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Stable Failure-Inducing Micro-Silica Aqua Epoxy Bonding Material for Floating Concrete Module Connection

机译:用于浮式混凝土模块连接的稳定的诱发失效的微硅水族环氧树脂粘结材料

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摘要

Many recent studies in the development of floating concrete structures focused on a connection system made of modules. In the connection system, the modules are designed to be attached by pre-stressing (PS) while floating on the water, which exposes them to loads on the surface of the water. Therefore, the development of a pre-connection material becomes critical to ensure successful bonding of floating concrete modules. Micro-silica mixed aqua-epoxy (MSAE) was developed for this task. To find the proper MSAE mix proportion, 0% to 4% micro-silica was mixed in a standard mixture of aqua-epoxy for material testing. Also, the effect of micro-silica on the viscosity of the aqua epoxy was evaluated by controlling the epoxy silane at proportions of 0%, ±5%, and ±10%. After completion of the performance tests of the MSAE, we evaluated the effect of MSAE in a connected structure. The plain unreinforced concrete module joint specimens applied with MSAE at thicknesses of 5, 10, and 20 mm were prepared to be tested. Finally, we evaluated the performance of MSAE-applied reinforced concrete (RC) module specimens connected by PS tendons, and these were compared with those of continuous RC and non-MSAE-applied beams. The results showed that the mix of micro-silica in the aqua-epoxy changed the performance of the aqua-epoxy and the mix ratio of 2% micro-silica gave a stable failure behavior. The flexural capacity of concrete blocks bonded with MSAE changed according to the bond thickness and was better than that of concrete blocks bonded with aqua-epoxy without micro-silica. Even though MSAE insignificantly increases the load-carrying capacity of the attached concrete module structure, the stress concentration reduction effect stabilized the failure of the structure.
机译:浮动混凝土结构开发中的许多最新研究都集中在由模块制成的连接系统上。在连接系统中,模块设计为通过在水上漂浮时通过预应力(PS)进行连接,从而使它们承受水面上的载荷。因此,预连接材料的开发对于确保成功粘结浮动混凝土模块至关重要。为此目的开发了微硅混合水环氧树脂(MSAE)。为了找到合适的MSAE混合比例,将0%至4%的微二氧化硅与标准的水基环氧混合物混合以进行材料测试。另外,通过将环氧硅烷的比例控制在0%,±5%和±10%,评价了微二氧化硅对水基环氧树脂粘度的影响。完成MSAE的性能测试后,我们评估了MSAE在连接结构中的效果。准备使用厚度为5、10和20 mm的MSAE的普通无钢筋混凝土模块接头样品进行测试。最后,我们评估了由PS筋连接的MSAE施加的钢筋混凝土(RC)模块标本的性能,并将其与连续RC和非MSAE施加的梁进行了比较。结果表明,微硅粉在水基环氧树脂中的混合改变了水基环氧树脂的性能,混合比例为2%的微硅粉具有稳定的破坏行为。用MSAE粘结的混凝土砌块的抗弯能力随粘结厚度的变化而变化,并且比用无水二氧化硅的无微硅石粘结的混凝土砌块的抗弯能力更好。即使MSAE显着增加了附加混凝土模块结构的承载能力,但应力集中减小的效果仍稳定了该结构的破坏。

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