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Titlebook: Degradation of Elastomers in Practice, Experiments and Modeling; Gert Heinrich,Reinhold Kipscholl,Radek Stoček Book 2023 The Editor(s) (if

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https://doi.org/10.1007/978-3-662-26343-3l with tire wear under an outdoor test program commonly used by tire companies on public highways. This result also makes it clear why tire wear under moderate severity conditions cannot be described by abrasive wear tests in the laboratory, e.g. with DIN-Abrader.
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https://doi.org/10.1007/978-3-658-21031-1ed elastomers, on the crack-tip properties are elucidated. We also describe the characterization of quasi-stationary cracks in elastomers subjected to various types of biaxial loading, providing a basis for the fracture mechanics of elastomers under multiaxial deformation.
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Basic Mechanisms and Predictive Testing of Tire-Road Abrasion,l with tire wear under an outdoor test program commonly used by tire companies on public highways. This result also makes it clear why tire wear under moderate severity conditions cannot be described by abrasive wear tests in the laboratory, e.g. with DIN-Abrader.
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Experimental Analysis of Fast Crack Growth in Elastomers,ed elastomers, on the crack-tip properties are elucidated. We also describe the characterization of quasi-stationary cracks in elastomers subjected to various types of biaxial loading, providing a basis for the fracture mechanics of elastomers under multiaxial deformation.
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0065-3195 s into the impact on mechanical rubber propertiesThis 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 c
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Thermo-Oxidative Aging and Mechanical Fatigue of Elastomer Compounds Used in Various Fields of Rubbetime characteristics of the samples without thermal aging. Significant differences between the various polymer types and the applied curing systems and filler types have been found. Thermal aging effects during mechanical aging are unlikely to affect the lifetime for most of the samples due to thei
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Novel Approach on Analyzing Mechanochemical Wear Mechanism of Rubber Vulcanizates in Molecular Scal would enhance the wear degradation. These QCC results suggest that hydrogenation of diene rubber is the straight strategy to strengthen the wear resistance against the mechanochemical degradation because the decrease in carbon–carbon double bond suppresses the polymer oxidation and the subsequent c
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