Thermal properties of synthetic ester-based transformer oil during ageing in laboratory conditions

V. Haramija, D. Vrsaljko, V. Durina
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引用次数: 5

Abstract

Synthetic esters are interesting as transformer insulating liquids for use in densely populated and environmentally sensitive areas because of high flashpoint, good biodegradability, low toxicity, good electrical and thermal properties, resistance to electrical discharges and compatibility with materials in transformers. Monitoring of liquid insulation is a convenient method for assessing general condition of the transformer. Since synthetic esters have only recently been put into use in power transformers, there is still not enough data on change of their properties during exploitation for transformer condition assessment. Monitoring changes of properties in laboratory ageing conditions, as well as the determination of characteristic degradation products will contribute to a better understanding of the insulating liquid and to the assessment of its functionality. In this paper, changes of physico-chemical properties of synthetic ester-based transformer oil in laboratory ageing conditions were investigated. The oil was submitted to 120 °C and 150 °C at different time intervals. After the exposure to high temperature, differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA) were performed. DSC was performed for the purpose of gathering qualitative and quantitative data about physical and chemical processes that include endothermic and exothermic effects and heat capacity change. Heat capacity is highly affected by viscosity, so temperature dependence of viscosity as well as viscosity change during ageing was monitored. TGA was performed for the purpose of material characterization and gathering of information about thermal stability of oil. The investigation contributes to better understanding of thermal ageing kinetics of environmentally friendly synthetic ester-based insulating liquid.
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实验室老化条件下合成酯基变压器油的热性能
由于高闪点、良好的生物降解性、低毒性、良好的电气和热性能、抗放电性能以及与变压器材料的兼容性,合成酯作为变压器绝缘液体在人口密集和环境敏感地区使用是很有趣的。液体绝缘监测是评估变压器总体状况的一种简便方法。由于合成酯在电力变压器中的应用是最近才开始的,在开发过程中其性能变化的数据尚不充分,无法用于变压器状态评估。在实验室老化条件下监测性能变化,以及确定特征降解产物,将有助于更好地了解绝缘液体并评估其功能。研究了合成酯基变压器油在实验室老化条件下理化性质的变化。将油在不同的时间间隔内分别加热到120°C和150°C。高温暴露后,进行差示扫描量热法(DSC)和热重分析(TGA)。DSC的目的是收集物理和化学过程的定性和定量数据,包括吸热和放热效应以及热容变化。热容受粘度的影响较大,因此对粘度的温度依赖性和老化过程中的粘度变化进行了监测。采用热重热分析对原料进行表征,并收集油的热稳定性信息。该研究有助于更好地了解环保型合成酯基绝缘液的热老化动力学。
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