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Titlebook: Advances in Understanding Thermal Effects in Rubber; Experiments, Modelli Gert Heinrich,Reinhold Kipscholl,Radek Sto?ek Book 2024 The Edito

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發(fā)表于 2025-3-21 17:43:13 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Advances in Understanding Thermal Effects in Rubber
期刊簡稱Experiments, Modelli
影響因子2023Gert Heinrich,Reinhold Kipscholl,Radek Sto?ek
視頻videohttp://file.papertrans.cn/168/167324/167324.mp4
發(fā)行地址Includes numerical and physical simulation.Introduces thermal effects of rubber.Presents experimental investigations of rubber self-heating
學(xué)科分類Advances in Polymer Science
圖書封面Titlebook: Advances in Understanding Thermal Effects in Rubber; Experiments, Modelli Gert Heinrich,Reinhold Kipscholl,Radek Sto?ek Book 2024 The Edito
影響因子.In the case of an ideal rubber, one often thinks of the linear dependence of the shear modulus on temperature as an expression of the typical entropy elasticity. However, temperature dependencies of typical technical rubber materials are known to be much more complicated. This has consequences for the practical behaviour of rubber-elastic components. One well-known instance of this is the dramatic Challenger disaster. The rubber used to seal the solid rocket booster joints with O-rings did not expand at temperatures of 0 °C or below, resulting in an opening in the solid rocket booster joint through which gas attempted to escape...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 c
Pindex Book 2024
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https://doi.org/10.1007/978-3-662-63687-9ed and discussed with the results of a Finite Element Analysis (FEA) in the radial and axial directions and in the time domain. The analytical expression represents a significant contribution to the effective prediction of the evolution of heat generation in rubber without meeting the requirements o
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Forschung Erziehungswissenschaftorder to understand the effect of different filler reinforcements on the HBU behavior, the fundamental characterization of the studied materials, namely hardness, tensile properties as well as the determination of viscoelastic behavior with respect to the Payne effect, was first performed. The kinet
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Theoretisch-konzeptionelle Rahmung,ormation gradient is coupled to phase-field modeling to investigate temperature-dependent and rate-dependent fracture within polymeric materials. Regarding the phase-field driving force, only the elastic strain energy potential is supposed to evolve fracture. It comes from both the equilibrium and n
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Theoretisch-konzeptionelle Rahmung,nly experimental measurement where carbon black structure plays a significant role in determining the heat build-up. The differences in the levels of influence of carbon black colloidal properties can be understood when the deformation index concept is applied to the experimental results. Goodrich f
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Kinetics of Self-Heat Build-Up in Carbon Black Filled Natural Rubber Caused by Cyclic Mechanical Loorder to understand the effect of different filler reinforcements on the HBU behavior, the fundamental characterization of the studied materials, namely hardness, tensile properties as well as the determination of viscoelastic behavior with respect to the Payne effect, was first performed. The kinet
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