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Electrical and chemical properties of thermally aged vegetable-based oils as high voltage insulating material

机译:热老化植物基油作为高压绝缘材料的电气和化学性质

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摘要

Researches on the viability of using vegetable-based or plant-based oils in power transformers are gaining much attention due to their excellent biodegradability and good dielectric properties. Several vegetable-based oils have been studied and found to have potentials to be used as transformer insulating oil. However, studies on their long-term ageing properties and improvement on their dielectric properties are still lacking. This thesis reports laboratory studies carried out on eight different vegetable oils and their blends to investigate their dielectric properties when subjected to accelerate thermal ageing. The vegetable oils are canola oil, coconut oil, olive oil, palm olein oil, sesame oil, CO25 oil (75% canola 25% olive), CO50 oil (50% canola 50% olive) and CO75 oil (25% canola 75% olive). The samples were thermally aged at 150°C for 520 hours and their dielectric properties were investigated. The dielectric properties were fire point, pour point, dielectric dissipation factor (tan d), breakdown voltage, refractive index, kinematic viscosity and Fourier Transform Infrared Spectroscopy (FTIR). Mineral oil was also investigated in the same fashion for comparison purposes. Results from this study show that in overall, mineral oil was the least aged and most stable oil sample after undergoing accelerated thermal ageing. Vegetable oil samples experienced higher degree of ageing and oxidation. However, the vegetable oil samples showed higher breakdown voltage. Among these vegetable oil samples, coconut and sesame oil samples were the most aged and have the lowest breakdown voltage, while olive was the least aged and the most stable. In terms of oxidation stability, sesame and canola experienced the highest oxidation while olive and coconut experienced the least. Furthermore, in this study the blending of the canola and olive oils improves their dielectric properties and oxidation by as much as 37%. The finding in this study thus suggests that vegetable-based oils can have good long-term dielectric properties as insulating oils for high voltage applications. In addition, blending of vegetable oils can also improve their insulating properties and oxidation stability
机译:由于其优异的生物降解性和良好的介电性能,对在电力变压器中使用植物基或植物基油的可行性的研究受到了广泛关注。对几种植物油进行了研究,发现它们有潜力用作变压器绝缘油。但是,仍缺乏对其长期老化性能和介电性能的改进的研究。本论文报告了对八种不同植物油及其混合物进行的实验室研究,以研究其在加速热老化过程中的介电性能。植物油是低芥酸菜子油,椰子油,橄榄油,棕榈油精油,芝麻油,CO25油(75%低芥酸菜籽油25%橄榄),CO50油(50%低芥酸菜籽油50%橄榄)和CO75油(25%低芥酸菜子油75%)橄榄)。将样品在150°C下热老化520小时,并研究其介电性能。介电性能为着火点,倾点,介电损耗因子(tan d),击穿电压,折射率,运动粘度和傅立叶变换红外光谱法(FTIR)。为了进行比较,还以相同的方式研究了矿物油。这项研究的结果表明,总体上讲,矿物油在经历加速热老化后是老化最少,最稳定的油样。植物油样品经历了更高程度的老化和氧化。但是,植物油样品显示较高的击穿电压。在这些植物油样品中,椰子油和麻油样品的陈年时间最长,击穿电压最低,而橄榄的陈年时间最少且最稳定。就氧化稳定性而言,芝麻和低芥酸菜籽的氧化程度最高,而橄榄和椰子的则最少。此外,在这项研究中,低芥酸菜子油和橄榄油的共混物将其介电性能和氧化性提高了多达37%。因此,这项研究中的发现表明,植物油可以作为高压应用的绝缘油,具有良好的长期介电性能。此外,混合植物油还可以改善其绝缘性能和氧化稳定性

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