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Metastable solids from undercooled melts
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Metastable solids from undercooled melts/ Dieter Herlach, Dirk Holland-Moritz and Peter Galenko.
作者:
Herlach, D. M.
其他作者:
Galenko, P. K.
出版者:
Amsterdam ;Elsevier, : 2007.,
面頁冊數:
1 online resource (xi, 432 p.) :ill. :
標題:
Nonequilibrium thermodynamics. -
電子資源:
http://www.sciencedirect.com/science/book/9780080436388
ISBN:
9780080436388
Metastable solids from undercooled melts
Herlach, D. M.
Metastable solids from undercooled melts
[electronic resource] /Dieter Herlach, Dirk Holland-Moritz and Peter Galenko. - Amsterdam ;Elsevier,2007. - 1 online resource (xi, 432 p.) :ill. - Pergamon materials series. - Pergamon materials series..
Includes bibliographical references and index.
1. Introduction -- 2. Experimental Approach To High Undercoolings -- 3. Physics Of Undercooled Liquid -- 4. Solid-Liquid Interface -- 5. Nucleation -- 6. Crystal Growth In Undercooled Melts -- 7. Cooperative Growth In Undercooled Polyphase Alloys -- 8. Metastable Solid States And Phases -- 9. Microstructure Selection Maps -- 10. Experiments In Reduced Gravity -- 11. Summary And Conclusions.
This book presents the physical concepts and tools to characterize and describe the formation of metastable solids from undercooled melts. Its aim is to facilitate understanding of the development of the science and technology of solidification of melts and to introduce new concepts within this exciting research field in order to fulfil the challenges of the future in the field of undercooled melts. A comprehensive description of the science and applications of the undercooling phenomenon is given. It is composed of several main parts: experimental techniques for undercooling; characterization of the undercooled melt as the first step in rapid solidification; introducing the concepts of modern theories of rapid dendrite and eutectic growth and their comparison with experimental results, and a survey of metastable materials formed from the non-equilibrium state of an undercooled melt. * Showing clear links to possible application of results obtained from basic research * The subject matter is multidisciplinary and will be of interest to material scientists, physicists, physical chemists, mechanical and electrical engineers.
ISBN: 9780080436388
Source: 104478:104500Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
592851
Nonequilibrium thermodynamics.
Index Terms--Genre/Form:
554714
Electronic books.
LC Class. No.: QC331 / .H47 2007eb
Dewey Class. No.: 620.11299
Metastable solids from undercooled melts
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Dieter Herlach, Dirk Holland-Moritz and Peter Galenko.
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1. Introduction -- 2. Experimental Approach To High Undercoolings -- 3. Physics Of Undercooled Liquid -- 4. Solid-Liquid Interface -- 5. Nucleation -- 6. Crystal Growth In Undercooled Melts -- 7. Cooperative Growth In Undercooled Polyphase Alloys -- 8. Metastable Solid States And Phases -- 9. Microstructure Selection Maps -- 10. Experiments In Reduced Gravity -- 11. Summary And Conclusions.
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This book presents the physical concepts and tools to characterize and describe the formation of metastable solids from undercooled melts. Its aim is to facilitate understanding of the development of the science and technology of solidification of melts and to introduce new concepts within this exciting research field in order to fulfil the challenges of the future in the field of undercooled melts. A comprehensive description of the science and applications of the undercooling phenomenon is given. It is composed of several main parts: experimental techniques for undercooling; characterization of the undercooled melt as the first step in rapid solidification; introducing the concepts of modern theories of rapid dendrite and eutectic growth and their comparison with experimental results, and a survey of metastable materials formed from the non-equilibrium state of an undercooled melt. * Showing clear links to possible application of results obtained from basic research * The subject matter is multidisciplinary and will be of interest to material scientists, physicists, physical chemists, mechanical and electrical engineers.
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