Int. Workshop on Structural Image Analysis in Investigations of Concrete. IFTR PAS, Centre of Excellence for Advanced Materials and Structures (AMAS), Warsaw 2002
Google Scholar
Mehta P.K.: Concrete technology at the crossroads - problems and opportunities, w: P.K. Mehta Symposium on Durability of Concrete, Nice 1994
Google Scholar
Young J.F.: Hydraulic Cements for Concrete. ACI, Detroit, MI, USA 1983
Google Scholar
Young J.F., Mindess S., Gray R.J., Bentur A: The science and technology of civil engineering materials, 382, Prentice-Hall, N. Jersey 1998
Google Scholar
Brandt A.M.: Cement-based Composites: Materials, Mechanical Properties and Performance. E&FN Spon, 470, London 1995
Google Scholar
Kucharska L.: Domieszki upłynniające w betonie, przykłady zastosowań. Beton na Progu Nowego Milenium, Polski Cement, Kraków 2000, 55-72
Google Scholar
Uchikawa H.: Effect of blending component on hydration and structure formation. Proc. 8th Int. Congress on Chemistry of Cement, Rio de Janeiro 1986, 77
Google Scholar
Zalocha D., Kasperkiewicz J.: Zastosowanie ilościowej analizy obrazu do oceny struktury porów w betonie napowietrzanym. Drogi i Mosty, 2, 2002, 107-118
Google Scholar
Johanse V., Andersen P.J.: Particle packing and concrete properties. Materials Science of Concrete II, eds. J. Skalny and S. Mindess, The Amer. Cer. Soc., 111-147, Westerville OH 1991
Google Scholar
Dantu P.: Etude des contraintes dans les milieuxheterogenes. Applications au beton. Annales de l’ITBTP, 11 (121), 1957, 55-67
Google Scholar
Glinicki M.A.: Wpływ prędkości obciążenia na wytrzymałość i odkształcalność kompozytów z matrycą cementową. Prace IPPT PAN, nr 1, Warszawa 1992, 239
Google Scholar
Uchikawa H.: Similarities and discrepancies of hardened cement paste, mortar and concrete from the standpoints of composition and structure. J. of Research of the Onoda Cement Company, 40, No. 119, 1988, 1-24
Google Scholar
CEB Bulletin. Durable Concrete Structures, Design Guide 2nd ed., No. 182, Lausanne 1989
Google Scholar
Venuat M.: Adjuvants et traitements. Paris 1984, 830
Google Scholar
Wee T.H. et al.: Performance of blended cement concretes in a marine environment. Proc. Int. Seminar “Extending Performance of Concrete Structures”, eds: R.K. Dhir and P.A.J. Tittle, Dundee 1999, 261-271
Google Scholar
Moranville-Regourd M.: Microstructure des betons ahautes performances, in: Les Betons a Hautes Performances, eds: Y. Malier. Presses de l’ENPC, Paris 1992, 25-44
Google Scholar
Materials Research Society MRS. Microstructure of Cement-Based Systems/Bonding and Interfaces in Cementitious Materials, red.: S. Diamond, S. Mindess, F.P. Glasser, L.W. Roberts, J.P. Skalny, L.D. Wakeley, Pittsburgh 1995, 370, 577
Google Scholar
Diamond S., Huang J.: The interfacial transition zone: realty or myth? The Interfacial Transition Zone in Cementitious Composites, red.: A. Katz, A. Bentur, M. Alexander, G. Arligui, RILEM, Proc. 35, 1998, 3-42
Google Scholar
Goldman A., Bentur A.: :Bond effects in High-Strength Silica-Fume Concretes. ACI Materials Journal, 86, No. 5, 1989, 440-447
Google Scholar
Darwin D.: The interfacial transition zone: “Direct” evidence on compressive response. Mat. Res. Soc. Symp. Proc., 370, 1995, 419-427
Google Scholar
Potrzebowski J.: Procesy odspajania i wywlekania stalowych włókien z matrycy cementowej. Prace IPPT PAN, nr 15, Warszawa 1991, 199
Google Scholar
Betterman L.R., Ouyang C., Shah S.P.: Fiber-matrix interaction in microfiber-reinforced mortar. Adv. Cem. Bas. Mat., nr 2, 1995, 52-61
Google Scholar
Rossi P.: Ultra-high-performance fiber-reinforced concretes. Concrete International, December 1982, 46-52
Google Scholar
Bentur A., Mindess S.: Fibre Reinforced Cementitious Composites. Elsevier Applied Science, 449, London 1990
Google Scholar
Hannant D.J.: Fibre Cements and Fibre Concretes. John Wiley&Sons, Chichester1978, 219
Google Scholar
Aveston J., Kelly A.: Theory of multiple fracture of fibrous composites. J. of Materials Science, 3, 8, 1973, 352-362
Google Scholar
Kasperkiewicz J.: Struktura wewnętrzna a procesy pękania w kompozytach z kruchą matrycą. Prace IPPT PAN, nr 39, Warszawa 1983, 239
Google Scholar
Wittmann H.F.: Structure of concrete with respect to crack formation. Fracture Mechanics of Concrete, eds: F.H. Wittmann, Elsevier 1983, 43-74
Google Scholar
Kasperkiewicz J., Zalocha D.: Automatyczna analiza obrazu w ocenie napowietrzenia betonu. 46-ta Konferencja KILiW PAN i KN PZITB, 2, Krynica 2000, 199-206
Google Scholar