An edition of Handbook of Contact Mechanics (2019)

Handbook of Contact Mechanics

Exact Solutions of Axisymmetric Contact Problems

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Handbook of Contact Mechanics
Valentin L. Popov
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December 5, 2019 | History
An edition of Handbook of Contact Mechanics (2019)

Handbook of Contact Mechanics

Exact Solutions of Axisymmetric Contact Problems

  • 0 Ratings
  • 0 Want to read
  • 0 Currently reading
  • 0 Have read

This open access book contains a structured collection of the complete solutions of all essential axisymmetric contact problems. Based on a systematic distinction regarding the type of contact, the regime of friction and the contact geometry, a multitude of technically relevant contact problems from mechanical engineering, the automotive industry and medical engineering are discussed. In addition to contact problems between isotropic elastic and viscoelastic media, contact problems between transversal-isotropic elastic materials and functionally graded materials are addressed, too. The optimization of the latter is a focus of current research especially in the fields of actuator technology and biomechanics. The book takes into account adhesive effects which allow access to contact-mechanical questions about micro- and nano-electromechanical systems. Solutions of the contact problems include both the relationships between the macroscopic force, displacement and contact length, as well as the stress and displacement fields at the surface and, if appropriate, within the half-space medium. Solutions are always obtained with the simplest available method - usually with the method of dimensionality reduction (MDR) or approaches which use the solution of the non-adhesive normal contact problem to solve the respective contact problem.

Publish Date
Publisher
Springer Nature
Pages
347

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Edition Availability
Cover of: Handbook of Contact Mechanics
Handbook of Contact Mechanics: Exact Solutions of Axisymmetric Contact Problems
Apr 27, 2019, Springer
hardcover
Cover of: Handbook of Contact Mechanics

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Book Details


Edition Notes

Open Access Unrestricted online access

Creative Commons https://creativecommons.org/licenses/by/4.0

English

Published in
Berlin, Heidelberg

The Physical Object

Pagination
1 electronic resource (347 p.)
Number of pages
347

ID Numbers

Open Library
OL31369568M
ISBN 13
9783662587096

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marc_oapen MARC record

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