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Preparation and characterization of lightweight aggregate foamed geopolymer concretes aerated using hydrogen peroxide  ( SCI-EXPANDED收录 EI收录)   被引量:68

文献类型:期刊文献

英文题名:Preparation and characterization of lightweight aggregate foamed geopolymer concretes aerated using hydrogen peroxide

作者:Shi, Jinyan[1,2];Liu, Baoju[2];Liu, Yuanchun[1];Wang, Enliang[1];He, Zhihai[3];Xu, Huijie[1];Ren, Xiaodong[1]

机构:[1]Northeast Agr Univ, Sch Water Conservancy & Civil Engn, Harbin 150030, Peoples R China;[2]Cent South Univ, Sch Civil Engn, Changsha 410075, Peoples R China;[3]Shaoxing Univ, Sch Civil Engn, Shaoxing 312000, Peoples R China

年份:2020

卷号:256

外文期刊名:CONSTRUCTION AND BUILDING MATERIALS

收录:SCI-EXPANDED(收录号:WOS:000540841400048)、、EI(收录号:20202108684796)、Scopus(收录号:2-s2.0-85084853426)、WOS

基金:This work was jointly supported by Applied Technology Research and Development Plan of Heilongjiang Province (GZ16B010, GZ16B020) and Heilongjiang Postdoctoral Financial Assistance (LBH-Z13045).

语种:英文

外文关键词:Lightweight foamed geopolymer; Expanded polystyrene; Hydrogen peroxide; Thermal insulation; Microstructure

外文摘要:In this study, novel green lightweight foamed geopolymer concretes (LFGC) aerated using hydrogen peroxide based on fly ash, metakaolin and expanded polystyrene (EPS) particles was developed for thermal insulation materials. Physical properties, mechanical strength, thermal characteristics and permeability of LFGC were evaluated by designing and optimizing the components of EPS particles, hydrogen peroxide, metakaolin and fly ash. Meanwhile, the internal microstructure was also investigated by pore structure and scanning electron microscope. The results show that as the content of EPS particles and hydrogen peroxide increased, the compressive strength of LFGC decreased by 57.6% and 9.7%, respectively. The lightweight and thermal insulation properties are enhanced as the EPS particles and hydrogen peroxide content increase due to the contribution of low-density EPS particles and closed foamed air voids. The LFGC presented its dry density range of 300-650 kg/m(3), the compressive strength between 2.0 and 5.5 MPa and the thermal conductivity between 0.122 and 0.195 W/m center dot K, showing better mechanical strength than the traditional ordinary cement foamed concrete with the same density. Meanwhile, the microstructure also shows that the EPS particles have good compatibility with the foamed geopolymer pastes. (C) 2020 Elsevier Ltd. All rights reserved.

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