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Powstawanie i mikrostruktura faz klinkieru cementu portlandzkiego. Cz.1

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
EN
Formation and microscopic texture of portland cement clinkier mineral. Part 1
Języki publikacji
PL
Abstrakty
PL
Omówiono polimorfizm krzemianu trójwapniowego oraz właściwości optyczne tworzących się faz i formy ich występowania w klinkierze. Zwrócono także szczególną uwagę na warunki krystalizacji i ich wpływ na wzrost kryształów.
EN
The polymorphism of tricalcium silicate and optic behaviour of phases formed in clinker as well as their crystal habit are discussed. The attention is also paid to the conditions of crystallization and their influence on the crystal growth.
Czasopismo
Rocznik
Strony
65--85
Opis fizyczny
Bibliogr. 31 poz., il.
Twórcy
autor
Bibliografia
  • 1. M. Bigaré, A. Guinier, C. Mazieres, M. Regourd, N. Yannaquis: Polymorphism of Tricalcium Silicate and Its Solid Solution, J. Am. Ceram. Soc., 50[11] 609-619 (1967); A. Guinier, M. Regourd: Structure of Portland Cement Minerals, Proc. 5th Int. Conf. Chem. Cement, Vol.1, pp.1-14, Tokyo, 1968.
  • 2. I. Maki, S. Chromy: Microscopic Study on the Polymorphism of Ca3SiO5, Cem. Concr. Res., 8[4] 407-414 (1978).
  • 3. I. Maki, T. Ogiwara, S. Chromy: Differential Thermal Analysis of Portland Cement Clinker and Phase Constitution of Alite, II Cemento, 78[2] 53-60(1981).
  • 4. I. Maki, S. Chromy: Characterization of the Alite Phase in Portland Cement Clinker by Microscopy, II Cemento, 247-252 (1978).
  • 5. I. Maki, K. Kato: Phase Identification of Alite in Portland Cement Clinker, Cem. Concr. Res., 12[1] 93-100 (1982).
  • 6. I. Maki, H. Haba, S. Takahashi: Effect of Recrystallization on the Cha-racters of Alite in Portland Cement Clinker, Cem. Concr. Res., 13[5] 689-695(1983).
  • 7. I. Maki: Growth Instability and Crystalline Textures of Alite in Cement Clinker, II Cemento, 81[4] 165-174(1984).
  • 8. I. Maki: Relationship of Processing Parameters to Clinker Properties; Influence of Minor Components, Proc. 8th Int. Congr. Chem. Cement, Rio de Janeiro, 1986, Vol.1, pp.35-47 (Principal Paper).
  • 9. I. Maki: Processing Conditions of Portland Cement Clinker As Viewed from the Fine Textures of the Constituent Minerals, Ceramic Transactions, Vol.40, pp.3-17, Am. Ceram. Soc., 1994 (Presented at PAC RIM Meeting in Hawaii, Nov., 1993).
  • 10. I. Maki, K. Nakagawa, K. Hiraiwa, T. Nonami: Characterization of Fluori-ne-Bearing Alite in Rapid-Hardening High Early Strength Cement Clinker Manufactured by Fusion, II Cement, 81 [1] 3-12 (1984).
  • 11. I. Maki, T. Tanioka: Morphology and Growth Environment of Alite in Fu-sed Portland Cement Clinker, Proc. 16th Int. Conf. Cement Microscopy, pp.113-124, Richmond, VA, USA, 1994.
  • 12. V. Johansen: Model for Reaction Between CaO Particles and Portland Cement Clinker, J. Am. Ceram. Soc., 56[9] 450-454 (1973).
  • 13. V. Johansen, O.L. Jepsen: Ternary Diffusion in Cement Clinker at 1500?, Cem. Concr. Res., 8[3] 301-310(1978).
  • 14. Y. Oishi, A.R. Cooper, W.D. Kingery: Dissolution in Ceramic Systems: III. Boundary Layer Concentration Gradients, J. Am. Ceram. Soc., 48[2] 88-94 (1965).
  • 15. I. Maki, K. Fukuda, S. Sęki, T. Tanioka: Impurity Distribution during Crystal Growth of Alite in Portland Cement Clinker, J. Am. Ceram. Soc., 74[9] 2082-85 (1991).
  • 16. M. Kristmann: Portland Cement Clinker, Mineralogical and Chemical lnvestigations, Part II. Electron Microprobe Analysis, Cem. Concr. Res., 8[1] 93-102 (1978).
  • 17. E. Woermann, W. Eysel, Th. Hahn: Chemische und strukturelle Unter-suchungen der Mischkristallbildung von Tricalciumsilikat, 2. Bericht: Phasenbeziehungen in den Systemen CaO-MgO-SiO2 und CaO-AI2O3-SiO2, Zement-Kalk-Gips, 20[9] 385-391 (1967).
  • 18. I. Maki: Phase Constitution of the Alite in Portland Cement Clinker from Modern Manufacturing Processes, II Cemento, 76[4] 167-176 (1979).
  • 19. E. Woermann, W. Eysel, Th. Hahn: Chemische und strukturelle Unter-suchungen der Mischkristallbildung von Tricalciumsilikat, 5. Bericht: Die Alitphase im Funfstoffsystem CaO-MgO-AI2O3-Fe2O3-SiO2 und im Zemet-klinker, Zement- Kalk-Gips, 22[9] 414-22 (1969).
  • 20. I. Maki, S. Takahashi, M. Hattori, K. Fukuda: Impurity Distribution in Zoned Alite in Portland Clinker as determined by ĆMA, II Cement, 84[4] 351-358(1987).
  • 21. I. Maki: Processing Conditions of Portland Clinker and Fine Textures of Alite, II Cement, 85[2] 89-100(1988).
  • 22. I. Maki, T. Tanioka, Y. Imoto, H. Ohsato: Influence of Firing Modes on the Fine Textures of Alite in Portland Clinker, II Cement, 87[2] 71-78 (1990).
  • 23. I. Maki, M. Hattori: Influence of Minor Components on the Fine Textures of Alite in Portland Clinker, II Cement, 86[2] 131-140 (1989).
  • 24. I. Maki, K. Goto: Factors Influencing the Phase Constitution of Alite in Portland Cement Clinker, Cem. Concr. Res., 12[3] 301-308 (1982).
  • 25. S. Yokoyama, S. Nakano, Y. Tsuchida, l. Maki: Influence of P2O5 on Clinker Formation from Incinerated Ash of Urban Composite Wastes, Cement Science and Concrete Technology, No.53, 146-151 (1999).
  • 26. I. Maki, K. Fukuda, H. Yoshida, J. Kumaki: Effect of MgO and SO3 on Impurity Concentration in Alite in Portland Cement Clinker, J. Am. Ceram. Soc., 75[11] 3163-65(1992).
  • 27. H.B. Arceo, F.P. Glasser: Fluxing Reactions of Sulphate and carbonate in Cement Clinkering. l. Systems CaSO4-K2SO4 and K2SO4-CaCO3, Cem. Concr. Res., 20[6] 862-868 (1990).
  • 28. A.P. Osokin, Y.R. Krivoborodov, E.N. Potapova: Modified Portland Cement (in Russian), p.66, Mendeleev University of Chemical Technology, Moscow, 1993.
  • 29. S. Yokoyama, S. Nakano, Y. Tsuchida, l. Maki: Influence of Chlorine on Clinker Formation from Incinerated Ash of Urban Composite Wastes, Cement Science and Concrete Technology No.53, 140-145 (1999).
  • 30. I. Maki, S. Takahashi: Redistribution of Impurity during Recrystallization of Alite in Portland Cement Clinker, Cem. Concr. Res., 14[3] 413-418 (1984). 31.1. Maki, S. Ito, T. Tanioka, Y. Ohno, K. Fukuda: Clinker Grindability and Textures of Alite and Belite, Cem. Concr. Res., 23[5] 1078-84 (1993).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BTB2-0027-0135
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