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Constitutive Models for Rubber XI - Proceedings of the 11th European Conference on Constitutive Models for Rubber (ECCMR 2019),... Constitutive Models for Rubber XI - Proceedings of the 11th European Conference on Constitutive Models for Rubber (ECCMR 2019), June 25-27, 2019, Nantes, France (Hardcover)
Bertrand Huneau, Yann Marco, Erwan Verron, Jean-Benoit Le Cam
R6,338 Discovery Miles 63 380 Ships in 12 - 17 working days

Constitutive Models for Rubber XI is a comprehensive compilation of both the oral and poster contributions to the European Conference on Constitutive Models for Rubber. This 11th edition, held in Nantes (France) 25-27th June 2019, is the occasion to celebrate the 20th anniversary of the ECCMR series. Around 100 contributions reflect the state-of-the-art in the mechanics of elastomers. They cover the fields of: Material testing Constitutive modelling and finite element implementation Micromechanical aspects, and Durability (failure, fatigue and ageing) Constitutive Models for Rubber XI is of interest for developers and researchers involved in the rubber processing and CAE software industries, as well as for academics in nearly all disciplines of elastomer mechanics and technology.

Constitutive Models for Rubber V - Proceedings of the 5th European Conference, Paris, France, 4-7 September 2007 (Hardcover):... Constitutive Models for Rubber V - Proceedings of the 5th European Conference, Paris, France, 4-7 September 2007 (Hardcover)
Adnane Boukamel, Lucien Laiarinandrasana, Stephane Meo, Erwan Verron
R6,168 Discovery Miles 61 680 Ships in 12 - 17 working days

Due to their unique properties, rubber materials are widely used for engineering applications such as tires, engine mounts, seals, shock absorbers, etc. The design of these highly technical parts frequently necessitates a great control of their response and high guarantees of reliability. These objectives are severe because they cover multiple physical phenomena. In addition, the complexity of these parts requires the use of powerful simulation methods such as the finite element method. In this context, the formulation of relevant constitutive equations and the development of relevant algorithms are essential prerequisites for the prediction of the mechanical response of elastomeric parts. The latest developments concerning constitutive modelling of rubber materials, and more generally the mechanics of elastomers, are collected in the present volume, including: constitutive modelling, physical mechanisms, fatigue and fracture, structural and industrial applications. Constitutive Models for Rubber V will be of interest to undergraduates, postgraduates and researchers in mechanical engineering and rubber mechanics.

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