Investigation of Hydrothermal Aging on Polyvinyl Chloride (PVC) Used in Medium Voltage Cables

Hassene Ait Ouazzou, M. Nedjar, S. Hocine, Rachid Belhocine, Ferhat Belabbas
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引用次数: 1

Abstract

This investigation deals with the effect of hydrothermal aging on the electrical insulating properties of polyvinyl chloride used in medium voltage cables. The evolution of dielectric properties (dielectric loss factor, dielectric constant, dielectric strength and volume resistivity) as a function of aging time and temperature has been studied. After that, the mechanical characteristics (elongation at break and tensile strength) were also determined. Physico-chemical analysis was performed to highlight the structural changes induced by hydrothermal aging. Infrared spectroscopy using the Fourier transform (ATR-FTIR) and thermogravimetric analysis (TGA-DTA) have been performed. The results obtained show that the loss factor and dielectric constant increase gradually with the increase of temperature, while the volume resistivity decreases. At 100℃, the general shape of the curves giving the evolution of dielectric properties as a function of aging time shows that both loss factor and dielectric constant increase while those of volume resistivity and dielectric strength decrease. In the case of 80℃, the loss factor decreases slightly and the dielectric constant remains almost constant with aging time, whereas the volume resistivity and dielectric strength increase. The activation energy varies with aging time. The impact of hydrothermal aging on the properties of the material has been established in this study. At the beginning of aging, the degradation is mainly due to the elimination of molecular HCl. At more advanced stages of aging, the degradation is attributed to the elimination of HCl and double bonds formation followed by a change in color. Other consequences of the degradation like crosslinking and swelling of the samples are also noticed.
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中压电缆用聚氯乙烯(PVC)水热老化研究
研究了水热老化对中压电缆用聚氯乙烯电绝缘性能的影响。研究了介质性能(介电损耗因子、介电常数、介电强度和体积电阻率)随老化时间和温度的变化规律。之后,还测定了其力学特性(断裂伸长率和抗拉强度)。理化分析表明热液老化引起的结构变化。利用傅里叶变换(ATR-FTIR)和热重分析(TGA-DTA)进行了红外光谱分析。结果表明:随着温度的升高,材料的损耗因子和介电常数逐渐增大,而体积电阻率减小;在100℃时,介质性能随时效时间的变化曲线的一般形状表明损耗因子和介电常数增大,而体积电阻率和介电强度减小。在80℃时,随着时效时间的延长,材料的损耗因子略有下降,介电常数基本保持不变,而体积电阻率和介电强度则有所增加。活化能随时效时间的变化而变化。本研究确定了水热老化对材料性能的影响。在老化初期,降解主要是由于HCl分子的消除。在更高级的老化阶段,降解是由于HCl的消除和双键的形成,然后是颜色的变化。降解的其他后果,如交联和膨胀的样品也被注意到。
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