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鐵磁材料低溫磁性能測量研究
作者:
作者單位:

1.中國科學院應用超導重點實驗室;2.中國科學院大學;3.中國科學院物理研究所

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中圖分類號:

TM27

基金項目:

國家自然科學基金資助(項目號51277172),創(chuàng)新研究群體科學基金(項目號51721005)


Measurement of magnetic properties of ferromagnetic materials at low temperature
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Affiliation:

1.Applied Superconductivity Key Lab,Chinese Academy of Sciences;2.University of the Chinese Academy of Sciences

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    摘要:

    本文采用模擬沖擊法研究了鐵磁材料在300K和77K環(huán)境下的磁性能。以電工領域常用的鐵磁材料DT4、1J22、2Cr13和非晶FeSiB為研究對象,研究結果表明,在液氮環(huán)境下,DT4、1J22、2Cr13和非晶FeSiB的飽和磁感應強度均略有增加,其中非晶FeSiB的飽和磁感應強度增幅最大為5.3%;DT4、非晶FeSiB和2Cr13的矯頑力增幅較大,DT4的矯頑力增幅為106%,而1J22的矯頑力減小了1.7%;頻率為50Hz時,在液氮環(huán)境下DT4的損耗相比常溫急劇增加,增幅達263.2%,非晶FeSiB和2Cr13的損耗相比常溫略有增加,而1J22的損耗相比常溫變化不大。最后,以超導線圈激磁的強磁場磁控濺射陰極的磁場計算為例,在鐵芯結構相同的情況下,采用1J22作鐵芯的磁控陰極靶面磁場水平分量的最大值為2343.8Gs,相比2Cr13作鐵芯磁場水平分量最大值增加了14.8%。本文有關鐵磁材料的低溫磁性能研究可以為超導電磁裝置的鐵芯磁路設計提供依據。

    Abstract:

    The magnetic properties and loss characteristics of ferromagnetic materials in 300K and 77K environments were investigated by means of simulated impact method. In ferromagnetic materials DT4, 1J22, 2Cr13 and amorphous FeSiB alloy as the research sample, the results of the study show that in nitrogen environment, saturation magnetic induction intension of DT4, 1J22, 2Cr13 and amorphous FeSiB were slightly increased, the saturation magnetic induction intension of FeSiB increases to a maximum of 5.3%; The coercive force of DT4, amorphous FeSiB and 2Cr13 increases greatly, and the coercive force of DT4 increases by 106%, while the 1J22 decreases by 1.7%; When the frequency is 50Hz, the loss of DT4 in liquid nitrogen environment increases sharply compared with that at normal temperature. The loss of amorphous FeSiB and 2Cr13 increases slightly compared with the normal temperature, while the loss of 1J22 varies little. Finally, the magnetic field calculation of the magnetron sputtering cathode with superconducting coil excitation is taken as an example. Under the same structure of iron core, the maximum value of the horizontal component of magnetic field is 2284Gs with 1J22 as the core of the magnetron sputtering cathode. Compared with 2Cr13 as the iron core, the maximum value of the horizontal component of magnetic field increases by 9.2%. The study of low temperature magnetic properties of ferromagnetic materials can provide reference for the design of magnetic circuit of superconducting electromagnetic equipment.

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汪天龍,邱清泉,靖立偉,M. R. Ci,丁大偉.鐵磁材料低溫磁性能測量研究[J].稀有金屬材料與工程,2019,47(3):898~904.[Tianlong Wang, Qingquan Qiu, Liwei Jing, M. C. Ri, Dawei Ding. Measurement of magnetic properties of ferromagnetic materials at low temperature[J]. Rare Metal Materials and Engineering,2019,47(3):898~904.]
DOI:10.12442/j. issn.1002-185X.20170759

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  • 收稿日期:2017-08-25
  • 最后修改日期:2018-02-27
  • 錄用日期:2018-04-04
  • 在線發(fā)布日期: 2019-04-10
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