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Waterproofing performance of waterstop with adhesive bonding used at joints of underground concrete structures

机译:地下混凝土结构关节用粘合剂的Waterstop防水性能

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Waterstop is a typically used waterproofing material to prevent water leakage through the joints where consecutive concrete casting is not possible during the construction of underground concrete structures. A conventional waterstop, however, frequently allows for water passage through the interface between a waterstop and concrete under a high water-pressure environment owing to a deep excavation depth and high groundwater table. An alternative solution proposed in this study is to use artificial adhesive bonding between the waterstop and concrete using double-sided adhesive tape to actively prohibit water leakage through joints under a high hydrostatic pressure. The performance of the proposed waterproofing system was experimentally evaluated and compared with the control system (without adhesive). The results indicated that the adhesive bonding type resisted water migration under the pressure head of 30 m, whereas the conventional waterstop could not effectively waterproof even at the pressure head of 10 m in the soundly constructed cementitious composite structures. In addition, the peel strength, which is the bonding strength between the adhesive tape and cementitious composite, was measured to quantify the effect of surface contamination of the waterstop on the interface bonding strength. The adhesive tape on the surface of the waterstop was "contaminated" by either or both sand and bentonite slurry for the peel strength test. The results indicate that the surface contamination of the waterstop does not induce a meaningful reduction in the bonding strength for the tested conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:Waterstop是一种通常使用的防水材料,以防止通过接头泄漏,在地下混凝土结构的构造过程中不可能进行连续混凝土铸造。然而,传统的Waterstop经常允许水通道通过在高水压环境下在WaterStop和混凝土之间的界面之间进行,由于深挖掘深度和高地下水位。本研究提出的替代解决方案是使用双面胶带在Waterstop和混凝土之间使用人工粘合剂,以在高静水压力下通过接头主动禁止漏水。采用实验评估所提出的防水系统的性能,并与控制系统(无粘合剂)进行比较。结果表明,胶粘剂粘合型耐压型在30米的压力头下抵抗水迁移,而传统的武术甚至不能有效地防水,即使在适当地构造的水泥复合结构中10米的压力头也不能有效防水。另外,测量粘合带和水泥复合材料之间的粘合强度的剥离强度,以量化Waterstop对界面粘合强度的表面污染的影响。 Waterstop表面上的胶带通过用于剥离强度测试的砂和膨润土浆料“污染”。结果表明,Waterstop的表面污染不会引起测试条件的粘合强度的有意义。 (c)2019 Elsevier Ltd.保留所有权利。

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