رکورد قبلیرکورد بعدی

" Willemite-based glass ceramic doped by different percentage of erbium oxide and sintered in temperature of 500-1100C : "


Document Type : BL
Record Number : 860840
Main Entry : Sarrigani, Gholamreza Vahedi
Title & Author : Willemite-based glass ceramic doped by different percentage of erbium oxide and sintered in temperature of 500-1100C : : physical and optical properties /\ Gholamreza Vahedi Sarrigani, Iraj Sadegh Amiri.
Publication Statement : Cham, Switzerland :: Springer,, [2019]
Series Statement : Springer briefs in electrical and computer engineering
Page. NO : 1 online resource
ISBN : 3030106438
: : 3030106446
: : 3030106454
: : 9783030106430
: : 9783030106447
: : 9783030106454
: 9783030106430
Bibliographies/Indexes : Includes bibliographical references and index.
Contents : Introduction to glass and glass-ceramic background -- Literature review of glass-ceramic and willemite production from waste materials -- Methodology for preparation samples from waste and techniques for characterization -- Result and discussion -- Conclusion and future research in the glass-ceramic field.
Abstract : This book investigates the effect of sintering temperature on willemite based glass-ceramic doped with different content of Er2O3. It is the first to report research on producing willemite by using waste materials and using trivalent erbium (Er3+) as a dopant. This book provides a survey of the literature on glass and glass-ceramic, while comprehensive experiments and analysis have been performed on the material used.
Subject : Ceramic materials-- Properties.
Subject : Ceramic materials-- Thermal properties.
Subject : Ceramic materials-- Thermal properties.
Subject : TECHNOLOGY ENGINEERING-- Engineering (General)
Subject : TECHNOLOGY ENGINEERING-- Reference.
Dewey Classification : ‭620.14‬
LC Classification : ‭TA455.C43‬‭S27 2019‬
Added Entry : Amiri, Iraj Sadegh,1977-
Parallel Title : Willemite-based glass ceramic doped by different percentage of erbium oxide and sintered in temperature of five hundred to one thousand one hundred degrees celcius :physical and optical properties
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