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Pneumatic forming of hardened concrete - building shells in the 21st century

机译:气动成型的21世纪硬化混凝土建筑外壳

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Double-curvature shells, used as supporting structures, are strong and save materials. Major parts of the applied loads can be carried by normal forces. Thus, the stresses are distributed very uniformly and efficiently over the entire cross-section, and long spans can be built with small thicknesses. The state of the art in the construction of shell structures is characterized by a high labour input for formwork and falsework. A new construction method without formwork and falsework has been invented at the Institute for Structural Engineering at Vienna University of Technology. The idea of this new construction method is to build concrete shells with a double curvature originating from an initially plane plate. During the transformation process, the hardened concrete plate is lifted and the elements are bent with the aid of pneumatic formwork until the required curvature is reached. Non-linear finite element calculations, tension tests, bending tests and bonding tests were carried out in order to determine a suitable combination of concrete and reinforcement. The second part of the paper describes a large-scale experiment for the erection of a 17.6 x 10.8 m, 2.9 m high free-form shell. Finally, different applications for the new method are explained.
机译:双曲壳用作支撑结构,坚固且节省材料。所施加载荷的主要部分可以由法向力承载。因此,应力在整个横截面上非常均匀且有效地分布,并且可以以较小的厚度构建长跨度。在壳体结构的构造中,现有技术的特征在于用于模板和脚手架的大量劳动投入。维也纳工业大学结构工程研究所发明了一种没有模板和模板的新施工方法。这种新的施工方法的想法是,以最初为平板的双倍曲率建造混凝土壳体。在转换过程中,抬起硬化的混凝土板,并借助气动模板将元件弯曲,直到达到所需的曲率为止。为了确定混凝土和钢筋的合适组合,进行了非线性有限元计算,拉伸试验,弯曲试验和粘结试验。本文的第二部分描述了对17.6 x 10.8 m,2.9 m高的自由形式壳体的竖立大型实验。最后,说明了新方法的不同应用。

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