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Hydration Characteristics and Microstructure of Alkali-Activated Slag Concrete: A Review 被引量:4
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作者 Qiang Fu Mengxin Bu +3 位作者 Zhaorui Zhang Wenrui Xu Qiang Yuan Ditao Niu 《Engineering》 SCIE EI CAS CSCD 2023年第1期162-179,共18页
Alkali-activated slag concrete (AASC) is a new green building material. The amount of CO_(2) produced by AASC is 1/5th of that produced by ordinary Portland cement concrete (OPCC). In addition, AASC promotes the reuse... Alkali-activated slag concrete (AASC) is a new green building material. The amount of CO_(2) produced by AASC is 1/5th of that produced by ordinary Portland cement concrete (OPCC). In addition, AASC promotes the reuse of slag and other wastes and saves resources. Furthermore, the scope of use of slag has been expanded. The progress of the research on the hydration characteristics, microstructure, interfacial transition zone, and pore structure of AASC based on the relevant literatures was analyzed and summarized in this study. The influences of the slag composition, the type and dosage of the alkali activator, and the curing conditions on the hydration characteristics and the microstructure of the AASC were discussed. Relatively few research results on the microstructure of AASC are available, and the relevant conclusions are not completely consistent. Moreover, there are many constraints on the development of AASC (e.g., complex composition of raw materials of slag, large shrinkage deformation, and low fluidity). Therefore, further research is required. 展开更多
关键词 alkali-activated slag concrete Hydration characteristics Pore structure Inter facial transiti on zone Micr ostructure
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Tests on Alkali-Activated Slag Foamed Concrete with Various Water-Binder Ratios and Substitution Levels of Fly Ash 被引量:6
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作者 Keun-Hyeok Yang Kyung-Ho Lee 《Journal of Building Construction and Planning Research》 2013年第1期8-14,共7页
To provide basic data for the reasonable mixing design of the alkali-activated (AA) foamed concrete as a thermal insulation material for a floor heating system, 9 concrete mixes with a targeted dry density less than 4... To provide basic data for the reasonable mixing design of the alkali-activated (AA) foamed concrete as a thermal insulation material for a floor heating system, 9 concrete mixes with a targeted dry density less than 400 kg/m3 were tested. Ground granulated blast-furnace slag (GGBS) as a source material was activated by the following two types of alkali activators: 10% Ca(OH)2 and 4% Mg(NO3)2, and 2.5% Ca(OH)2 and 6.5% Na2SiO3. The main test parameters were water-to-binder (W/B) ratio and the substitution level (RFA) of fly ash (FA) for GGBS. Test results revealed that the dry density of AA GGBS foamed concrete was independent of the W/B ratio an RFA, whereas the compressive strength increased with the decrease in W/B ratio and with the increase in RFA up to 15%, beyond which it decreased. With the increase in the W/B ratio, the amount of macro capillaries and artificial air pores increased, which resulted in the decrease of compressive strength. The magnitude of the environmental loads of the AA GGBS foamed concrete is independent of the W/B ratio and RFA. The largest reduction percentage was found in the photochemical oxidation potential, being more than 99%. The reduction percentage was 87% - 93% for the global warming potential, 81% - 84% for abiotic depletion, 79% - 84% for acidification potential, 77% - 85% for eutrophication potential, and 73% - 83% for human toxicity potential. Ultimately, this study proved that the developed AA GGBS foamed concrete has a considerable promise as a sustainable construction material for nonstructural element. 展开更多
关键词 alkali-activated Foamed concrete Granulated Ground BLAST-FURNACE slag FLY ASH Water-to-Binder Ratio Environmental Load
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碱激发矿渣混凝土的力学性能 被引量:15
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作者 万小梅 张宇 +2 位作者 赵铁军 张淑文 程杨杰 《材料导报》 EI CAS CSCD 北大核心 2018年第12期2091-2095,共5页
文章对碱激发矿渣混凝土(AASC)的强度发展、劈拉强度、弯曲强度、弹性模量、泊松比和应力应变关系开展了试验研究和讨论,并将其与硅酸盐水泥混凝土(OPCC)进行对比,分别提出了AASC的劈拉强度、弯曲强度、弹性模量与抗压强度之间的关系模... 文章对碱激发矿渣混凝土(AASC)的强度发展、劈拉强度、弯曲强度、弹性模量、泊松比和应力应变关系开展了试验研究和讨论,并将其与硅酸盐水泥混凝土(OPCC)进行对比,分别提出了AASC的劈拉强度、弯曲强度、弹性模量与抗压强度之间的关系模型。结果表明,相同抗压强度下,AASC的劈拉强度与OPCC基本接近,弯曲强度则高于OPCC;氢氧化钠激发矿渣混凝土的弹性模量与抗压强度的关系与OPCC基本一致,水玻璃激发矿渣混凝土的弹性模量则低于同抗压强度OPCC的弹性模量。此外,从加载过程中泊松比的变化发现,即使应力水平达到0.6,AASC的泊松比仍然保持稳定,导致其泊松比突变的应力临界水平出现在0.8左右。 展开更多
关键词 碱激发矿渣混凝土 力学性能 弹性模量 泊松比 应力应变曲线
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碱矿渣水泥混凝土研究进展及其发展前景 被引量:12
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作者 徐彬 蒲心诚 《材料导报》 EI CAS CSCD 北大核心 1998年第4期41-43,共3页
碱矿渣水泥是一种具有高强度、高耐久性、大幅度利用工业废料的新型建筑材料;基于大量文献材料综述了这种水泥的研究和应用情况。
关键词 碱矿渣水泥 混凝土 强度 耐久性 水泥混凝土
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内掺Ca(OH)_2对碱矿渣混凝土水化进程的影响 被引量:4
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作者 杨长辉 朱效宏 +2 位作者 郑雨佳 姚晓乐 杨凯 《建筑材料学报》 EI CAS CSCD 北大核心 2017年第2期161-167,共7页
以钠水玻璃为激发剂,用Ca(OH)_2等量取代矿渣,研究了不同水胶比下Ca(OH)_2对碱矿渣混凝土早期性能的影响.使用水化动力学分析、X射线衍射(XRD)及扫描电子显微镜(SEM)分析了碱矿渣混凝土的水化过程.结果表明:掺入Ca(OH)_2后,碱矿渣混凝... 以钠水玻璃为激发剂,用Ca(OH)_2等量取代矿渣,研究了不同水胶比下Ca(OH)_2对碱矿渣混凝土早期性能的影响.使用水化动力学分析、X射线衍射(XRD)及扫描电子显微镜(SEM)分析了碱矿渣混凝土的水化过程.结果表明:掺入Ca(OH)_2后,碱矿渣混凝土的凝结速率增大并造成快速坍落度损失;当Ca(OH)_2掺量(质量分数)分别为5%和10%时,碱矿渣混凝土中水泥加速期的水化反应速率常数(K)由4.76×10^(-5)分别增长至5.60×10^(-3)和1.56×10^(-2),水泥水化诱导期显著缩短,Ca(OH)_2主要作用于水化加速期,同时水化加速期反应级数(N)由2.89分别减小至1.26和0.98,意味着加速期反应由反应物通过致密层生成物扩散控制逐渐转变成反应物沉积控制;Ca(OH)_2加快了24h内碱矿渣水泥的水化,并生成了C_2ASH_8及C_4AH_(13)等水化产物. 展开更多
关键词 碱矿渣混凝土 CA(OH)2 坍落度损失 水化进程
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电阻率比检测碱矿渣混凝土收缩性能可行性探讨
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作者 杨长辉 朱效宏 +2 位作者 郑雨佳 李青 杨凯 《建筑材料学报》 EI CAS CSCD 北大核心 2016年第6期1077-1081,共5页
使用简易电阻测试法测试并计算碱矿渣混凝土不同深度的电阻率比,然后使用千分表法测试不同水胶比碱矿渣混凝土的收缩性能,并使用质量法测试同条件下碱矿渣混凝土的质量损失.建立了碱矿渣混凝土质量损失与干燥收缩之间的线性关系,探寻了... 使用简易电阻测试法测试并计算碱矿渣混凝土不同深度的电阻率比,然后使用千分表法测试不同水胶比碱矿渣混凝土的收缩性能,并使用质量法测试同条件下碱矿渣混凝土的质量损失.建立了碱矿渣混凝土质量损失与干燥收缩之间的线性关系,探寻了碱矿渣混凝土电阻率比与质量损失之间的关系.结果表明:碱矿渣混凝土质量损失与干燥收缩之间的相关系数R2大于0.890 9,且拟合曲线的斜率与碱矿渣混凝土水胶比相关性较大;碱矿渣混凝土的电阻率比对其质量损失十分敏感,且呈正相关,因此可通过监测碱矿渣混凝土的电阻率比来评价其干燥收缩性能. 展开更多
关键词 碱矿渣混凝土 电阻率比 干燥收缩 相关性
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