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首页> 外文期刊>Acta polytechnica >INFLUENCE OF AGGRESSIVE ENVIRONMENT ON THE TENSILE PROPERTIES OF TEXTILE REINFORCED CONCRETE
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INFLUENCE OF AGGRESSIVE ENVIRONMENT ON THE TENSILE PROPERTIES OF TEXTILE REINFORCED CONCRETE

机译:恶劣环境对纺织增强混凝土拉伸性能的影响

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This article deals with the long-term durability of a relatively new composite – textile reinforced concrete (TRC). The studied composite material introduces a modern and favourite solution in contemporary architecture and structural engineering. It could also be used in renovation and monument restoration due to its high utility properties. The experimental program was focused on the determination of the resistance of the TRC in an aggressive environment using durability accelerated tests. The high performance concrete (HPC), which we used in our study, exhibited a compressive strength exceeding 100MPa after 28 days. Specimens were subjected to a 10% solution of H2SO4, 10% solution of NaOH, and freeze-thaw cycling respectively. All these environments can occur in real conditions in the TRC practical utilization. The testing was carried out on “dog-bone” shaped specimens, specially designed for the tensile strength measurement. Studied TRC specimens were reinforced by textiles of three different square weight that were applied in one or two layers, which led to the expected increase of tensile strength The freeze-thaw cycling had the biggest influence on the tensile properties, because it causes micro-cracks formation. The specimens exposed to the chemically aggressive environment deteriorated mostly on the surface, because of the high density of the concrete and generally low penetration of the media used. The resistance of the studied TRC to the aggressive environment increased with the applied reinforcement rate. The performed experimental programme highlighted the necessity of including the durability properties in the design of structural elements.
机译:本文讨论了一种相对较新的复合材料-纺织增强混凝土(TRC)的长期耐久性。所研究的复合材料为现代建筑和结构工程引入了现代且最受欢迎的解决方案。由于其高实用性,它也可以用于装修和纪念碑修复。实验程序的重点是使用耐用性加速测试确定在侵蚀性环境中TRC的电阻。我们在研究中使用的高性能混凝土(HPC)在28天后显示出超过100MPa的抗压强度。将样品分别经受10%的H 2 SO 4溶液,10%的NaOH溶液和冻融循环。在TRC的实际使用中,所有这些环境都可能在真实条件下发生。测试是针对专门设计用于拉伸强度测量的“狗骨头”形试样进行的。研究过的TRC标本通过三种不同平方重的纺织品进行了一层或两层的涂覆,从而增强了预期的拉伸强度。冻融循环对拉伸性能的影响最大,因为它会引起微裂纹编队。由于混凝土的高密度和所用介质的渗透率通常较低,因此暴露于化学侵蚀性环境下的样品大多在表面变质。研究的TRC对侵蚀环境的抵抗力随所施加的增强率而增加。进行的实验程序强调了在结构元件的设计中包括耐久性的必要性。

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