ICD/ITKE Research Pavilion 2016-17 By University of Stuttgart

Bring possibilities for future architectural construction in fabric materials by its unique characteristics.

项目标签

设计公司
University of Stuttgart
位置
Germany
类型
ArchitectureMaterial
材料
Fibers
标签
3D PrintStuttgart
分类
installation

非常感谢 University of Stuttgart 将以下内容授权gooood发行。更多关于他们:University of Stuttgart on gooood
Appreciation towards University of Stuttgart for providing the following description:

斯图加特大学宣布ICD/ITKE 2016-17 科研展馆落成。ICD/ITKE科研展馆展示了利用纤维材质独有的特性为未来的建造方式和大跨度纤维的扩展提供了可能性。此次研究成果基于综合计算,设计和建造。全部项目研究来自于建筑,工程和生物领域,跨学科的学生和研究人员。

ICD/ITKE科研展馆包含总长184千米树脂浸染的玻璃和碳纤维。轻质的材料被用来创造和测试单一长跨度为12米的悬臂。表面覆盖面积约40平方米,重量约为1000公斤。装置外的结构优先完成,因此内部交通空间被限制在固定尺寸内。然而,最新的发现证实装置可以变化来适应现场或实验基地的建造,这项发现可能会被用作未来更大的跨度和结构。这个典型的展馆设计是可扩展长跨度工艺的概念验证,此纤维复合结构元件适合建筑学应用。

▼装置全貌,full view

Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart

▼适用于建筑应用的无人操控制造设备,fabrication setup of fiber winding robotic arms and autonomous drone carrying a fiber

Research Pavilion 2016 17 By University of Stuttgart

▼多机网络物理制造系统,multi-machine cyber-physical fabrication system

Research Pavilion 2016 17 By University of Stuttgart

▼运输长跨度纤维复合结构到现场,transport of long-span fiber composite structure to site

Research Pavilion 2016 17 By University of Stuttgart

▼综合设计空间图,diagram of integrated design space

Research Pavilion 2016 17 By University of Stuttgart 1

▼长跨度纤维复合材料施工的可扩展制造工艺概念,scalable fabrication process concept for long-span fiber composite construction

Research Pavilion 2016 17 By University of Stuttgart 1

▼用于大跨度纤维缠绕工艺的多机通信图,diagram of multi-machine communication for long-span fiber winding process

Research Pavilion 2016 17 By University of Stuttgart 1

▼定制自动无人机拆解图,exploded diagram of custom autonomous drone

Research Pavilion 2016 17 By University of Stuttgart

▼张力控制机构图,diagram of tension control mechanism

Research Pavilion 2016 17 By University of Stuttgart

▼结构发展过程图,Diagram of structural development process

Research Pavilion 2016 17 By University of Stuttgart 1

▼显示内部应力轨迹的结构模拟图,diagram of structural simulation showing internal stress trajectories

Research Pavilion 2016 17 By University of Stuttgart

▼纤维材料,fabric materials

Research Pavilion 2016 17 By University of Stuttgart   Research Pavilion 2016 17 By University of Stuttgart

Research Pavilion 2016 17 By University of Stuttgart   Research Pavilion 2016 17 By University of Stuttgart

The ICD/ITKE Research Pavillon 2016-17 demonstrates the architectural and structural potential of glass and carbon fibre-reinforced composites. Based on the unique affordances and characteristics of fiber construction, a radically different approach to fabrication becomes possible. By combining long-range machines with limited payloads, a scalable fabrication setup for long-span fibre composite construction becomes possible.The research builds on a series of successful pavilions, which investigate integrative computational design, engineering and fabrication, and explores their spatial ramifications and construction possibilities. The project was designed and fabricated by students and researchers within an interdisciplinary team of architects, engineers and biologists. 

The ICD/ITKE Research Pavilion 2016-17 was created by laying a combined total of 184 km of resin- impregnated glass and carbon fibre. The lightweight material system was employed to create and test a single long spanning cantilever with an overall length of 12 m as an extreme structural scenario. The surface covers an area of about 40 m2 and weighs roughly 1000 Kg. The realized structure was manufactured offsite and thus the size was constrained to fit within an allowable transport volume. However, variations of the setup were found suitable for on-site or in situ fabrication, which could be utilized for much longer span and larger fibre composite structures. The prototypical pavilion is a proof-of-concept for a scalable fabrication processes of long-span, fibre composite structural elements, suitable for architectural applications. 

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求职与招人上谷德招聘世界级传播选谷德推广

7 评论

  1. 用户名712896

    66

  2. _Steins_

    材料学发展促进社会进步

  3. 秋儒

    技术是支撑建筑的因素,用了纤维材料做出了这样的作品,是其他普通材料所办不到的。就像从古到今,从秦的纵架斜撑到汉的反宇再到现在的大垮曲面建筑,我们的思维创造也会随着技术改变。谁知道未来的建筑还能有什么不可思议的地方呢?希望看到更多类似此文章中的研究项目。

  4. Sangel

    科技只是一方面,更重要的是对建筑元素的思考!用纤维来完成构筑的前提是研究纤维,科技只是最表象的那一层手段而已。类似某院校的一个课题:用布完成一个建筑单体(完全用布,包括结构体系),看似远离市场,但是是很有意义的。相信经历过那种课程的学生,工作之后如果遇到“做一个竹子主题的建筑”之类的设计要求,那岂不是小儿科了?~总之,希望看到更多类似此文章中的研究项目。PS:不参与撕逼,不回复~

  5. XIONG XIONG

    真的很牛逼啊!能实现出来就已经值得赞赏了啊

  6. Praefect Cuspidation

    德式黑科技,哈哈哈

  7. 卢西尼奥

    又是斯图加特····量产型设计。

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