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Contact Problems in Elasticity A Study of Variational Inequalities and Finite Element Methods -
作者:Noboru Kikuchi
Noboru Kikuchi
人物简介:
Contact Problems in Elasticity A Study of Variational Inequalities and Finite Element Methods书籍相关信息
- ISBN:9780898714685
- 作者:Noboru Kikuchi / J. Tinsley Oden
- 出版社:SIAM-Society for Industrial and Applied Mathematics
- 出版时间:1988-1-1
- 页数:509
- 价格:USD 199.50
- 纸张:暂无纸张
- 装帧:Paperback
- 开本:暂无开本
- 语言:暂无语言
- 丛书:Studies in Applied and Numerical Mathematics
- 适合人群:Academic Researchers, Engineers, Applied Mathematicians, Solid Mechanics Professionals, Graduate Students in Engineering and Mathematics
- TAG:Applied Mathematics / Solid Mechanics / engineering analysis / finite element methods / Elasticity / Variational Inequalities
- 豆瓣评分:暂无豆瓣评分
- 更新时间:2025-05-08 03:44:26
内容简介:
The contact of one deformable body with another lies at the heart of almost every mechanical structure. Here, in a comprehensive treatment, two of the field's leading researchers present a systematic approach to contact problems. Using variational formulations, Kikuchi and Oden derive a multitude of new results, both for classical problems and for nonlinear problems involving large deflections and buckling of thin plates with unilateral supports, dry friction with nonclassical laws, large elastic and elastoplastic deformations with frictional contact, dynamic contacts with dynamic frictional effects, and rolling contacts. This method exposes properties of solutions obscured by classical methods, and it provides a basis for the development of powerful numerical schemes.
Among the novel results presented here are algorithms for contact problems with nonlinear and nonlocal friction, and very effective algorithms for solving problems involving the large elastic deformation of hyperelastic bodies with general contact conditions. Includes detailed discussion of numerical methods for nonlinear materials with unilateral contact and friction, with examples of metalforming simulations. Also presents algorithms for the finite deformation rolling contact problem, along with a discussion of numerical examples.