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The oxidative and thermal degradation of polymers has very important implications on their suitability for particular end-user applications. Particularly in relation to their physical properties and the lifetime over which the manufactured article retains these properties, after which they become unsuitable for purpose. This book brings together information on the thermooxidative resistance of polymers to change during processing and end-use life. Our present understanding of the chemical changes of the polymer that accompany degradation are also reviewed and the analytical methods by which ch
Polymers --- Analysis. --- Deterioration.
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Materials --- Buildings, reinforced concrete --- Bacterial corrosion --- Deterioration
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Concrete --- Concrete --- Béton --- Béton --- Deterioration --- Détérioration
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Iconography --- Art --- installations [visual works] --- deterioration --- art [discipline] --- Nature --- mold [fungus] --- biological material --- Reyers, Zeger --- Netherlands
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Many concrete structures and elements of concrete infrastructure have exceeded their original design lives and are deteriorating to an extent where they are becoming dangerous. The deterioration can be internal or not obvious and therefore only shows up with detailed testing. Non-destructive evaluation of reinforced concrete structures, Volume 1: Deterioration processes and standard test methods reviews the processes of deterioration and classical and standard test methods.Part one discusses deterioration of reinforced concrete and testing problems with chapters on topics such as key issues in
Engineering --- Civil Engineering --- Reinforced concrete construction --- Reinforced concrete --- Construction en béton armé --- Béton armé --- Nondestructive testing --- Deterioration --- Contrôle non destructif --- Détérioration --- Nondestructive testing. --- Deterioration.
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Building stones --- Stone buildings --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Materials Science --- Deterioration --- Conservation and restoration --- Buildings, Stone --- Buildings
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Tribologie (technologie) --- Procédés de fabrication. --- Lubrifiants --- Matières plastiques --- Tribology --- Manufacturing processes --- Lubrication and lubricants --- Plastics --- Détérioration. --- Deterioration
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Environmental degradation. --- Population --- Human ecology. --- Ecology --- Environment, Human --- Human beings --- Human environment --- Ecological engineering --- Human geography --- Nature --- Degradation, Environmental --- Destruction, Environmental --- Deterioration, Environmental --- Environmental destruction --- Environmental deterioration --- Natural disasters --- Environmental quality --- Environmental aspects. --- Social aspects --- Effect of environment on --- Effect of human beings on
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Introduction to Corrosion Science is suitable for a one-semester course in corrosion science at the graduate or advanced undergraduate level for students that do not have backgrounds in electrochemistry but have taken introductory courses in materials science or physical chemistry. The text follows the approach of a physical chemist or materials scientist and is geared toward students of physical chemistry, materials science, and engineering. In addition, practicing corrosion engineers and materials engineers will find useful information that will broaden their understanding of the fundamental principles of corrosion science. This textbook grew out of classroom lectures, which the author presented as a Professorial Lecturer at George Washington University, Washington, D.C. Chapters on: o Charged interfaces o Electrochemical cells o Thermodynamics of corrosion o Corrosion kinetics and mixed potential theory o Concentration polarization and diffusion o Passivity o Crevice corrosion and pitting o Stress-corrosion cracking and corrosion fatigue o Corrosion inhibitors o Corrosion under organic coatings o AC impedance o High temperature oxidation Key features: o Detailed illustrations o Worked example problems o Problem sets after each chapter o Extensive references o Appendices to show the origin of important equations About the author: Dr. E. McCafferty is a Professorial Lecturer at George Washington University and a consultant to the Naval Research Laboratory, Washington D.C., where he has conducted research in corrosion science for over thirty years.
Corrosion and anti-corrosives. --- Corrosion data. --- Corrosion science. --- Corrosion and anti-corrosives --- Chemistry --- Chemical & Materials Engineering --- Engineering & Applied Sciences --- Physical Sciences & Mathematics --- Physical & Theoretical Chemistry --- Materials Science --- Materials --- Deterioration. --- Deterioration of materials --- Anti-corrosive paint --- Atmospheric corrosion --- Metal corrosion --- Metals --- Rust --- Rustless coatings --- Disintegration --- Corrosion --- Chemistry. --- Electrochemistry. --- Materials science. --- Structural materials. --- Materials Science, general. --- Structural Materials. --- Weathering --- Chemical inhibitors --- Chemistry, Technical --- Fouling --- Paint --- Protective coatings --- Waterproofing --- Deterioration --- Surfaces --- Materials. --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Physical sciences --- Architectural materials --- Architecture --- Building --- Building supplies --- Buildings --- Construction materials --- Structural materials --- Material science --- Chemistry, Physical and theoretical
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Pollution. --- Environmental degradation. --- Environmental protection. --- Environmental quality management --- Protection of environment --- Environmental sciences --- Applied ecology --- Environmental engineering --- Environmental policy --- Environmental quality --- Degradation, Environmental --- Destruction, Environmental --- Deterioration, Environmental --- Environmental destruction --- Environmental deterioration --- Natural disasters --- Chemical pollution --- Chemicals --- Contamination of environment --- Environmental pollution --- Pollution --- Contamination (Technology) --- Asbestos abatement --- Bioremediation --- Factory and trade waste --- Hazardous waste site remediation --- Hazardous wastes --- In situ remediation --- Lead abatement --- Pollutants --- Refuse and refuse disposal --- Environmental aspects
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