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Titlebook: IUTAM Symposium on Non-Linear Singularities in Deformation and Flow; Proceedings of the I D. Durban (Faculty of Aerospace Engineering),J. R

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书目名称IUTAM Symposium on Non-Linear Singularities in Deformation and Flow
副标题Proceedings of the I
编辑D. Durban (Faculty of Aerospace Engineering),J. R.
视频video
图书封面Titlebook: IUTAM Symposium on Non-Linear Singularities in Deformation and Flow; Proceedings of the I D. Durban (Faculty of Aerospace Engineering),J. R
描述The IUTAM Symposium on "Non-Linear Singularities in Defonnation and Flow" took place from March 17 to 21, 1997, at the Technion in Haifa, Israel, with 70 participants from 12 countries. The leitmotif of this Symposium brought together scientists working on singularity-dominated local fields in various branches of continuum mechanics, covering traditional solid and liquid behaviour as well as that of more complex non-linear materials; non-linearities arise either from the constitutive equations for the material or from the presence of interfaces or both. The scientific committee invited speakers who presented 34 papers in 12 sessions. Topics covered in the lectures included near tip fields of cracks, notches and wedges; flow around comers, wedges and cones; interfacial phenomena; moving contact lines in multiphase systems; cusps in fluid interfaces and shocks and localization. There was a general consensus among the participants that singularities induced by non-linearities provide a challenging and currently important area of research in mechanics, engineering and applied mathematics. Presentation and discussions during the symposium initiated further studies of problems in these i
出版日期Conference proceedings 1999
关键词continuum mechanics; deformation; mechanics; numerical methods; plasticity
版次1
doihttps://doi.org/10.1007/978-94-011-4736-1
isbn_softcover978-94-010-5991-6
isbn_ebook978-94-011-4736-1
copyrightSpringer Science+Business Media Dordrecht 1999
The information of publication is updating

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Elastic Interaction of Dislocations with a Crack in a Diskstraight crack are obtained in this paper. The disk may be subjected to self-balanced external forces. The analysis based on solving a system of linear algebraic equations establishes a semianalytic relation between the disk geometry and the stress intensity factor (SIF) at the crack tip. Some typic
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The Asymptotic Solution of Anisotropic Gradient Elasticity with Surface Energy for a Mode-II Crackropic .. proposed by Vardoulakis and his co-workers [1–4], and to discuss the results obtained. This theory, which is a generalization of Casal’s [5] original work on the 1-D tension bar problem, contains both a volume energy straingradient term, ., and a surface energy strain-gradient term, ., both
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Spirals, Jets, and Pinchesity can form dynamically from smooth initial data. However, when a fluid system is multiphase, that is, composed of two immiscible fluids separated by an interface under a surface tension, then our everyday experience tells us the answer; we commonly observe the formation of drops and bubbles throug
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