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Experimental Study on Thermal Aging Characters of Silicone Oil in Cable Terminal

机译:电缆端子硅油热老化特征的实验研究

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In order to actualize the safe and reliable operation of transmission lines, it is necessary to carry out research on cable latent faults, so as to grasp the operation characteristics of cables under different fault conditions. This focuses on the thermal aging problem of silicone oil in cable terminal caused by long-term heating. The testing oil were placed in sealed pots and were thermal aging in a heating oven for 90 days at three different conditions, i.e. 30 °C, 60 °C and 90 °C. The electrical and physicochemical properties were tested to study the degradation level of the oil, and the infrared spectrum characters are tested to identify the presence of new substances. The experiments showed that the speed of degradation of silicone oil is very slow under limited thermal aging temperature (lower than 60 °C in this study) and test time. When the temperature is further raised to 90 °C, the aging process of silicone oil is accelerated. The acid value and kinematic viscosity increase, but the fluctuation range is not obvious. The whole aging process is accompanied by water generation. In addition, from the infrared spectrum results, the long chain molecule of silicone oil breaks down under the condition of thermal aging, which makes the side chain _CH3 separate from the main chain of Si-O and forms a new impurity component.
机译:为了实现传输线的安全可靠运行,有必要对电缆潜断进行研究,以便在不同的故障条件下掌握电缆的运行特性。这侧重于长期加热引起的电缆端子中硅油的热老化问题。将测试油置于密封罐中,并在加热炉中热老化,在三种不同的条件下进行90天,即30℃,60℃和90℃。测试电化学和物理化学性质以研究油的降解水平,并测试红外光谱特征以识别新物质的存在。实验表明,在有限的热老化温度下(在本研究中低于60℃)和测试时间,硅油的降解速度非常缓慢。当温度进一步升高到90℃时,加速硅油的老化过程。酸值和运动粘度增加,但波动范围不明显。整个老化过程伴有水生成。此外,从红外光谱结果,硅油的长链分子在热老化的条件下破裂,这使得侧链_ch 3 与Si-O的主链分开并形成新的杂质组分。

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