Author signed AEROSOL PROCESSING OF MATERIALS -Toivo T. Kodas & Mark J. Hampden

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Book Title
Aerosol Processing of Materials
ISBN-10
0471246697
ISBN
9780471246695
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關於產品

Product Identifiers

Publisher
Wiley & Sons, Incorporated, John
ISBN-10
0471246697
ISBN-13
9780471246695
eBay Product ID (ePID)
354554

Product Key Features

Number of Pages
712 Pages
Publication Name
Aerosol Processing of Materials
Language
English
Subject
Materials Science / Thin Films, Surfaces & Interfaces, General, Chemistry / Industrial & Technical
Publication Year
1998
Type
Textbook
Author
Toivo T. Kodas, Mark J. Hampden-Smith
Subject Area
Technology & Engineering, Science
Format
Hardcover

Dimensions

Item Height
1.5 in
Item Weight
41.1 Oz
Item Length
9.6 in
Item Width
6.5 in

Additional Product Features

Intended Audience
Scholarly & Professional
LCCN
98-003623
Dewey Edition
21
Illustrated
Yes
Dewey Decimal
621.3815/2
Table Of Content
Particle Size Distribution and Physical and Chemical Characteristics. Particle Transport. Particle Growth, Evaporation, and Nucleation. Collision and Coalescence. Intraparticle Transport Processes. Models Based on the General Dynamic Equation. Chemistry. Characteristics of Nanostructured Materials. Overall Qualitative Behavior of Gas-to-Particle Conversion Processes. Technology of Gas-to-Particle Conversion. Overall Qualitative Behavior of Liquid-to-Solid and Solid-to-Solid Conversion Processes. Technology: Liquid-to-Solid and Solid-to-Solid Conversion. Film Formation. Film Generation Technologies. Aerosol Reactor Components. Measurement Techniques. Index.
Synopsis
An aerosol is a dispersion of a liquid or solid in gas. Fog (water particles in air), smoke (carbon particles in air), and spray paint are all aerosols. Materials created using aerosol processing include pigments, advanced ceramics (superconductors, electronics, sensors), and optical waveguides that make up our telephone systems., Zu den mit Hilfe von Aerosoltechniken hergestellten Produkten gehören Pigmente, Supraleiter, Sensoren, Hochtemperaturbeschichtungen und Lichtwellenleiter. Dieses Buch deckt alle Aspekte des Fachgebietes ab, von der Chemie der Aerosole über Verarbeitungsverfahren bis hin zur Vermessung der abgeschiedenen Materialien. Durch eine geschickte Organisation des Textes lä t sich das Buch auch hervorragend als Nachschlagewerk für die behandelten Beispiele, Aufwachsprozesse und Reaktormodelle verwenden. (12/98), An authoritative guide to the science, engineering, and technology of aerosol processing. Aerosol Processing of Materials offers a comprehensive look at advanced materials processing by aerosol methods. This self-contained volume examines in-depth what it takes to generate powders and films with specialized characteristics using gas-phase processes. In three main parts, it addresses particle formation by intraparticle reaction, particle formation by gas-to-particle conversion, and film formation. All aspects of these subjects are considered, from the basic principles and chemistry of aerosols to processing methods and the characterization of materials. The text incorporates an impressive array of examples involving materials such as metals, metal oxides, and metal sulfides for application in pigments, ceramics superconductors, electronics, sensors, glass coatings, semiconductors, optical materials, and thick films. Fully referenced, generously illustrated, and lucidly written by two of the foremost authorities on aerosol processing of materials, this landmark work emphasizes cutting-edge technologies, industrial applications, and the need to put existing research to practical use. Aerosol Processing of Materials: ∗ Provides a basic and practical understanding of the relationships between reagents and processes used to generate a variety of materials in powder and film form ∗ Reviews the state-of-the-art of gas-phase nanoparticle technology, including synthesis of nanostructured materials and their properties ∗ Gives simple explanations of the aerosol dynamics in various systems for particle and film formation and the advantages and disadvantages of different systems for particle formation ∗ Features master tables listing all aerosol processing examples presented in the book ∗ Provides problem-solving strategies to avoid degradation or defects in materials produced by aerosol methods. Aerosol Processing of Materials offers tremendous insight into current practices, research opportunities, and future trends in this evolving field. It is an invaluable resource for chemists and chemical and materials engineers in the fiber optics, electronics, semiconductor, thick film, wear resistance, refractory, automotive, paint and dye, plastics, ceramics, and sensor industries., Unifying a wide range of materials synthesis techniques, 'Aerosol Processing of Materials' provides a detailed overview of the production of materials by the use of gas phase processes. Aerosol processes are responsible for the production of many of today's most advanced materials, especially in the semiconductor, optical waveguide, and thin film industries. Many of the unique properties of nanophase materials and composites are only possible through the application of acrosol in materials processing. This book describes various types of aerosol processes and the role of aerosols in materials processing. The work presents the advantages and disadvantages of each process in terms of cost, complexity, purity, and materials properties; and compares these factor to alternative methods of powder and film formation. The title provides the theory needed to understand and advance the fundamentals of this rapidly expanding material manufacturing processes. Written by well-respected leaders in the field, the book illuminates the roles of particle size characterization and size distributions; heat, mass, and momentum transfer; particle transport; condensation and evaporation; and coagulation and coalescence. 'Aerosol Processing of Materials' provides the most up-to-date and comprehensive single source of information available on gas-to-particle powder formation; liquid/solid-to-solid powder formation; film formation; reactor design; and particle/film characterization.
LC Classification Number
TA418.9.T45K63 1999

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