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This book, first published in 2000, deals with the micromechanical characterization of polymer materials. Particular attention is given to microhardness as a technique capable of detecting a variety of morphological and textural changes in polymers. A comprehensive introduction to the microhardness of polymers is provided, including descriptions of the various testing methods in materials science and engineering. The book also includes the micromechanical study of glassy polymers and discusses the relevant aspects of microhardness of semicrystalline polymers. The volume also presents selected application examples of the microhardness technique for the characterization of polymeric materials, including the influence of polymer processing, the use in weathering tests, the characterization of modified polymer surfaces, and others. This book will be of use to graduate-level materials science students, as well as research workers in materials science, mechanical engineering and physics departments interested in the microindentation hardness of polymer materials.
Polymers --- Microhardness. --- Mechanical properties. --- Testing.
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Steel --- Steel --- Mechanical properties --- Metallography
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Polymers --- Polymers --- Additives --- Mechanical properties
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The first symposium on Access in Nanoporous Materials was held in Lansing, Michigan on June 7-9, 1995. The five years that have passed since that initial meeting have brought remarkable advances in all aspects of this growing family of materials. In particular, impressive progress has been achieved in the area of novel self-assembled mesoporous materials, their synthesis, characterization and applications. The supramolecular self-assembly of various inorganic and organic species into ordered mesostructures became a powerful method for synthesis of mesoporous molecular sieves of tailored framework composition, pore structure, pore size and desired surface functionality for advanced applications in such areas as separation, adsorption, catalysis, environmental cleanup and nanotechnology. In addition to mesostructured metal oxide molecular sieves prepared through supramolecular assembly pathways, clays, carbon molecular sieves, porous polymers, sol-gel and imprinted materials, as well as self-assembled organic and other zeolite-like materials, have captured the attention of materials researchers around the globe. The contents of the current volume present a sampling of more than 150 oral and poster papers delivered at the Symposium on Access in Nanoporous Materials II held in Banff, Alberta on May 25-30, 2000. About 70% of the papers are devoted to the synthesis of siliceous mesoporous molecular sieves, their modification, characterization and applications, which represent the current research trend in nanoporous materials. The remaining contributions provide some indications on the future developments in the area of non-siliceous molecular sieves and related materials. This book reflects the current trends and advances in this area, which will certainly attract the attention of materials chemists in the 21st century.
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Wear --- Wear --- Sprayers --- Sprayers --- Spraying --- Spraying --- Mechanical properties --- Mechanical properties --- Efficiency --- Efficiency --- environmental protection --- environmental protection
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design --- design --- Construction --- Construction --- Mechanical properties --- Mechanical properties --- soil mechanics --- soil mechanics --- Pieu de fondation
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Acacia senegal --- Acacia senegal --- Gums --- Gums --- Mechanical properties --- Mechanical properties --- Acacia seyal --- Acacia seyal
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Mechanical properties of solids --- Materials sciences --- composieten --- materiaalkennis --- elasticiteit
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Structural timber --- Structural timber --- Mechanical properties --- Mechanical properties --- Strength --- Strength --- Image processing --- Image processing --- Image analysis --- Image analysis
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