Bowen Li – författare
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This collection gives broad and up-to-date results in the research and development of materials characterization and processing. Topics covered include characterization methods, ferrous materials, non-ferrous materials, minerals, ceramics, polymer and composites, powders, extraction, microstructure, mechanical behavior, processing, corrosion, welding, solidification, magnetic, electronic, environmental, nano-materials, and advanced materials The book explores scientific processes to characterize materials using modern technologies, and focuses on the interrelationships and interdependence among processing, structure, properties, and performance of materials.
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This collection emphasizes the advances of powder and ceramic materials in fundamental research, technology development, and industrial applications. Ceramic materials science covers the science and technology of creating objects from inorganic, nonmetallic materials, and includes design, synthesis, and fabrication of ceramics, glasses, advanced concretes, and ceramic-metal composites.
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This collection gives broad and up-to-date results in the research and development of materials characterization and processing. Topics covered include advanced characterization methods, minerals, mechanical properties, coatings, polymers and composites, corrosion, welding, magnetic materials, and electronic materials. The book explores scientific processes to characterize materials using modern technologies, and focuses on the interrelationships and interdependence among processing, structure, properties, and performance of materials.
3 258 kr
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1 741 kr
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This book introduces the latest research regarding the adsorption of heavy metals, toxic ions, and organic compounds at the interfaces of water/minerals, such as mineralogical characterizations, surface chemistry, and modification of natural minerals as adsorbents, as well as the adsorption of cations, anions, and organic compounds in water. Presenting findings by the authors and their co-workers, the book helps readers grasp the principals and benefits of using minerals for water treatment, as well as the advanced technologies in the area developed over last 30 years, especially the last 10 years.
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• Characterization methodology of minerals, metals, and materials
• Microwave-assisted material processes
• Recycling and reuse of metallurgical byproducts
• Materials for hydrogen storage
• Wastewater treatment and environmental protection
• Natural materials for value-added applications• Principles and interactions of material characterization and manufacturing processing
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2 500 kr
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The collection focuses on the advancements of characterization of minerals, metals, and materials and the applications of characterization results on the processing of these materials. Advanced characterization methods, techniques, and new instruments are emphasized. Areas of interest include, but are not limited to:
· Novel methods and techniques for characterizing materials across a spectrum of systems and processes.
· Characterization of mechanical, thermal, electrical, optical, dielectric, magnetic, physical, and other properties of materials.
· Characterization of structural, morphological, and topographical natures of materials at micro- and nano- scales.
· Characterization of extraction and processing including process development and analysis.
· Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffraction, electron microscopy (SEM, FIB, TEM), and spectroscopy (EDS, WDS, EBSD) techniques.
· 2D and 3D modelling for materials characterization.
The book explores scientific processes to characterize materials using modern technologies, and focuses on the interrelationships and interdependence among processing, structure, properties, and performance of materials.
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3 041 kr
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3 843 kr
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The collection focuses on the advancements of characterization of minerals, metals, and materials and the applications of characterization results on the processing of these materials. Advanced characterization methods, techniques, and new instruments are emphasized. Areas of interest include, but are not limited to:
• Novel methods and techniques for characterizing materials across a spectrum of systems and processes.
• Characterization of mechanical, thermal, electrical, optical, dielectric, magnetic, physical, and other properties of materials.
• Characterization of structural, morphological, and topographical natures of materials at micro- and nano- scales.
• Characterization of extraction and processing including process development and analysis.
• Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffraction, electron microscopy (SEM,FIB, TEM), and spectroscopy (EDS, WDS, EBSD) techniques.• 2D and 3D modelling for materials characterization.
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· Extraction and processing of various types of minerals, process-structure-property relationship of metal alloys, glasses, ceramics, polymers, composites, semiconductors, and carbon using as functional and structural materials.
· Novel methods and techniques for characterizing materials across a spectrum of systems and processes.
· Characterization of mechanical, thermal, electrical, optical, dielectric, magnetic, physical, and other properties of materials.· Characterization of structural, morphological, and topographical natures of materials at micro- and nano- scales.
· Characterization of extraction and processing including process development and analysis.
· Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffraction, electron microscopy (SEM, FIB, TEM), and spectroscopy (EDS, WDS, EBSD) techniques.· 2D and 3D modelling for materials characterization.
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· Synthesis, characterization, modeling, and simulation of ceramic materials
· Design and control of ceramic microstructure and properties
· Ceramic powders and processing
· Catalyst and catalyst support materials
· Fundamental understanding of ceramic materials and processes
· Novel methods, techniques, and instruments used to characterize ceramics and glasses
· High entropy ceramics (and/or entropy stabilized, complex-concentrated, compositionally-complex, multi-principal cation ceramics)
· Bioceramics, electronic, magnetic ceramics, and applications
· Surface treatment and ceramic thin films, membranes, and coatings
· Porous ceramic materials
· Hybrid systems of ceramic, metal, and/or polymer composites
· Ceramics used for extreme environments
· Metallurgical byproducts for ceramic manufacturing
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· Extraction and processing of various types of minerals, process-structure-property relationship of metal alloys, glasses, ceramics, polymers, composites, semiconductors, and carbon using functional and structural materials.
· Novel methods and techniques for characterizing materials across a spectrum of systems and processes.
· Characterization of mechanical, thermal, electrical, optical, dielectric, magnetic, physical, and other properties of materials.
· Characterization of structural, morphological,and topographical natures of materials at micro- and nano- scales.
· Characterization of extraction and processing including process development and analysis.
· Advances in instrument developments for microstructure analysis and performance evaluation of materials, such as computer tomography (CT), X-ray and neutron diffraction, electron microscopy (SEM, FIB, TEM), and spectroscopy (EDS, WDS, EBSD) techniques.
· 2D and 3D modelling for materials characterization.
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