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E-Book

E-Book, Englisch, 536 Seiten

Masuda / Higashitani / Yoshida Powder Technology

Fundamentals of Particles, Powder Beds, and Particle Generation
Erscheinungsjahr 2006
ISBN: 978-1-4200-4411-9
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

Fundamentals of Particles, Powder Beds, and Particle Generation

E-Book, Englisch, 536 Seiten

ISBN: 978-1-4200-4411-9
Verlag: Taylor & Francis
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



Drawing from the third edition of the bestselling Powder Technology Handbook, this book is focused solely on analyzing the fundamental properties and behavior of particles and particle beds. Powder Technology: Fundamentals of Particles, Powder Beds, and Particle Generation concentrates on the most useful analytical methods of observation, measurement, modeling, and prediction. This volume carefully incorporates the progressive work and vision of new authors while retaining the concepts that continue to promote innovative research and applications. The authors highlight new information and developments from areas including surface properties and analysis, particle motion in fluids, mechanical properties of a powder bed, and the design and formation of composite particles. They explain how particles deposit, coagulate, and settle in various media, explore different techniques for generating particles in different states, and detail methods of surface modification. Particularly useful for scientists studying nanoparticle applications, Powder Technology: Fundamentals of Particles, Powder Beds, and Particle Generation incorporates the latest developments in areas including surface properties and analysis, particle motion in fluids, mechanical properties of a powder bed, and the design and formation of composite particles.

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Zielgruppe


Materials scientists and chemical engineers

Weitere Infos & Material


PARTICLE CHARACTERIZATION AND MEASUREMENT

Particle Size; J. Tsubaki

Size Measurement; R. Davies

Particle Shape Characterization; S. Endoh

Particle Density; Y. Kousaka and Y. Endoh

Hardness, Stiffness and Toughness of Particles; M. Ghadiri

New! Surface Properties and Analysis; M. Fuji, K. Higashitani, and Y. Kanda

FUNDAMENTAL PROPERTIES OF PARTICLES

Diffusion of Particles; K. Okuyama and S. Yuu

Optical Properties; Y. Mori

New! Particle Motion in Fluid; S. Yuu and Y. Ohtani

Particle Sedimentation; S. Yuu

Particle Electrification and Electrophoresis; H. Masuda, S. Matsusaka, and K. Higashitani

Adhesive Force of a Single Particle; H. Masuda, K. Gotoh, K. Higashitani, and S. Matsusaka

Particle Deposition and Reentrainment; M. Shimada, S. Matsusaka, and H. Masuda

Agglomeration (Coagulation); K. Okuyama and K. Higashitani

Viscosity of Slurry; H. Usui

Particle Impact Breakage; M. Ghadiri

Sintering; K. Okuyama

Ignition and Combustion Reaction; H. Makino, H. Tsuji, and R. Kurose

Solubility and Dissolution Rate; Y. Kawashima

Mechanochemistry; M. Senna

FUNDAMENTAL PROPERTIES OF POWDER BEDS

Adsorption Characteristics; M. Chikazawa and T. Takei

Moisture Content; S. Watano

Electrical Properties; H. Masuda, K. Tanoue, and Y. Otsubo

Magnetic Properties; T. Fujita

Packing Properties; M. Suzuki

Capillarity of Porous Media; H. Imakoma and M. Miyahara

Permeation (Flow through Porous Medium); C. Kanaoka

Specific Surface Area; M. Chikazawa and T. Takei

New! Mechanical Properties of a Powder Bed; M. Suzuki

Fluidity of Powder; T. Yokoyama

Blockage of Storage Vessels; K. Shinohara and H. Takahashi

Segregation of Particles; K. Shinohara

Vibrational and Acoustic Characteristics; J. Hidaka

PARTICLE GENERATION AND FUNDAMENTALS

Aerosol Particle Generation; R.C. Flagan

Generation of Particles by Reaction; R.C. Flagan and Y. Mori

Crystallization; M. Matsuoka

New! Design and Formation of Composite Particles; H. Ichikawa and Y. Fukumori

Dispersion of Particles; K. Gotoh, H. Masuda, and K. Higashitani

Electrical Charge Control; M. Adachi, K. Okuyama, H. Masuda, and S. Matsusaka

Surface Modification; M. Senna

Standard Powders and Particles; H. Yoshida and H. Masuda



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