参考文献/References:
[1] 吴中伟.绿色高性能混凝土:混凝土的发展方向[J].混凝土与水泥制品,1998(1):3-6.
WU Zhong-wei.Green high performance concrete:the trend of concrete development[J].China Concrete and Cement Products,1998(1):3-6.
[2] 李 松,孙 健,李 童.矿物掺合料对混凝土强度及抗渗性能的影响[J].福建建材,2010(4):27-28,63.
LI Song,SUN Jian,LI Tong.Effect of mineral admixture on the strength and permeability of concrete [J].Fujian Building Materials,2010(4):27-28,63.
[3] 牛荻涛,李春晖,宋 华.复掺矿物掺合料混凝土碳化深度预测模型[J].西安建筑科技大学学报:自然科学版,2010,42(4):464-467,472.
NIU Di-tao,LI Chun-hui,SONG Hua.A model for predicting carbonation depth of concrete with multi-mineral admixtures[J].Journal of Xi′an Architecture and Technology University:Natural Science Edition,2010,42(4):464-467,472.
[4] 刘爱新.粉煤灰混凝土的性能与应用[J].混凝土,2001(12):6-8.
LIU Ai-xin.Performance and Application of Fly Ash Concrete[J].Concrete,2001(12):6-8.
[5] 张粉芹,王海波,王起才.掺合料和引气剂对混凝土孔结构与性能影响的研究[J].水力发电学报,2010(1):180-185.
ZHANG Fen-qin,WANG Hai-bo,WANG Qi-cai.Study on effects of mineral admixture and air-entraining agent on the pore structure and performance of concrete[J].Journal of Hydroelectric Engineering,2010(1):180-185.
[6] 周立霞,王起才,张粉芹.矿物掺合料和孔结构对混凝土抗渗性的影响[J].水力发电学报,2010(3):196-201.
ZHOU Li-xia,WANG Qi-cai,ZHANG Fen-qin.Effect of mineral admixture and pore structure on the permeability of concrete[J].Journal of Hydroelectric Engineering,2010(3):196-201.
[7] HASSAN K E,CABRERA J G,MALIEHE R S.The effect of mineral admixture on the properties of high-performance concrete[J].Cement & Concrete Composites,2000,22:267-271.
[8] UYSAL Mucteba,YILMAZ Kemalettin,IPEK Metin.The effect of mineral admixtures on mechanical properties,chloride ion permeability and impermeability of self-compacting concrete[J].Construction and Building Materials,2012,27:263-270.
[9] 王 宇,刘福战.粉煤灰?磨细矿渣粉双掺技术在高性能混凝土中的应用研究[J].粉煤灰综合利用,2010(6):35-36,39.
WANG Yu,LIU Fu-zhan.Application study on the double-mixing technology of fly ash and slag in the high performance concrete[J].Fly Ash Comprehensive Utilization,2010(6):35-36,39.
[10] 陈华艳,罗才松,毕贤顺.粉煤灰?矿渣掺量对混凝土强度的影响[J].福建工程学院学报,2011(1):23-26.
CHEN Hua-yan,LUO Cai-song,BI Xian-shun.The influence of fly ash and slag dosages on concrete strengh[J].Journal of Fujian University of Technology,2011(1):23-26.
[11] 陈 雷,肖 佳,唐咸燕,等.粉煤灰和矿渣双掺对混凝土性能影响的研究[J].粉煤灰综合利用,2007(2):22-25.
CHEN Lei,XIAO Jia,TANG Xian-yan,et al.Study on the performance of concrete effected by fly ash and slag[J].Fly Ash Comprehensive Utilization,2007(2):22-25.
[12] 杨 芳,肖 佳,胡成功,等.粉煤灰和矿渣微粉单?双掺对混凝土强度和氯离子渗透性能的影响[J].粉煤灰,2007(4):11-14.
YANG Fang,XIAO Jia,HU Cheng-gong,et al.Effect of either single or double mixture of fly ash and slag powder on compressive strength and Cl-permeability performance of concrete[J].Coal Ash China,2007(4):11-14.
[13] 李学英,马新伟,尹炜峰.复合矿物掺和料对混凝土工作性的影响[J].青岛理工大学学报,2009(4):98-101.
LI Xueying,MA Xin-wei,YIN Wei-feng.Effects of compound mineral admixture on workability of concrete[J].Journal of Qingdao Technological University,2009(4):98-101.
[14] 中国建筑科学研究院.GB/T50080-2002普通混凝土拌合物性能试验方法标准[S].北京:中国建筑工业出版社,2003.
China Academy of Building Research.GB/T50080-2002Standard for test method of performance on ordinary fresh concrete[S].Beijing:China Architecture &Building Press,2003.
[15] 中国建筑科学研究院.GB/T50081-2002普通混凝土力学性能试验方法标准[S].北京:中国建筑工业出版社,2003.
China Academy of Building Research.GB/T50081-2002Standard for test method of mechnical properties on ordinary concrete[S].Beijing:China Architecture &Building Press,2003.
[16] ASTM C 1202-97.Standard test method for electrical indication of concrete’s ability to resist chloride ion penetration[S].1994.
[17] 吴中伟.高性能混凝土[M].北京:中国铁道出版社,1999:184-186.
WU Zhong-wei.High Performance Concrete[M].Beijing:China Railway Publishing House,1999.184-186.
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