铁芯损耗

  • 网络Core loss
铁芯损耗铁芯损耗
  1. 磁控电抗器(MagneticControlledReactor,MCR).系统的损耗主要包括铁芯损耗、绕组损耗、半导体器件损耗以及由漏磁产生的杂散损耗等。

    The loss of Magnetic Controlled Reactor ( MCR ) includes core loss , windings loss , semiconductor devices loss and stray loss caused by leakage magnetic flux .

  2. 铁芯损耗均随频率、磁场强度的增加而增加;

    And the core loss increases with frequency and field intensity .

  3. 研究了FeBSi非晶软磁合金的铁芯损耗谱P(f),发现P(f)具有分形结构。

    The core loss spectrum P ( f ) of Fe-B-Si amorphous soft magnetic alloy has been studied . It is found that P ( f ) has the fractal structure .

  4. 研究了恒导磁合金的铁芯损耗谱P(f),发现P(f)具有分形结构,讨论了感生各向异性能Ku对分形维数Df的影响。

    The core loss spectrum P ( f ) of magnetic alloy with constant permeability has been studied . It is found that P ( f ) has the fractal structure . The effect of the induced anisotropy energy Ku on the fractal dimension Df is discussed .

  5. 对试样交流磁性能的测试表明,试样在1kHz以上的频率下,试样具有相对很低的铁芯损耗。

    The core loss of specimens indicated an excellent soft magnetic performance in high frequencies of 1-10 KHz .

  6. 环形铁芯损耗在线测试仪

    On-line test instrumentation of power loss for round core

  7. 取向硅钢绝缘涂层结构及其对铁芯损耗的影响

    Microstructure of insulating coatings and their influence on the iron loss of oriented silicon steel

  8. 本文简述了脉冲磁压缩工作原理和设计要点,重点介绍了非晶态合金及超微晶合金铁芯的损耗只饱和磁感P,及剩磁Br对磁压缩电感器的体积、效率及压缩效果的影响。

    The principle of operation and the main points of design of magnetic pulse compression ( MPC ) are briefed , and the effect of Bs , Br and core loss of magnetic material on the volume , efficiency and compression ratio of the saturable reactor has been discussed .

  9. 利用有限元法计算电机铁芯涡流损耗

    Calculation of Eddy Current Losses in Steel Cores of the Motor Using Finite Element Method

  10. 电力变压器铁芯磁场和损耗分布的三维数值方法与实施第一部分:三相三柱变压器

    Three-Dimensional Computation of Flux and Loss Distributions in Transformer Cores Part 1.three-phase three-limbed power transformers

  11. 磁通按指数函数规律变化时铁芯的涡流损耗

    The Eddy-current Loss in the Iron Core due to the Magnetic Flux Varying Exponentially with Time

  12. 变压器铁芯;磁场;损耗;

    Transformer Cores Magnetic Fields Losses ;

  13. 介绍了近几年FeSiB非晶合金作为配电变压器铁芯材料,在降低铁芯损耗、降低激磁功率、提高工作磁感、改善带材脆性等方面的最新专利信息。

    The latest patents in decreasing iron loss and exciting power , increasing operating induction , and improving ribbon brittleness of Fe-Si-B amorphous alloy used for power distribution transformers in recent years are introduced .

  14. 通过对变压器铁芯和绕组发热机理的深入分析,认为铁芯损耗产生的热量对顶层油温升会产生直接影响,而绕组热点温升的决定因素是绕组的直流电阻损耗和涡流损耗。

    Base on the analysis of the thermal process , it shows that the heat generated by core loss directly related to the top oil temperature , but the determinants of the hot-spot temperature are the resistance loss and the eddy current loss .