References
- 김진철 (2003).' 콘크리트의 건조수축 매커니즘과 예측모형', 도로포장공학 회지, 제5권, 제3호, pp. 32-41
- 조호진 (2003).' 초기재령 콘크리트의 거동 해석 기법.' 박사학위논문. 연세대학교
- AASHTO (2002). 'Guide for Design of Pavement and Structures', AmericanAssociation of State Highway and Transportation Officials.
- ACI Committee 209. (1997). 'Prediction of Creep, Shrinkage, and TemperatureEffects in Concrete Structures', ACI 209R-92, ACI Manual of ConcretePractice, American Concrete Institute, Farmington Hills, MI.
- Altoubat, S. A. and Lange, D. A. (2001). 'Creep, Shrinkage and Cracking ofRestrained Concrete at Early-age,' ACI Material Journal, Vol. 98, No. 4, July-Aug, pp.323-331.
- Bazant, Z. P. and Panula, L. P. (1978)'. Simplified Prediction of Concrete Creep and Shrinkage from Strength and Mix', Structural Engineering Report No. 78-10/640, Northwestern University, Evanston, IL.
- Bazant, Z. P. (2001). 'Prediction of Concrete Creep and Shrinkage: Past, Presentand Future', Nuclear Engineering and Design, Vol. 203, No. 1, January, pp.27-38. https://doi.org/10.1016/S0029-5493(00)00299-5
- Bendana. L. J., Sargan. S. H., Khoury. I., and Selle. R. (2003). 'EnvironmentalInfluence of Early Age Response of PCC Pavement', 82nd TransportationRecord Board Annual Meeting.
- CEB-FIP. (1990). 'CEB-FIP Model Code 1990: Design Code',. Thomas TelfordLtd., London, UK.
- Hossain A. B. and Weiss J. (2004). 'Assessing Residual Stress Development andStress Relaxation in Restrained Concrete Ring Specimens.'Cement andConcrete Composites, Vol. 26, No. 5, pp.531-540. https://doi.org/10.1016/S0958-9465(03)00069-6
- Hossain. A. B, Fonseka. A. and Bullock. H. (2008)'. Early Age Stress Development, Relaxation, and Cracking in Restrained Low W/C Ultrafine Fly Ash Mortars'Journal of Advanced Concrete Technology, Vol. 6, No. 2, April, pp.261-271. https://doi.org/10.3151/jact.6.261
- Jeong, J. H. and Zollinger, D. G. (2005)'. Environmental Effects on the Behavior of Jointed Plain Concrete Pavements.' Journal of Transportation Engineering,ASCE, Vol. 131, No. 2, February, pp. 140-148. https://doi.org/10.1061/(ASCE)0733-947X(2005)131:2(140)
- Kovler, K., Sikuler, J., and Bentur, A. (1993).“ Restrained Shrinkage Tests of FiberReinforced Concrete Ring Specimens : Effect of Core Thermal Expansion”,Materials and Structures, Vol. 26, No. 4, pp.231-237. https://doi.org/10.1007/BF02472616
- Schooppel. K., Plannerer. M. and Springenschmid. R. (1995). 'Determination of Restraint Stresses and of Material Properties During Hydration of Concrete with the Temperature-Stress Test Machine', Proceedings of the International RILEM Symposium, Thermal Cracking in Concrete at Early Ages, Springenschmid, R., ed, E&FN Spon, Germany, pp.153-160.
- Sun Renjuan (2009). 'Development of shrinkage-Equivalent TemperatureDifference Model for Concret Pavement Slabs', Ph.D. Thesis, Inha University
- Suprenant, B. A. (2002).' Why Slabs Curl.', Concrete International, Part1, March, pp. 56-61
- Suprenant, B. A. (2002).“ Why Slabs Curl.”, Concrete International, Part 2, April, pp. 59-64
- Yang. W., Jason. W., and Surendra. P. S. (2000)'. Predicting Shrinkage Stress Field in Concrete Slabs on Elastic Subgrade', Journal of Engineering Mechanics,Vol. 126, No. 1, January, pp.35-42. https://doi.org/10.1061/(ASCE)0733-9399(2000)126:1(35)