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作 者:Jing Yu Jie Ren Guangming Shen Weixiang Sun Hui Wang
机构地区:[1]Department of Architectural Engineering,Ningbo Polytechnic,Ningbo,315000,China [2]Technology and Performance Management Department,China Construction Infrastructure Corp.,Ltd.,Beijing,10029,China [3]Chief Engineer’s Office,Jiuzhou Engineering Design Co.,Ltd.,Zhengzhou,451162,China [4]School of Civil Engineering and Geographic Environment,Ningbo University,Ningbo,315000,China
出 处:《Fluid Dynamics & Materials Processing》2023年第9期2385-2398,共14页流体力学与材料加工(英文)
基 金:supported by 2023 University-Level Scientific Research Project of Ningbo Polytechnic(NZ23002);the First Batch of Ningbo Construction Scientific Research Projects in 2023(20230106).
摘 要:In this paper,the influence of NaCl freeze-thaw(F-T)cycles and dry-wet(D-W)alternations on theflexural,com-pressive and bonding strengths of alkali-activatedfly ash(FA)and a blast furnace slag powder(BFS)is investi-gated.The considered NaCl concentration is 3%.The effect of polypropylenefibers on the mechanical strengths is also examined.Scanning electron microscopy(SEM),thermogravimetry(TG)and X-ray diffraction(XRD)are selected to discern the mechanisms underpinning the NaCl-induced erosion.The obtained results indicate that the best results in terms of material resistance are obtained with admixtures containing 60%BFS and 40%FA in terms of mass ratio and 3%polypropylenefibers in terms of volume ratio.The maximum rates of decrease of theflexural,compressive and bonding strengths after 300 NaCl F-T cycles are 21.5%,20.3%and 22.6%,respec-tively.The corresponding rates of decrease due to NaCl D-W alternations are 28.1%,26.1%and 31.5%,respec-tively.The TG curves show that the alkali-activating activity of BFS is higher than that of FA.Moreover,in thefirst case,the microstructure of the hydration products is more compact.The results also show that NaCl F-T cycles lead to increasing cracks in the alkali-activated BFS.
关 键 词:Mechanical performances ALKALI-ACTIVATED NaCl dry-wet alternations NaCl freeze-thaw cycles MICROSTRUCTURE
分 类 号:TB33[一般工业技术—材料科学与工程]
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