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Load-Responsive Cellular Envelopes with Additive Manufacturing

机译:增材制造的负载响应型蜂窝信封

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摘要

The last decades have been marked by a growing concern over scarcity of resources caused by the rapid industrialization of emerging economies as well as by the high material consumption at a global scale. These changing environmental conditions have inevitably created new challenges and demands for mediation of the interaction between the natural and the human-made environments. In response to these challenges, designers are currently moving away from conventional top-down design, towards a nature-inspired approach in search of the underlying principles of morphogenesis and materialization inherent to biological entities. Inscribed in this approach, this paper proposes an innovative design-to-fabrication workflow for the conception of nature-inspired load-responsive skin systems which integrates the use of computational tools, Additive Manufacturing, and material experiments with full-scale prototypes. The design phase employs custom algorithms to determine an optimal material distribution for free-form architectural shapes, given a specific loading condition. Through fabrication tests at different scales, the viability of a production system based on Fused Deposition Modelling is demonstrated. Subsequently, the realization of a final prototype of a load-responsive cellular envelope cladded with Fiber-Glass Reinforced Plastic is presented. Opportunities and current limitations of the approach and the emerging architectural system are critically discussed towards future developments.
机译:在过去的几十年中,由于新兴经济体的快速工业化以及全球范围内的高材料消耗,人们越来越关注资源稀缺。这些不断变化的环境条件不可避免地给调解自然环境与人为环境之间的相互作用提出了新的挑战和要求。为了应对这些挑战,设计人员目前正在从传统的自上而下的设计转变为自然灵感的方法,以寻找生物实体固有的形态发生和物化的基本原理。以此方式刻画,本文提出了一种创新的设计制造流程,用于灵感来自大自然的负载响应皮肤系统,该系统将计算工具,增材制造和材料实验与完整原型的使用集成在一起。设计阶段采用定制算法来确定给定特定加载条件的自由形式建筑形状的最佳材料分布。通过不同规模的制造测试,证明了基于熔融沉积建模的生产系统的可行性。随后,介绍了最后的原型样机的实现,该样机由玻璃纤维增​​强塑料包裹的载荷响应型蜂窝外壳。对该方法和新兴体系结构的机会和当前局限性进行了严格讨论,以应对未来的发展。

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