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Electronic controlled adaptive formwork for freeform concrete walls and shells

机译:自由型混凝土墙和壳体的电子控制自适应模板

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Concrete walls in general require two form work sides that are exposed to considerable rheological concrete pressure during casting process and the initial curing phases. For realization of complex geometry i.e. double curvature, additional technological complexity is the consequence. Free form wall formwork is nowadays dominated by the use of rigid milled foam blocks or router cut wooden rib and bulkhead style systems, resulting in a considerable amount of technical and financial effort in realization. A reusable formwork with the ability to change its topology multiple times according to a given geometry has the potential to reduce the economic and ecologic impact of free formed concrete walls thus allowing an extended formal freedom in architectural design. While adjustable form work tables for horizontally cast shells are presently researched on be at various places, the researcher's objective is a reusable two surface system that engages electronically controlled hydraulic or mechanic actuators to change the topology of its two upright formwork surfaces in a defined curvature range.
机译:混凝土墙通常需要两个形式的工作侧,其在铸造过程中暴露于相当大的流变混凝土压力和初始固化阶段。为了实现复杂几何形状,即双曲率,额外的技术复杂性是结果。如今,自由形式的墙壁模板由使用刚性铣削泡沫块或路由器削减木肋和舱壁样式系统,实现了相当多的技术和金融努力。根据给定几何体多次改变其拓扑的能力具有可重复使用的模板,可能有可能降低自由形成的混凝土墙的经济和生态影响,从而允许建筑设计中的延长正式的自由。虽然目前正在研究水平铸造壳的可调节形式工作台,但研究人员的目标是可重复使用的两个表面系统,可以使用电子控制的液压或机械致动器在限定的曲率范围内改变其两个直立模板表面的拓扑。 。

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