Colloidal Ceramic Processing of Nano-, Micro-, and Macro-Particulate Systems

Colloidal Ceramic Processing of Nano-, Micro-, and Macro-Particulate Systems
Title Colloidal Ceramic Processing of Nano-, Micro-, and Macro-Particulate Systems PDF eBook
Author Wei-Heng Shih
Publisher John Wiley & Sons
Pages 148
Release 2012-04-11
Genre Technology & Engineering
ISBN 1118406850

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Colloidal processing has always been a major processing method. It facilitates control of particle interactions through a wide variety of schemes, which include surface coating, dispersion additives, and solvent control, among others. Controlling particle interactions also permits better resultant rheology and controlled green microstructures via a wide range of forming methods. In recent years, the particle size involved has been broadened into both the nanometer and the larger than micrometer ranges. This book covers fundamental issues encountered in colloidal processing nano-(less than 0.1 micron), micro-(from 0.1 to 5 micron) and macro-(larger than 5 micron) particulate systems and at the same time explore applications for these developments. Proceedings of the symposium held at the 105th Annual Meeting of The American Ceramic Society, April 27-30, in Nashville, Tennessee; Ceramic Transactions, Volume 152.

Characterization and Control of Interfaces for High Quality Advanced Materials III

Characterization and Control of Interfaces for High Quality Advanced Materials III
Title Characterization and Control of Interfaces for High Quality Advanced Materials III PDF eBook
Author Kevin Ewsuk
Publisher John Wiley & Sons
Pages 403
Release 2010-09-29
Genre Technology & Engineering
ISBN 047091713X

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This proceedings volume features 59 peer-reviewed papers from ICCCI2009 on interface characterization and control technology, powder and composite processing, joining, the control of airborne particulates, new metallic glasses, and interface phenomena at high temperature. ICCCI2009 was supported by the Global COE Program “Center of Excellence for Advanced Structural and Functional Materials Design” lead by Professor Tomoyuki Kakeshita at Osaka University, the Project on Joining Technology for New Metallic Glasses and Inorganic Materials, the Institute of Materials Research (IMR) of Tohoku University, the Materials and Structures Laboratory (MSL) of the Tokyo Institute of Technology, Kobe Gakuin University, Hosokawa Powder Technology Foundation, the Japan JSPS 124th Committee, and the Joining and Welding Research Institute (JWRI) of Osaka University. Over 160 scientists and engineers from academia and industry from 18 different countries attended ICCCI2009 to see and discuss 140 invited and contributed presentations and posters on the state-of-the-art of interface characterization and control for particulate materials, joining, and nanotechnology.

Sci-tech News

Sci-tech News
Title Sci-tech News PDF eBook
Author
Publisher
Pages 296
Release 2005
Genre Library science
ISBN

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American Book Publishing Record

American Book Publishing Record
Title American Book Publishing Record PDF eBook
Author
Publisher
Pages 928
Release 2003
Genre American literature
ISBN

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Industrial Ceramics

Industrial Ceramics
Title Industrial Ceramics PDF eBook
Author
Publisher
Pages 288
Release 2000
Genre Ceramics
ISBN

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Encyclopedia of Surface and Colloid Science

Encyclopedia of Surface and Colloid Science
Title Encyclopedia of Surface and Colloid Science PDF eBook
Author P. Somasundaran
Publisher CRC Press
Pages 962
Release 2006
Genre Science
ISBN 9780849396076

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Metal Oxide Nanoparticles, 2 Volume Set

Metal Oxide Nanoparticles, 2 Volume Set
Title Metal Oxide Nanoparticles, 2 Volume Set PDF eBook
Author Oliver Diwald
Publisher John Wiley & Sons
Pages 903
Release 2021-09-14
Genre Technology & Engineering
ISBN 1119436745

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Metal Oxide Nanoparticles A complete nanoparticle resource for chemists and industry professionals Metal oxide nanoparticles are integral to a wide range of natural and technological processes—from mineral transformation to electronics. Additionally, the fields of engineering, electronics, energy technology, and electronics all utilize metal oxide nanoparticle powders. Metal Oxide Nanoparticles: Formation, Functional Properties, and Interfaces presents readers with the most relevant synthesis and formulation approaches for using metal oxide nanoparticles as functional materials. It covers common processing routes and the assessment of physical and chemical particle properties through comprehensive and complementary characterization methods. This book will serve as an introduction to nanoparticle formulation, their interface chemistry and functional properties at the nanoscale. It will also act as an in-depth resource, sharing detailed information on advanced approaches to the physical, chemical, surface, and interface characterization of metal oxide nanoparticle powders and dispersions. Addresses the application of metal oxide nanoparticles and its economic impact Examines particle synthesis, including the principles of selected bottom-up strategies Explores nanoparticle formulation—a selection of processing and application routes Discusses the significance of particle surfaces and interfaces on structure formation, stability and functional materials properties Covers metal oxide nanoparticle characterization at different length scales With this valuable resource, academic researchers, industrial chemists, and PhD students can all gain insight into the synthesis, properties, and applications of metal oxide nanoparticles.