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Experimental Study of Environmental Conditions on In-Situ Engineered Cementitious Composites-Steel Deck Interface

机译:原位工程水泥复合材料 - 钢甲板界面环境条件的实验研究

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摘要

In this study, engineered cementitious composite (ECC) was used as a deck paving for long-span bridges. The feasibility of using an epoxy adhesive to achieve wet-bonding between a steel deck and cast-in-place ECC was evaluated. The shear and pull-off tests were conducted to evaluate the effects of freeze-thaw cycles and hydrothermal aging on interfacial properties. The test results indicate that the interfacial strength decreases with an increase in the number of freeze-thaw cycles and the duration of hydrothermal aging. Based on an inclined shear test, a criterion for interface failure under the combined action of shear and compression is also proposed. Wet-bonding technology might promote the application of ECC in the surfacing system for orthotropic steel deck bridge and further extend the service life of a bridge structure.
机译:在该研究中,工程化水泥复合材料(ECC)用作长跨度桥的甲板铺路。评价使用环氧粘合剂在钢甲板和就地ECC之间实现湿粘合的可行性。进行剪切和拉出试验以评估冻融循环和水热老化对界面性质的影响。测试结果表明界面强度随着冻融循环循环的数量和水热老化的持续时间而降低。基于倾斜的剪切测试,还提出了在剪切和压缩的组合作用下的界面故障的标准。湿粘合技术可能促进ECC在正交钢甲板桥梁堆焊系统中的应用,进一步延长桥梁结构的使用寿命。

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