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Methods of controlling mass concrete temperatures range from relatively simple to complex and from inexpensive too costly. Depending on a particular situation, it may be advantageous to use one or more methods over others. Based on the author's 50 years of personal experience in designing mass concrete structures, Thermal Stresses and Temperature Control of Mass Concrete provides a clear and rigorous guide to selecting the right techniques to meet project-specific and financial needs. New techniques such as long time superficial thermal insulation, comprehensive temperature co
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Thermodynamics --- Materials --- Thermodynamics. --- Thermal properties. --- Thermal properties --- Materials - Thermal properties
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Polymers --- Thermal properties. --- Thermal properties --- Polymers - Thermal properties
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This licentiate thesis by Rikard Forsén explores the high-temperature mechanical properties and thermal stability of Ti-Cr-Al-N coatings created through reactive arc evaporation. The research demonstrates that adding chromium to Ti-Al-N coatings enhances thermal stability and hardness, while titanium additions to Cr-Al-N coatings delay detrimental phase formation, thus improving mechanical properties. The study also investigates the oxidation resistance of these coatings, highlighting their potential for use in cutting tools operating at high temperatures. The work aims to provide a deeper understanding of the microstructural behavior and mechanical performance of these advanced coatings.
Coatings. --- Thermal properties. --- Coatings --- Thermal properties
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Environmentally compatible polymers (green polymers) are the key to sustainable developments for our rich and convenient life. In order to develop green polymers, it is essential to understand that nature constructs a variety of materials that can be used. Plant materials such as cellulose, hemicellulose and lignin are the largest organic resources. Thermal Properties of Green Polymers and Biocomposites is unique in that it introduces thermal analysis applicable to green polymers and provides fundamental thermal properties of cellulose, polysaccharides and lignin. The book includes over 370 figures concerning thermal properties of green polymers with detailed experimental conditions. It also introduces newly patented environmentally compatible green polymers. Thermal properties provided include: thermogravimetry (TG), differential thermal analysis (DTA), differential scanning calorimetry (DSC), thermomechanometry (TMA) and dynamic mechanical analysis (DMA). This book covers two domains: -Fundamentals of thermal properties of cellulose, polysaccharides and lignin (Chapters 3 to 5); -Developments of new biocompatible polymers derived from plant materials (Chapters 6 to 8). This book is aimed at advanced users and specialists who are interested in green polymers and who utilize thermal analyses for the above polymers, especially in research laboratories, both academic and industrial.
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Annotation THERMINIC is the major European Workshop related to thermal issues in electronic components and systems For academics and industrialists involved in both micro and power electronics.
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