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Durability of organic coated reinforced magnesium oxychloride cement concrete

机译:有机涂层增强镁水泥混凝土耐用性耐久性

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Zinc-rich coating as a sacrificial anode provides cathodic protection for steel bars, so it can provide protection only for the steel bars for a certain period of time, and fundamentally cannot solve the problem of steel bar corrosion in magnesium oxychloride cement concrete (MOCC). However, the organic coating protects the steel by its own shielding. Therefore, organic coated reinforced MOCC (ORMOCC) is more adaptable in western saline soil and salt lake areas. ORMOCC's durability degradation process includes four aspects, but its durability degradation model under those four factors has not been studied. Therefore, combined with the environment of western salt lakes and saline soil, the solution immersion test was performed on ORMOCC, and the durability degradation of steel bars was studied with electrochemical tests. The degradation durability of organic coatings was studied by Fourier transform infrared spectroscopy. Crack formation and the mass loss of MOCC were studied by ultrasonic and quality tests, taking the four corresponding parameters as degradation indicators. Based on the four-dimensional Copula function, the degradation model of ORMOCC under four degradation factors was established. The results showed that the four-dimensional Copula function can describe the durability degradation process of ORMOCC under the influence of the four factors well, and it reaches the damage state at approximately 12,450 days.
机译:富锌涂层作为牺牲阳极为钢筋提供阴极保护,因此它可以仅为钢筋提供一段时间,从根本上无法解决氧化氯化镁水泥混凝土(MOCC)中的钢筋腐蚀问题。但是,有机涂层通过自己的屏蔽保护钢。因此,有机涂覆的增强MOCC(ORMOCC)在西部盐水土壤和盐湖区域更适应。 Ormocc的耐久性降解过程包括四个方面,但它在这四种因素下的耐久性降级模型尚未研究。因此,与西方盐湖和盐渍土的环境相结合,对Ormocc进行溶液浸渍试验,用电化学测试研究了钢筋的耐久性降解。通过傅里叶变换红外光谱研究了有机涂层的降解耐久性。通过超声波和质量试验研究了裂缝形成和MOCC的质量损失,将四个相应的参数作为降解指标进行。基于四维Copula功能,建立了四种降解因子下的ormocc的降解模型。结果表明,四维拷贝功能可以在四个因素的影响下描述ormocc的耐久性降解过程,并且在大约12,450天内达到损伤状态。

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