Restraint and intrinsic stresses in concrete at early ages are vitally important for concrete structures which must remain free of water-permeable cracks, such as water-retaining structures, tunnel linings, locks and dams. The development of hydration heat, stiffness and strength, also the degree of restraint and, especially for high-strength concrete, non-thermal effects, are decisive for sensitivity to cracking. Determining thses stresses in the laboratory and in construction components has led to a clearer understanding ...
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Restraint and intrinsic stresses in concrete at early ages are vitally important for concrete structures which must remain free of water-permeable cracks, such as water-retaining structures, tunnel linings, locks and dams. The development of hydration heat, stiffness and strength, also the degree of restraint and, especially for high-strength concrete, non-thermal effects, are decisive for sensitivity to cracking. Determining thses stresses in the laboratory and in construction components has led to a clearer understanding of how they develop and how to optimize mix design, temperature and curing conditions. New testing equipment has enabled the effects of all the important parameters to be qualified and more reliable models for predictiong restraint stresses to be developed. Thermal Cracking in Conrete at Early Ages contains 56 contributions by leading international specialists presented at the RILEM Symposium held in October 1994 at the Technical University of Munich. It will be valuable for construction and site engineers, concrete technologists and scientists.
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New. Intended for professional and scholarly audience. In Stock. 100% Money Back Guarantee. Brand New, Perfect Condition, allow 4-14 business days for standard shipping. To Alaska, Hawaii, U.S. protectorate, P.O. box, and APO/FPO addresses allow 4-28 business days for Standard shipping. No expedited shipping. All orders placed with expedited shipping will be cancelled. Over 3, 000, 000 happy customers.
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Textual graphs & diagrams. A 1cm dent & small tear to lower rear cover binging edge. VG. 24x16cm, xv, 470 pp, Binding corners bumped. Some light page-edge soil. Series: International Union of Testing & Research Laboratories for Materials & Structures, RILEM Proceedings, 25. Contains 56 papers concerning Heat of Hydration; Prediction of Temperature Development; Determination & Modeling of Mechanical Properties; Measurement of Thermal Stresses in the Laboratory; Measurement of Thermal Stresses in Situ; Influence of Constituents & Composition of Concrete on Cracking Sensitivity; Computational Assessment of Stresses & Cracking; Practical Measures for Avoidance of Cracking-Case Records. Includes: T. Kishi & K. Maekawa "Thermal & Mechanical Modelling of Young Concrete Based on Hydration Process of Multi-Component Cement Minerals"; C. Wang & W.H. Dilger "Prediction of Temperature Distribution in Hardening Concrete"; M. Yamazaki; et al: "Low-Heat Portland Cement Used for Silo Foundation Mat: Temperatures & Stresses Measured & Analyzed"; T. Yoshioka; et al: "Thermal Cracking in Wall of Prestressed Concrete Egg-Shaped Digester"; E. Sellevold; et al: "High Performance Concrete: Early Volume Change & Cracking Tendency"; E.S. Pedersen "Predicition of Temperature & Stress Development in Concrete Structures"; M. Emborg & S. Bernander "Avoidance of Early Age Thermal Cracking in Concrete Structures: Predesign, Measures, Follow-up"; W.G.L. Wagenaars & K. van Breugel "Water-tight Design, Artificial Cooling or Extra Reinforcement"; etc.