欢迎登录材料期刊网

材料期刊网

高级检索

蒸压加气混凝土的主要特征是多孔性,其孔结构是影响性能的主要因素之一.简述了蒸压加气混凝土中孔的分类、特征以及表征方法,综述了国内外蒸压加气混凝土强度、吸水导湿、干燥收缩、热工性能、耐久性能等方面的最新研究进展,探讨了蒸压加气混凝土孔结构与性能之间的关系.最后阐述了蒸压加气混凝土孔结构与性能今后的研究方向和研究重点.

参考文献

[1] Josef P. Kaufmann .Experimental identification of ice formation in small concrete pores[J].Cement and Concrete Research,2004(8):1421-1427.
[2] 冯乃谦.高性能混凝土[M].北京:中国工业出版社,2002:56.
[3] 近藤连一.大门正机.硬化水泥浆的相组成[A].北京:中国建筑工业出版社,1982
[4] 吴中伟.混凝土科学技术近期发展方向的探讨[J].硅酸盐学报,1979(03):262.
[5] Alexanderson J .Relations between structure and mechanical properties of autoclaved aerated concrete[J].Cement and Concrete Research,1979,9(04):507.
[6] Petrov I;Schlegel E .Application of automatic image-analysis for the investigation of autoclaved aerated concrete structure[J].Cement and Concrete Research,1994,24(05):830.
[7] 郑万廪.加气混凝土孔结构与性能的关系[J].硅酸盐建筑制品,1986(04):25.
[8] Ioannis Ioannou;Andrea Hamilton;Christopher Hall .Capillary absorption of water and n-decane by autoclaved aerated concrete[J].Cement and Concrete Research,2008(6):766-771.
[9] Hu1ya Kus;Thomas Carlsson .Microstructural investigations of naturally and artificially weathered autoclaved aerated concrete[J].Cement and Concrete Research,2003(9):1423-1432.
[10] I. Kadashevich;H.-J Schneider;D. Stoyan .Statistical, modeling of the geometrical structure of the system of artificial air pores in autoclaved aerated concrete[J].Cement and Concrete Research,2005(8):1495-1502.
[11] 郑万廪;郭树云.加气混凝土孔结构及其与强度的关系[J].工业建筑,1982(09):38.
[12] Narayanan K R N .Structure and properties of aerated concrete:A review[J].Cement and Concrete Composites,2000,22:321.
[13] Jian Zhou;Guang Ye;Klaas van Breugel .Characterization of pore structure in cement-based materials using pressurization-depressurization cycling mercury intrusion porosimetry (PDC-MIP)[J].Cement and Concrete Research,2010(7):1120-1128.
[14] Wagner F;Schober G;Mortel H .Measurement of the gaspermeability of autoclaved aerated concrete in conjunction with its physical-properties[J].Cement and Concrete Research,1995,25(08):1621.
[15] 陈岩;董魏.水泥石孔结构的X射线小角度散射研究[J].硅酸盐学报,1989(02):112.
[16] A.B. Koudriavtsev;M.D. Danchev;G. Hunter .Application of ~(19)F NMR relaxometry to the determination of porosity and pore size distribution in hydrated cements and other porous materials[J].Cement and Concrete Research,2006(5):868-878.
[17] Zhenhua Sun;George W. Scherer .Pore size and shape in mortar by thermoporometry[J].Cement and Concrete Research,2010(5):740-751.
[18] Isu N;Ishida H;Mitsuda T .Influence of quartz particlesize on the chemical and mechanical-properties of autoclaved aerated concrete.1.Tobermorite formation[J].Cement and Concrete Research,1995,25(02):243.
[19] 吴笑梅,樊粤明.粉煤灰加气混凝土水化产物的种类和微观结构[J].华南理工大学学报(自然科学版),2003(08):57-61.
[20] 孙抱真;李广才;贾传玖.蒸压加气混凝土水化产物的定量分析方法[J].硅酸盐学报,1982(03):357.
[21] Mitsuda T;Chan C F .Anomalous tobermorite in autoclaved aerated concrete[J].Cement and Concrete Research,1977,7(02):191.
[22] Hanecka K;Koronthalyova O;Matiasovsky P .The carbonation of autoclaved aerated concrete[J].Cement and Concrete Research,1997,27(04):589.
[23] 王秀芬 .加气混凝土性能及优化的试验研究[D].西安建筑科技大学,2006.
[24] 颜汉军,张婵娟.原材料对粉煤灰加气混凝土制品质量影响的研究[J].硅酸盐通报,2009(06):1317-1321.
[25] 孙抱真;李广才;贾传玖.蒸压加气混凝土的水化产物与强度和收缩的关系[J].硅酸盐学报,1983(01):77.
[26] G. Appa Rao .Generalization of Abrams' law for cement mortars[J].Cement and Concrete Research,2001(3):495-502.
[27] Rakesh Kumar;B. Bhattacharjee .Porosity, pore size distribution and in situ strength of concrete[J].Cement and Concrete Research,2003(1):155-164.
[28] Hoff G C .Porosity-strength considerations for cellular concrete[J].Cement and Concrete Research,1972,2(01):91.
[29] Shi C J .Strength,pore structure and permeability of alkaliactivated slag mortars[J].Cement and Concrete Research,1996,26(12):1789.
[30] Takahashi T;Yamamoto M;Ioku K et al.Relationship between compressive strength and pore structure of hardened cement pastes[J].Advances in Cement Research,1997,9(33):25.
[31] M. O'Farrell;S. Wild;B.B. Sabir .Pore size distribution and compressive strength of waste clay brick mortar[J].Cement & concrete composites,2001(1):81-91.
[32] Fractal Theory Used in Pore Structure of Cement-Based Materials Incorporated Phosphorus Slag[J].Key engineering materials,2009:384.
[33] M. Arandigoyen;J.I. Alvarez .Pore structure and mechanical properties of cement-lime mortars[J].Cement and Concrete Research,2007(5):767-775.
[34] Jiang L H;Guan Y G .Pore structure and its effect on strength of high-volume fly ash paste[J].Cement and Concrete Research,1999,29(04):631.
[35] Ji X;Chan S Y N;Feng N .Fractal model for simulating the space-filling process of cement hydrates and fractal dimensions of pore structure of cement-based materials[J].Cement and Concrete Research,1997,27(11):1691.
[36] 孙抱真.加气混凝土孔结构与强度的数学关系式[J].硅酸盐建筑制品,1983(05):25.
[37] Philip J R .The theory of infiltration:4.Sorptivity and algebraic infiltration equations[J].Soil Science,1957,84(03):257.
[38] Hall C .Water sorptivity of mortars and concretes:A review[J].Magaz Concr Res,1989,41(147):51.
[39] Gummerson R J.Capillary water transport in masonry structures:building construction applications of Darcy's law[J].Constr Paper,1980(01):117.
[40] Parlange J Y;Barry D A;Parlange M B et al.Sorptivity calculation for arbitrary diffusivity[J].Transport in Porous Media,1994,15(03):197.
[41] Christopher Hall .Anomalous diffusion in unsaturated flow: Fact or fiction?[J].Cement and Concrete Research,2007(3):378-385.
[42] 王立成.建筑材料吸水过程中毛细管系数与吸水率关系的理论分析[J].水利学报,2009(09):1085-1090.
[43] Lockington DA.;Parlange JY. .Anomalous water absorption in porous materials[J].Journal of Physics, D. Applied Physics: A Europhysics Journal,2003(6):760-767.
[44] 贾兴文.粉煤灰加气混凝土吸水性能研究[J].房材与应用,2006(04):9-11.
[45] 赵成文,张威.加气混凝土砌块失水和吸水性能的试验研究[J].砖瓦,2009(11):33-37.
[46] 周春英,韦江雄,余其俊,殷素红,庄梓豪,雷振华.蒸压加气混凝土砌块的吸水特性研究[J].武汉理工大学学报,2007(04):22-26.
[47] C.Andrade;J.Sarria .Relative humidity in the interior of concrete exposed to natural and artificial weathering[J].Cement and Concrete Research,1999(8):1249-1259.
[48] Lee C.;Kim J. .Moisture diffusion of concrete considering self-desiccation at early ages[J].Cement and Concrete Research,1999(12):1921-1927.
[49] Terrill J M;Richardson M;Sekby A R .Non-linear moisture profiles and shrinkage in concrete members[J].Magaz Concr Res,1986,38(137):220.
[50] Selih J;Bremner T W .Drying of saturated lightweight concrete:An experimental investigation[J].Materials and Structures,1996,29(191):401.
[51] 王新友,蒋正武,高相东,孙振平.混凝土中水分迁移机理与模型研究评述[J].建筑材料学报,2002(01):66-71.
[52] 李魁山,张旭,韩星,朱东明.建筑材料水蒸气渗透系数实验研究[J].建筑材料学报,2009(03):288-291.
[53] 王秀芬.加气混凝土表面吸放湿性质的试验研究[J].新型建筑材料,2006(09):24-25.
[54] Qiu X .moisture transport across interfaces between building materials[D].Canada:Concordia University,2003.
[55] Ziembicka H .Effect of micropore structure on cellular concrete shrinkage[J].Cement and Concrete Research,1977,7(03):323.
[56] 钱晓倩;郑立.粉煤灰加气混凝土收缩机理的研究[J].硅酸盐学报,1991(06):495.
[57] Georgiades A;Ftikos C;Marinos J .Effect of micropore structure on autoclaved aerated concrete shrinkage[J].Cement and Concrete Research,1991,21(04):655.
[58] 马保国,钟开红,许婵娟,蹇守卫,朱洪波,张莉.轻质加气混凝土干燥收缩的研究[J].墙材革新与建筑节能,2003(12):20-23.
[59] 贾兴文,钱觉时.粉煤灰加气混凝土干燥收缩特性的研究[J].粉煤灰综合利用,2007(02):15-17.
[60] Ropelewski Lawrence;Neufeld Ronald D. .Thermal inertia properties of autoclaved aerated concrete[J].Journal of energy engineering,1999(2):59-75.
[61] Laurent J P;Guerrechaley C .Influence of water-content and temperature on the thermal-conductivity of autoclaved aerated concrete[J].Materials and Structures,1995,28(182):464.
[62] Schubert P.Shrinkage behaviour of aerated concrete[A].Amsterdam:Elsevier Science,1983:207.
[63] 贾兴文,钱觉时.粉煤灰加气混凝土的耐久性研究[J].新型建筑材料,2007(01):20-23.
[64] 吴国强.粉煤灰加气混凝土长期强度劣化机理探讨[J].硅酸盐学报,1996(02):235.
[65] Fumiaki Matsushita;Yosliimichi Aono .Carbonation degree of autoclaved aerated concrete[J].Cement and Concrete Research,2000(11):1741-1745.
[66] R(O)ler M;Odler I .Investigations on the relationship between porosity,structure and strength of hydrated portland cement pastes Ⅰ.Effect of porosity[J].Cement and Concrete Research,1985,15(02):320.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%