The influence of porous aggregate on microstructure of the interfacial transition zone in lightweight concrete
 
More details
Hide details
1
Politechnika Krakowska, Katedra Technologii Materiałów Budowlanych i Ochrony Budowli
 
 
Publication date: 2011-03-01
 
 
Cement Wapno Beton 16(2) 101-114 (2011)
 
 
REFERENCES (18)
1.
B. Barnes, S. Diamond, W. Dolch, « The contact zone between Portland cement paste and glass “aggregate” surfaces”, Cem. Concr. Res., 8, 233-243 (1978).
 
2.
R. Zimbelmann, “A Contribution to the Problem of Cement-Aggregate Bond”, Cem. Concr. Res. 15, 801-808, 1985.
 
3.
P. Monteiro, “Mechanical Modeling of the Transition Zone”, Chapter 4 in “Interfacial Transition Zone in Concrete”, J. C. Maso, E & FN SPON, London 1995.
 
4.
J. Grandet, J. Ollivier, “New method for the study of cement-aggregate interfaces”, Proc. 7th International Congress on the Chemistry of Cement, 3, 85-89, Paris 1980.
 
5.
S. Diamond, J. Huang, “The ITZ in concrete – a different view based on image analysis and SEM observations”, Cem. Concr. Comp., 23, 179- 188, (2001).
 
6.
M-H. Zhang, O. Gjørv, “Microstructure of the interfacial zone between lightweight aggregate and cement paste”, Cem. Concr. Res., 20, 610-618, (1990).
 
7.
A. Elsharief, M. Cohen, J. Olek, “Infl uence of lightweight aggregate on the microstructure and durability of mortar”, Cem. Concr. Res., 35, 1368- 1376, (2005).
 
8.
T. Lo, H. Cui, “Effect of porous lightweight aggregate on strength of concrete”, Mat. Let., 58, 916-919, (2004).
 
9.
R. Wasserman, A. Bentur, “Interfacial interactions in lightweight aggregate concretes and their infl uence on the concrete strength”, Cem. Concr. Comp., 18, 67-76 (1996).
 
10.
D. Bentz, “Infl uence of internal curing using lightweight aggregates on interfacial transition zone percolation and chloride ingress in mortars”, Cem. Concr. Comp., 31, 285-289 (2009).
 
11.
W. Kurdowski, Chemia cementu i betonu, Polski Cement, PWN Kraków 2010.
 
12.
M-H. Zhang, O. Gjørv, “Penetration of cement paste into lightweight aggregate”, Cem. Concr. Res., 22, 47-55 (1992).
 
13.
L. Domagała, „Wpływ wstępnej wilgotności kruszyw lekkich na nasiąkliwość betonu,” Cement-Wapno-Beton, 74, 149-156 (2010).
 
14.
R. Wasserman, A. Bentur, “Effect of lightweight fl y ash aggregate microstructure on the strength of concretes”, Cem. Concr. Res., 27, 525-537 (1997).
 
15.
M-H. Zhang, O. Gjørv, “Pozzolanic reactivity of lightweight aggregates”, Cem. Concr. Res., 20, 884-890 (1990).
 
16.
T. Lo, H. Cui, W. Tang, M. Leung, “The effect of aggregate absorption on pore area at interfacial zone of lightweight concrete”, Constr. Buil. Mat., 22, 623-628 (2008).
 
17.
T. Lo, X. Gao, A. Jeary, “Microstructure of pre-wetted aggregate on lightweight concrete”, Buil. Envir., 34, 759-764 (1999).
 
18.
S. Smeplass, T. Hammer, M. Sandvik, “Production of structural high strength LWAC with initially dry aggregates”, Congress on Structural Lightweight Aggregate Concrete, 390-396, Sandefjord 1995.
 
ISSN:1425-8129
Journals System - logo
Scroll to top