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Przyczyny oraz przykłady występowania reakcji alkalia-kruszywa (AAR) w betonie, na podstawie doświadczeń amerykańskich i australijskich. Cz. 1. Przyczyny reakcji alkalia-kruszywa (AAR) w betonie

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EN
Causes and examples of alkali-aggregate reactions (AAR) occurrence in concrete in light of american and australian experience. Part 1. Causes of alkali-aggregate reactions (AAR) in concrete
Języki publikacji
PL
Abstrakty
PL
Artykuł przedstawia mechanizm powstawania oraz czynniki sprzyjające zaistnieniu procesu reakcji alkaliów z krzemionką (ASR) lub alkaliów z węglanami (ACR) w betonie, co może z kolei doprowadzić do uszkodzenia i zniszczenia jego struktury.
EN
This article presents mechanism of creation and factors favouring occurence of alkali-silica reaction (ASR) proces or alkali-carbonate reaction (ACR) process in concrete, what in consequence may lead to the damage and destruction of its structure.
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Tom
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259--265
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Bibliogr. 28 poz.
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autor
Bibliografia
  • [1] A. Danay, Structural Mechanics Methodology in Diagnosing and Assessing Long-Term Effects of Alkali-Aggregate Reactivity in Reinforced Concrete Structures, ACI Materials Journal, American Concrete Institute, Farmington Hills, Michigan, January-February 1994, pages 54 to 62
  • [2] S. Diamond, R.S. Barneyback Jr and L.J. Struble, On the Physics and Chemistry of Alkali-Silica Reactions, Proceedings of the Fifth Conference on Alkali-Aggregate Reaction in Concrete, National Building Research Institute, Pretoria, South Africa, 1981, pages 1 to 11
  • [3] A. Farny James, B. Kerkhoff, Diagnosis and Control of Alkali-Aggregate Reactions in Concrete, Portland Cement Association, Skokie, Illinois, 2007, USA
  • [4] J. Figg, ASR – Inside Phenomena and Outside Effects (Crack Origin and Pattern), Concrete Alkali-Aggregate Reactions, Proceedings of the 7th International Conference, edited by Grattan-Bellew, Patrick E., Noyes Publications, Park Ridge, New Jersey, 1987, pages 152 to 156
  • [5] M. Glinicki, Reakcje Alkalia-Kruszywa w Betonie i Zapobieganie, Materiały Konferencyjno-Szkoleniowe, Józefów marzec 2015, IPPT PAN Warszawa
  • [6] P.E. Grattan-Bellew, Alkali-Silica Reaction – Canadian Experience, in The Alkali-Silica Reaction in Concrete, edited by Swamy, R.N., Van Nostrand Reinhold, New York, 1992, pages 223 to 248
  • [7] D.W. Hadley, - Alkali Reactivity of Carbonate Rocks - Expansion and Dedolomitization, Research Department Bulletin RX221, Portland Cement Association, Skokie, Illinois, 1961
  • [8] D.W. Hadley, Field and Laboratory Studies on the Reactivity of Sand-Gravel Aggregates, Research Department Bulletin RX221, Portland Cement Association, Skokie, Illinois, 1968
  • [9] R. Helmuth, Alkali-Silica Reactivity: An Overview of Research, SHRP-C342, Strategic Highway Research Program,Washingthon D.C, 1993, Also PCA Publication LT 177
  • [10] T.N. Jones and A.B. Poole,”Alkali-Silica Reaction in Several U.K. Concretes: The Effect of Temperature and Humidity on Expansion and the Significance of Ettringite Development” in Concrete Alkali-Aggregate Reactions, Proceedings of the 7th International Conference, edited by Grattan-Bellew, Patrick E., Noyes Publications, Park Ridge, New Jersey, 1987, pages 446 to 450
  • [11] R. Landgren and D.W. Hadley, Surface Popouts caused by Alkali-Aggregate Reactions, RD 121, PCA, Skokie, Illinois, 2002, 20 pages.
  • [12] T.C. Liu, “Causes of Deterioration, Lesson 201, Maintenance and Repair of Concrete Structures, U.S. Army Corps of Engineers Waterways Experiment Station, Vicksburg, Mississippi, 1981
  • [13] B. Mather, “New Concern over Alkali-Aggregate Reaction”, Joint Technical Paper by National Aggregates Association and National Ready Mixed Concrete Association, NAA, Circular No.122 and NRMCA Publication No 149, Silver Spring, Maryland, 1975
  • [14] M.A. Ozol,”Alkali Carbonate Rock Reaction”, Significance of Tests and Properties of Concrete and Concrete-Making Materials, ASTM STP 169D, edited by Lamond J.F and Pielert, J.H., American Society for Testing and Materials, West Conshohocken, Pennsylvania, 2006, pages 410 to 424. Also PCA Publication LT205
  • [15] D. Palmer, Chairman, The Diagnosis of Alkali-Silica Reaction, Report of a Working Party, 2nd edition, British Cement Association, Slough, Great Britain, 1992, Also PCA Publication LT 166
  • [16] W.F. Perenchio, I. Kaufman, R.J. Krause, “Concrete Repair in a Desert Environment”, Concrete International, American Concrete Institute, Farmington Hills, Michigan, February 1991, pages 23 to 26
  • [17] A.B. Poole, “Introduction to Alkali-Aggregate Reaction in Concrete, “The Alkali-Silica Reaction in Concrete, edited by Swamy, R.N.,VanNostrad, R., New York, New York, 1992
  • [18] A. Shayan, An Illustrated Guide to the Identification of Alkali-Aggregate Reaction in Concrete Structures,Commonwealth Scientific & Industrial Research Organization (CSIRO) Division of Building, Construction & Engineering, Technical Report TR94/2, 2002 Australia
  • [19] D. Stark, ”Effects of Water-Cement Ratio on Expansion Due ASR”, Concrete Technology Today, PL951, Portland Cement Association, Skokie, Illinois, March 1955a
  • [20] D. Stark, Handbook for the Identification of Alkali-Silica Reactivity in Highway Structures, SHRP-C/FR-91-101, Strategic Highway Research Program
  • [21] E.G. Swenson and J.E. Gillott,” Characteristics of Kingston Carbonate Rock Reaction”, Concrete Quality Control, Aggregate Characteristics and the Cement –Aggregate Reaction, Bulletin No. 275, Highway Research Board, Washington D.C., 1960, pages 18 to 31
  • [22] E.G. Swenson and J.E. Gillott, “Alkali Reactivity of Dolomitic Limestone Aggregate”, Magazine of Concrete Research, Vol.19 No. 59, Cement and Concrete Association, London, June 1967, pages 95 to 104
  • [23] R.N. Swamy and M.M. Al-Asali, “New Test Methods for Alkali-Silica Reaction” in Concrete Alkali-Aggregate R, Proceedings of the 7th Conference, edited by Graham-Bellew, Patrick E. Noyes Publications, Park Ridge, New Jersey 1987, pages 324 to 329
  • [24] M. Tang, M. Deng and X. Lon, and S. Han, “Studies on Alkali-Carbonate Reaction, ACI Materials Journal, American Concrete Institute, Farmington Hills, Michigan, January-February 1994, pages 26 to 29
  • [25] M. Tang, Z. Liu and S. Han, “Mechanism of Alkali-Carbonate Reaction” in Concrete Alkali-Aggregate Reactions, Proceedings of the 7th International Conference, edited by Grattan-Bellew, Patrick E., Noyes Publications, Park Ridge, New Jersey, 1987, pages 275 to 279
  • [26] S. Wong, Investigation of Concrete from I-20 near Monroe, Louisiana, Army Corps of Engineers Report to Louisiana Transport Research Center, PCA R &D
  • [27] J.G. Wood, J.S. Young and D. Ward, “The Structural Effects of Alkali-Aggregate Reaction in Reinforced Concrete” in Concrete Alkali-Aggregate Reactions, Proceedings of the 7th International Conference, edited by Graham-Bellew, Patrick E. Noyes Publications, Park Ridge, New Jersey 1987, pages from 157 to 162
  • [28] H. Xu, “On the Alkali Content of Cement in AAR”, in Concrete Alkali-Aggregate Reactions, Proceedings of the 7thInternational Conference, edited by Grattan-Belew, Patrick E., Noyes Publications, Park Ridge, New Jersey, 1987, pages 451 to 455
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-dba874ce-e8a7-4f30-82f1-e9ec2397a09b
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