首页> 外文会议>Intersociety energy conversion engineering conference;IECEC >EFFECTS OF TEMPERATURE, FREQUENCY, FLUX DENSITY, AND EXCITATION WAVEFORM ON THE CORE LOSS AND DYNAMIC B-H LOOPS OF SUPERMALLOY
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EFFECTS OF TEMPERATURE, FREQUENCY, FLUX DENSITY, AND EXCITATION WAVEFORM ON THE CORE LOSS AND DYNAMIC B-H LOOPS OF SUPERMALLOY

机译:温度,频率,通量密度和激发波形对超级磁芯的磁损耗和动态B-H环的影响

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The availability of experimental data which characterize the performance of soft magnetic materials for the combined conditions of temperature and frequency over a wide flux density range for different types of excitation is almost nonexistent. An experimental investigation of an 80-20 Ni-Fe alloy (Supermalloy) was conducted over the temperature (T) range of 23 to 300 C, frequency (f) range of 1 to 50 kHz, and maximum flux densities (B_M) from 0.1 T up to 0.7 T for both sine and square wave voltage excitation. The investigation focused on the effects of B_M, f, T, and excitation waveform on the specific core loss (SCL) and dynamic B-H loops. The results show that the ratio (R) of sine to square wave excitation specific core loss was always greater than unity for a given f and T and identical values of B_M. The values of R ranged from 1.07 to 1.34. The classical theory of core loss separation into a hysteresis and eddy current loss component was used to theoretically determine the lower and upper bounds on R, against which the experimental R-values were compared. The experimental R-values were also used to make a comparison of the core loss of a sine and square wave voltage driven transformer.
机译:几乎不存在表征软磁材料在宽磁通密度范围内的温度和频率组合条件下的性能的实验数据,几乎不存在这种类型的激励。在温度(T)范围为23至300℃,频率(f)范围为1至50 kHz,最大磁通密度(B_M)为0.1的情况下,对80-20 Ni-Fe合金(超级合金)进行了实验研究。对于正弦波和方波电压激励,T均高达0.7T。研究集中在B_M,f,T和激励波形对特定铁损(SCL)和动态B-H环路的影响上。结果表明,对于给定的f和T以及相同的B_M值,正弦与方波激励的特定磁芯损耗之比(R)始终大于1。 R的值在1.07至1.34的范围内。将磁芯损耗分离为磁滞和涡流损耗分量的经典理论用于理论上确定R的上下限,并与之比较实验R值。实验R值还用于比较正弦波和方波电压驱动变压器的铁损。

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