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Extra info for Control of Cracking in Concrete State of the Art
Early-Age Creep and Shrinkage of Fiber-Reinforced Concrete for Airfield Pavement. In Aircraft Pavement Technology (F. V. ), 1997, pp. 229–243. , and D. A. Lange. Grip-Specimen Interaction in Uniaxial Restrained Tests. Concrete: Materials Science to Applications, American Concrete Institute Special Publication SP 206, 2002, pp. 189–204. , and D. A. Lange. Tensile Basic Creep: Measurements and Behavior at Early Age. ACI Materials Journal, Vol. 98, No. 5, 2001, pp. 386–993. Aktan, H. , T. M. Ahlborn, and Y.
41 42 Transportation Research Circular E-C107: Control of Cracking in Concrete: State of the Art ASTM C 1018. Standard Test Method for Flexural Toughness and First-Crack Strength of FiberReinforced Concrete (Using Beam With Third-Point Loading). American Society for Testing and Materials, 1997. ASTM C 1581. Standard Test Method for Determining Age at Cracking and Induced Tensile Stress Characteristics of Mortar and Concrete Under Restrained Shrinkage. American Society for Testing and Materials, 2005.
Premature Cracking of Concrete Bridge Decks: Cause and Method of Prevention. , 4th International Bridge Engineering Conference, 1996. Balaguru, P. , and S. P. Shah. Alternative Reinforcing Materials for Developing Countries. International Journal for Development Technology, Vol. 3, 1985, pp. 87–105. Bazant, Z. P. Instability, Ductility, and Size Effect in Strain Softening Concrete. Journal of Engineering Mechanics, Vol. 102, 1976, pp. 331–344. Bazant, Z. , and Celodin. Stability of Structures: Elastic, Inelastic, Fracture, and Damage.
Control of Cracking in Concrete State of the Art by TRANSPORTATION RESEARCH BOARD