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Corrosion protection performance of microsilica added concretes in NaCl and seawater environments

机译:微硅粉混凝土在NaCl和海水环境中的腐蚀防护性能

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In a hardened concrete structure, diffusion of oxygen, carbon dioxide, aggressive ions and moisture from the concrete/environ- ment to the concrete/rebar interfaces takes place through the pores. This results in the failure of the passivation provided by the alkalinity of the cement to the rebars. Microsilica is a mineral that improves the corrosion protection and strength of concrete by reducing the permeability of the concrete and forming more calcium silicate hydrate (CSH) which provides strength and durability to concrete. In order to study the corrosion protection behavior of microsilica in ordinary Portland cement (OPC) and sulfate resistant cement (SRC), carbon steel reinforced concrete specimens of above cements containing l0% each of densified (DMS) and undensified (UDMS) microsilica were exposed to 5/100 NaCl solution and seawater. Corrosion of rebars was monitored using open circuit potential (OCP) measurements. Diffusion of ions into the concrete was studied by salt ingress, salt fog and rapid chloride permeability tests. It has been noted that densified microsilica provides better corrosion protection to the rebars than the undensified one. In addition to this its protective effect with SRC is much more than with OPC. An attempt has been made to explain the mechanism of corrosion protection behavior of microsilica added concrete immersed in seawater and NaCl solution.
机译:在硬化的混凝土结构中,氧气,二氧化碳,侵蚀性离子和水分从混凝土/环境扩散到混凝土/钢筋的界面会通过孔隙扩散。这导致由水泥对钢筋的碱度提供的钝化失败。微硅粉是一种矿物,可通过降低混凝土的渗透性并形成更多的硅酸钙水合物(CSH)来提高混凝土的防腐性能和强度,从而为混凝土提供强度和耐久性。为了研究微硅在普通波特兰水泥(OPC)和耐硫酸盐水泥(SRC)中的腐蚀行为,对上述水泥中分别含有致密(DMS)和未致密(UDMS)的微硅的碳钢增强混凝土标本进行了暴露到5/100 NaCl溶液和海水中。使用开路电势(OCP)测量监控钢筋的腐蚀。通过盐的侵入,盐雾和快速的氯化物渗透性试验研究了离子向混凝土中的扩散。已经注意到,致密的微二氧化硅比未致密的微二氧化硅对钢筋提供更好的腐蚀保护。除此之外,它对SRC的保护作用远大于对OPC的保护作用。试图解释浸入海水和NaCl溶液中的微硅粉混凝土的腐蚀防护行为机理。

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