Particulate Materials

Particulate Materials
Title Particulate Materials PDF eBook
Author Chuan-Yu Wu
Publisher Royal Society of Chemistry
Pages 305
Release 2012
Genre Science
ISBN 184973366X

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Naturally occurring or manufactured through chemical and/or physical processes, particulate materials are substances consisting of individual particles which have significance to the global economy, society and environments. Due to the diversity and intrinsic nature, manufacturing, handling and processing of particulate materials still face numerous challenges. Aimed at addressing these challenges, this book contains a selection of papers discussing the state-of-the-art research in particulate materials science that were presented at the UK-China Particle Technology Forum III held at Birmingham, UK in 2011. Classified into four distinct topics namely synthesis, characterisation, processing and modelling, the chapters showcase the advances in these areas including a range of advanced synthesis methods for example, spray-pyrolysis, supercritical fluid synthesis assisted with ultrasound, continuous synthesis using supercritical water, hydrothermal synthesis of nano-particulate materials and jet milling. For characterisation, various methods for characterising particulate materials at both particle and system levels are introduced and how these properties affect the behaviour of particulate materials in various processes, such as inhalation, filling, and consolidation, are discussed. In the processing section, recent advances such as capsule filling, micro-dosing, dry granulation, roll compaction, milling, and more are presented. The last section concerns mathematical and numerical modelling in particulate materials, for which the book includes both analytical methods and advanced numerical methods, such as discrete element methods (DEM), computational fluid dynamics (CFD), lattice Boltzmann methods (LBM), coupled DEM/CFD and DEM/LBM, and their applications. Particulate Materials is aimed at research communities dealing with these diverse materials, and scientists and engineers in powder handling industries, such as pharmaceutical, food, fine chemical and detergents.

Powder Metallurgy and Particulate Materials Processing

Powder Metallurgy and Particulate Materials Processing
Title Powder Metallurgy and Particulate Materials Processing PDF eBook
Author Randall M. German
Publisher
Pages 544
Release 2005
Genre Metal powders
ISBN

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Handbook of Mathematical Relations in Particulate Materials Processing

Handbook of Mathematical Relations in Particulate Materials Processing
Title Handbook of Mathematical Relations in Particulate Materials Processing PDF eBook
Author Randall M. German
Publisher John Wiley & Sons
Pages 455
Release 2009-01-06
Genre Technology & Engineering
ISBN 0470368721

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The only handbook of mathematical relations with a focus on particulate materials processing The National Science Foundation estimates that over 35% of materials-related funding is now directed toward modeling. In part, this reflects the increased knowledge and the high cost of experimental work. However, currently there is no organized reference book to help the particulate materials community with sorting out various relations. This book fills that important need, providing readers with a quick-reference handbook for easy consultation. This one-of-a-kind handbook gives readers the relevant mathematical relations needed to model behavior, generate computer simulations, analyze experiment data, and quantify physical and chemical phenomena commonly found in particulate materials processing. It goes beyond the traditional barriers of only one material class by covering the major areas in ceramics, cemented carbides, powder metallurgy, and particulate materials. In many cases, the governing equations are the same but the terms are material-specific. To rise above these differences, the authors have assembled the basic mathematics around the following topical structure: Powder technology relations, such as those encountered in atomization, milling, powder production, powder characterization, mixing, particle packing, and powder testing Powder processing, such as uniaxial compaction, injection molding, slurry and paste shaping techniques, polymer pyrolysis, sintering, hot isostatic pressing, and forging, with accompanying relations associated with microstructure development and microstructure coarsening Finishing operations, such as surface treatments, heat treatments, microstructure analysis, material testing, data analysis, and structure-property relations Handbook of Mathematical Relations in Particulate Materials Processing is suited for quick reference with stand-alone definitions, making it the perfect complement to existing resources used by academic researchers, corporate product and process developers, and various scientists, engineers, and technicians working in materials processing.

Mechanics of Particulate Materials

Mechanics of Particulate Materials
Title Mechanics of Particulate Materials PDF eBook
Author J. Feda
Publisher Elsevier
Pages 448
Release 2013-11-11
Genre Technology & Engineering
ISBN 0444600841

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Mechanics of Particulate Materials

Sampling of Particulate Materials

Sampling of Particulate Materials
Title Sampling of Particulate Materials PDF eBook
Author Pierre Gy
Publisher Elsevier Science & Technology
Pages 464
Release 1979
Genre Bulk solids
ISBN

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Sampling of Particulate Materials Theory and Practice

Sampling of Particulate Materials Theory and Practice
Title Sampling of Particulate Materials Theory and Practice PDF eBook
Author Pierre Gy
Publisher Elsevier
Pages 452
Release 2012-12-02
Genre Technology & Engineering
ISBN 044460135X

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Developments in Geomathematics 4: Sampling of Particulate Materials: Theory and Practice reviews the theory and practice of sampling particulate solids, such as ores and concentrates. With examples borrowed from the mining, metallurgical, and cement industries, the book examines particulate materials of vegetable and mineral origin, including cereals, oil seeds, sugar beets, granulated drosses or slags, bars, plates, and ingots. Organized into nine parts encompassing 34 chapters, this volume begins with an overview of the theory of sampling and sampling-error generating mechanisms. It then discusses the continuous selection and discrete models of the increment sampling process and the materialization of punctual increments. It explains the splitting process and its practical implementation in sampling. Lot and sample preparation, resolution of sampling problems, and problems associated with commercial sampling are also discussed. The book also describes the detection of measurement or sampling biases and inconspicuous losses of material, and the design of automatic sampling plants. This book is a valuable resource for geologists, mining engineers, metallurgists, and analysts.

Mechanics of Particulate Materials

Mechanics of Particulate Materials
Title Mechanics of Particulate Materials PDF eBook
Author J. Feda
Publisher Elsevier Science & Technology
Pages 456
Release 1982
Genre Science
ISBN

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Mechanics of Particulate Materials