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Thermo-oxidative ageing of elastomers: A modelling approach based on a finite strain theory

机译:弹性体的热氧化老化:基于有限应变理论的建模方法

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Polymers are highly important in industrial applications such as bearings, seals, bonds and coatings. Since these components are used in various areas of engineering, it is obvious that they are exposed to different environmental influences such as mechanical stresses, temperature profiles and chemical or biological substances. Therefore, their properties change over time which leads to limited operating times. In this contribution, the chemical ageing of elastomers within air is examined. A representative example for this phenomenon is the thermo-oxidative ageing of elastomeric bearings in automobiles. After the state of the art is presented and highlighted by scientific data, the experimental equipment necessary for the thermo-oxidative ageing studies is introduced. According to that, experimental data are shown and analysed. From the theoretical point of view, a constitutive approach is formulated by evaluating the Clausius-Planck inequality. The model exhibits a physically-based structure such that a clear identification of all material parameters is possible and meaningful numerical simulations can be shown. The contribution is closed by a summary and outlooks to future trends and objectives.
机译:聚合物在工业应用中非常重要,例如轴承,密封件,粘合剂和涂料。由于这些组件用于工程的各个领域,因此很明显,它们会受到不同的环境影响,例如机械应力,温度曲线以及化学或生物物质。因此,它们的特性会随时间变化,从而导致运行时间受到限制。为此,研究了空气中弹性体的化学老化。这种现象的一个典型例子是汽车中弹性体轴承的热氧化老化。在介绍了现有技术并通过科学数据进行了重点介绍之后,介绍了热氧化老化研究所需的实验设备。据此,显示并分析了实验数据。从理论的角度来看,通过评估克劳修斯-普朗克不等式来制定本构方法。该模型展示了基于物理的结构,因此可以清楚地识别所有材料参数,并且可以显示有意义的数值模拟。本贡献以总结和对未来趋势和目标的展望结束。

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