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Titlebook: Creep in Structures; 4th IUTAM Symposium, Michał Życzkowski (Head) Conference proceedings 1991 Springer-Verlag, Berlin Heidelberg 1991 Cree

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书目名称Creep in Structures
副标题4th IUTAM Symposium,
编辑Michał Życzkowski (Head)
视频video
丛书名称IUTAM Symposia
图书封面Titlebook: Creep in Structures; 4th IUTAM Symposium, Michał Życzkowski (Head) Conference proceedings 1991 Springer-Verlag, Berlin Heidelberg 1991 Cree
描述There is a tradition to organize IUTAM Symposia "Creep in Structures" every ten years: the first Symposium was organized by N.J. Hoff in Stan­ ford (1960), the second one by J. Hult in Goteborg (1970), and the third one by A.R.S. Ponter in Leicester (1980). The fourth Symposium in Cracow, September 1990, gathered 123 par­ ticipants from 21 countries and reflected rapid development of the theory, experimental research and structural applications of creep and viscoplas­ ticity, including damage and rupture. Indeed, the scope of the Sympo­ sium was broad, maybe even too broad, but it was kept according to the tradition. Probably the chairman of "Creep in Structures V" in the year 2000 (if organized at all) will be forced to confine the scope substantially. Participation in the Symposium was reserved for invited participants, suggested by members of the Scientific Committee. Total number of sug­ gestions was very large and the response - unexpectedly high. Apart from several papers rejected, as being out of scope, over 100 papers were accepted for presentation. A somewhat unconventional way of presenta­ tion was introduced to provide ample time for fruitful and well prepared discussion
出版日期Conference proceedings 1991
关键词Creep Rupture; ceramics; composite material; concrete; damage; deformation; fatigue; finite element method;
版次1
doihttps://doi.org/10.1007/978-3-642-84455-3
isbn_softcover978-3-642-84457-7
isbn_ebook978-3-642-84455-3
copyrightSpringer-Verlag, Berlin Heidelberg 1991
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Anisotropic Creep Modeling for f.c.c. Single Crystalscedure. For the generalization to three dimensions, a complete tensor-representation of cubic material symmetry is given. It contains twelve (temperature dependent) material parameters. Some results by finite element analysis will be presented.
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Creep of Metals Under Variable Complex Loadingsnt progress in terms of some basic theoretical structures and experimental methodology. Examples derived from these structures and their capability for predicting the creep deformation of metals under variable complex stresses are discussed. Finally emphasis of future research on creep under nonproportional loadings is suggested.
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