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Titlebook: Ultrafine-Grain Ceramics; John J. Burke (Staff Scientist),Norman L. Reed (As Book 1970 Syracuse University Press Syracuse, New York 1970 c

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书目名称Ultrafine-Grain Ceramics
编辑John J. Burke (Staff Scientist),Norman L. Reed (As
视频video
丛书名称Sagamore Army Materials Research Conference Proceedings
图书封面Titlebook: Ultrafine-Grain Ceramics;  John J. Burke (Staff Scientist),Norman L. Reed (As Book 1970 Syracuse University Press Syracuse, New York 1970 c
描述The Army Materials and Mechanics Research Center has conducted the Saga­ more Army Materials Research Conferences, in cooperation with the Metallurgi­ cal Research Laboratories of the Department of Chemical Engineering and Metallurgy of Syracuse University, since 1954. The purpose of the conferences has been to gather together scientists and engineers from academic institutions, industry, and government who are uniquely qualified to explore in depth a sub­ ject of importance to the Army, the Department of Defense and the scientific community. Grain size and its control is a major factor governing the behavior of materi­ als. Knowledge that one can obtain grain sizes in the 10 micron down to sub­ micron range has established the basis for a new technology. This volume, Ultrafine-Grain Ceramics, addresses itself to the broad areas of: realization of fine-grain ceramics; preparation of ultrafine particle size materials; characterization of ultrafine particles and ultrafine-grain ceramics; processing and behavior of ultra fine-grain ceramics. The technical advice provided by Dr. S. K. Dutta of the Army Materials and Mechanics Research Center during the editing of this book is acknowled
出版日期Book 1970
关键词ceramics; metallurgy; metals
版次1
doihttps://doi.org/10.1007/978-1-4684-2643-4
isbn_softcover978-1-4684-2645-8
isbn_ebook978-1-4684-2643-4
copyrightSyracuse University Press Syracuse, New York 1970
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On The Problems of Characterizing Fine PowdersProblems associated with the size analysis of powders in the range 0.1 . to 5 . are discussed. Special attention is focussed on felvation and centrifugal analysis with respect to shape-dependent information which could be obtained from these techniques.
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Preparation of Ultrafine Particles of Metal Oxides, nucleation, fluid dynamics, etc., are shown to have a profound effect on crystal growth. This can be demonstrated by studies of electron micrographs, surface areas, and particle shape and size distributions.
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