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Ageing effect of vegetable oils impregnated paper in transformer application

机译:植物油浸渍纸在变压器应用中的衰老作用

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Vegetable oils are being considered as potential alternatives to mineral oil, due to their better environmental performance and for their high fire point. Although these liquids have been used in distribution transformer, it is still a significant step to adopt vegetable oils in power transformer due to high cost and high level of safety and reliability required in service for these units. Vegetable oils such as Palm oil (PO), Corn oil (CO), and Rice Bran oils (RBO) offer suitable alternative for mineral oil. It is anticipated that most of the un-aged oil could satisfy the minimum requirement for dielectric insulation liquids in transformer. However, since transformers in service could be subjected to heat and multiple environmental parameters, the oil could be subjected to ageing. The chemical properties of the oil may change and its performance could be affected by the presence of ageing-by-products such as moisture and acids. Therefore, considering the application of new dielectric insulation liquids such as PO, CO and RBO in transformer, it is crucial to first examine its ageing performances at laboratory level. This paper focused on the effect of ageing on the electrical and physicochemical properties of PO, CO, and RBO. Sealed ageing experiments were set at 90°C for 30 days, 90 days and 180 days. Before the ageing process, the samples were dried in a vacuum oven at pressure less than 0.8kP at 85°C for 48 hours in order to remove the moisture content in the oils. Then the oils were impregnated with the Kraft paper and continue to age for selected duration time. The electrical properties (relative permittivity, dielectric losses, resistivity and breakdown strength), mechanical properties (viscosity and tensile strength) and chemical properties (moisture and acidity) of the oils were measured throughout the ageing periods. It can be concluded that the laboratory accelerated thermal ageing experiment reveals that all vegetable oils in this study are resistant toward oxidation based on the stable viscosity and low acidity measurements of vegetable oils throughout the ageing duration even with the presence of oxygen. The AC breakdown voltages of vegetable oils can still comply with the recommended limit of new vegetable oil set by ASTM 6781 even after subjected to ageing. In general most of properties of vegetable oils are comparable with mineral oil.
机译:由于其更好的环境表现和高火点,植物油被视为矿物油的潜在替代品。虽然这些液体已用于分配变压器,但由于这些单位服务的高成本和高水平的安全性和可靠性,因此采用电力变压器中的植物油仍然是一项重要的步骤。植物油如棕榈油(PO),玉米油(CO)和米糠油(RBO)为矿物油提供合适的替代品。预计大多数未老化的油可以满足变压器中介电绝缘液的最低要求。然而,由于可以进行换乘器的变压器和多种环境参数,因此可以进行老化。油的化学性质可能会发生变化,其性能可能受到逐剂量的存在,例如水分和酸。因此,考虑到在变压器中的新介电绝缘液体如PO,CO和RBO的应用,首先在实验室水平进行老化性能至关重要。本文集中于老化对PO,CO和RBO的电气和物理化学性质的影响。将密封的老化实验设定在90℃下30天,90天和180天。在衰老过程之前,将样品在真空烘箱中在85℃下在低于0.8kp的真空烘箱中干燥48小时,以除去油中的水分含量。然后用牛皮纸浸渍油并在选定的持续时间继续使用寿命。在整个老化时期测量油的电性能(相对介电常数,电阻率,电阻率和击穿强度),机械性能(粘度和抗拉强度)和油脂的化学性质(水分和酸度)。可以得出结论,实验室加速的热老化实验表明,这项研究中的所有植物油都是基于氧气在整个老化持续时间内植物油的稳定粘度和低酸度测量来抵抗氧化,即使存在氧气。即使经过老化后,植物油的AC击穿电压仍然可以符合ASTM 6781的新植物油的推荐极限。通常,植物油的大多数属性与矿物油相当。

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