Constitutive Models for Rubber III

Constitutive Models for Rubber III PDF

Author: J. Busfield

Publisher: CRC Press

Published: 2003-01-01

Total Pages: 468

ISBN-13: 9789058095664

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Recent developments in the modelling of rubber are collated in this volume, including not only stress-strain behaviour and the use of the large strain finite element method for simulation, but also fatigue, fracture, filler reinforcement, dynamic properties and the effects of ageing.

Constitutive Models for Rubber IV

Constitutive Models for Rubber IV PDF

Author: Per-Erik Austrell

Publisher: Routledge

Published: 2017-12-04

Total Pages: 646

ISBN-13: 1351458272

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The unique properties of elastomeric materials offer numerous advantages in many engineering applications. Elastomeric units are used as couplings or mountings between rigid components, for example in shock absorbers, vibration insulators, flexible joints, seals and suspensions, etc. However, the complicated nature of the behaviour of such material makes it difficult to accurately predict the performance of these units using finite element modelling, for example. It is imperative that constitutive models accurately capture relevant aspects of mechanical behaviour. The latest developments concerning constitutive modelling of rubber is collected in these Proceedings. Topics included in this volume are, Hyperelastic models, Strength, fracture & fatigue, Dynamic properties & the Fletcher-Gent effect, Micro-mechanical & statistical approaches, Stress softening, iscoelasticity, Filler reinforcement, and Tyres, fibre & cord reinforced rubber.

Constitutive Models for Rubber VIII

Constitutive Models for Rubber VIII PDF

Author: Nere Gil-Negrete

Publisher: CRC Press

Published: 2013-06-03

Total Pages: 731

ISBN-13: 1315884844

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Due to their unique properties, rubber materials are found in multiple engineering applications such as tires, engine mounts, shock absorbers, flexible joints, seals, etc. Nevertheless, the complex nature of the behavior of such material makes it difficult to accurately model and predict the performance of these units.The challenge to correctly rep

Constitutive Models for Rubber VI

Constitutive Models for Rubber VI PDF

Author: Gert Heinrich

Publisher: CRC Press

Published: 2009-09-01

Total Pages: 1248

ISBN-13: 1439859337

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Recent developments in order to represent the material behaviour of filler-reinforced elastomers under realistic operating conditions are collected in this volume. Special topics are finite element simulations and methods, dynamic material properties, experimental characterization, lifetime prediction, friction, multiphysics and biomechanics, reinf

Constitutive Models for Rubber X

Constitutive Models for Rubber X PDF

Author: Alexander Lion

Publisher: Taylor & Francis

Published: 2017

Total Pages: 626

ISBN-13: 9781351840385

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In order to develop innovative products, to reduce development costs and the number of prototypes and to accelerate development processes, numerical simulations become more and more attractive. As such, numerical simulations are instrumental in understanding complicated material properties like chemical ageing, crack propagation or the strain- and temperature-induced crystallisation of rubber. Therefore, experimentally validated and physically meaningful constitutive models are indispensable. Elastomers are used for products like tyres, engine and suspension mounts or seals, to name a few. The interest in modelling the quasi-static stress-strain behaviour was dominant in the past decades, but nowadays the interests also include influences of environmental conditions. The latest developments on the material behaviour of elastomers are collected in the present volume.

Constitutive Models for Rubber

Constitutive Models for Rubber PDF

Author: Al Dorfmann

Publisher: CRC Press

Published: 1999-01-01

Total Pages: 334

ISBN-13: 9789058091130

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This text aims to enable the experience accumulated by engineers and the research community in materials science, continuum mechanics and applied mathematics to be shared. In this way, the design and analysis of rubber components using the Finite Element Method should be enhanced.

Constitutive Models for Rubber VII

Constitutive Models for Rubber VII PDF

Author: Stephen Jerrams

Publisher: CRC Press

Published: 2011-09-09

Total Pages: 474

ISBN-13: 1466553995

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All aspects of our lives, industry, health, travel and leisure, are utterly reliant on rubber materials, yet typically this notion rarely occurs to us. Increasingly, greater demands are made on elastomeric compounds and we seek elevated performance in terms of improved physical and chemical properties. In particular, we have come to expect rubber c

Constitutive Models for Rubber IV

Constitutive Models for Rubber IV PDF

Author: Per-Erik Austrell

Publisher: Routledge

Published: 2017-12-04

Total Pages: 1696

ISBN-13: 1351458264

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The unique properties of elastomeric materials offer numerous advantages in many engineering applications. Elastomeric units are used as couplings or mountings between rigid components, for example in shock absorbers, vibration insulators, flexible joints, seals and suspensions, etc. However, the complicated nature of the behaviour of such material makes it difficult to accurately predict the performance of these units using finite element modelling, for example. It is imperative that constitutive models accurately capture relevant aspects of mechanical behaviour. The latest developments concerning constitutive modelling of rubber is collected in these Proceedings. Topics included in this volume are, Hyperelastic models, Strength, fracture & fatigue, Dynamic properties & the Fletcher-Gent effect, Micro-mechanical & statistical approaches, Stress softening, iscoelasticity, Filler reinforcement, and Tyres, fibre & cord reinforced rubber.

Constitutive Models for Rubber X

Constitutive Models for Rubber X PDF

Author: Alexander Lion

Publisher: CRC Press

Published: 2017-08-15

Total Pages: 1190

ISBN-13: 1351840398

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In order to develop innovative products, to reduce development costs and the number of prototypes and to accelerate development processes, numerical simulations become more and more attractive. As such, numerical simulations are instrumental in understanding complicated material properties like chemical ageing, crack propagation or the strain- and temperature-induced crystallisation of rubber. Therefore, experimentally validated and physically meaningful constitutive models are indispensable. Elastomers are used for products like tyres, engine and suspension mounts or seals, to name a few. The interest in modelling the quasi-static stress-strain behaviour was dominant in the past decades, but nowadays the interests also include influences of environmental conditions. The latest developments on the material behaviour of elastomers are collected in the present volume. Constitutive Models for Rubber X is a comprehensive compilation of nearly all oral and poster contributions to the European Conference on Constitutive Models for Rubber (Munich, 28-31 August 2017). The 95 highly topical contributions reflect the state of-the-art in material modelling and testing of elastomers. They cover the fields of material testing and processing, filler reinforcement, electromagnetic sensitive elastomers, dynamic properties, constitutive modelling, micromechanics, finite element implementation, stress softening, chemical ageing, fatigue and durability. In the area of rubbery materials and structures, applied research will play an important role also in the coming decades. Constitutive Models for Rubber X is of interest to developers and researchers involved in the rubber processing and CAE software industries, as well as for academics in nearly all disciplines of engineering and material sciences.

Constitutive Models for Rubber IX

Constitutive Models for Rubber IX PDF

Author: Bohdana Marvalova

Publisher: CRC Press

Published: 2015-10-22

Total Pages: 728

ISBN-13: 1315658151

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The unique properties of rubber make it ideal for use in a wide variety of engineering applications such as tyres, engine mounts, shock absorbers, flexible joints and seals. Developing diverse elastomeric elements for various structures involves numerical simulations of their performance, which are based on reliable constitutive models of the mater