Effect of thermal aging above the glass transition temperature on the mechanical properties of rigid PVC tube

Zineb Hadj amar, S. Chabira, M. Sebaa
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Abstract

Thermal aging of standard samples of rigid PVC (u-PVC) taken from plastic tubes near and above the glass transition temperature (Tg) was used to investigate the effect of elevated temperatures on the mechanical properties of rigid (u-PVC) tubes used in industrial areas. Three aging protocols were used, each lasting 90 days at 80 °C, 100 °C, and 120 °C. Crosslinking and chain scission reactions changed the tensile properties, either increasing them or decreasing them. For all three aging protocols, it was discovered that Young's modulus increased with aging time. Furthermore, the rate of increase of the modulus was observed to increase with aging temperature. The Yield stress showed the same pattern. Their increase in both cases is due to material stiffening caused by a crosslinking process. This last one was revealed by DSC, where Tg increased as a result of the chemical process. The decrease in elongation at break, which occurred progressively in all aging protocols and more precisely at temperatures above Tg, on the other hand, demonstrated the relationship between chain scissions and temperature. The material becomes more brittle as the temperature rises. Brittleness is caused by a high activity of chain scissions on the surface sample, which allows micro-cracks to form. When subjected to tensile forces, cracks propagate from the surface toward the sample's thickness.  
高于玻璃化温度的热老化对硬质PVC管力学性能的影响
从塑料管中提取的硬质PVC (u-PVC)标准样品在玻璃化转变温度(Tg)附近和以上进行热老化,研究了高温对工业用硬质PVC (u-PVC)管力学性能的影响。采用三种老化方案,分别在80°C、100°C和120°C下持续90天。交联和断链反应改变了材料的拉伸性能,或提高或降低了材料的拉伸性能。对于所有三种时效方案,发现杨氏模量随着时效时间的增加而增加。此外,随着时效温度的升高,模量的增加速率也随之增加。屈服应力表现出相同的规律。在这两种情况下,它们的增加是由于交联过程引起的材料硬化。最后一个是通过DSC发现的,其中Tg由于化学过程而增加。断裂伸长率的下降,在所有时效过程中逐渐发生,在温度高于Tg时更为精确,另一方面,证明了链断裂与温度之间的关系。随着温度的升高,这种材料变得更脆。脆性是由表面样品上的高活性链断裂引起的,这允许微裂纹形成。当受到拉伸力时,裂纹从表面向试样的厚度方向扩展。
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