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The application of actively tensioned membranes as form work for complex curvatures in concrete structures

机译:主动张拉膜在混凝土结构复杂曲率模板中的应用。

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While digital tools have opened the floodgates to the exploration and definition of complex geometries in many design fields in the last two decades, their utilization in architecture has been limited depending on the material and fabrication method. Specifically with concrete, complex curvatures have been realized with great difficulty due to the tremendous expense of customized formwork methods utilized, thereby precluding its use from all but the most expensive of constructions. This research explores, demonstrates, and documents a process - as proof of concept from inception to scaled fabrication - of an economic, efficient, and rapid method for designing and constructing complex curvatures in structures of in-situ concrete using digital design, analysis, and fabrication tools. The work builds upon the rich history of concrete fabric forming, both as a method of formal exploration, and of construction efficiency. The present research seeks to combine these two lines of exploration and demonstrate the formal possibilities for medium and even large-scale structures. Specifically, the work introduces the use of actively-tensioned membranes into the vocabulary of fabric formwork and explores its' practical and formal potential. The use of active-tensioning for concrete formwork foregrounds the geometry of minimal (i.e. anticlastic) surfaces as a territory of exploration for formal expression. Rather than the outright invention of new construction technologies, the research leverages unrealized potential in established fabrication and construction methods, and opens the door to the mass-customization of complex geometries in concrete. The formwork process results in a fully-integrated load-bearing envelope performing thermal and waterproofing functions, thereby reducing construction time and minimizing construction waste.
机译:尽管在过去的二十年中,数字工具为许多设计领域中的复杂几何形状的探索和定义打开了闸门,但由于材料和制造方法的原因,其在建筑中的应用受到了限制。特别是对于混凝土,由于所采用的定制模板方法的巨大费用,很难实现复杂的曲率,因此,除了最昂贵的结构之外,其他所有方法都无法使用它。这项研究探索,演示和记录了一种过程,作为从概念创建到大规模制造的概念证明,是一种经济,高效,快速的方法,该方法使用数字设计,分析和设计方法来设计和构造现浇混凝土结构中的复杂曲率。制造工具。这项工作建立在混凝土织物成型的丰富历史上,既可以作为形式探索的方法,又可以提高施工效率。本研究试图将这两条探索线结合起来,并证明中型甚至大型结构的形式可能性。具体而言,该工作将主动张紧的膜的使用引入了织物模板的词汇表中,并探索了其实际和形式潜力。对于混凝土模板使用主动张紧将最小(即抗弹性)表面的几何形状作为形式表达探索的领域。这项研究没有直接发明新的施工技术,而是利用了既定的制造和施工方法中未实现的潜力,为大规模定制混凝土中的复杂几何形状打开了大门。模板过程可实现热工和防水功能的完全集成的承重围护结构,从而减少了施工时间并减少了施工浪费。

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