Development of New Accelerated Aging Test for Comparison of the Quality of Different Insulating Papers Based on Cellulose

Author:

Mihajlovic Draginja1ORCID,Vasovic Valentina1ORCID,Lukic Jelena1ORCID

Affiliation:

1. Laboratory for Testing and Calibration, Electrical Engineering Institute Nikola Tesla, Koste Glavinica 8a, 11000 Belgrade, Serbia

Abstract

The aim of this study is to propose a test method for the determination of the quality of transformer paper insulation. For this purpose, the oil/cellulose insulation systems were exposed to various accelerated aging tests. The results of the aging experiments of normal Kraft and thermally upgraded papers, two different types of transformer oil (mineral and natural ester), and copper are shown. Aging was carried out in various experiments at 150 °C, 160 °C, 170 °C, and 180 °C with dry (initial values ≤ 0.5%) and moistened cellulose insulation (initial values 3–3.5%). Following insulating oil and paper, degradation markers were measured: the degree of polymerization, tensile strength, furan derivates, methanol/ethanol, acidity, interfacial tension, and dissipation factor. It was found that the aging of cellulose insulation in cycles was 1.5–1.6 times faster in comparison to continuous aging, due to the more pronounced effect of hydrolytic mechanism in cyclic aging owing to the produced and absorbed water. Furthermore, it was observed that the high initial water content in cellulose increases the aging rate two to three times more than in the dry experimental setup. The proposed aging test in cycles can be used to achieve faster aging and to compare the quality of different insulating papers.

Funder

the Ministry of Science, Technological Development and Innovation of the Republic of Serbia

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference21 articles.

1. Aging of Oil-Impregnated Paper in Power Transformers;Lundgaard;IEEE Trans. Power Deliv.,2004

2. Prevost, T.A. (2005, January 23–26). Thermally upgraded insulation in transformers. Proceedings of the Electrical Insulation Conference and Electrical Manufacturing Expo, Indianapolis, IN, USA.

3. (2018). Ageing of Liquid Impregnated Cellulose for Power Transformers (Standard No. CIGRE 738).

4. (2014). Electrical Insulation Systems (EIS)—Thermal Evaluation of Combined Liquid and Solid Components—Part 2: Simplified Test (Standard No. IEC 62332-2).

5. (2011). IEEE Standard Test Procedure for Thermal Evaluation of Insulation Systems for Liquid-Immersed Distribution and Power Transformers (Standard No. C57.100-2011).

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