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The slurry and physical-mechanical performance of autoclaved aerated concrete with high content solid wastes: Effect of grinding process

机译:高含量固废高压灭菌加气混凝土的浆液和物理力学性能:研磨过程的影响

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In high content solid-wastes autoclaved aerated concrete (HCS-AAC) preparation, the grinding process of raw materials have significant influence on the powder particle size which subsequently shows influence on the slurry uniformity and mechanical properties of HCS-AAC preparation. To clarify the effect of raw material fineness on HCS-AAC, influence of carbide slag and iron tailing fineness on slurry performance and physic-mechanical properties of HCS-AAC were investigated. Furthermore, according to the special raw material system of HCS-AAC, mix grinding process was proposed to promote pretreatment efficiency and slurry uniformity. Meanwhile, effect of mix grinding process on particles characteristics, slurry performance and physic-mechanical properties were discussed. Otherwise, economical and environmental benefits were analyzed to evaluate the environmental safety and social value of HCS-AAC products. The results indicated that raw material fineness has little influence on slurry foaming process. Meanwhile, with finer of iron tailing and carbide slag, the compressive strength of HCS-AAC were improve by 8-13%. Attributed to the non-hydration heat carbide slag, mix grinding technique was conducted to promote grinding efficient and improve compressive strength of HCS-AAC, which increased by 0.15-0.2 MPa than conventional divided grinding. The majority minerals in HCS-AAC were consist of calcium silicate hydrate (C-S-H) gel and tobermorite besides quartz and sluggishness minerals from raw materials. Additionally, HCS-AAC has significant benefits both in producing cost reduction and environmental conservation. This study provided a lower energy consumption technical route in preparation of high solid-wastes utilization, thermal insulation cellular construction material. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在高含量固废高压气加气混凝土(HCS-AAC)制备中,原料的研磨过程对粉末粒度有重大影响,随后对HCS-AAC制备的浆料均匀度和机械性能产生影响。为了阐明原料细度对HCS-AAC的影响,研究了电石渣和铁尾矿细度对HCS-AAC的浆液性能和物理力学性能的影响。此外,根据HCS-AAC的特殊原料体系,提出了混合研磨工艺以提高预处理效率和浆料均匀性。同时,讨论了混合研磨工艺对颗粒特性,浆料性能和物理力学性能的影响。否则,将分析经济和环境效益,以评估HCS-AAC产品的环境安全性和社会价值。结果表明,原料细度对浆料发泡过程影响很小。同时,随着铁尾矿和碳化渣的细化,HCS-AAC的抗压强度提高了8-13%。归因于非水合碳化钨渣,进行了混合磨削技术以提高磨削效率并提高HCS-AAC的抗压强度,与传统的分步磨削相比增加了0.15-0.2 MPa。 HCS-AAC中的大多数矿物除由原材料制成的石英和缓慢矿物外,还包括水合硅酸钙(C-S-H)凝胶和硅铁矿。此外,HCS-AAC在降低成本和环境保护方面均具有显着优势。该研究为制备高固体废物利用率的隔热蜂窝结构建筑材料提供了一条能耗更低的技术路线。 (C)2019 Elsevier Ltd.保留所有权利。

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