180 Damage to concrete structures
Buettner D.R. and Becker R.J. (1998) PCI Manual for the design of hollow core
slabs, 2 nd edition, Precast Concrete Institute, Chicago, Illinois.
Bulteel D., Garcia-Diaz E. and Dégrugilliers P. (2010) ‘Influence of lithium hydroxide
on alkali–silica reaction’, Cement and Concrete Research, 40, 526–530.
Chatterji S. (2003) ‘Freezing of air-entrained cement-based materials and specific
actions of air-entraining agents’, Cement and Concrete Research, 25, 759–765.
Clifton J.R. and Ponnersheim J.M. (1994) ‘Sulfate attack of cementitious materials: volumetric relations and expansions’, NISTIR 5390, NIST, Gaithersburg,
pp.18.
De Belie N. (1997) ‘Concrete technological and chemical aspects of floor degradation in pig houses’ (in Dutch), doctoral thesis, Magnel Laboratory for Concrete
Research, Ghent University, Belgium.
De Ceukelaire L. (1986) Report 86/0704 of the Magnel Laboratory for Concrete
Research, Ghent University, Belgium.
De Ceukelaire L. (1988) ‘Alkali-silicareactie nu ook in België?’, Cement, 10, 21–25.
De Ceukelaire L. (1991) ‘The determination of the most common crystalline alkalisilica reaction product’, Materials and Structures, 24, 169–171.
Fares H., Rémond S., Noumowé A. and De Schutter G. (2011) ‘Comportement à
haute température des bétons auto-plaçants’, in ‘Les bétons auto-plaçants’, Ed.
A. Loukili, Lavoisier, Paris, ISBN 978-2-7462-3127-6, 2011, 219–260.
Feng X, Thomas M.D.A., Bremner T.W., Folliard K.J. and Fournier B. (2010)
‘Summary of research on the effect of LiNO 3 on alkali–silica reaction in new
concrete’, Cement and Concrete Research, 40, 636–642.
Ferraris C.F. (1995) ‘Alkali-silica reaction and high performance concrete’, National
Institute of Standards and Technology, NISTIR 5742, pp.20.
Grattan-Bellew P.E., Mitchell L.D., Margeson J. and Min D. (2010), ‘Is alkali-carbonate reaction just a variant of alkali silica reaction ACR=ASR ?’, Cement
and Concrete Research, 40, 556–562.
Gruyaert E., Van den Heede Ph., Maes M. and De Belie N. (2012) ‘Investigation of
the influence of blast-furnace slag on the resistance of concrete against organic
acid or sulphate attack by means of accelerated degradation tests’, Cement and
Concrete Research, 42, 173–185.
Haynes H. and Bassuoni M.T. (2011) ‘Physical salt attack on concrete’, Concrete
International, 33, 11, 38–42.
Helmuth R., Stark D., Diamond S. and Moranville-Regourd M. (1993) ‘Alkalisilica reactivity: an overview of research’, Strategic Highway Research
Program, SHRP-C-342, National Research Council, Washington DC, ISBN
0-309-05602-0.
Hime W.G. (2003) ‘Chemists should be studying chemical attack on concrete’,
Concrete International, 25, 4, 82–84.
Hobbs D.W. (1988) ‘Alkali-silica reaction in concrete’, Thomas Telford, London.
Ichikawa T. and Miura M. (2007) ‘Modified model of alkali-silica reaction’, Cement
and Concrete Research, 37, 1291–1297.
Irassar E.F. (2009) ‘Sulfate attack on cementitious materials containing limestone
filler – a review’, Cement and Concrete Research, 39, 241–254.
Katayama T. (1992) ‘A critical review of carbonate rock reactions – is their reactivity
useful or harmful ?’, Proceedings of the 9th International Conference on alkaliaggregate reaction in concrete (ICAAR), ed. A.B. Poole, London, 508–517.
Buettner D.R. and Becker R.J. (1998) PCI Manual for the design of hollow core
slabs, 2 nd edition, Precast Concrete Institute, Chicago, Illinois.
Bulteel D., Garcia-Diaz E. and Dégrugilliers P. (2010) ‘Influence of lithium hydroxide
on alkali–silica reaction’, Cement and Concrete Research, 40, 526–530.
Chatterji S. (2003) ‘Freezing of air-entrained cement-based materials and specific
actions of air-entraining agents’, Cement and Concrete Research, 25, 759–765.
Clifton J.R. and Ponnersheim J.M. (1994) ‘Sulfate attack of cementitious materials: volumetric relations and expansions’, NISTIR 5390, NIST, Gaithersburg,
pp.18.
De Belie N. (1997) ‘Concrete technological and chemical aspects of floor degradation in pig houses’ (in Dutch), doctoral thesis, Magnel Laboratory for Concrete
Research, Ghent University, Belgium.
De Ceukelaire L. (1986) Report 86/0704 of the Magnel Laboratory for Concrete
Research, Ghent University, Belgium.
De Ceukelaire L. (1988) ‘Alkali-silicareactie nu ook in België?’, Cement, 10, 21–25.
De Ceukelaire L. (1991) ‘The determination of the most common crystalline alkalisilica reaction product’, Materials and Structures, 24, 169–171.
Fares H., Rémond S., Noumowé A. and De Schutter G. (2011) ‘Comportement à
haute température des bétons auto-plaçants’, in ‘Les bétons auto-plaçants’, Ed.
A. Loukili, Lavoisier, Paris, ISBN 978-2-7462-3127-6, 2011, 219–260.
Feng X, Thomas M.D.A., Bremner T.W., Folliard K.J. and Fournier B. (2010)
‘Summary of research on the effect of LiNO 3 on alkali–silica reaction in new
concrete’, Cement and Concrete Research, 40, 636–642.
Ferraris C.F. (1995) ‘Alkali-silica reaction and high performance concrete’, National
Institute of Standards and Technology, NISTIR 5742, pp.20.
Grattan-Bellew P.E., Mitchell L.D., Margeson J. and Min D. (2010), ‘Is alkali-carbonate reaction just a variant of alkali silica reaction ACR=ASR ?’, Cement
and Concrete Research, 40, 556–562.
Gruyaert E., Van den Heede Ph., Maes M. and De Belie N. (2012) ‘Investigation of
the influence of blast-furnace slag on the resistance of concrete against organic
acid or sulphate attack by means of accelerated degradation tests’, Cement and
Concrete Research, 42, 173–185.
Haynes H. and Bassuoni M.T. (2011) ‘Physical salt attack on concrete’, Concrete
International, 33, 11, 38–42.
Helmuth R., Stark D., Diamond S. and Moranville-Regourd M. (1993) ‘Alkalisilica reactivity: an overview of research’, Strategic Highway Research
Program, SHRP-C-342, National Research Council, Washington DC, ISBN
0-309-05602-0.
Hime W.G. (2003) ‘Chemists should be studying chemical attack on concrete’,
Concrete International, 25, 4, 82–84.
Hobbs D.W. (1988) ‘Alkali-silica reaction in concrete’, Thomas Telford, London.
Ichikawa T. and Miura M. (2007) ‘Modified model of alkali-silica reaction’, Cement
and Concrete Research, 37, 1291–1297.
Irassar E.F. (2009) ‘Sulfate attack on cementitious materials containing limestone
filler – a review’, Cement and Concrete Research, 39, 241–254.
Katayama T. (1992) ‘A critical review of carbonate rock reactions – is their reactivity
useful or harmful ?’, Proceedings of the 9th International Conference on alkaliaggregate reaction in concrete (ICAAR), ed. A.B. Poole, London, 508–517.
