混凝土的性能受各种因素的影响,尤其是具有活性的硅灰的加入,能很好的改进其性能并延长了其使用寿命,提高了工程质量.本文综述了硅灰及含有硅灰的混合掺料对混凝土耐久性与力学性能的影响,并展望了硅灰对改进混凝土性能的研究前景.
参考文献
[1] | 马艳芳,李宁,常钧.硅灰性能及其再利用的研究进展[J].无机盐工业,2009(10):8-10. |
[2] | Khan, M.I.;Siddique, R..Utilization of silica fume in concrete: Review of durability properties[J].Resources, Conservation and Recycling,2011:30-35. |
[3] | 付亚伟,王硕太,崔云长.硅灰对自密实混凝土性能的影响[J].四川建筑科学研究,2009(01):191-193,203. |
[4] | 李建权,许红升,谢红波,李国忠.硅灰改性水泥/石灰砂浆微观结构的研究[J].硅酸盐通报,2006(04):66-70. |
[5] | Konstantin Kovler;Nicolas Roussel .Properties of fresh and hardened concrete[J].Cement and Concrete Research,2011(7):775-792. |
[6] | 王振军.矿物掺合料对大流动性轻混凝土拌和物性能的影响[J].郑州大学学报(工学版),2010(02):39-41,46. |
[7] | 宋中南,石云兴.矿物微细粉复合效应对高性能混凝土工作性与流变性能的影响[J].混凝土,2003(01):16-18,46. |
[8] | Ha-Won Song;Jong-Chul Jang;Velu Saraswathy;Keun-Joo Byun .An estimation of the diffusivity of silica fume concrete[J].Building and environment,2007(3):1358-1367. |
[9] | Estimation of the permeability of silica fume cement concrete[J].Construction and Building Materials,2010(3):315. |
[10] | Mohammad Shekarchi;Alireza Rafiee;Hamed Layssi .Long-term chloride diffusion in silica fume concrete in harsh marine climates[J].Cement & concrete composites,2009(10):769-775. |
[11] | S. Lay;S. Liebl;H. Hilbig .New method to measure the rapid chloride migration coefficient of chloride-contaminated concrete[J].Cement and Concrete Research,2004(3):421-427. |
[12] | Goezde Inan Sezer .Compressive strength and sulfate resistance of limestone and/or silica fume mortars[J].Construction and Building MATERIALS,2012(1):613-618. |
[13] | S.T. LEE;H.Y. MOON;R.N. SWAMY .Sulfate attack and role of silica fume in resisting strength loss[J].Cement & concrete composites,2005(1):65-76. |
[14] | 梁咏宁,王佳,林旭健.掺合料对混凝土抗硫酸盐侵蚀能力的影响[J].混凝土,2011(02):63-65. |
[15] | A. Cwirzen;V. Penttala .Aggregate-cement paste transition zone properties affecting the salt-frost damage of high-performance concretes[J].Cement and Concrete Research,2005(4):671-679. |
[16] | 陈德玉,刘来宝,严云,谭克锋,刘欢.不同因素对再生骨料混凝土抗冻性的影响[J].武汉理工大学学报,2011(05):54-58. |
[17] | 吴泽媚,陈东丰,高培伟,耿飞,黄欣,黄明喜.氯盐和冻融双重作用对混凝土抗盐冻性的影响[J].硅酸盐通报,2011(06):1244-1248. |
[18] | Assem A.A. Hassan;Mohamed Lachemi;Khandaker M.A. Hossain .Effect of metakaolin and silica fume on the durability of self-consolidating concrete[J].Cement & concrete composites,2012(6):801-807. |
[19] | Jan Lindgard;Ozge Andic-Cakir;Isabel Fernandes .Alkali-silica reactions (ASR): Literature review on parameters influencing laboratory performance testing[J].Cement and Concrete Research,2012(2):223-243. |
[20] | 于洋,李国忠.硅灰及锂盐对碱集料反应抑制效果的研究[J].建筑材料学报,2008(04):475-480. |
[21] | Theodore Chappex;Karen Scrivener .Alkali fixation of C-S-H in blended cement pastes and its relation to alkali silica reaction[J].Cement and Concrete Research,2012(8):1049-1054. |
[22] | Andrew J. Maas;Jason H. Ideker;Maria C.G. Juenger .Alkali silica reactivity of agglomerated silica fume[J].Cement and Concrete Research,2007(2):166-174. |
[23] | M.C.G. Juenger;C.P. Ostertag .Alkali-silica reactivity of large silica fume-derived particles[J].Cement and Concrete Research,2004(8):1389-1402. |
[24] | Siddique, R. .Utilization of silica fume in concrete: Review of hardened properties[J].Resources, Conservation and Recycling,2011(11):923-932. |
[25] | Murat Pala;Erdogan Ozbay;Ahmet Oztas .Appraisal of long-term effects of fly ash and silica fume on compressive strength of concrete by neural networks[J].Construction and Building Materials,2007(1):384-394. |
[26] | Tahir Gonen;Salih Yazicioglu .The influence of mineral admixtures on the short and long-term performance of concrete[J].Building and environment,2007(8):3080-3085. |
[27] | 王洪,陈伟天,陈昌礼.硅灰对高强混凝土强度影响的试验研究[J].混凝土,2011(07):74-76. |
[28] | S. Bhanja;B. Sengupta .Influence of silica fume on the tensile strength of concrete[J].Cement and Concrete Research,2005(4):743-747. |
[29] | S. Bhanja;B. Sengupta .Modified water-cement ratio law for silica fume concretes[J].Cement and Concrete Research,2003(3):447-450. |
[30] | 黄维蓉,张淑林,黄星.多元掺合料混凝土抗硫酸盐侵蚀性能试验研究[J].混凝土,2011(09):64-67. |
[31] | 唐明,刘宏亮,李婧琦.同水胶比下混凝土中水泥-矿渣-粉煤灰-硅灰的混料效应[J].混凝土,2011(12):1-4,15. |
[32] | U. Atici .Prediction of the strength of mineral admixture concrete using multivariable regression analysis and an artificial neural network[J].Expert Systems with Application,2011(8):9609-9618. |
[33] | 周述光,何廷树.矿物掺合料和外加剂复合使用抑制ASR的效果研究[J].西安建筑科技大学学报(自然科学版),2010(01):137-141. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%