
Sintering
Mechanisms of Convention Nanodensification and Field Assisted Processes
Springer (Publisher)
Published on 15. October 2014
Book
Paperback/Softback
XII, 240 pages
978-3-642-43013-8 (ISBN)
Description
Sintering process studies have re-emerged strongly in the past decade due to extensive discussions about the stabilization of nanoparticles and nanostructures, and the development of controlled nanograined bulk materials. This book presents the state-of-art in experiments and theory of novel sintering processes, traditional sintering and grain growth. The scope ranges from powder metallurgy to ceramic and composites processing. The challenges of conventional and novel sintering and grain growth in nanopowders and nanostructures are addressed, being useful for students as well as professionals interested in sintering at the nanoscale.
More details
Series
Edition
2013 ed.
Language
English
Place of publication
Berlin
Germany
Publishing group
Springer Berlin
Target group
Primary & secondary/elementary & high school
Graduate
Illustrations
XII, 240 p.
Dimensions
Height: 235 mm
Width: 155 mm
Thickness: 14 mm
Weight
388 gr
ISBN-13
978-3-642-43013-8 (9783642430138)
DOI
10.1007/978-3-642-31009-6
Schweitzer Classification
Other editions
Additional editions

Ricardo Castro | Klaus van Benthem
Sintering
Mechanisms of Convention Nanodensification and Field Assisted Processes
E-Book
09/2012
1st Edition
Springer
€96.29
Available for download

Ricardo Castro | Klaus van Benthem
Sintering
Mechanisms of Convention Nanodensification and Field Assisted Processes
Book
09/2012
Springer
€106.99
Shipment within 7-9 days
Persons
About Professor Castro:
http://www.chms.ucdavis.edu/research/web/castro/index_files/Page524.htm
About Professor van Benthem:
http://www.chms.ucdavis.edu/research/web/benthem/layer2_people_klaus.html
Content
Preface.- Overview of Conventional Sintering.- Modelling "nano-effects" in sintering.- Nanoscaled Grain Growth.- Effect of Powder Characteristics on Nanosintering.- Discrete Element Method Sintering Simulation: A grain-scale simulation approach.- Sintering of Porous Materials.- Electric Field and Current Effects on Sintering.- Field Assisted Sintering Mechanisms.- Effects of Applied Stress and Heating Rate in Field Assisted Sintering.- Characterization of Microstructures Before, During and After Densification.