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Properties of ultra-lightweight cement composites with nano-silica

机译:纳米二氧化硅超轻质水泥复合材料的性能

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Nano-silica was used to improve the microstructures, mechanical properties and durability performances of ultra-lightweight cement composites (ULCC) in this paper. The combined expanded glass particles and cenospheres were used as fine aggregates to facilitate the ULCC mix with a density of 1075 kg/m(3) and 28-day strength of 20 MPa. With small addition of colloidal nano-silica (CNS), ULCC strength increased to 27 MPa as a result of the increased packing density of solid particles and the modification of microstructures at the interface between fine aggregates and cement paste. The greatest improvement was observed at CNS dosage of 2%, beyond which CNS particles agglomerate and the higher air content compromised the advantages. ULCC obviously exhibited higher resistance against water and chloride penetration with the incorporation of CNS. Similar findings were observed for the other ULCC mix with different water-binder ratio, verifying the beneficial influences of CNS on transport properties. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文使用纳米二氧化硅来改善超轻水泥复合材料(ULCC)的微观结构,力学性能和耐久性能。结合使用的膨胀玻璃颗粒和空心球作为细骨料,以促进ULCC混合,密度为1075 kg / m(3),28天强度为20 MPa。在少量添加胶体纳米二氧化硅(CNS)的情况下,由于固体颗粒的堆积密度增加以及细骨料与水泥浆之间的界面处的微观结构发生了变化,ULCC强度增加至27 MPa。当CNS用量为2%时,观察到最大的改善,超过此剂量,CNS颗粒会聚结,更高的空气含量损害了其优势。通过加入CNS,ULCC显然表现出更高的抗水和氯化物渗透性。对于其他具有不同水粘合剂比率的ULCC混合物,也观察到了类似的发现,证明了CNS对运输性能的有益影响。 (C)2018 Elsevier Ltd.保留所有权利。

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