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Sulfate and Calcium Chloride Resistance of Steel/Glass Fiber-Reinforced Polymer Hybrid Panel for Improved Movable Weir Application

机译:钢/玻璃纤维增强聚合物杂交板的硫酸盐和氯化钙电阻,用于改进的可移动堰应用

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摘要

This study evaluated the performance of a hybrid panel that can overcome the current problem of corrosion of the steel panels of improved movable weirs when they are exposed to a sulfate and calcium chloride environment such as sea water. A hybrid panel with glass fiber-reinforced polymer (GFRP) layers on both sides of a steel panel means that the central panel is not exposed to the external elements, which can avoid corrosion problems. In this study, to maximize the hybrid panel's strength and durability, the moisture absorption characteristics and the durability in an accelerated environment were evaluated. The test results were considered to indicate no durability issues as the final absorption ratio was approximately 2.0% or less in all environments. Also, from the accelerated deterioration test results when the steel panel processed by sand blasting was applied in all accelerated deterioration environments, it satisfied the residual strength level of 65% or more. However, in the case without surface processing, upon exposure to MgSO4 solution, it did not satisfy the standard residual strength level of 65%. These results show that sand blasting on the surface of a steel panel is adequate for hybrid panels for improved movable weirs.
机译:该研究评估了混合板的性能,当它们暴露于硫酸盐和氯化钙环境时,可以克服当前钢板的腐蚀的当前问题。钢板两侧具有玻璃纤维增​​强聚合物(GFRP)层的混合板,意味着中央面板不会暴露在外部元件上,这可以避免腐蚀问题。在本研究中,为了最大限度地提高杂交面板的强度和耐久性,评估了加速环境中的吸湿性特性和耐久性。考虑测试结果表明所有环境中最终吸收率约为2.0%或更低的耐用性问题。此外,当在所有加速的劣化环境中应用喷砂喷砂的钢面板时,从加速的劣化测试结果中,它满足了65%以上的残留强度水平。然而,在没有表面处理的情况下,在暴露于MgSO 4溶液时,它不满足标准的残留强度水平为65%。这些结果表明,钢板表面上的喷砂对于改进的可移动堰的混合板充足。

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