欢迎登录材料期刊网

材料期刊网

高级检索

极少掺量的助磨剂就能起到明显的改善水泥细度、提高水泥产量和性能的目的.介绍了水泥助磨剂的作用,较系统地从助磨剂的作用机理、添加量、应用效果表征等几方面对助磨剂进行了全面概括,阐述了水泥助磨剂主要的研究现状,并展望了今后的研究方向.助磨剂的应用尽管已有很长时间,但仍处于需要深入研究的阶段,研究方法还不成熟,许多问题还需要更全面和深入的研究.

Minimal amount of grinding aids can play a significant role in improving cement fineness, increasing cement production and performance. The effects in cement grinding aids are introduced, several aspects of cement grinding aids with the mechanism of action, addition amount and characterization of application effect are also summa-rized. The main research status in recent years is described, and the future research trends are also outlined. Although the grinding aids has been applying for a long time, but still need for in-depth study, the research methods are not yet ripe, many problems still need a more comprehensive and in-depth study.

参考文献

[1] Sottili L;Padovani D;Bravo A .Mechanism of action of grinding aids in the cement production[J].Cement Building Mater,2002,9:40.
[2] 2009年中国水泥市场研究报告[R].北京,2009.
[3] 席耀忠.水泥厂使用助磨剂的各种效益[J].水泥,2008(12):28-29.
[4] M. Katsioti;P.E. Tsakiridis;P. Giannatos;Z. Tsibouki;J. Marinos .Characterization Of Various Cement Grinding Aids And Their Impact On Grindability And Cement Performance[J].Construction and Building Materials,2009(5):1954-1959.
[5] Ervanne H et al.Analysis of cement superplasticizers and grinding aids:A literature survey[R].POSIVR,2007.
[6] Sottili L;Padovani D .Einfluss yon mahlhilfsmitteln in der zernentindustrie(Teil 1)[J].ZKG International,2000,53(10):568.
[7] Sottili L;Padovani D .Einfluss yon mahlhilfsmitteln in der zementindustrie(Tei]2)[J].ZKG International,2001,54(03):146.
[8] Assaad J J et al.Effect of specific energy consumption on fineness of Portland cement incorporating amine or glycolbased grinding aids[J].Materials and Structures,2008,42(09):1077.
[9] Hasegawa M;Kimata M;Shimane M et al.The effect of liquid additives on dry ultrafine grinding of quartz[J].Powder Technology,2001,114:145.
[10] Sumner M;Gianetti F;陈斌.全球水泥生产越来越多地使用水泥添加剂[A].北京,2008:9.
[11] Rossi M;Pina C D;Pagliaro M et al.Greening the construction industry:Enhancing the performance of cements by adding bioglycerol[J].Chemical Sus Chem,2008,1:809.
[12] Rehbinder P A.About influence of changing surface on cleavage hardness and other crystal properties[A].Moscow,1928
[13] Klimpel R R;Manfroy W .Chemical grinding aids for increasing throughput in the wet grinding of ores[J].Ind EngChem Process Des Dev,1978,17(04):518.
[14] Sureshan K Moothedath;Ahluwalia S C .Mechanism of action of grinding aids in comminution[J].Powder Technology,1992,71:229.
[15] Locher F W;Seebach H M .Influence of adsorption on industrial grinding[J].Industrial & Engineering Chemistry Process Design and Development,1972,11(02):190.
[16] 丁向群,赵苏,凌健,何国求.水泥助磨剂的研究及应用概况[J].材料导报,2004(06):61-63.
[17] Anna B;Tiziano C;Mariagrazia G.Grinding aids:A study on their mechanism of action[A].Durban,2003:11.
[18] 朱宪伯;吕忠亚;张正锋.水泥助磨剂的作用机理--薄膜假说[A].北京:中国建筑工业出版社,1992:143.
[19] 许雅周,丁锐,常传平.粉体团聚理论在超细研磨中的应用[J].陶瓷,2007(03):30-33.
[20] 张成祥,蒋永波,黄曙.助磨剂原理及应用(一)[J].新世纪水泥导报,2002(01):10-14.
[21] Jankovic A;Valery W;Davis E .Cement grinding optimization[J].Minerals Engineering,2004,17:1075.
[22] Celik I B .The effects of particle size distribution and surface area upon cement strength developmeng[J].Powder Technology,2009,188:272.
[23] 郭诊明 .以有机溶剂作为水泥熟料助磨剂之研究[D].中国台南:国立成功大学,2004.
[24] Sottili L;Padovani D .Effect of grinding aids in the cement industry[J].Petrocem,2002,4:14.
[25] 林明星,林宗寿.水泥粉磨时间对助磨剂作用效果的影响[J].水泥,2005(07):15-17.
[26] Shang Shaoming;Zhang Tonglin;Yin Fushan et al.Adsorptive behavior of surfactants on surface of Portland cement[J].Detergent & Cosmetics,2000,23:53.
[27] Menek N;Heren Z .Analysis of triethanolamine in white cement pastes by voltammetric methods[J].Cement and Concrete Research,1999,29:777.
[28] Teoreanu I;Guslicov G .Mechanisms and effects of additives from the dihydroxy-compound class on Portland cement grinding[J].Cement and Concrete Research,1999,29:9.
[29] Albayrak A T et al.Investigation of the effects of fatty acids on the compressive strength of the concrete and the grindability of the cement[J].Cern Conc Res,2005,35:400.
[30] Albayrak AT;Yasar M;Gurkaynak MA;Gurgey I .The effects of fatty acids on the particle size distribution of the Portland cement[J].Journal of Materials Science,2007(13):5170-5174.
[31] 马保国,许永和,董荣珍.三乙醇胺对水泥初始结构和力学性能的影响[J].建筑材料学报,2006(01):6-9.
[32] Ramachandran V S .Hydration of cement--Role of triethanolamine[J].Cement and Concrete Research,1976,6:623.
[33] Heren Z;(O)lmez H .The influence of ethanolamines on the hydration and mechanical properties of Portland cement[J].Cement and Concrete Research,1996,26(05):701.
[34] Perez J;Nonat A;Gauffinet S G.Influence of triisopropanolamine on the physico-chemical and mechanical properties of pure cement pastes and mortars[A].The Cement and Concrete Institute of South Africa,Document Transformation Technologies.Durban,South Africa,2003:454.
[35] Sandberg P J;Doncaster F .On the mechanism of strength enhancement of cement paste and mortar with triisopropanolamine[J].Cement and Concrete Research,2004,34:973.
[36] Aggoun S et al.Effect of some admixtures on the setting time and strength evolution of cement pastes at early ages[J].Construct Building Mater,2008,22:106.
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%