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Behavior of high performance concrete pastes with different mineral admixtures in simulated seawater environment

机译:含不同矿物掺合料的高性能混凝土浆在模拟海水环境中的行为

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With the blooming of ocean construction engineering, the influence of seawater on concrete durability draws increasing attentions. This paper investigates the performances of five high performance concrete (HPC) pastes, including pure cement paste, fly ash (FA) paste, limestone powder (LP) paste, ground granulated blast-furnace slag (GGBS) paste and silica fume (SF) paste, soaked in simulated seawater. The results indicate that the addition of FA would improve the strength of paste soaked in simulated seawater compared to pure cement paste from 90 d to 360 d and the order of strength in 360 d was, FA paste Pure cement paste LP paste GGBS paste SF paste. All mineral admixtures except LP can inhibit the expansion of paste soaked in simulated seawater at later age and the order of expansion rate in 360 d was, LP paste Pure cement paste FA paste GGBS paste SF paste. The internal structure of pastes soaked in simulated seawater at 360 d mainly contains Ca(OH)(2), AFt, gypsum, Mg(OH)(2), C3S and C2S while the external structure of pastes mainly contains Mg(OH)(2), CaCO3 and AFt through the XRD spectra. SEM results proved that the addition of mineral admixtures can make the structure of the pastes denser. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随着海洋建筑工程的蓬勃发展,海水对混凝土耐久性的影响越来越引起人们的关注。本文研究了五种高性能混凝土(HPC)浆的性能,包括纯水泥浆,粉煤灰(FA)浆,石灰石粉(LP)浆,磨碎的高炉矿渣(GGBS)浆和硅粉(SF)糊,浸泡在模拟海水中。结果表明,与纯水泥浆相比,添加FA可以使浸泡在模拟海水中的浆的强度从90 d提高到360 d,并且360 d强度的顺序为:FA浆>纯水泥浆> LP浆> GGBS粘贴> SF粘贴。除LP外,所有矿物掺合料均能抑制后期浸泡在模拟海水中的糊料的膨胀,在360 d内膨胀率的顺序为LP糊料>纯水泥糊料> FA糊料> GGBS糊料> SF糊料。在360 d的模拟海水中浸泡的糊状物的内部结构主要包含Ca(OH)(2),AFt,石膏,Mg(OH)(2),C3S和C2S,而糊状物的外部结构主要包含Mg(OH)( 2),通过XRD光谱获得CaCO3和AFt。 SEM结果证明,添加矿物掺合料可以使糊的结构更致密。 (C)2018 Elsevier Ltd.保留所有权利。

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