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Effect of In doping on the evolution of microstructure,magnetic properties and corrosion resistance of NdFeB magnets
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作者 李豫豪 范晓东 +8 位作者 贾智 范璐 丁广飞 刘新才 郭帅 郑波 曹帅 陈仁杰 闫阿儒 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第3期623-629,共7页
The grain boundary phase affects the magnetic properties and corrosion resistance of sintered NdFeB magnets.In this work,a small amount of In was added to NdFeB magnets by induction melting to systematically investiga... The grain boundary phase affects the magnetic properties and corrosion resistance of sintered NdFeB magnets.In this work,a small amount of In was added to NdFeB magnets by induction melting to systematically investigate its effect on the evolution of the microstructure,magnetic properties and corrosion resistance of NdFeB magnets.Microstructural analysis illustrated that minor In addition generated more grain boundary phases and an abundant amorphous phase at the triple-junction grain boundary.While the addition of In failed to enhance the magnetic isolation effect between adjacent matrix grains,its incorporation fortuitously elevated the electrochemical potential of the In-containing magnets.Besides,during corrosion,an In-rich precipitate phase formed,hindering the ingress of the corrosive medium into the magnet.Consequently,this significantly bolstered the corrosion resistance of the sintered NdFeB magnets.The phase formation,magnetic properties and corrosion resistance of In-doped NdFeB magnets are detailed in this work,which provides new prospects for the preparation of high-performance sintered NdFeB magnets. 展开更多
关键词 In-doping NdFeB magnets magnetic properties corrosion resistance
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聚苯胺薄膜在电量可视化超级电容器中的应用——推荐一个综合化学实验 被引量:1
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作者 刘新才 董彬彬 晁单明 《大学化学》 CAS 2021年第2期168-174,共7页
介绍一个研究探索型大学化学综合性实验——聚苯胺薄膜在电量可视化超级电容器中的应用。内容包括聚苯胺的电化学合成,电致变色性能测试,超级电容器器件制备,性能测试及电量可视化研究。通过本实验的实践,使学生在掌握实验理论和实验技... 介绍一个研究探索型大学化学综合性实验——聚苯胺薄膜在电量可视化超级电容器中的应用。内容包括聚苯胺的电化学合成,电致变色性能测试,超级电容器器件制备,性能测试及电量可视化研究。通过本实验的实践,使学生在掌握实验理论和实验技能的基础上,进一步提高独立实验能力和创新意识。本实验的开展还可以使学生接触到科研的前沿领域,激发学生对科学研究的兴趣,培养学生的科研探究能力。 展开更多
关键词 聚苯胺 超级电容器 电化学聚合 电致变色 综合化学实验
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Recent progress of grain boundary diffusion process for hot-deformed Nd-Fe-B magnets 被引量:1
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作者 Min Zhao Na liu +8 位作者 Xu Tang Renjie Chen Jinyun Ju Wenzong Yin Yeyuan Du Aru Yan xincai liu Jing Pan Zhiyi Xu 《Journal of Rare Earths》 SCIE EI CAS CSCD 2023年第4期477-488,共12页
Grain boundary diffusion process(GBDP)was first proposed for sintered Nd-Fe-B magnets to achieve the high utilization efficiency of heavy rare earth elements.Recent success of fabricating high performance nanocomposit... Grain boundary diffusion process(GBDP)was first proposed for sintered Nd-Fe-B magnets to achieve the high utilization efficiency of heavy rare earth elements.Recent success of fabricating high performance nanocomposite magnets by GBDP indicates that this method also exerts huge applicable potential on hot-deformed Nd-Fe-B magnets.In this review,the development and magnetic property enhancement mechanisms of different diffusion methods proposed on hot-deformed magnets were thoroughly elucidated.Moreover,the improve room for further property enhancement and the accompanying problems of GBDP on hot-deformed magnets are also discussed in this article. 展开更多
关键词 Hot-deformed Nd-Fe-B magnets Grain boundary diffusion process Magnetic properties Micromagnetic simulations Rare earths
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Influence of Substrate Negative Bias on Structure and Properties of TiN Coatings Prepared by Hybrid HIPIMS Method 被引量:10
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作者 Zhenyu Wang Dong Zhang +2 位作者 Peiling Ke xincai liu Aiying Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2015年第1期37-42,共6页
TiN coatings were deposited using a hybrid home-made high power impulse magnetron sputtering(HIPIMS)technique at room temperature.The effects of substrate negative bias voltage on the deposition rate,composition,cryst... TiN coatings were deposited using a hybrid home-made high power impulse magnetron sputtering(HIPIMS)technique at room temperature.The effects of substrate negative bias voltage on the deposition rate,composition,crystal structure,surface morphology,microstructure and mechanical properties were investigated.The results revealed that with the increase in bias voltage from-50 to-400 V,TiN coatings exhibited a trend of densification and the crystal structure gradually evolved from(111) orientation to(200)orientation.The growth rate decreased from about 12.2 nm to 7.8 nm per minute with the coating densification.When the bias voltage was-300 V,the minimum surface roughness value of 10.1 nm was obtained,and the hardness and Young’s modulus of TiN coatings reached the maximum value of 17.4 GPa and 263.8 GPa,respectively.Meanwhile,the highest adhesion of 59 N was obtained between coating and substrate. 展开更多
关键词 TIN Hybrid HIPIMS Substrate bias Microstructure Me
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Ultrathin, flexible, and high-strength Ni/Cu/metallic glass/Cu/Ni composite with alternate magneto-electric structures for electromagnetic shielding 被引量:5
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作者 Zenan Ma Jiawei Li +6 位作者 Jijun Zhang Aina He Yaqiang Dong Guoguo Tan Mingqiang Ning Qikui Man xincai liu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第22期43-50,共8页
Electromagnetic interference(EMI)shielding materials with ultrathin,flexible,superior mechanical and thermal management properties are highly desirable for smart and wearable electronics.Here,ultrathin and flexible Ni... Electromagnetic interference(EMI)shielding materials with ultrathin,flexible,superior mechanical and thermal management properties are highly desirable for smart and wearable electronics.Here,ultrathin and flexible Ni/Cu/metallic glass/Cu/Ni(Ni/Cu/MG)multilayer composite with alternate magnetic and electrical structures was designed via facial electroless plating of Cu and Ni on an Fe-based metallic glass.The resultant 0.02 mm-thick Ni/Cu/MG composite displays a superior EMI shielding effectiveness(EMI SE)of 35 dB and a great EMI SE/t of 1750 dB/mm,which is greater than those of composites with monotonous multilayer or homogeneous structures.The improved EMI SE originates from the massive ohmic losses,the enhanced internal reflection/absorption,and the abundant interfacial polarization loss.Particularly,Ni/Cu/MG exhibits a high tensile strength of up to 1.2 GPa and outstanding mechanical stability,enabling the EMI SE remains unchanged after 10,000 times of bending.Moreover,Ni/Cu/MG has excellent Joule heating characteristics and thermal stability,which is very suitable for heating components of wearable hyperthermia devices. 展开更多
关键词 Electromagnetic shielding Thermal management Mechanical properties Fe-based metallic glasses Alternate magnetic and electrical structures
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