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Analysis of Magnetic Performance and Magnetostrictive Properties of Grain-Oriented Electrical Steels under DC Bias Condition

机译:直流偏置条件下晶粒取向电工钢的磁性能和磁致伸缩性能分析

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DC-biased magnetization, which is evoked by high voltage direct current (HVDC) transmission, can cause core saturation, vibration acceleration, and temperature rise in DC converter transformer as well as AC transformer with the invasion of DC current into the neutral point. The grain-oriented (GO) electrical steel is the key material for large power transformer, and its magnetic performance and magnetostrictive properties under DC bias condition directly affect the safety margin, energy saving, and noise level of transformer core. In this paper, the effects of thickness, permeability, and tensile stress on the magnetic/magnetostrictive properties of 0.23-mm, 0.27-mm and 0.30-mm series high-grade GO electrical steels under the condition of AC/DC hybrid excitation are researched. Results show that, large thickness, relatively low permeability, and 3 MPa tensile stress can lead to strong resistance against DC bias for the GO steels with the same core losses under sinusoidal excitation. That means the core loss, excitation current, and magnetostriction coefficient can be effectively decreased under DC bias by rational selection of transformer core materials. It`s an alternatively new way to improve the ability of large power transformers to resist DC bias.
机译:高压直流(HVDC)传输引起的DC偏磁化会导致DC转换器变压器以及AC变压器中的铁芯饱和,振动加速和温度上升,同时DC电流会侵入中性点。方向性电工钢是大型电力变压器的关键材料,在直流偏置条件下其磁性能和磁致伸缩性能直接影响变压器铁心的安全裕度,节能和噪声水平。本文研究了在交流/直流混合激励条件下,厚度,磁导率和拉伸应力对0.23-mm,0.27mm和0.30mm系列高级GO电工钢的磁/磁致伸缩性能的影响。 。结果表明,在正弦激励下,具有相同铁心损耗的GO钢,较大的厚度,相对较低的磁导率和3 MPa的拉应力可导致较强的抗DC偏压性能。这意味着通过合理选择变压器铁心材料,可以在直流偏置下有效降低铁心损耗,励磁电流和磁致伸缩系数。它是提高大型电力变压器抵抗直流偏置能力的另一种新方法。

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