科院分区:
--
文献类型:
--
作者:
Yorgos Berdos;Asterios Agkathidis;André G. P. Brown

文献摘要

被引文献

相似文献

摘要 本文通过重新思考制造在形式生成过程中的作用,探讨了新型混合复合材料在建筑中应用的潜力。我们的工作展示了由两种柔性材料组成的复合材料系统的开发,当它们一起作用时,允许变化的刚度状态并通过制造过程获得结构能力。这种形态发生行为在制造时发生,是两种材料、它们的几何排列和制造过程之间共生相互作用的结果。我们的目标是研究一种新颖的集成设计方法,其中复合材料的制造过程驱动并增强材料性能。我们的研究结果包括初始拉伸前几何形状及其拉伸后对应几何形状的正式词汇,以及此类复合材料的物理实验和数字模拟之间的比较。
ABSTRACT This paper explores the potential for new hybrid composite material applications in Architecture by re-thinking the role of fabrication in the process of form-generation. Our work presents the development of composite materials system consisting of two flexible materials, which, when acting together, allow for variable states of stiffness and gain structural capacity through the process of fabrication. This morphogenetic act occurs at the moment of making as a result of the symbiotic interaction between the two materials, their geometric arrangement and the fabrication process. Our aim is to investigate a novel approach for integrated design, where the fabrication process of a composite material actuates and enhances material performance. Our findings include a formal vocabulary of initial, pre-stretched geometries and their post-stretched counterpart, as well as comparisons between physical experiments and digital simulations of such composites.