Geometrically exact theory for contact interactions

The intuitive understanding of contact bodies is based on the geometry and adjoining surfaces. A powerful approach to solve the contact problem is to take advantage of the geometry of an analyzed object and describe the problem in the best coordinate system. This book is a systematical analysis of g...

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Year of Publication:2011
Language:English
Physical Description:1 electronic resource (XIX, 516 p. p.)
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record_format marc
spelling Konyukhov, Alexander auth
Geometrically exact theory for contact interactions
KIT Scientific Publishing 2011
1 electronic resource (XIX, 516 p. p.)
text txt rdacontent
computer c rdamedia
online resource cr rdacarrier
The intuitive understanding of contact bodies is based on the geometry and adjoining surfaces. A powerful approach to solve the contact problem is to take advantage of the geometry of an analyzed object and describe the problem in the best coordinate system. This book is a systematical analysis of geometrical situations leading to contact pairs: suface-to-surface, curve-to-surface, point-to-surface a.s.o. resultingin the corresponding computational algorithms to solve the contact problem.
English
geometrical methods in mechanics
computatiobal contact mechanics
covariant contact description
3-86644-672-1
language English
format eBook
author Konyukhov, Alexander
spellingShingle Konyukhov, Alexander
Geometrically exact theory for contact interactions
author_facet Konyukhov, Alexander
author_variant a k ak
author_sort Konyukhov, Alexander
title Geometrically exact theory for contact interactions
title_full Geometrically exact theory for contact interactions
title_fullStr Geometrically exact theory for contact interactions
title_full_unstemmed Geometrically exact theory for contact interactions
title_auth Geometrically exact theory for contact interactions
title_new Geometrically exact theory for contact interactions
title_sort geometrically exact theory for contact interactions
publisher KIT Scientific Publishing
publishDate 2011
physical 1 electronic resource (XIX, 516 p. p.)
isbn 1000022790
3-86644-672-1
illustrated Not Illustrated
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