3;軟磁合金;FeSiAl;空心微珠;低頻吸波;自反應(yīng)淬熄法"/>

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KNO3對FeSiAl軟磁合金空心微珠制備及低頻吸波性能的影響
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軍械工程學(xué)院,軍械工程學(xué)院,軍械工程學(xué)院,軍械工程學(xué)院

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TB333

基金項目:

國家自然科學(xué)基金資助(No: 51172282);河北省自然科學(xué)基金(No: E2015506011);武器裝備預(yù)研基金(9140A12040211JB34)


Effect of KNO3 on the preparation and microwave absorption properties in low frequency of FeSiAl magnetically soft alloy hollow microspheres
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Ordnance Engineering College,Advanced Material Institute,Ordnance Engineering College,Advanced Material Institute,Ordnance Engineering College,Scientific Department,Ordnance Engineering College,Advanced Material Institute

Fund Project:

The National Natural Science Foundation of China (General Program, Key Program, Major Research Plan),Hebei Natural Science Fund of China, Pre-research of the Weapons Equipment

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    摘要:

    為了獲得輕質(zhì)、低頻、高效吸波劑,本文采用自反應(yīng)淬熄法,分別以Fe+Si+Al、Fe+Si+Al+KNO3為反應(yīng)體系制備了FeSiAl軟磁合金空心微珠,通過SEM、XRD、矢網(wǎng)分析儀等手段研究了KNO3對其密度、形貌、相組成和低頻吸波性能的影響。結(jié)果表明,未加KNO3時,反應(yīng)難以進(jìn)行,淬熄產(chǎn)物由球形顆粒、類球形顆粒、不規(guī)則顆粒和片狀顆粒組成,物相主要為Fe、Si、Al及部分Fe0.9Si0.1,未生成FeSiAl合金,基本無吸波性能;添加KNO3后,反應(yīng)體系的淬熄產(chǎn)物主要為空心微珠,粒徑分布均勻,物相由Fe3Si0.5Al0.5、Fe3Si0.7Al0.3、Fe0.9Si0.1和Fe組成,獲得了FeSiAl合金,在5 mm厚度條件下,吸波試樣最低反射率達(dá)-22.1 dB,吸收峰值對應(yīng)頻率為7.0 GHz,低于-10 dB的有效吸收頻帶為5.3-8.5 GHz,帶寬達(dá)3.2 GHz。KNO3分解反應(yīng)所產(chǎn)生的高放熱量和大量氣體是促使反應(yīng)溫度升高、反應(yīng)產(chǎn)物熔融、目標(biāo)產(chǎn)物形成、成球率和空心率提高及低頻吸波性能顯著改善的根本原因。和機(jī)械合金化法制備的片狀FeSiAl軟磁合金相比,自反應(yīng)淬熄法制備的FeSiAl空心微珠的低頻吸波頻帶有效拓寬,同時材料的密度降低了38 %,有效實現(xiàn)了新型低頻吸波料“薄、寬、輕、強(qiáng)”的特點。

    Abstract:

    FeSiAl magnetically soft alloy hollow microspheres were prepared by self-reactive quenching technology based on Fe+Si+Al and Fe+Si+Al+KNO3 reactive systems, respectively, in order to obtain absorbents with light weight, low frequency and high efficiency. Effect of reaction heat-releasing on their density, morphology, phase and microwave absorption properties in low frequency band was studied by SEM, XRD and vector network analyzer. The results show that, chemical reactions can not happen without KNO3. In addition, the quenching products consist of spherical particles, near-spherical particles, irregular particles and lamellar particles. The phase components are Fe, Si, Al and Fe0.9Si0.1. FeSiAl alloys are not formed and their microwave absorption properties do not exist basically. After adding KNO3, the quenching products mainly consist of hollow microspheres with uniform particle size distribution. The phases are made up of Fe3Si0.5Al0.5, Fe3Si0.7Al0.3, Fe0.9Si0.1 and Fe. FeSiAl alloys are obtained. The minimum reflectivity of the absorbent sample at 5 mm is -22.1 dB, and the corresponding frequency is 7.0 GHz. The effective absorption frequency band lower than -10 dB is 5.3-8.5 GHz, with the bandwidth of 3.2 GHz. The high heat-releasing and large amount of gas from the decomposition of KNO3 makes the reaction temperature be higher. In addition, the target products are obtained and then melt. Moreover, the spherical rate and hollow rate are both improved. These are the reasons for obvious improvement of microwave absorption properties in low frequency. Compared with flake FeSiAl magnetically soft alloy prepared by mechanical alloying method, FeSiAl hollow microspheres prepared by self-reactive quenching technology have a broader absorption frequency band in low frequency. In addition, the density of the material has decreased by 38 %. So the characteristics of new absorbents in low frequency including “thin, broad, light and strong”are effectively realized.

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王建江,蔡旭東,溫晉華,許寶才. KNO3對FeSiAl軟磁合金空心微珠制備及低頻吸波性能的影響[J].稀有金屬材料與工程,2018,47(10):3072~3079.[Wang Jianjiang, Cai Xudong, Wen Jinhua, Xu Baocai. Effect of KNO3 on the preparation and microwave absorption properties in low frequency of FeSiAl magnetically soft alloy hollow microspheres[J]. Rare Metal Materials and Engineering,2018,47(10):3072~3079.]
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  • 收稿日期:2016-11-29
  • 最后修改日期:2018-08-08
  • 錄用日期:2017-02-21
  • 在線發(fā)布日期: 2018-11-08
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