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Achieving Ultra-Broad Microwave Absorption Bandwidth Around Millimeter-Wave Atmospheric Window Through an Intentional Manipulation on Multi-Magnetic Resonance Behavior
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作者 Chuyang Liu Lu Xu +6 位作者 Xueyu Xiang Yujing Zhang Li Zhou Bo Ouyang Fan Wu Dong‑Hyun Kim Guangbin Ji 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第9期291-307,共17页
The utilization of electromagnetic waves is rapidly advancing into the millimeter-wave frequency range,posing increasingly severe challenges in terms of electromagnetic pollution prevention and radar stealth.However,e... The utilization of electromagnetic waves is rapidly advancing into the millimeter-wave frequency range,posing increasingly severe challenges in terms of electromagnetic pollution prevention and radar stealth.However,existing millimeter-wave absorbers are still inadequate in addressing these issues due to their monotonous magnetic resonance pattern.In this work,rare-earth La^(3+)and non-magnetic Zr^(4+)ions are simultaneously incorporated into M-type barium ferrite(BaM)to intentionally manipulate the multi-magnetic resonance behavior.By leveraging the contrary impact of La^(3+)and Zr^(4+)ions on magnetocrystalline anisotropy field,the restrictive relationship between intensity and frequency of the multi-magnetic resonance is successfully eliminated.The magnetic resonance peak-differentiating and imitating results confirm that significant multi-magnetic resonance phenomenon emerges around 35 GHz due to the reinforced exchange coupling effect between Fe^(3+)and Fe^(2+)ions.Additionally,Mosbauer spectra analysis,first-principle calculations,and least square fitting collectively identify that additional La^(3+)doping leads to a profound rearrangement of Zr^(4+)occupation and thus makes the portion of polarization/conduction loss increase gradually.As a consequence,the La^(3+)-Zr^(4+)co-doped BaM achieves an ultra-broad bandwidth of 12.5+GHz covering from 27.5 to 40+GHz,which holds remarkable potential for millimeter-wave absorbers around the atmospheric window of 35 GHz. 展开更多
关键词 microwave absorption Ultra-broad bandwidth M-type barium ferrite Magnetocrystalline anisotropy field Multimagnetic resonance
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Fabrication and performance optimization of Mn-Zn ferrite/EP composites as microwave absorbing materials 被引量:2
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作者 王文杰 臧充光 焦清介 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第12期478-482,共5页
Magnesium-substituted Mn0.8Zn0.2Fe2O4 ferrite is synthesized by the sol–gel combustion method using citrate acid as the complex agent. The electromagnetic absorbing behaviors of ferrite/polymer coatings fabricated by... Magnesium-substituted Mn0.8Zn0.2Fe2O4 ferrite is synthesized by the sol–gel combustion method using citrate acid as the complex agent. The electromagnetic absorbing behaviors of ferrite/polymer coatings fabricated by dispersing Mn–Zn ferrite into epoxy resin (EP) are studied. The microstructure and morphology are characterized by X-ray diffraction and scanning electron microscope. Complex permittivity, complex permeability, and reflection loss of ferrite/EP composite coating are investigated in a low frequency range. It is found that the prepared ferrite particles are traditional cubic spinel ferrite particles with an average size of 200 nm. The results reveal that the electromagnetic microwave absorbing properties are significantly influenced by the weight ratio of ferrite to polymer. The composites with a weight ratio of ferrite/polymer being 3:20 have a maximum reflection loss of –16 dB and wide absorbing band. Thus, the Mn–Zn ferrite is the potential candidate in electromagnetic absorbing application in the low frequency range (10 MHz–1 GHz). 展开更多
关键词 ferrite composite material microwave absorber
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Magnetic Nano Cobalt Ferrite Catalyzed Synthesis of 4H-Pyrano[3,2-h]quinoline Derivatives under Microwave Irradiation 被引量:1
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作者 Swathi Bandaru Ravi K. Majji +6 位作者 Satyanarayana Bassa Pandu N. Chilla Ramesh Yellapragada Sruthi Vasamsetty Rajendra K. Jeldi Raghu B. Korupolu Paul D. Sanasi 《Green and Sustainable Chemistry》 2016年第2期101-109,共9页
A microwave irradiated magnetically separable nano cobalt ferrite catalyzed green method for the synthesis of 4-phenyl-4H-pyrano[3,2-h]quinolin-2-amine and 2-amino-4-phenyl-4H-pyrano[3,2-h] quinoline-3-carbonitrile de... A microwave irradiated magnetically separable nano cobalt ferrite catalyzed green method for the synthesis of 4-phenyl-4H-pyrano[3,2-h]quinolin-2-amine and 2-amino-4-phenyl-4H-pyrano[3,2-h] quinoline-3-carbonitrile derivatives through cyclization of aromatic aldehyde, acetonitrile/malononitrile and 8-hydoxyquinoline is developed and presented in this paper. The cubic magnetic cobalt ferrite nano particles were synthesized by sol-gel citrate precursor method and characterized by FT-IR, XRD, SEM and TEM techniques and the structures of the synthesized pyranoquinoline derivatives were assigned by IR, MASS and 1</sup>H NMR techniques. The reaction is carried out in a domestic microwave oven with a heat-resistant microwave safe glass container with a lid. 展开更多
关键词 Synthesis of 4H-Pyrano[3 2-h]quinoline Derivatives microwave Irradiation Nano Cobalt ferrite Catalyst
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Templated synthesis of highly ordered mesoporous cobalt ferrite and its microwave absorption properties
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作者 力国民 王连成 徐耀 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第8期147-153,共7页
Based on the nanocasting strategy, highly ordered mesoporous CoFe2O4 is synthesized via the 'two-solvent' im- pregnation method using a mesoporous SBA-15 template. An ordered two-dimensional (P6mm) structure is pr... Based on the nanocasting strategy, highly ordered mesoporous CoFe2O4 is synthesized via the 'two-solvent' im- pregnation method using a mesoporous SBA-15 template. An ordered two-dimensional (P6mm) structure is preserved for the CoFe2O4/SBA-15 composite after the nanocasting. After the SBA-15 template is dissolved by NaOH solution, a mesoporous structure composed of aligned nanoparticles can be obtained, and the P6mm structure of the parent SBA-15 is preserved. With a high specific surface area (above 90 m2/g) and ferromagnetic behavior, the obtained material shows potential in light weight microwave absorption application. The minimum reflection loss (RL) can reach -18 dB at about 16 GHz with a thickness of 2 mm and the corresponding absorption bandwidth is 4.5 GHz. 展开更多
关键词 two-solvent MESOPOROUS cobalt ferrite microwave absorption
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Synthesis and Microwave Electromagnetic Properties of M-type Hexagonal FerriteBaTiCoFe_(10)O_(19)
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作者 方亮 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2001年第3期23-25,共3页
An M-type hexagonal ferrite BaTiCoFe10 O19 was prepared by solid phase reaction by a partial 2Fe3+→Ti4+ Co2+ substitution. The morphology observation and phase identification of BaTiCoFe10O19 were carried out by SEM ... An M-type hexagonal ferrite BaTiCoFe10 O19 was prepared by solid phase reaction by a partial 2Fe3+→Ti4+ Co2+ substitution. The morphology observation and phase identification of BaTiCoFe10O19 were carried out by SEM and XRD, and its X-ray powder diffraction data was reported in this paper for the first time. Further, the microwave electromagnetic properties of BaTiCoFe10O19 were measured and discussed. 展开更多
关键词 M-type hexagonal ferrite XRD microwave Electromagnetic parameter
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Effect of Sintering Temperature on Microwave Absorbing Behaviour of Mn-Zn Ferrite
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作者 Yongxue GAN Pei YI Changqi CHEN (C.Q.Chen) Dept.of Mater.Sci.Eng.,Beijing University of Aeronautics and Astronautics,Beijing 100083,China 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1993年第5期379-381,共3页
The microwave absorbing behaviour of Mn-Zn ferrite sintered at 1100,1200,1300,1400 and 1500℃ has been investigated.The phase constitution of the ferrite was analyzed by X-ray diffraction.The results show that the fer... The microwave absorbing behaviour of Mn-Zn ferrite sintered at 1100,1200,1300,1400 and 1500℃ has been investigated.The phase constitution of the ferrite was analyzed by X-ray diffraction.The results show that the ferrite sintered at 1 500℃ has better microwave absorbing prop- erty than those prepared at other temperatures,due to the increase of turbulent loss generated by the formation of excessive Fe^(2+) in deoxidizing of Fe_2O_3 at high temperatures. 展开更多
关键词 Mn-Zn ferrite sintering temperature microwave absorbing behaviour
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Microwave Absorbing Properties of W-Type Hexaferrite Ba(MnZn)<sub>x</sub>Co<sub>2(1-x)</sub>Fe<sub>16</sub>O<sub>27</sub>
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作者 Xianming Qin Ying Cheng +2 位作者 Kesheng Zhou Shengxiang Huang Xia Hui 《Journal of Materials Science and Chemical Engineering》 2013年第4期8-13,共6页
MnZn-doped W-type barium cobalt ferrite powder composites of Ba(MnZn)xCo2(1-x)Fe16O27 (x = 0.1, 0.2, 0.3, 0.4, and 0.5) were prepared in a sol-gel process. The microwave absorbing properties of the composites in the r... MnZn-doped W-type barium cobalt ferrite powder composites of Ba(MnZn)xCo2(1-x)Fe16O27 (x = 0.1, 0.2, 0.3, 0.4, and 0.5) were prepared in a sol-gel process. The microwave absorbing properties of the composites in the range of 2 - 18 GHz and their electromagnetic loss mechanisms were studied. The results demonstrated that the synthesized Ba(MnZn)xCo2(1-x)Fe16O27 samples possess a W-type phase of the crystal structure with a hexagonal flaky shape in micro-morphology, and the samples exhibited a soft magnetic trait that enables improving their microwave absorption properties through suitable MnZn doping. For Ba(MnZn)0.4Co1.2Fe16O27 with a thickness of 2.8 mm, the reflection loss peak was -40.7 dB at a frequency of 7.3 GHz, with a bandwidth of 6.6 GHz at a loss of less than -10 dB. The microwave absorption primarily resulted from magnetic losses caused by magnetization relaxation, domain wall resonance, and natural resonance. 展开更多
关键词 Sol-Gel Process W-Type ferrite microwave Absorbing Materials Electromagnetic Loss
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Characterization and Electromagnetic Studies on NiZn and NiCuZn Ferrites Prepared by Microwave Sintering Technique
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作者 Matli Penchal Reddy Il Gon Kim +4 位作者 Dong Sun Yoo Wuppati Madhuri Nagireddy R. Reddy Kota Venkata Siva Kumar Rajuru R. Reddy 《Materials Sciences and Applications》 2012年第9期628-632,共5页
The low-temperature sintered NiZn and NiCuZn ferrites with the composition of Ni0.40Zn0.60Fe2O4 and Ni0.35Cu0.05Zn0.60 Fe2O4 were respectively synthesized by the microwave sintering method. These powders were calcined... The low-temperature sintered NiZn and NiCuZn ferrites with the composition of Ni0.40Zn0.60Fe2O4 and Ni0.35Cu0.05Zn0.60 Fe2O4 were respectively synthesized by the microwave sintering method. These powders were calcined, compacted and sintered at 950℃ for 30 min. X-ray diffraction (XRD) patterns of the samples indicate the formation of single-phase cubic spinel structure. The grain size was estimated from SEM images which increase with CuO addition. The X-ray density is higher than the bulk density in both the ferrites. The temperature variation of the initial permeability of these samples was carried out from 30℃ to 250℃. The NiCuZn ferrite had higher initial permeability than that of the NiZn ferrite, which could be attributed to the microstructure. Saturation magnetization increases from 40 emug/g (NiZn) to 47 emug/g (NiCuZn). The dielectric constant and dielectric loss tangent of NiZn and NiCuZn ferrite samples decreases with increase in frequency exhibiting normal ferrimagnetic behavior. The NiCuZn ferrite had better electro- magnetic properties than the NiZn ferrite. 展开更多
关键词 microwave SINTERING SOFT ferrites Magnetic PROPERTIES DIELECTRIC PROPERTIES
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Microstructure and Microwave Absorption Properties of Y-Substituted Ni-Zn Ferrites
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作者 Na Chen Mingyuan Gu 《Open Journal of Metal》 2012年第2期37-41,共5页
The Yttrium ions substituted Ni-Zn ferrites powders were prepared using a sol-gel technique. The crystal structure, magnetic properties and microwave absorption properties of the Ni-Zn ferrites powders were studied by... The Yttrium ions substituted Ni-Zn ferrites powders were prepared using a sol-gel technique. The crystal structure, magnetic properties and microwave absorption properties of the Ni-Zn ferrites powders were studied by X-ray diffraction, vibrating sample magnetometer and vector network analyzer. The results show that the microwave absorption properties of the Ni-Zn ferrites can be improved effectively with the substitution of Y ions. The minimum reflection loss of the Yttrium ions substituted Ni-Zn powder reaches –34.8 dB, with the –20 dB bandwidth over 2 GHz. The Yttrium substitution can improve microwave absorption properties of Ni-Zn ferrite due to smaller grain dimension and the higher specific 展开更多
关键词 Nick-Zinc ferrite SOL-GEL Preparation Magnetic Properties microwave ABSORPTION
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Fabrication of Bulk, Self-bias Barium Ferrites for Microwave Circulator Applications
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作者 Carla Blengeri Tom Casad +3 位作者 Aditya Abburi David N. Mcllroy Wei Jiang Yeh Jeffrey L. Young 《材料科学与工程(中英文版)》 2011年第3期314-318,共5页
关键词 微波通信系统 钡铁氧体 循环应用 批量制备 自偏压 环形 铁氧体器件 环氧粘合剂
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Efficient microwave absorption achieved through in situ construction of core-shell Co Fe_(2)O_(4)@mesoporous carbon hollow spheres 被引量:6
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作者 Lianggui Ren Yiqun Wang +2 位作者 Xin Zhang Qinchuan He Guanglei Wu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第3期504-514,共11页
Cobalt ferrite(CoFe_(2)O_(4)),with good chemical stability and magnetic loss,can be used to prepare composites with a unique structure and high absorption.In this study,CoFe_(2)O_(4)@mesoporous carbon hollow spheres(M... Cobalt ferrite(CoFe_(2)O_(4)),with good chemical stability and magnetic loss,can be used to prepare composites with a unique structure and high absorption.In this study,CoFe_(2)O_(4)@mesoporous carbon hollow spheres(MCHS)with a core-shell structure were prepared by introducing CoFe_(2)O_(4)magnetic particles into hollow mesoporous carbon through a simple in situ method.Then,the microwave absorption performance of the CoFe_(2)O_(4)@MCHS composites was investigated.Magnetic and dielectric losses can be effectively coordinated by constructing the porous structure and adjusting the ratio of MCHS and CoFe_(2)O_(4).Results show that the impedance matching and absorption properties of the Co Fe_(2)O_(4)@MCHS composites can be altered by tweaking the mass ratio of MCHS and CoFe_(2)O_(4).The minimum reflection loss of the Co Fe_(2)O_(4)@MCHS composites reaches-29.7 dB at 5.8 GHz.In addition,the effective absorption bandwidth is 3.7 GHz,with the thickness being 2.5 mm.The boosted microwave absorption can be ascribed to the porous core-shell structure and introduction of magnetic particles.The coordination between the microporous morphology and the core-shell structure is conducive to improving the attenuation coefficient and achieving good impedance matching.The porous core-shell structure provides large solid-void and CoFe_(2)O_(4)-C interfaces to induce interfacial polarization and extend the electromagnetic waves’multiple scattering and reflection.Furthermore,natural resonance,exchange resonance,and eddy current loss work together for the magnetic loss.This method provides a practical solution to prepare core-shell structure microwave absorbents. 展开更多
关键词 porous core-shell structure microwave absorption interface polarization ferrite structure-controllable
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Effect of Sintering Temperature and Zinc Content on Some Properties of Li-Zn Ferrites 被引量:2
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作者 A.M.El-Saird (Inorganic Chemistry Dept., National Research Centre, Dokki, Cairo, Egypt)S.B.Hanna(Refractories and Building Materials Dept., National Research Centre, Dokki, Cairo, Egypt) 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1996年第5期329-334,共6页
Li-Zn mixed ferrites with composition formula ZnxLi0.5-x/2Fe2.5-x/2O4 (0.2≤x≤0.8) were prepared by the usual ceramic method in 1000~1150℃. The effects of Zn substitution and sintering temperature on the formation, ... Li-Zn mixed ferrites with composition formula ZnxLi0.5-x/2Fe2.5-x/2O4 (0.2≤x≤0.8) were prepared by the usual ceramic method in 1000~1150℃. The effects of Zn substitution and sintering temperature on the formation, densification, microstructure and a.c. electrical conductivity have been studied. Under the effect of changing the firing temperature and Zn content, high sintered Li-Zn ferrite bodies are achieved. More fine structure bodies having high electrical resistance are obtained at high Zn content 展开更多
关键词 LI BDH Effect of Sintering Temperature and Zinc Content on Some Properties of li-zn ferrites ZN
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CNTs/Ferrite/PVDF复合材料的电磁波吸收特性 被引量:6
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作者 杨雪梅 王晨 李明 《材料科学与工程学报》 CAS CSCD 北大核心 2008年第2期213-216,共4页
本文采用水热合成法在碳纳米管(CNTs)表面包覆了一层组分为Ni0.2Cu0.2Zn0.6Fe1.96O4的尖晶石型纳米铁氧体(Ferrite)颗粒,并应用共混法制备了碳纳米管/铁氧体/聚偏二氟乙烯(PVDF)三相复合材料。使用矢量网络分析仪在8-18GHz的频率范围内... 本文采用水热合成法在碳纳米管(CNTs)表面包覆了一层组分为Ni0.2Cu0.2Zn0.6Fe1.96O4的尖晶石型纳米铁氧体(Ferrite)颗粒,并应用共混法制备了碳纳米管/铁氧体/聚偏二氟乙烯(PVDF)三相复合材料。使用矢量网络分析仪在8-18GHz的频率范围内对复合材料的复介电常数和复磁导率进行了测试,并由此计算出复合材料的反射损失率。测试结果表明,复合材料在宽约为几个GHz的频段内反射损失超过了10dB,碳纳米管/铁氧体/聚偏二氟乙烯复合材料呈现出非常良好的电磁波吸收性能。 展开更多
关键词 复合材料 纳米铁氧体 水热合成 电磁波吸收 碳纳米管
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Enhancement of microwave absorption of nanocomposite BaFe_(12)O_(19)/α-Fe microfibers 被引量:2
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作者 杨新春 刘瑞江 +3 位作者 沈湘黔 宋福展 景茂祥 孟献丰 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第5期543-549,共7页
Nanocomposite BaFe12019/a-Fe microfibers with diameters of about 1-5 μm are prepared by the organic gel- thermal selective reduction process. The binary phase of BaFe12019 and a-Fe is formed after reduction of the pr... Nanocomposite BaFe12019/a-Fe microfibers with diameters of about 1-5 μm are prepared by the organic gel- thermal selective reduction process. The binary phase of BaFe12019 and a-Fe is formed after reduction of the precursor BaFel2019/a-Fe203 microfibers at 350 ℃ for 1 h. These nanocomposite microfibers are fabricated from a-Fe (16-22 nm in diameter) and BaFe12019 particles (36--42 nm in diameter) and basically exhibit a single-phase-like magnetization be- havior, with a high saturation magnetization and coercive force arising from the exchange--coupling interactions of soft a-Fe and hard BaFe12019. The microwave absorption characteristics in a 2-18 GHz frequency range of the nanocomposite BaFe12O19/a-Fe microfibers are mainly influenced by their mass ratio of a-Fe/BaFe12019 and specimen thickness. It is found that the nanocomposite BaFelzO19/a-Fe microfibers with a mass ratio of 1:6 and specimen thickness of 2.5 mm show an optimal reflection loss (RL) of -29.7 dB at 13.5 GHz and the bandwidth with RL exceeding -10 dB covers the whole Ku-band (12.4-18.0 GHz). This enhancement of microwave absorption can be attributed to the heterostruc- ture of soft, nano, conducting a-Fe particles embedded in hard, nano, semiconducting barium ferrite, which improves the dipolar polarization, interfacial polarization, exchange--coupling interaction, and anisotropic energy in the nanocomposite BaFe12O19/a-Fe microfibers. 展开更多
关键词 barium ferrite NANOCOMPOSITES MICROFIBERS microwave absorber
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Effects of Heat Treatment Temperature and Time on Structure and Static Magnetic Property of W-type Ferrite Hollow Microspheres
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作者 任平 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2007年第1期168-170,共3页
Hollow spheres of hexagonal ferrite BaCozFelrO27 were fabricated through a spray pyrolysis technique using co-precipitation ferrite powder precursor as materials, followed by calcinations in an air atmosphere. The pha... Hollow spheres of hexagonal ferrite BaCozFelrO27 were fabricated through a spray pyrolysis technique using co-precipitation ferrite powder precursor as materials, followed by calcinations in an air atmosphere. The phase composition, micro-morphology, and static magnetic property of the particles were measured by XRD, SEM, and VSM. The results indicate that the method for preparation of ferrite hollow microspheres (FHM) results in a broad particles size distribution. The density of FHM decreased from 5.31 g/ cm^3 to 2.31 g/cm^3. When the heating rate was 5℃/min, and temperature was 1 200℃ for 4 hours, pure W-type ferrites were formed. With the heat treatment temperature and time increasing, the crystal structure becomes perfect, the saturation magnetization is increased and the coercive force is decreased. 展开更多
关键词 microwave absorber ferrite hollow microspheres spray pyrolysis
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V_(2)O_(5)-Al_(2)O_(3)助烧剂对低温烧结Li-Zn微波铁氧体性能的影响
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作者 王晓艺 王希 +2 位作者 王俊 程德强 王悦 《物理学报》 SCIE EI CAS CSCD 北大核心 2023年第3期252-258,共7页
随着现代无线通信技术的进步,微波通信器件向小型化、一体化方向发展,其中低温共烧陶瓷/铁氧体技术是关键所在.针对适用于雷达移相器中的Li-Zn微波铁氧体,本文通过加入V_(2)O_(5)-Al_(2)O_(3)(VA)助烧剂实现低温烧结(低于950℃),并研究... 随着现代无线通信技术的进步,微波通信器件向小型化、一体化方向发展,其中低温共烧陶瓷/铁氧体技术是关键所在.针对适用于雷达移相器中的Li-Zn微波铁氧体,本文通过加入V_(2)O_(5)-Al_(2)O_(3)(VA)助烧剂实现低温烧结(低于950℃),并研究助烧剂添加量及烧结温度对于材料晶体结构、微观形貌以及磁性能(饱和磁感应强度、矫顽力、铁磁共振线宽等)的影响.VA助烧剂的参与可以在降低烧结温度的同时维持Li-Zn微波铁氧体的尖晶石晶体结构,并能促进晶粒的生长,Li-Zn铁氧体的平均晶粒尺寸由最初的0.92μm增至9.74μm.在Li-Zn铁氧体烧结过程中,VA助烧剂中的V_(2)O_(5)由于具有较低的熔点会先融化形成液相,促进晶粒的生长;同时具有较高熔点的Al_(2)O_(3)可以抑制晶粒的过大增长,使晶粒均匀化.未添加助烧剂与添加VA助烧剂(质量分数为0.18%)制备的铁氧体相比,样品的饱和磁感应强度(B_(s))由144 mT增至281 mT;矩形比(M_(r)/M_(s))由0.57升至0.78;矫顽力(H_(c))由705 A/m降低至208 A/m;铁磁共振线宽(ΔH)由648 Oe减至247 Oe(1 Oe=10^(3)/(4π)A/m).总体来说,VA助烧剂可以有效提升Li-Zn微波铁氧体的多项性能,对低温共烧陶瓷/铁氧体技术的发展具有积极意义. 展开更多
关键词 低温共烧陶瓷 移相器 li-zn微波铁氧体 V_(2)O_(5)-Al_(2)O_(3)助烧剂
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超声-微波复合场下从铟铁酸锌中强化提铟
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作者 申星梅 彭倩柔 +3 位作者 李乐 朱宗建 曹发斌 武杏荣 《矿冶工程》 CAS 北大核心 2024年第2期88-91,95,共5页
在超声-微波场作用下,对铟铁酸锌(ZnFe_(2-x)In_(x)O_(4))中铟进行强化碱浸。结果表明,铟不能在ZnFe_(2-x)In_(x)O_(4)八面体晶格中大量固溶,最大固溶量约4.0%(质量分数,对应x=0.088);外场对铟浸出的促进作用大小顺序为:叠加超声-微波... 在超声-微波场作用下,对铟铁酸锌(ZnFe_(2-x)In_(x)O_(4))中铟进行强化碱浸。结果表明,铟不能在ZnFe_(2-x)In_(x)O_(4)八面体晶格中大量固溶,最大固溶量约4.0%(质量分数,对应x=0.088);外场对铟浸出的促进作用大小顺序为:叠加超声-微波复合场>微波单场>顺序复合场>超声单场;在叠加超声-微波复合场下铟浸出率达56.6%,而超声单场下铟浸出率为30.2%;外场作用下碱浸,将In^(3+)从晶格中释放出来,不会使铁酸锌的八面体晶格坍塌;叠加超声-微波复合场下浸出的In^(3+)较多,样品的晶格常数下降较大,衍射峰强度降低与右移现象明显。 展开更多
关键词 铟铁酸锌 复合场 超声 微波 碱浸
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机械活化微波协同强化铟铁酸锌中铟的浸出
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作者 申星梅 李乐 +3 位作者 彭倩柔 沈成义 曹发斌 武杏荣 《安徽工业大学学报(自然科学版)》 CAS 2024年第3期242-247,共6页
针对常规酸浸提铟浸出率较低的问题,采用机械活化和微波协同强化的方法对铟铁酸锌中的铟进行酸浸提取,分析机械活化前后铟铁酸锌的晶格结构变化,研究不同工艺因素对铟铁酸锌中铟浸出行为的影响规律,并对机械活化微波协同下的铟浸出过程... 针对常规酸浸提铟浸出率较低的问题,采用机械活化和微波协同强化的方法对铟铁酸锌中的铟进行酸浸提取,分析机械活化前后铟铁酸锌的晶格结构变化,研究不同工艺因素对铟铁酸锌中铟浸出行为的影响规律,并对机械活化微波协同下的铟浸出过程进行动力学分析。结果表明:机械活化后,铟铁酸锌的晶体结构被破坏,衍射峰强度降低、峰型宽化,晶粒尺寸减小,晶格应变增加;常规条件下,铟浸出率在低温低酸时最高仅59.2%,高温高酸时达92.0%(150 min);微波、机械活化分别单独及协同作用时,低温低酸下铟浸出的促进不明显,而高温高酸下浸出率均达到100%,但时间分别逐渐减少为120,90,60 min,机械活化与微波的协同作用可显著提升铟的浸出效率;表面化学反应控制模型比较适用于机械活化微波协同下铟浸出的动力学过程。 展开更多
关键词 铟铁酸锌 酸浸 机械活化 微波 协同强化
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硫氧镁泡沫水泥吸波材料的制备及性能
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作者 崔宝栋 刘军 +2 位作者 李思琪 李瑶 邓永刚 《建筑材料学报》 EI CAS CSCD 北大核心 2024年第4期291-298,共8页
采用具有优良吸波性能的铁氧体和碳化硅来改性硫氧镁水泥泡沫板,研究了铁氧体和碳化硅掺量对改性硫氧镁水泥吸波性能的影响,并通过X射线衍射及扫描电子显微镜分析了其影响机理.结果表明:在3.95~18.00 GHz目标频段下,掺加5%碳化硅改性硫... 采用具有优良吸波性能的铁氧体和碳化硅来改性硫氧镁水泥泡沫板,研究了铁氧体和碳化硅掺量对改性硫氧镁水泥吸波性能的影响,并通过X射线衍射及扫描电子显微镜分析了其影响机理.结果表明:在3.95~18.00 GHz目标频段下,掺加5%碳化硅改性硫氧镁水泥的最低反射率出现在8.40 GHz处,为-15.9 dB;掺加15%铁氧体改性硫氧镁水泥的最低反射率出现在7.04 GHz处,为-17.3 dB;铁氧体和碳化硅按照一定比例掺加到硫氧镁水泥基体中,均表现出良好的吸波性能. 展开更多
关键词 硫氧镁水泥 碳化硅 铁氧体 吸波性能
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石墨烯/钡铁氧体复合材料的制备及微波吸收性能的综合实验设计 被引量:1
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作者 黄凯 廖卫华 +3 位作者 徐雯雯 李平 余江应 徐金荣 《大学物理实验》 2024年第1期41-44,共4页
电磁波污染已经严重威胁到信息安全和人体的健康,微波吸收材料被认为是解决电磁波污染问题最可行的措施之一。通过水热法获取氧化石墨烯/钡铁氧体纳米复合物,利用X-射线衍射仪、扫描电子显微镜、振动样品磁强计和矢量网络分析仪等分析... 电磁波污染已经严重威胁到信息安全和人体的健康,微波吸收材料被认为是解决电磁波污染问题最可行的措施之一。通过水热法获取氧化石墨烯/钡铁氧体纳米复合物,利用X-射线衍射仪、扫描电子显微镜、振动样品磁强计和矢量网络分析仪等分析技术对所制备的材料进行了表征。结果显示,当复合材料的厚度为2 mm时,其有效带宽可达6.8 GHz,当频率在12.64 GHz时,反射损耗最小为-41.66 dB。通过此综合实验设计,从实验的角度对纳米复合材料吸波机理进行了研究,有助于提高学生的科研兴趣,启发学生创新思维。 展开更多
关键词 石墨烯/钡铁氧体 吸波 综合实验
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