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Shaped Textile Reinforcement Elements for Concrete Components

机译:用于混凝土部件的纺织增强元件

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By now the application of Textile Reinforced Concrete (TRC) for facade constructions can be considered as state of the art. Especially ventilated curtain walls made of TRC and sandwich elements made in combination of TRC-layers and foam cores recently are realized in pilot projects which are predominantly located in Aachen, Germany. The Life funded Insu-Shell fa?ade of the Institute fuer Textiltechnik (ITA) of RWTH Aachen University gives an example of such a pilot project. Furthermore, a pedestrian bridge has been built in Albstadt, Germany. The enormous potential of TRC-applications is shown in these practical projects. All projects have been completed successfully and present good results in terms of the surface quality, the design freedom, the wall thinness and the ecological performance. A networked process chain was aimed at and approached and finally implemented. Apart from this, all these projects incorporating impregnated textile reinforcements reveal unanswered questions regarding production of shaped reinforcement elements, their ability to bear loads and their durability. Particularly the transformation of a 2Dwarp- knit fabric to a reinforcement element (textile reinforcement cage) is a challenge, which needs to be addressed further. Since the beginning of 2012 a new transfer project called "Shaped textile reinforcement elements for concrete components" (T08) within the framework of the Collaborative Research Center 532 Textile Reinforced Concrete - Development of a new technology is funded. That challenge is to be solved in the T08 project in cooperation with Institutes from the RWTH Aachen University and industry partners led by the Institute of Structural Concrete of RWTH Aachen University.
机译:到目前为止,纺织品钢筋混凝土(TRC)的外立构造的应用可被视为现有技术。特别是在飞行员项目中实现了由TRC和泡沫内核组合制成的TRC和夹层元件的通风幕墙,这些项目主要位于德国亚琛的飞行员项目中。 Life in Insu-shell fa?亚琛大学埃尔Textiltechnik(ITA)的Ade展示了这样一个试点项目的一个例子。此外,一座行人桥已经建造在德国阿尔巴斯塔特。在这些实际项目中显示了TRC应用的巨大潜力。所有项目都已成功完成,并在表面质量方面,设计自由,墙面薄度和生态性能方面取得了良好的效果。联网过程链旨在并达到并最终实施。除此之外,还有浸渍纺织品增强件的所有这些项目都揭示了有关生产成型强化元件的未答复的问题,它们承担载荷的能力及其耐用性。特别是将2DWARP编织织物的转化为加强元件(纺织品加固笼)是一种挑战,需要进一步解决。自2012年开始一个新的转让项目被称为合作研究中心532纺织钢筋混凝土的框架内“进行混凝土构件形纺织品增强元件”(T08) - 一种新技术的发展提供资金。该挑战将在T08项目中解决与RWTH Aachen大学结构具体研究所领导的亚琛大学和行业合作伙伴的研究所合作。

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