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Effect of Silane Coupling Agents on the Durability of Polymer Concrete

机译:硅烷偶联剂对聚合物混凝土耐久性的影响

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Over the past two decades, polymer concrete has increasingly been used for a number of applications including piping, machine bases, chemically resistant flooring, and bridge overlays. Currently, the use of polymer concrete as a wear surface for polymetric composite bridge decks is being investigated. Polymer concrete is a particulate composite comprised of mineral aggregate bound by a polymeric matrix. Such materials possess significantly higher mechanical properties than portland cement concrete. However,the mechanical characteristics and environmental durability of polymer concrete are influenced by a number of factors. Among these are the selection of agreegate and resin, surface treatment and cure conditions. The present work is mainly focused on the effects of water on polymer concrete properties and to the mechanisms by which degradation occurs. The basalt-based polymer concrete systems investigated were susceptible to attack by water. Furthermore, the results suggest that the property loss associated with water exposure was primarily a result of interfacial weakening. In an effort to improve the interfacial bond strength, the use of silane coupling agents was investigawted. The results suggest that silanes may be used successfully to improve polymer concrete behavior.
机译:在过去的二十年中,聚合物混凝土越来越多地用于许多应用,包括管道,机器基,化学抗性地板和桥覆盖。目前,正在研究使用聚合物混凝土作为用于多种复合桥甲板的磨损表面。聚合物混凝土是由聚合物基质结合的矿物骨料组成的颗粒状复合物。这些材料具有比波特兰水泥混凝土的机械性能明显更高。然而,聚合物混凝土的机械特性和环境耐久性受到许多因素的影响。其中是选择同意和树脂,表面处理和固化条件。本作本作主要集中在水对聚合物混凝土性能的影响和降解发生的机制。研究的基于玄武岩的聚合物混凝土系统易受水攻击的影响。此外,结果表明与水暴露相关的性质损失主要是界面弱化的结果。努力改善界面粘合强度,使用硅烷偶联剂的使用进行了研究。结果表明硅烷可以成功地用于改善聚合物混凝土行为。

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