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Titlebook: Imperfect Bifurcation in Structures and Materials; Engineering Use of G Kiyohiro Ikeda,Kazuo Murota Textbook 20021st edition Springer Scien

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書目名稱Imperfect Bifurcation in Structures and Materials
副標(biāo)題Engineering Use of G
編輯Kiyohiro Ikeda,Kazuo Murota
視頻videohttp://file.papertrans.cn/463/462456/462456.mp4
概述Opens up a variety of methods involving symmetries, and group theory in general, to an entirely new audience.For engineers: Introduction to a modern view of bifurcatoin theory by minimizing mathematic
叢書名稱Applied Mathematical Sciences
圖書封面Titlebook: Imperfect Bifurcation in Structures and Materials; Engineering Use of G Kiyohiro Ikeda,Kazuo Murota Textbook 20021st edition Springer Scien
描述Many physical systems lose or gain stability and pattern through bifurca- tion behavior. Extensive research of this behavior is carried out in many fields of science and engineering. The study of dynamic bifurcation be- havior, for example, has made clear the mechanism of dynamic instability and chaos. The group-theoretic bifurcation theory is an established means to deal with the formation and selection of patterns in association with symmetry-breaking bifurcation. Since all physical systems are "imperfect," in that they inevitably involve some initial imperfections, the study of im- perfect bifurcation (bifurcation of imperfect systems) has drawn a keen mathematical interest to yield a series of important results, such as the universal unfolding. In structural mechanics, bifurcation behavior has been studied to model the buckling and failure of structural systems. The sharp reduction of the strength of structural systems by initial imperfections is formulated as im- perfection sensitivity laws. A series of statistical studies has been conducted to make clear the dependence of the strength of structures on the statis- tical variation of initial imperfections. A difficulty in these
出版日期Textbook 20021st edition
關(guān)鍵詞Bifurcation phenomena; Group-theoretic bifurcation theory; Static bifurcation theory; bifurcation; bifur
版次1
doihttps://doi.org/10.1007/978-1-4757-3697-7
isbn_ebook978-1-4757-3697-7Series ISSN 0066-5452 Series E-ISSN 2196-968X
issn_series 0066-5452
copyrightSpringer Science+Business Media New York 2002
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https://doi.org/10.1007/978-1-4757-3697-7Bifurcation phenomena; Group-theoretic bifurcation theory; Static bifurcation theory; bifurcation; bifur
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Critical Initial Imperfection (I)the case for domes and shell structures (Hutchinson and Koiter, 1970 [76]). In the design of such structures, it is preferable to consider the “worst” or, in other words, “most detrimental” imperfection that reduces the critical load most rapidly. Such worst imperfection is called the . in this book.
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Experimentally Observed Bifurcation Diagramsighted, e.g., by Ziegler, 1968, 1977 [196]; Thompson and Hunt, 1973, 1984 [174], [175]; Ben-Haim and Elishakoff, 1990 [14]; Ba?ant and Cedolin, 1991 [12]; and references therein. For bifurcation of materials, refer, e.g., to Hill and Hutchinson, 1975 [69] and Vardoulakis and Sulem, 1992 [184].
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Miscellaneous Aspects of Bifurcation PhenomenaBifurcation behaviors involve various uncertainties and complexities, only a fraction of which has been investigated in the previous chapters of Part III. At the end of this part, we present the miscellaneous aspects of bifurcation phenomena that have not been exhausted by this investigation:
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