Degradation of Elastomers in Practice, Experiments and Modeling / edited by Gert Heinrich, Reinhold Kipscholl, Radek Stoček

Basic Mechanisms and Predictive Testing of Tire-Road Abrasion -- Thermo-Oxidative Aging and Mechanical Fatigue of Elastomer Compounds Used in Various Fields of Rubber Industry -- Novel Approach on Analyzing Mechanochemical Wear Mechanism of Rubber Vulcanizates in Molecular Scale -- Tire-Abrasion Particles in the Environment -- Multiphysical Modeling and Simulation of Thermal Damage of Elastomers: State of the Art and Developments Towards Cyber-Physical Systems -- Experimental and Numerical Description of the Heat Build-Up in Rubber Under Cyclic Loading -- The Effect of Thermal Ageing on the Fatigue Resistance of Hydrogenated Acrylonitrile Butadiene Rubber (HNBR) Compounds -- Effect of Antioxidants on the Aging Behavior of NR and S-SBR Materials -- Degradation of Tires During Intended Usage -- Thermal and Thermo-Oxidative Degradation of Rubbers: Some Recent Studies -- Experimental Analysis of Fast Crack Growth in Elastomers -- The Effect of Apparent Cross-Link Density on Cut and Chip Wear in Natural Rubber -- Parameters Influencing Fatigue Characteristics of Tyre Tread Rubber Compounds -- Mechanistic and Kinetic Studies on Degradation Processes of Rubber Types..

This volume describes new insights into the main aspects of rubber degradation by material’s fatigue, wear and aging evolution, as well as their impact on mechanical rubber properties. It provides a thorough state-of-art explanation of the essential chemical, physical and mechanical principles as well as practices of material characterization for wear prediction, and to convey or define novel strategies and procedures of planning effective wear test programs. The initiating factors of abrasion, the development of surface abrasion on sharp and blunt tracks (so called cutting and chipping) and the influence of smear and lubricants is also summarized. The volume is of interest to research scientists in related fields from academia and industry. ..

Medienart:

E-Book

Erscheinungsjahr:

2023.

Erschienen:

Cham: Springer International Publishing ; 2023.

Cham: Imprint: Springer ; 2023.

Ausgabe:

1st ed. 2023.

Reihe:

Advances in Polymer Science - 289

Sprache:

Englisch

Beteiligte Personen:

Heinrich, Gert [HerausgeberIn]
Kipscholl, Reinhold [HerausgeberIn]
Stoček, Radek [HerausgeberIn]

Links:

doi.org [lizenzpflichtig]

ISBN:

978-3-031-15164-4

Themen:

Materials
Materials—Fatigue.
Materials science.
Mechanical engineering.
Polymers.

Umfang:

1 Online-Ressource(X, 344 p.)

doi:

10.1007/978-3-031-15164-4

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

1819114791