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Research of the thermal aging mechanism of polycarbonate and polyester film

机译:聚碳酸酯和聚酯薄膜热老化机理的研究

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Insulating paper is a traditional insulation material used for transformer insulation. Transformer development is not only limited to small sizes and large capacities, but also limited to insulation life as insulating paper cannot withstand high temperatures. Therefore, recent studies have focused on improving the performance of insulation paper and discovering better insulation materials. In this study, two types of polymeric materials, polycarbonate (PC) and polyester film (PET), were chosen for comparative analysis. In order to test whether these two materials could be used in oil-immersed transformers, the PC and PET were placed in transformer oil for thermal aging at 110°C and 130°C, respectively. The thermal cracking processes and fragmentation mechanisms of the PC, PET, and insulation paper were analyzed using thermal gravimetric analysis (TGA), differential scanning calorimetry (DSC), and atomic force microscopy (AFM), as well as their degrees of polymerization and surface morphologies. According to the test results, the initial thermal decomposition temperature of PC and PET are higher than insulation paper and exhibited a better thermal resistance. PC and PET have the potential to substitute insulation paper for large capacity power transformer.
机译:绝缘纸是用于变压器绝缘的传统绝缘材料。变压器的发展不仅限于小尺寸和大容量,而且还因为绝缘纸不能承受高温而限制了绝缘寿命。因此,最近的研究集中在改善绝缘纸的性能和发现更好的绝缘材料上。在这项研究中,选择了两种类型的聚合材料,聚碳酸酯(PC)和聚酯薄膜(PET)进行比较分析。为了测试这两种材料是否可用于油浸式变压器,将PC和PET分别放入变压器油中,分别在110°C和130°C下进行热老化。使用热重分析(TGA),差示扫描量热法(DSC)和原子力显微镜(AFM)分析了PC,PET和绝缘纸的热裂解过程和碎裂机理,以及它们的聚合度和表面形态。根据测试结果,PC和PET的初始热分解温度高于绝缘纸,并表现出更好的耐热性。 PC和PET有潜力替代绝缘纸替代大容量电力变压器。

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