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Finite Element Approximation of Contact and Friction in Elasticity

by Franz Chouly
Save 35% Save 35%
Current price ₹11,752.00
Original price ₹18,079.00
Original price ₹18,079.00
Original price ₹18,079.00
(-35%)
₹11,752.00
Current price ₹11,752.00

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Book cover type: Hardcover
  • ISBN13: 9783031314223
  • Binding: Hardcover
  • Subject: N/A
  • Publisher: Springer
  • Publisher Imprint: Birkhauser
  • Publication Date:
  • Pages: 294
  • Original Price: EUR 159.99
  • Language: English
  • Edition: 2023
  • Item Weight: 622 grams
  • BISAC Subject(s): Number Systems, Counting & Numeration, and Mechanics / Solids

From the Back Cover
This book presents the mathematics behind the formulation, approximation, and numerical analysis of contact and friction problems. It also provides a survey of recent developments in the numerical approximation of such problems as well as several remaining unsolved issues. Particular focus is placed on the Signorini problem and on frictionless unilateral contact in small strain. The final chapters cover more complex, applications-oriented problems, such as frictional contact, multi-body contact, and large strain.

Finite Element Approximation of Contact and Friction in Elasticity will be a valuable resource for researchers in the area. It may also be of interest to those studying scientific computing and computational mechanics.

Franz Chouly is professor at the University of Burgundy (Dijon, France). His research is focused on the numerical analysis of partial differential equations and variational inequalities, finite element methods, and applications in fluid and solid mechanics.

Patrick Hild is professor at Paul Sabatier University (Toulouse, France). His research is focused on the numerical analysis of partial differential equations and variational inequalities, finite element methods, and applications in solid mechanics.

Yves Renard is professor at the National Institute of Applied Sciences of Lyon (INSA Lyon, France). His research interests include numerical methods in solid mechanics, approximation of contact and friction conditions, numerical analysis of partial differential equations, finite element based numerical modeling.

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