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Measurements on pressboard to understand the effect of solid insulation condition on monitoring of power transformer winding clamping pressure

机译:在压板上进行测量以了解固体绝缘状况对监视电力变压器绕组夹持压力的影响

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摘要

Pressboard is the main building material of a power transformer winding structure. Through-thickness compression behaviour of pressboard has a direct influence on the transformer winding clamping pressure. Being a cellulose based polymeric material with a porous structure, the through-thickness compression behaviour of pressboard is highly non-linear. Also, the mechanical properties of pressboard are moisture, temperature, and ageing status dependent. However, information on the exact behaviour of the through-thickness compressibility of pressboard under typical operating conditions of a power transformer has not been well documented in the literature. This has posed difficulties in developing reliable techniques to detect loose clamping conditions in power transformer windings. This study presents the results of laboratory measurements on the effect of moisture, temperature and ageing on the through-thickness compression behaviour of oil-impregnated pressboard. From the measured results, it was found that the compressibility of pressboard could increase with increasing temperature, ageing and moisture ingress. It was also found that moisture and ageing tend to exaggerate the thermal softening of pressboard. Subsequent finite element analysis confirmed that transformer clamping pressure has significantly altered with the pressboard condition.
机译:压板是电力变压器绕组结构的主要建筑材料。压板的全厚度压缩行为直接影响变压器绕组的夹紧压力。作为具有多孔结构的纤维素基聚合物材料,压纸板的全厚度压缩行为是高度非线性的。而且,压纸板的机械性能取决于湿度,温度和老化状态。然而,在文献中未充分记录有关在电力变压器的典型操作条件下压纸板的全厚度可压缩性的确切行为的信息。这在开发可靠的技术以检测电力变压器绕组中的松散钳位条件方面造成了困难。这项研究提出了水分,温度和老化对油浸压纸板的全厚度压缩行为影响的实验室测量结果。从测量结果发现,压板的可压缩性可以随着温度,老化和水分进入的增加而增加。还发现水分和老化倾向于使压板的热软化变大。随后的有限元分析证实,变压器压紧压力随压板条件而发生了显着变化。

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  • 来源
    《Science, Measurement & Technology, IET》 |2019年第2期|186-192|共7页
  • 作者单位

    Univ Queensland, Sch Informat Technol & Elect Engn, Brisbane, Qld 4072, Australia;

    Univ Queensland, Sch Informat Technol & Elect Engn, Brisbane, Qld 4072, Australia;

    Univ Queensland, Sch Informat Technol & Elect Engn, Brisbane, Qld 4072, Australia;

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