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Subsequently Applied Waterproof Basements Made of Textile Reinforced Concrete Using theSpraying Method

机译:随后使用喷涂方法涂覆的纤维增强混凝土制成的防水地下室

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Many regions in Germany show a rising groundwater level. Hence, the load case of buildings concerned changes from non-pressing to pressing water. Residential buildings not designed for the load case of pressing water have to be refitted. Conventional sealing methods are often associated with high complexity and high costs as well as the loss of living space. Furthermore, in many cases, they do not consider the additional static load of pressing water at all. This paper presents a newly developed, subsequently applied sealing against pressing water. It is made of textile-reinforced concrete. Using this composite material, it is possible to produce a sealing system with a wall thickness of about 30 to 35 mm (1.18 to 1.38 in.). During the production of an exhibit wall, it became apparent that the spraying technique is an adequate and practicable method to produce a subsequent sealing of textile reinforced concrete. Initial observations of the wall subjected to hydrostatic pressure reveal the application potential of this construction.
机译:德国许多地区的地下水位都在上升。因此,有关建筑物的负荷情况从非压水变为压水。并非为压水情况设计的住宅建筑必须重新安装。常规的密封方法通常与高复杂度和高成本以及居住空间的损失有关。此外,在许多情况下,他们根本没有考虑压水的额外静载荷。本文介绍了一种新开发的,随后用于密封压水的密封件。它由纺织品增强的混凝土制成。使用这种复合材料,可以生产壁厚约为30到35毫米(1.18到1.38英寸)的密封系统。在生产展墙的过程中,很明显,喷涂技术是一种足够的实用方法,可用于随后密封纺织增强混凝土。对承受静水压力的墙的初步观察揭示了这种结构的应用潜力。

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