Advances in Understanding Thermal Effects in Rubber
Experiments, Modelling, and Practical Relevance
Springer
ISBN 978-3-031-71055-1
Standardpreis
Bibliografische Daten
Fachbuch
Buch. Hardcover
2024
160 Farbabbildungen.
In englischer Sprache
Umfang: xii, 324 S.
Format (B x L): 15,5 x 23,5 cm
Verlag: Springer
ISBN: 978-3-031-71055-1
Weiterführende bibliografische Daten
Das Werk ist Teil der Reihe: Advances in Polymer Science
Produktbeschreibung
The main physical reason for the heat generation processes is the hysteresis of rubber materials due to deformation and viscoelasticity. Most elastomers therefore change significantly over time when exposed to heat (and likewise light or oxygen (ozone)). These changes can have a dramatic effect on the life and properties of the elastomers. Heat development in a rubber occurs when it is subjected to a variety of compressive stresses in service. Heat evolution tests are commonly performed to estimate the quality of use and expected service life of various compounds or material options for end-product applications. New developments in recent years on test methods in this direction constitute an important part of the book. At the same time, corresponding simulation and modelling methods have been developed that contribute to a better understanding and enable the predictive simulation of self-heating and the kinetics of temperature fields in complex cyclically loaded rubber components. Specifically, finite-strain thermal viscoelastic damage models for predicting the cyclic thermomechanical response of rubber specimens under fatigue are also presented, and analytical models for heat diffusion in stressed rubbers.
Autorinnen und Autoren
Kundeninformationen
Includes numerical and physical simulation Introduces thermal effects of rubber Presents experimental investigations of rubber self-heating
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