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Development of properties and microstructure of concrete with coral reef sand under sulphate attack and drying-wetting cycles

机译:硫酸盐侵蚀和干湿循环下珊瑚礁砂混凝土的性能和微观结构的发展

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摘要

Coral reef sand is natural abundant solid resource on islands in the tropical region and is often used in the construction projects as fine aggregates where natural river sand is rare. The concrete structures on islands are usually subjected to drying-wetting cycles from sea-water due to the waves and tides, resulting in the deterioration of durability. In this study, Portland cement concrete is prepared with coral reef sand (CPC) and the effects of combined attack of drying-wetting cycles and sulphate are investigated and compared to concrete made with natural river sand (NPC). The corrosion products are ettringite and Friedels salt for CPC and ettringite for NPC. More ettringite forms in the pores of CPC by immobilizing more sulphate from Na2SO4 solution, which causes strength loss of both CPC and NPC concrete. The salt concentrations have marginal effects on the mass change of CPC concrete. The loss of elastic modulus of CPC concrete is smaller than that of NPC concrete, due to the precipitation of ettringite in the pores of concrete, which compacts the structure of concrete. (C) 2018 Elsevier Ltd. All rights reserved.
机译:珊瑚礁砂是热带地区岛屿上自然丰富的固体资源,在建筑项目中经常以细粒骨料形式使用,而天然河砂很少。由于波浪和潮汐,岛上的混凝土结构通常会经受海水的干湿循环,导致耐久性下降。在这项研究中,用珊瑚礁砂(CPC)制备波特兰水泥混凝土,并研究了干湿循环和硫酸盐共同侵蚀的影响,并将其与天然河砂(NPC)制成的混凝土进行了比较。腐蚀产物是钙矾石和弗里德尔盐(用于CPC)和钙矾石(用于NPC)。通过从Na2SO4溶液中固定更多的硫酸盐,在CPC的孔中形成更多的钙矾石,这会导致CPC和NPC混凝土的强度损失。盐浓度对CPC混凝土的质量变化影响很小。由于钙矾石在混凝土孔隙中的沉淀,CPC混凝土的弹性模量损失小于NPC混凝土,从而使混凝土结构致密。 (C)2018 Elsevier Ltd.保留所有权利。

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