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Investigation on Heating Aging Mechanism of Cellulose Paper for Oil-Immersed Transformer Main Insulation

机译:油浸式变压器主绝缘纤维素纸的加热老化机理研究

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Power transformer plays a vital role in maintaining reliable and efficient electricity supply. However, in service is increasing and growing older, much and much attention has been paid on their aging condition and life assessment than ever. The aging and degradation of transformer insulation will determine the life-time of its operation. The intensities of these depend on mechanical, thermal and environmental stresses that act on the insulations. Due to the temperature rise, the lifetime of insulation material will be shortened. The accelerated thermal aging method is often adopted to do some evaluation on the oil-paper insulation materials under different temperature for the thermal lifetime model. According to existing aging test, both insulation paper and mineral oil were aged at the same temperature. In this paper, the thermal aging experiments were implemented on the transformer main insulation model made with modified and unmodified insulation paper. The accelerated thermal aging tests were finished, and the superior electric characteristics of the nano-TiO2 and cellulose composition insulation were validated.
机译:电力变压器在维持可靠和有效的电力供应中起着至关重要的作用。然而,随着服务的增加和年龄的增长,人们对它们的衰老状况和寿命评估的关注程度比以往任何时候都高。变压器绝缘的老化和退化将决定其使用寿命。这些强度取决于作用在绝缘材料上的机械应力,热应力和环境应力。由于温度上升,绝缘材料的寿命将缩短。通常采用加速热老化法对油纸绝缘材料在不同温度下的热寿命模型进行一些评估。根据现有的老化测试,绝缘纸和矿物油都在相同的温度下老化。本文对用改性和未改性绝缘纸制成的变压器主绝缘模型进行了热老化实验。完成了加速的热老化测试,并获得了纳米TiO的优异电特性 2 并验证了纤维素组合物的绝缘性。

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