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BOND PERFORMANCE EXPERIMENT FOR FLY ASH CONCRETE AND STEEL BAR
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作者 王倩 吴瑾 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2012年第3期302-306,共5页
The impact of fly ash content on bond performance of steel bars and their surrounding concrete is studied by means of sticking strain gauges on steel bars. The average bond stress-slip curves, the steel strain-anchor ... The impact of fly ash content on bond performance of steel bars and their surrounding concrete is studied by means of sticking strain gauges on steel bars. The average bond stress-slip curves, the steel strain-anchor location curves, and the bond stress-anchor position curves of the pullout specimens with various fly ash contents are obtained. Results indicate that the bond performance of concrete and steel bars can be improved and the distribution of steel strain along the anchorage length tends to be more uniform by adding fly ash in concrete specimens, and both ultimate bond stress and ultimate slip deformation increase the most when 20% of specimens′ content is fly ash. 展开更多
关键词 fly ash concrete bond performance fly ash content bond stress distribution
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Manufacturing Ultra High Performance Concretes by Silica Fume, Ultra Fine Fly Ash and Metakaolin Addition
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作者 Tony Song Ion Dumitru Bob Bomstein 《材料科学与工程(中英文A版)》 2017年第3期136-142,共7页
关键词 超高性能混凝土 超细粉煤灰 偏高岭土 制造 氯离子扩散系数 超细高岭土 粉煤灰混凝土 混凝土配合比
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High Performance Concrete and Its Typical Mixes 被引量:3
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作者 Cai Yuebo , Kwan Kwokhung , Cheung Yaukai Chan Honchuen Senior Engineer, Material and Structure Department, Nanjing Hydraulic Research Institute, Nanjing 210024 P. H. Doctor, Department of Civil and Structural Engineering, University of Hong Kong Professor, Department of Civil and Structural Engineering, University of Hong Kong 《China Ocean Engineering》 SCIE EI 1995年第3期335-344,共10页
With the modern development of chemical and mineral admixtures, it is now possible to produce much higher performance concrete than before. Higher performance does not only mean higher strength, but also better durabi... With the modern development of chemical and mineral admixtures, it is now possible to produce much higher performance concrete than before. Higher performance does not only mean higher strength, but also better durability, lower risk of thermal cracking and higher dimensional stability etc. The three most effective admixtures for producing high performance concrete are superplastieizer, pulverized fuel ash and condensed silica fume. This paper outlines the properties of these materials and presents some practical guidelines for their usage. 展开更多
关键词 high performance concrete SUPERPLASTICIZER pulverized fuel ash condensed silica fume typical mixes
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Shrinkage Behavior of High Performance Concrete at Different Elevated Temperatures under Different Sealing Conditions 被引量:2
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作者 潘志华 NAKAMURA Hidemi WEE Tionghuan 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2006年第3期138-141,共4页
The shrinkage behavior of high performance cement concrete made from Portland cement, ultra fine granulated blast furnace slag and pulverized fly ash with addition of superplasticizer at different temperatures from am... The shrinkage behavior of high performance cement concrete made from Portland cement, ultra fine granulated blast furnace slag and pulverized fly ash with addition of superplasticizer at different temperatures from ambient temperature to 120 ℃ under different seuliug conditions was investigated by means of length change measurement on cylindrical concrete specimens along with curing age. Results show that drying shrinkage deformations of titled concrete specimens increased rapidly as the curing temperature rose. The development of dryiing shrinkage deformatian can be efficiently controlled with the aid of aluminum tape sealing as compared with the unsealed specimens, especially when the curing temperature is below 60℃ , although it will increase dramatically when the curing temperature is elevated to above 90%" . Polymer coating on concrete specimens showed a similar effect on the control of drying shrinkage as the sealing operation with aluminum tape. 展开更多
关键词 high performance concrete SHRINKAGE granulated blast-furnace slag fly ash elevated temperature sealing condition
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Shrinkage, Strength of High and Ordinary Concrete Incorporating Kosovo and Japanese Fly-ash
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作者 Anjeza Alaj Tatsuya Numao 《Journal of Environmental Science and Engineering(A)》 2016年第9期444-451,共8页
Ordinary and high performance concrete (OC-C 25/30 and HPC C-50/60) made with fly ash has found numerous applications all over the world since 1970. In Kosovo, fly ash as cement substitution in concrete has not been... Ordinary and high performance concrete (OC-C 25/30 and HPC C-50/60) made with fly ash has found numerous applications all over the world since 1970. In Kosovo, fly ash as cement substitution in concrete has not been utilized yet despite the large amount that is produced annually and the positive economical-environment aspects of such technique. This hesitance is due to the laek of experience in the concrete engineering field and because of the chemical composition of Kosovo fly ash, which is classified as non-standard high calcium fly ash (KF). In light of this fact, this study intended to develop further. So, this paper reports the consistency, workability, shrinkage, high and ordinary compressive strength of concrete containing different percentage of non-class high calcium fly ash as Portland cement substitution (first case-Kosovo fly ash KF) comparing results with F class-low caleium fly ash content (second ease-Japanese fly ash JF) which is common used as cement replacement. 展开更多
关键词 Non-standard fly ash ordinary and high performance concrete compressive strength shrinkage.
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Preparation for Retarding and High Early Strength Concrete
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作者 胡志坚 FENG Hao WANG Xuefei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2015年第4期787-789,共3页
The primary objective of this research was to determine optimum dosage of mixing concrete containing plasticizers and fly ash, consistent with desirable structural grade concrete properties. Factorial tests were also ... The primary objective of this research was to determine optimum dosage of mixing concrete containing plasticizers and fly ash, consistent with desirable structural grade concrete properties. Factorial tests were also conducted to investigate the four main factors: water-cementing materials ratio, water content, content of superplasticizers (SP) and fly ash content. It was found that the requirement for setting time played the dominant role in shrinkage and anti-cracking, and fly ash played a critical role in workability and reducing heat of hydration but showed insignificant effects on slump, early strength and initial setting time of concrete. 展开更多
关键词 high slump maintaining performance fly ash retarding and high early strength concrete initial setting time heat of hydration
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THE ROLE OF HVFA CONCRETE IN THE SUSTAINABILITY OF THE URBAN BUILT ENVIRONMENT
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作者 Mark Reiner Kevin Rens Anu Ramaswami 《Journal of Green Building》 2006年第4期129-140,共12页
Although fly-ash as a partial replacement for cement has been utilized for many years,its use has been almost exclusively used in low volume percentages such as 10%or 20%cement replacement.This paper looks at high vol... Although fly-ash as a partial replacement for cement has been utilized for many years,its use has been almost exclusively used in low volume percentages such as 10%or 20%cement replacement.This paper looks at high volume percentage replacements from 40%to 70%.A mini-mix study revealed that 50%and 60%cement replacement percentages were the best candidates for full scale testing.The environmental benefits included a 25%reduction in smog,human health,and fossil fuel reduction compared to the same element built with 100%Portland cement mix.The economic benefits included a 15%capital cost reduction and a 20%life-cycle cost reduction when compared with a 100%Portland cement mix.Full scale testing included a complete mix design in addition to the construction of four concrete infrastructure products.The products built included an alley panel and curb and gutter sections in the City and county of Denver,a precast manhole and lid,and a twin tee prestressed girder.Although cement products are just one of many materials used in the construction of the built environment,its production has a large impact on the environment.Lowering the embodied energy of multiple types of construction materials will have a significant effect on sustainable urban development.Symbiotic recycling of waste material,such as fly ash in concrete,back into the built environment can help reduce materials on the input side and pollution on the output side of the bulk material flow of an urban city. 展开更多
关键词 LEED high volume fly ash concrete green engineering
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Effect of Modified Supplementary Cementitious Material on Performance of Mortar and Concrete in Marine Environment 被引量:2
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作者 潘崇根 林明峰 +3 位作者 魏冬 耿健 毛江鸿 金伟良 《Journal of Shanghai Jiaotong university(Science)》 EI 2017年第5期541-548,共8页
This study aims to explore the durability issues regarding chloride ion corrosion of concrete structures, and further investigates the modified supplementary cementitious material (MSCM) which acts as a significant en... This study aims to explore the durability issues regarding chloride ion corrosion of concrete structures, and further investigates the modified supplementary cementitious material (MSCM) which acts as a significant enhancer of performance of mortar and concrete. The composition of MSCM includes mineral slag powder, fly ash and inhibitor. The microstructure, sulfate erosion resistance and electric flux of high-performance concrete are tested with MSCM, and the results show that the pore structure of concrete is improved significantly along with excellent electrochemical performance. It is observed that the substantiality of concrete after being mixed with 18% (mass fraction) MSCM is enhanced effectively. The sulfate resistance coefficient of concrete is found to be greater than 1.2, and the electric flux of concrete is less than 600C. These results have demonstrated that the MSCM possesses an excellent electrochemical performance and a wide applicative prospect in marine environment. © 2017, Shanghai Jiaotong University and Springer-Verlag GmbH Germany. 展开更多
关键词 Compressive strength Corrosion Corrosion inhibitors Durability fly ash high performance concrete MORTAR SLAGS
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超细粉煤灰形态对超高性能混凝土(UHPC)性能和结构的影响 被引量:2
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作者 贺雄飞 陈亚豪 +2 位作者 张新东 朱绘美 李辉 《材料导报》 EI CAS CSCD 北大核心 2024年第S01期249-253,共5页
本工作分别以平均粒径相近但形态分别为球形和碎片状的超细粉煤灰(UFA)替代硅灰制备超高性能混凝土(UHPC),对比研究了超细粉煤灰形态对UHPC工作性能、力学性能及其中钢纤维分布的影响,并从水化产物和微观结构等方面探究了超细粉煤灰形态... 本工作分别以平均粒径相近但形态分别为球形和碎片状的超细粉煤灰(UFA)替代硅灰制备超高性能混凝土(UHPC),对比研究了超细粉煤灰形态对UHPC工作性能、力学性能及其中钢纤维分布的影响,并从水化产物和微观结构等方面探究了超细粉煤灰形态对UHPC性能的影响机理。结果表明:与球形UFA相比,碎片状UFA的比表面积和需水量更大、活性更高。具体表现为,用于制备UHPC时,球形UFA可明显提高UHPC的流动度,但会使钢纤维下沉,并会轻微降低UHPC的力学性能;碎片状UFA对UHPC流动度的提高作用稍小,但可提高其抗折强度,此外,碎片状UFA具有更显著的大孔填充作用,在掺加碎片状UFA的UHPC中观察不到宏观气孔缺陷。 展开更多
关键词 超高性能混凝土 超细粉煤灰 形态 工作性能 力学性能 结构
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矿物掺合料复掺对超高性能湿接缝混凝土性能的影响 被引量:2
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作者 盖珂瑜 龙勇 +4 位作者 陈露一 李信 刘开志 王宇 孙涛 《硅酸盐通报》 CAS 北大核心 2024年第3期948-955,共8页
采用石灰石粉和粉煤灰微珠作为调节超高性能湿接缝混凝土性能的矿物掺合料,通过设置石灰石粉和粉煤灰微珠的不同复掺比例,研究了两种矿物掺合料对超高性能湿接缝混凝土流变性能、力学性能、收缩性能和抗渗性能的影响,并采用水化热分析... 采用石灰石粉和粉煤灰微珠作为调节超高性能湿接缝混凝土性能的矿物掺合料,通过设置石灰石粉和粉煤灰微珠的不同复掺比例,研究了两种矿物掺合料对超高性能湿接缝混凝土流变性能、力学性能、收缩性能和抗渗性能的影响,并采用水化热分析了超高性能湿接缝混凝土的水化特性。结果表明:当石灰石粉掺量高于30%(质量分数)时,随着石灰石粉掺量的增加,超高性能湿接缝混凝土的塑性黏度先增大后减小,复掺50%石灰石粉和50%(质量分数)粉煤灰微珠时,混凝土塑性黏度可降低38.0%;掺入石灰石粉可以促进水泥的早期水化,提高超高性能湿接缝混凝土的早期抗压强度,3 d抗压强度最大涨幅为11.6%;复掺石灰石粉和粉煤灰微珠可以降低超高性能湿接缝混凝土的自收缩;当复掺30%石灰石粉时,超高性能湿接缝混凝土的抗渗性能最优,28 d氯离子扩散系数为0.15×10^(-12)m^(2)/s。 展开更多
关键词 超高性能湿接缝混凝土 石灰石粉 粉煤灰微珠 塑性黏度 水化热 抗压强度 收缩性能 抗渗性能
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粉煤灰和玻璃粉对超高性能混凝土性能的影响 被引量:1
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作者 葛志龙 《湖北理工学院学报》 2024年第3期61-65,共5页
为了推动固废资源化利用,通过测试流动度、强度、收缩和微观形貌,研究了粉煤灰和玻璃粉取代硅灰对超高性能混凝土(UHPC)性能的影响。结果表明,掺加粉煤灰和玻璃粉取代硅灰提高了超高性能混凝土的流动性;单掺粉煤灰和玻璃粉降低了UHPC的... 为了推动固废资源化利用,通过测试流动度、强度、收缩和微观形貌,研究了粉煤灰和玻璃粉取代硅灰对超高性能混凝土(UHPC)性能的影响。结果表明,掺加粉煤灰和玻璃粉取代硅灰提高了超高性能混凝土的流动性;单掺粉煤灰和玻璃粉降低了UHPC的早期抗压强度和抗折强度,而双掺粉煤灰和玻璃粉提高了UHPC的早期强度;掺加粉煤灰和玻璃粉降低了UHPC收缩,其中双掺粉煤灰和玻璃粉降低效果最好;双掺粉煤灰和玻璃粉进一步密实了UHPC基体结构,改善了界面过渡区结构。该研究可推动粉煤灰和玻璃粉在UHPC中的应用。 展开更多
关键词 超高性能混凝土 粉煤灰 玻璃粉 强度 微观结构
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生物质电厂灰作高性能混凝土掺合料的试验分析
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作者 唐宁 王正君 +1 位作者 乔伟毅 尹博鑫 《广东建材》 2024年第4期19-22,共4页
生物质电厂灰获取便利且具有一定火山灰活性。为测试生物质电厂灰作高性能混凝土掺合料的可行性和性能影响,本文对生物质电厂灰进行了理化特性分析,对灰样进行了预处理,制备了10%,20%和30%掺量的高性能混凝土试块进行了抗压强度试验和... 生物质电厂灰获取便利且具有一定火山灰活性。为测试生物质电厂灰作高性能混凝土掺合料的可行性和性能影响,本文对生物质电厂灰进行了理化特性分析,对灰样进行了预处理,制备了10%,20%和30%掺量的高性能混凝土试块进行了抗压强度试验和抗氯离子渗透性能测试,结果表明以处理后的生物质电厂灰作高性能混凝土的掺合料,随掺量增加,高性能混凝土试块抗压能力减小,但总体满足强度要求;掺入生物质电厂灰可以提高高性能混凝土抗氯离子侵蚀能力。 展开更多
关键词 生物质 电厂灰 高性能混凝土 废料利用
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粉煤灰和钢纤维对超高性能混凝土抗冲磨性能的影响
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作者 丁大伟 郭子涵 +4 位作者 张伟 张秀新 马怡彤 王鑫鹏 侯东帅 《硅酸盐通报》 CAS 北大核心 2024年第10期3585-3594,共10页
为探明粉煤灰和钢纤维对超高性能混凝土(UHPC)抗冲磨性能的影响机理,本文采用宏观力学试验、水下抗冲磨试验等测试方法,结合SEM、MIP等微观表征技术,研究了粉煤灰和钢纤维对UHPC工作性能、力学性能、微观结构和抗冲磨性能的影响。结果表... 为探明粉煤灰和钢纤维对超高性能混凝土(UHPC)抗冲磨性能的影响机理,本文采用宏观力学试验、水下抗冲磨试验等测试方法,结合SEM、MIP等微观表征技术,研究了粉煤灰和钢纤维对UHPC工作性能、力学性能、微观结构和抗冲磨性能的影响。结果表明,粉煤灰取代部分水泥使UHPC水化放热峰的出现延缓了约3 h,3 d累计放热量减少了18%,同时显著提高了UHPC的工作性能。粉煤灰的掺入降低了UHPC的早期力学性能,钢纤维的掺入提高了UHPC的抗折强度和抗压强度;蒸汽养护条件下,钢纤维与粉煤灰复掺使UHPC抗折强度和抗压强度分别提高了82%和47%。此外,粉煤灰对UHPC的抗冲磨性能影响很小,而钢纤维提升了UHPC的抗冲磨性能,钢纤维与粉煤灰复掺使UHPC的抗冲磨强度提升了58%。UHPC的抗压强度与抗冲磨强度呈现明显的正相关性。粉煤灰的掺入降低了最可几孔径、孔隙率和毛细孔含量,使基体内部结构更加均匀、密实。 展开更多
关键词 粉煤灰 钢纤维 超高性能混凝土 抗冲磨性能 微观结构 力学性能
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高性能粉煤灰混凝土桥梁徐变变形控制研究
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作者 刘旭 《粉煤灰综合利用》 CAS 2024年第5期116-120,共5页
为了降低徐变变形对桥梁结构性能、使用寿命及安全性的不利影响,提出一种高性能粉煤灰混凝土桥梁徐变变形控制方法。以高性能粉煤灰混凝土为例,构建有限元模型,获取桥梁的徐变参数,并提出延长铺轨时间、设计铺设恒载的顺序、策划体内和... 为了降低徐变变形对桥梁结构性能、使用寿命及安全性的不利影响,提出一种高性能粉煤灰混凝土桥梁徐变变形控制方法。以高性能粉煤灰混凝土为例,构建有限元模型,获取桥梁的徐变参数,并提出延长铺轨时间、设计铺设恒载的顺序、策划体内和体外预应力束徐变变形控制方法。结果表明:使用4种控制方法后有效降低了徐变变形引起的桥梁下挠值与桥梁上拱值,有效控制了混凝土桥梁的后期变形,说明所提方法是合理可行的,可为今后工程设计提供一定的理论依据。 展开更多
关键词 高性能粉煤灰 徐变变形 桥梁构件 混凝土强度
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粉煤灰基超高性能混凝土配合比优化研究
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作者 刘超群 朱泽文 +3 位作者 代力 陈磊伟 吴福全 李亮华 《粉煤灰综合利用》 CAS 2024年第3期11-15,共5页
粉煤灰部分取代水泥制备UHPC,研究粉煤灰基矿物外加剂FA-ad、减水剂种类及掺量、灰砂比、胶凝材料配比、水胶比和钢纤维掺量对UHPC流动性和力学性能的影响,并结合上述因素对UHPC的配合比进行优化。结果表明:粉煤灰基矿物外加剂FA-ad对U... 粉煤灰部分取代水泥制备UHPC,研究粉煤灰基矿物外加剂FA-ad、减水剂种类及掺量、灰砂比、胶凝材料配比、水胶比和钢纤维掺量对UHPC流动性和力学性能的影响,并结合上述因素对UHPC的配合比进行优化。结果表明:粉煤灰基矿物外加剂FA-ad对UHPC流动性影响最大;SD~600P~02减水剂效果最好;灰砂比为1∶1时较合适,矿物掺合料最优掺量为25%,最优水胶比为0.18,钢纤维最优掺量为2%。 展开更多
关键词 超高性能混凝土 粉煤灰 流动性 力学性能 配合比
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基于粒子群算法的火力发电厂粉煤灰高性能混凝土配合比优化
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作者 杨东林 《工程技术研究》 2024年第10期131-133,共3页
当前火力发电厂粉煤灰混凝土配合比计算常基于单一环境,文章提出基于粒子群算法的粉煤灰高性能混凝土配合比优化方案,明确材料基础掺量,增强多环境计算的可靠性,构建优化模型,采用抗渗测定优化配合比。实验结果表明,经过三个配合比优化... 当前火力发电厂粉煤灰混凝土配合比计算常基于单一环境,文章提出基于粒子群算法的粉煤灰高性能混凝土配合比优化方案,明确材料基础掺量,增强多环境计算的可靠性,构建优化模型,采用抗渗测定优化配合比。实验结果表明,经过三个配合比优化阶段的测定,测试构件的抗压强度均可以达到30 MPa以上,说明在粒子群算法的辅助下,优化方法的针对性更高。 展开更多
关键词 粒子群算法 火力发电厂 粉煤灰 高性能混凝土 配合比优化
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超细粉煤灰高性能混凝土的力学性能 被引量:37
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作者 李益进 周士琼 +1 位作者 尹健 高英力 《建筑材料学报》 EI CAS CSCD 2005年第1期23-29,共7页
研究了由电收尘气流分选工艺收集的超细粉煤灰对高性能混凝土力学性能的影响;采用多元回归分析方法研究了影响超细粉煤灰高性能混凝土不同龄期抗压强度、劈裂抗拉强度的因素.试验结果表明:超细粉煤灰的掺入改善了混凝土的力学性能,并使... 研究了由电收尘气流分选工艺收集的超细粉煤灰对高性能混凝土力学性能的影响;采用多元回归分析方法研究了影响超细粉煤灰高性能混凝土不同龄期抗压强度、劈裂抗拉强度的因素.试验结果表明:超细粉煤灰的掺入改善了混凝土的力学性能,并使混凝土的长期抗压强度稳定增长.与同强度等级的普通混凝土相比,超细粉煤灰高性能混凝土的钢筋握裹力有所提高,干缩和徐变降低,而抗剪强度则与之接近,应力-应变曲线与之类似. 展开更多
关键词 超细粉煤灰 高性能混凝土 握裹力 土力学 应变曲线 劈裂抗拉强度 抗压强度 力学性能 掺入 电收尘
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粉煤灰对高性能混凝土早期收缩的抑制及其机理研究 被引量:30
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作者 安明喆 朱金铨 +1 位作者 覃维祖 马亚峰 《中国铁道科学》 EI CAS CSCD 北大核心 2006年第4期27-31,共5页
自收缩是引起低水胶比高性能混凝土早期开裂的主要原因。通过不同掺量粉煤灰混凝土自收缩的测定,研究粉煤灰对高性能混凝土自收缩的抑制作用。通过水化结合水和内部孔含量的测定以及微观结构形貌分析,研究粉煤灰抑制自收缩的作用机理... 自收缩是引起低水胶比高性能混凝土早期开裂的主要原因。通过不同掺量粉煤灰混凝土自收缩的测定,研究粉煤灰对高性能混凝土自收缩的抑制作用。通过水化结合水和内部孔含量的测定以及微观结构形貌分析,研究粉煤灰抑制自收缩的作用机理。研究表明:粉煤灰通过改变胶凝材料体系水化速度、徐变系数、弹性模量,可以有效抑制早期混凝土的自收缩。粉煤灰掺量在0~20%范围内,混凝土自收缩随着粉煤灰掺量的增加而减少,但粉煤灰惨量超过20%后自收缩减少的幅度变小。粉煤灰抑制自收缩的作用在初凝至1d龄期内非常突出。 展开更多
关键词 高性能混凝土 自收缩 粉煤灰 抑制 机理
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石粉与粉煤灰对C60机制砂高性能混凝土性能的影响 被引量:84
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作者 李北星 周明凯 +1 位作者 田建平 胡晓曼 《建筑材料学报》 EI CAS CSCD 2006年第4期381-387,共7页
针对国家标准GB/T 14684—2001《建筑用砂》关于配制C60以上混凝土所用机制砂石粉含量限值3%(质量分数,下同)的规定,研究了不同石粉含量(3.5%,7.0%,10.5%,14.0%)与不同粉煤灰掺量(0,11.3%,17.0%)对C60机制砂高性能混凝土工作性、抗压强... 针对国家标准GB/T 14684—2001《建筑用砂》关于配制C60以上混凝土所用机制砂石粉含量限值3%(质量分数,下同)的规定,研究了不同石粉含量(3.5%,7.0%,10.5%,14.0%)与不同粉煤灰掺量(0,11.3%,17.0%)对C60机制砂高性能混凝土工作性、抗压强度、弹性模量、干缩率、氯离子扩散系数和抗冻性的影响,以及石粉作掺和料对C60机制砂高性能混凝土工作性和抗压强度的影响.据此,提出了在采用机制砂配制C60高性能混凝土时,机制砂中石粉的含量可以放宽到10.5%,机制砂混凝土中粉煤灰的掺用可以不考虑机制砂石粉含量的高低,且机制砂中的一部分石粉可作为掺和料使用,其替代量大致为水泥用量的11.3%. 展开更多
关键词 机制砂 石粉 粉煤灰 高性能混凝土 性能
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粉煤灰掺量对高性能混凝土徐变性能的影响及其机理 被引量:60
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作者 赵庆新 孙伟 +3 位作者 郑克仁 陈惠苏 秦鸿根 刘建忠 《硅酸盐学报》 EI CAS CSCD 北大核心 2006年第4期446-451,共6页
为研究粉煤灰对高性能混凝土徐变性能的影响,在(20±1)℃、相对湿度为(60±5)%的条件下测试了33%载荷水平下粉煤灰等量取代水泥量(质量分数,下同)为0,12%,30%和50%时高性能混凝土的徐变度。试验结果表明:粉煤灰掺量为12%和30%时... 为研究粉煤灰对高性能混凝土徐变性能的影响,在(20±1)℃、相对湿度为(60±5)%的条件下测试了33%载荷水平下粉煤灰等量取代水泥量(质量分数,下同)为0,12%,30%和50%时高性能混凝土的徐变度。试验结果表明:粉煤灰掺量为12%和30%时,混凝土抵抗徐变的能力随其掺量增加而增强,其365d的徐变度分别为不掺粉煤灰混凝土的76%和46.5%。粉煤灰掺量为50%时,混凝土抵抗徐变的能力没有得到改善,其365d的徐变度为不掺粉煤灰的混凝土的102%。应用扫描电镜二次电子成像观测不同掺量下的粉煤灰颗粒与基体的结合情况,并结合水泥–粉煤灰体系中非蒸发水量的研究,试分析了粉煤灰掺量对高性能混凝土徐变的影响机理。结果表明:粉煤灰掺量对于其“微集料效应”的发挥存在一临界值,当粉煤灰掺量小于该临界值时,粉煤灰与基体结合良好,“微集料效应”得以正常发挥。混凝土的徐变度受到体系的非蒸发水量和“微集料效应”发挥程度的影响。粉煤灰掺量越大,体系的非蒸发水量越小,“微集料效应”发挥程度越高,徐变度减小越明显,并且混凝土的徐变度减小率与体系的非蒸发水量减小率和微集料数量正相关。当粉煤灰掺量超过临界值时,混凝土的徐变性能受到体系水化产物数量、“微集料效应”和粉煤灰与基体结合情况这3个因素的共同作用,并且随着粉煤灰掺量的继续增加,其与基体结合情况对混凝土徐变性能的负面影响显著增强。 展开更多
关键词 高性能混凝土 徐变机理 粉煤灰 掺量 微集料效应 非蒸发水
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