96 Damage to concrete structures
Craeye B., De Schutter G., Desmet B., Vantomme J., Heirman G., Vandewalle L.,
Cizer Ö., Aggoun S. and Kadri E.H. (2010) ‘Effect of mineral filler type on
autogenous shrinkage of self-compacting concrete’, Cement and Concrete
Research, 40, 908–913.
Craeye B., Geirnaert M. and De Schutter G. (2011) ‘Super absorbing polymers as an
internal curing agent for mitigation of early-age cracking of high-performance
concrete bridge decks’, Construction and Building Materials, 25, 1–13.
De Schutter G. (1996) ‘Fundamental and Practical Study of Thermal Stresses in
Hardening Massive Concrete Elements’ (in Dutch), Doctoral Thesis, Magnel
Laboratory for Concrete Research, Ghent University, Belgium, pp. 364.
De Schutter G. and Taerwe L. (1996) ‘Degree of hydration based description of
mechanical properties of early age concrete’, Materials and Structures, 29,
335–344.
De Schutter G. and Taerwe L. (1996b) ‘Estimation of the early age thermal cracking
tendency of massive concrete elements by means of the equivalent thickness.’,
ACI Materials Journal, 403–408.
De Schutter G. (2002) ‘Finite element simulation of thermal cracking in massive
hardening concrete elements using degree of hydration based material laws’,
Computers and Structures, Vol. 80, Issue 27-30, p. 2035–2042.
De Schutter G. and Vuylsteke M. (2004) ‘Minimisation of early age thermal cracking in a J-shaped non-reinforced massive concrete quay wall’, Engineering
Structures, 26, 801–808.
De Schutter G., Bartos P., Domone P. and Gibbs J. (2008) ‘Self-Compacting
Concrete’, Whittles Publishing, Caithness, UK, CRC Press, Taylor & Francis
Group, Boca Raton, USA, ISBN 978-1904445-30-2, USA ISBN 978-1-42006833-7, pp. 296.
Esping O. (2008) ‘Effect of limestone filler BET(H20)-area on the fresh and hardened
properties of self-compacting concrete’, Cement and Concrete Research, 38,
938–944.
Hansen T.C. (1986) ‘Physical structures of hardened cement paste. A classical
approach’, Materials and Structures, 19, 423–431.
Hobbs D.W. and Mears A.R. (1971) ‘The influence of specimen geometry upon
weight change and shrinkage of air-dried mortar specimens’, Magazine of
Concrete Research, 23, 89–98.
Kovler K. and Jensen O.M. (Eds.) (2007) ‘Internal Curing of Concrete’, State-ofthe-art report of RILEM Technical Committee 196-ICC, RILEM Report 41,
RILEM Publications S.A.R.L., ISBN 978-2-35158-009-7, pp. 140.
Koenders E.A.B. (1997) ‘Simulation of volume changes in hardening cement-based
materials’, PhD thesis, Technical University of Delft, the Netherlands.
Loukili A., Chopin D., Khelidj A., Le Touzo J.-Y. (2000) ‘A new approach to determine autogenous shrinkage of mortar at an early age considering temperature
history’, Cement and Concrete Research 30, 915–922.
Miao C., Tian Q., Sun W. and Liu J.P. (2007) ‘Water consumption of the early-age
paste and the determination of “time-zero” of self-desiccation shrinkage’,
Cement and Concrete Research, 37, 1496–1501.
Mindess S. and Young J.F. (1981) ‘Concrete’, Prentice-Hall.
Mustard H. (1965) ‘Mass concreting principles applied to massive structural members’, ACI Journal, June, 651–660.
Craeye B., De Schutter G., Desmet B., Vantomme J., Heirman G., Vandewalle L.,
Cizer Ö., Aggoun S. and Kadri E.H. (2010) ‘Effect of mineral filler type on
autogenous shrinkage of self-compacting concrete’, Cement and Concrete
Research, 40, 908–913.
Craeye B., Geirnaert M. and De Schutter G. (2011) ‘Super absorbing polymers as an
internal curing agent for mitigation of early-age cracking of high-performance
concrete bridge decks’, Construction and Building Materials, 25, 1–13.
De Schutter G. (1996) ‘Fundamental and Practical Study of Thermal Stresses in
Hardening Massive Concrete Elements’ (in Dutch), Doctoral Thesis, Magnel
Laboratory for Concrete Research, Ghent University, Belgium, pp. 364.
De Schutter G. and Taerwe L. (1996) ‘Degree of hydration based description of
mechanical properties of early age concrete’, Materials and Structures, 29,
335–344.
De Schutter G. and Taerwe L. (1996b) ‘Estimation of the early age thermal cracking
tendency of massive concrete elements by means of the equivalent thickness.’,
ACI Materials Journal, 403–408.
De Schutter G. (2002) ‘Finite element simulation of thermal cracking in massive
hardening concrete elements using degree of hydration based material laws’,
Computers and Structures, Vol. 80, Issue 27-30, p. 2035–2042.
De Schutter G. and Vuylsteke M. (2004) ‘Minimisation of early age thermal cracking in a J-shaped non-reinforced massive concrete quay wall’, Engineering
Structures, 26, 801–808.
De Schutter G., Bartos P., Domone P. and Gibbs J. (2008) ‘Self-Compacting
Concrete’, Whittles Publishing, Caithness, UK, CRC Press, Taylor & Francis
Group, Boca Raton, USA, ISBN 978-1904445-30-2, USA ISBN 978-1-42006833-7, pp. 296.
Esping O. (2008) ‘Effect of limestone filler BET(H20)-area on the fresh and hardened
properties of self-compacting concrete’, Cement and Concrete Research, 38,
938–944.
Hansen T.C. (1986) ‘Physical structures of hardened cement paste. A classical
approach’, Materials and Structures, 19, 423–431.
Hobbs D.W. and Mears A.R. (1971) ‘The influence of specimen geometry upon
weight change and shrinkage of air-dried mortar specimens’, Magazine of
Concrete Research, 23, 89–98.
Kovler K. and Jensen O.M. (Eds.) (2007) ‘Internal Curing of Concrete’, State-ofthe-art report of RILEM Technical Committee 196-ICC, RILEM Report 41,
RILEM Publications S.A.R.L., ISBN 978-2-35158-009-7, pp. 140.
Koenders E.A.B. (1997) ‘Simulation of volume changes in hardening cement-based
materials’, PhD thesis, Technical University of Delft, the Netherlands.
Loukili A., Chopin D., Khelidj A., Le Touzo J.-Y. (2000) ‘A new approach to determine autogenous shrinkage of mortar at an early age considering temperature
history’, Cement and Concrete Research 30, 915–922.
Miao C., Tian Q., Sun W. and Liu J.P. (2007) ‘Water consumption of the early-age
paste and the determination of “time-zero” of self-desiccation shrinkage’,
Cement and Concrete Research, 37, 1496–1501.
Mindess S. and Young J.F. (1981) ‘Concrete’, Prentice-Hall.
Mustard H. (1965) ‘Mass concreting principles applied to massive structural members’, ACI Journal, June, 651–660.
