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Fracture Mechanics Test Methods For Concrete

Fracture Mechanics Test Methods For Concrete


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About the Book

This book reviews methods for the experimental determination of concrete toughness and presents theories and models suitable for describing cracking and fracturing phenomena in plain and reinforced concrete. Test methods based on classical linear elastic fracture mechanics cannot be applied to laboratory sized concrete specimens. The book compares the currently used methods and presents recommended test procedures for mode I fracture toughness using notched-beam and other specimens. Crack propagation under mixed-mode loading (Mode II) is discussed and current test methods are extensively reviewed. Effects of loading rate, temperature and humidity effects are treated in a separate chapter. The book concludes with descriptions of and recommendations for techniques for detecting the fracture process zone in concrete, in particular, acoustic emission, pulse velocity and laser interferometry techniques. The introduction of the concepts of fracture toughness and fracture energy into structural concrete design codes means that the experimental determination of fracture properties is ceasing to be an academic exercise and is becoming a technical need. This book has been prepared by RILEM Technical Committee 89-FMT and will be valuable for materials and structural engineers involved in this important transition. The book has over 300 references and 140 line diagrams.

Table of Contents:
Preface. RILEM technical committee 89-FMT. Subcommittees. Notched beam test: mode I fracture toughness. Introduction. Summary and recommendation. Proposal 1: Two parameter model (TPM). Proposal 2: Size Effect Law (SEL). Proposal 3: Effective Crack Model (ECM). Comparison of ECM and TPM. Application of proposed fracture models to large structures. Acknowledgement. References. Appendices (Test data, Proposal 1 and ECM). Fracture properties of concrete as determined by means of wedge splitting tests and tapered double cantilever beam tests. Introduction. Description of experiments. Experimental results. Determination of Gf-values and tensile softening diagrams. Evaluation of fracture toughness Kic by the compliance method. Mode I fracture parameters. Conclusions and recommendations. References. Mixed-mode crack propagation in concrete. Introduction. Mixed-mode fracture criteria. Test specimen geometries. Fracture of concrete in compression. Conclusions. References. Appendix (Round robin). Loading rate, temperature and humidity effects. Loading rate effects. Temperature and moisture influence. References. Fracture process zone detection. Introduction. Compliance measurements. X-ray techniques. Optical microscopy. Scanning electron microscopy. Electric resistance strain gauge techniques. Photoelastic methods. Mercury penetration measurements. Dye penetrants. Infrared vibrothermography. Ultrasonic pulse velocity. Demec gauges. Acoustic emission. Interferometry techniques. Multi-cutting techniques. Numerical methods. Conclusions. Acknowledgements. References. Laser interferometry methods. Holographic interferometry. Speckle photography. Speckle interferometry. References. Indices.

About the Author :
Surendra Shah is Professor of Civil and Environmental Engineering at Northwestern University, McCormack School of Engineering. Alberto Carpinteri is professor in science of construction at the Polytechnic University of Turin.

Review :
"This book should help the international community in implementing the fracture mechanics-based design Codes. - Correspondence


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Product Details
  • ISBN-13: 9780412411007
  • Publisher: Taylor & Francis Ltd
  • Publisher Imprint: Spon Press
  • Height: 234 mm
  • No of Pages: 300
  • Width: 156 mm
  • ISBN-10: 0412411008
  • Publisher Date: 07 Mar 1991
  • Binding: Hardback
  • Language: English
  • Weight: 720 gr


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