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Experimental investigation and analytical modelling of shear strength of thin walled textile-reinforced UHPC beams

机译:薄壁纺织加固UHPC梁剪切强度的实验研究与分析模型

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The combination of two high performance materials, ultra-high performance concrete and carbon reinforcement, allows for the construction of efficient, durable thin-walled structural elements. In order to investigate the shear behaviour of such elements a test series on thin-webbed textile reinforced T-beams was planned and carried out at the Institute of Structural Engineering at TU Wien. In the experiments the efficiency of carbon textile reinforcement grids with different impregnation materials used as shear reinforcement was analysed. Furthermore, the shear span to effective depth ratio as well as the effect of prestressing on the shear carrying capacity was investigated. This article describes the experimental programme and shows the test results. The evaluation of the results indicates a higher shear performance of beams with lower-tex sand coated, acrylonitrile-styrene-acrylate copolymers impregnated textile fabrics than with Heavy-Tow grids with an epoxy resin impregnation. For the case of prestressing the carbon fibre reinforced polymer an additional increase of the shear carrying capacity of the thin-walled carbon textile reinforced structures was verified.
机译:两种高性能材料,超高性能混凝土和碳加固的组合,可施加高效,耐用的薄壁结构元素。为了研究这种元件的剪切行为,计划在Tu Wien的结构工程研究所进行薄卷绕式纺织品增强T梁的试验系列。在实验中,分析了用作剪切增强件的不同浸渍材料的碳纺织加固栅格的效率。此外,研究了剪切跨度对有效深度比以及预应力对剪切承载能力的影响。本文介绍了实验程序并显示了测试结果。结果的评价表明,具有下部Tex砂涂层的梁的横剪性能较高,丙烯腈 - 苯乙烯 - 丙烯酸酯共聚物浸渍纺织织物,而不是具有环氧树脂浸渍的重丝栅格。对于预应力预应力的情况,碳纤维增强聚合物验证了薄壁碳织物增强结构的剪切承载能力的额外增加。

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