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Elastic Properties of Polychloroprene Rubbers in Tension and Compression during Ageing

机译:老化过程中聚氯橡胶橡胶的弹性性能

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摘要

Being able to predict the lifetime of elastomers is fundamental for many industrial applications. The evolution of both tensile and compression behavior of unfilled and filled neoprene rubbers was studied over time for different ageing conditions (70 °C, 80 °C and 90 °C). While Young’s modulus increased with ageing, the bulk modulus remained almost constant, leading to a slight decrease in the Poisson’s ratio with ageing, especially for the filled rubbers. This evolution of Poisson’s ratio with ageing is often neglected in the literature where a constant value of 0.5 is almost always assumed. Moreover, the elongation at break decreased, all these phenomena having a similar activation energy (~80 kJ/mol) assuming an Arrhenius or pseudo-Arrhenius behavior. Using simple scaling arguments from rubber elasticity theory, it is possible to relate quantitatively Young’s modulus and elongation at break for all ageing conditions, while an empirical relation can correlate Young’s modulus and hardness shore A. This suggests the crosslink density evolution during ageing is the main factor that drives the mechanical properties. It is then possible to predict the lifetime of elastomers usually based on an elongation at break criterion with a simple hardness shore measurement.
机译:能够预测弹性体的寿命是许多工业应用的基础。随着时间的推移,研究了未填充和填充的氯丁橡胶橡胶的拉伸和压缩行为的演变,不同的老化条件(70℃,80℃和90℃)。虽然杨氏的模量随着衰老的增加而增加,但是散装模量几乎恒定,导致泊松比与老化的比例略微下降,特别是对于填充的橡胶。在文献中,这种泊松比的这种泊松比的演变通常忽略了0.5的恒定值。此外,断裂的伸长率降低,所有这些现象具有类似的激活能量(〜80kJ / mol),假设Arrhenius或Pseudo-Arhenius行为。使用来自橡胶弹性理论的简单缩放争论,可以对所有老化条件进行定量杨氏模量和伸长率,而实证关系可以关联年轻的模量和硬度岸A.这表明老化期间的交联密度进化是主要的推动机械性能的因素。然后可以预测弹性体的寿命通常基于具有简单硬度侧测量的断裂标准的伸长率。

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