Discussions and Closures
Dec 22, 2021

Discussion of “Thermally Induced Behavior of Paired Internally Cured Concrete and Conventional Concrete Decks in Composite Bridges” by Waleed K. Hamid, Eric P. Steinberg, Issam Khoury, Ali A. Semendary, and Kenneth Walsh

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Publication: Journal of Bridge Engineering
Volume 27, Issue 3

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References

AASHTO. 2017. LRFD bridge design specifications. Bridge design specifications. Customary U.S. Units. 8th ed. Washington, DC: AASHTO.
ACI (American Concrete Institute). 1993. Cooling and insulating systems for mass concrete. ACI 207.4R (Reapproved 1998). Farmington Hills, MI: ACI.
ACI (American Concrete Institute). 2007. Report on thermal and volume change effects on cracking of mass concrete. ACI 207.2R. Farmington Hills, MI: ACI.
ACI (American Concrete Institute). 2017. Slag cement in concrete and mortar. ACI 233. Farmington Hills, MI: ACI.
Baah, P. 2014. “Cracking behavior of structural slab bridge decks.” Doctoral dissertation, Dept. of Civil Engineering, Univ. of Akron.
Cai, H., O. Abudayyeh, I. Abdel-Qader, U. Attanayake, J. Barbera, and E. Almaita. 2012. “Bridge deck load testing using sensors and optical survey equipment.” Adv. Civ. Eng. 2012: 493983. https://doi.org/10.1155/2012/493983.
Folliard, K., C. Smith, G. Sellers, M. Brown, and J. E. Breen. 2003. Evaluation of alternative materials to control drying-shrinkage cracking in concrete bridge decks. FHWA/TX-04/0-4098-4. Washington, DC: FHWA.
Hadidi, R., and M. A. Saadeghvaziri. 2005. “Transverse cracking of concrete bridge decks: State-of-the-art.” J. Bridge Eng. 10 (5): 503–510. https://doi.org/10.1061/(ASCE)1084-0702(2005)10:5(503).
Hamid, W. K., E. P. Steinberg, A. A. Semendary, I. Khoury, and K. Walsh. 2021. “Closure to “early-age behavior of internally cured concrete bridge deck under environmental loading” by Waleed K. Hamid, Eric P. Steinberg, Ali A. Semendary, Issam Khoury, and Kenneth Walsh.” J. Perform. Constr. Facil. 35 (3): 07021002. https://doi.org/10.1061/(ASCE)CF.1943-5509.0001578.
Krauss, P. D., and E. A. Rogalla. 1996. Transverse cracking in newly constructed bridge decks. NCHRP Rep. Project 12-37 FY’92. Washington, DC: Transportation Research Board.
Shui, Z. H., R. Zhang, W. Chen, and D. X. Xuan. 2010. “Effects of mineral admixtures on the thermal expansion properties of hardened cement paste.” Constr. Build. Mater. 24 (9): 1761–1767. https://doi.org/10.1016/j.conbuildmat.2010.02.012.
Xia, Y., H. Nassif, and D. Su. 2017. “Early-age cracking in high performance concrete decks of a curved steel girder bridge.” J. Aerosp. Eng. 30 (2): B4016003. https://doi.org/10.1061/(ASCE)AS.1943-5525.0000595.

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Go to Journal of Bridge Engineering
Journal of Bridge Engineering
Volume 27Issue 3March 2022

History

Received: Jul 1, 2021
Accepted: Sep 8, 2021
Published online: Dec 22, 2021
Published in print: Mar 1, 2022
Discussion open until: May 22, 2022

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Authors

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Dept. of Civil Engineering, Vishwakarma Institute of Information Technology, Pune 411048, India (corresponding author). ORCID: https://orcid.org/0000-0002-1161-3289. Email: [email protected]
Jayesh S. Kale, Aff.M.ASCE [email protected]
Dept. of Civil Engineering, Vishwakarma Institute of Information Technology, Pune 411048, India. Email: [email protected]
Aniket D. Patil [email protected]
Assistant Professor, Dept. of Civil Engineering, MIT-ADT Univ., Pune, 412201, India. Email: [email protected]
Hemant B. Dhonde, Ph.D. [email protected]
Director, C-Probe Technologies LLP, Pune 411058, India. Email: [email protected]

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