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Advanced Testing of Soft Polymer Materials: Radek Sto?ek, Gert Heinrich, Reinhold Kipscholl Advanced Testing of Soft Polymer Materials
Radek Stoček, Gert Heinrich, Reinhold Kipscholl
R1,753 Discovery Miles 17 530 Ships in 12 - 17 working days
Fatigue Crack Growth in Rubber Materials - Experiments and Modelling (Hardcover, 1st ed. 2021): Gert Heinrich, Reinhold... Fatigue Crack Growth in Rubber Materials - Experiments and Modelling (Hardcover, 1st ed. 2021)
Gert Heinrich, Reinhold Kipscholl, Radek Stocek
R7,652 Discovery Miles 76 520 Ships in 12 - 17 working days

The book summarizes recent international research and experimental developments regarding fatigue crack growth investigations of rubber materials. It shows the progress in fundamental as well as advanced research of fracture investigation of rubber material under fatigue loading conditions, especially from the experimental point of view. However, some chapters will describe the progress in numerical modeling and physical description of fracture mechanics and cavitation phenomena in rubbers. Initiation and propagation of cracks in rubber materials are dominant phenomena which determine the lifetime of these soft rubber materials and, as a consequence, the lifetime of the corresponding final rubber parts in various fields of application. Recently, these phenomena became of great scientific interest due to the development of new experimental methods, concepts and models. Furthermore, crack phenomena have an extraordinary impact on rubber wear and abrasion of automotive tires; and understanding of crack initiation and growth in rubbers will help to support the growthing number of activities and worldwide efforts of reduction of tire wear losses and abrasion based emissions.

Degradation of Elastomers in Practice, Experiments and Modeling (Hardcover, 1st ed. 2023): Gert Heinrich, Reinhold Kipscholl,... Degradation of Elastomers in Practice, Experiments and Modeling (Hardcover, 1st ed. 2023)
Gert Heinrich, Reinhold Kipscholl, Radek Stocek
R6,268 Discovery Miles 62 680 Ships in 12 - 17 working days

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.

Fatigue Crack Growth in Rubber Materials - Experiments and Modelling (Paperback, 1st ed. 2021): Gert Heinrich, Reinhold... Fatigue Crack Growth in Rubber Materials - Experiments and Modelling (Paperback, 1st ed. 2021)
Gert Heinrich, Reinhold Kipscholl, Radek Stocek
R7,035 Discovery Miles 70 350 Out of stock

The book summarizes recent international research and experimental developments regarding fatigue crack growth investigations of rubber materials. It shows the progress in fundamental as well as advanced research of fracture investigation of rubber material under fatigue loading conditions, especially from the experimental point of view. However, some chapters will describe the progress in numerical modeling and physical description of fracture mechanics and cavitation phenomena in rubbers. Initiation and propagation of cracks in rubber materials are dominant phenomena which determine the lifetime of these soft rubber materials and, as a consequence, the lifetime of the corresponding final rubber parts in various fields of application. Recently, these phenomena became of great scientific interest due to the development of new experimental methods, concepts and models. Furthermore, crack phenomena have an extraordinary impact on rubber wear and abrasion of automotive tires; and understanding of crack initiation and growth in rubbers will help to support the growthing number of activities and worldwide efforts of reduction of tire wear losses and abrasion based emissions.

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