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梯度多层BST薄膜介电性能研究 被引量:3
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作者 张慧 廖家轩 +1 位作者 田忠 许江 《电子元件与材料》 CAS CSCD 北大核心 2006年第10期10-12,共3页
成分梯度多层钛酸锶钡薄膜具有较好的综合介电性能,包括适中的介电常数、高的介电调谐率、低的介质损耗及低的介电温度系数等,日益成为微波调制器件如移相器、滤波器、谐振器等的重要候选薄膜材料。就国内外近年来取得的重要成果进行了... 成分梯度多层钛酸锶钡薄膜具有较好的综合介电性能,包括适中的介电常数、高的介电调谐率、低的介质损耗及低的介电温度系数等,日益成为微波调制器件如移相器、滤波器、谐振器等的重要候选薄膜材料。就国内外近年来取得的重要成果进行了综述,对今后成分梯度多层BST薄膜的研究前景及方向进行了展望。 展开更多
关键词 无机非金属材料 成分梯度 综述 多层膜 钛酸锶钡薄膜 介电性能 微波调制器件
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成分调制的La_(1-x)Sr_xMnO_3复合隧道结 被引量:5
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作者 于敦波 丰家峰 +4 位作者 杜永胜 韩秀峰 严辉 应启明 张国成 《物理学报》 SCIE EI CAS CSCD 北大核心 2005年第10期4903-4908,共6页
利用磁控溅射和Sr成分的调制以及原位热处理方法,在10mm×10mm大小的(001)取向SrTiO3单晶衬底上制备出三明治结构为La0·7Sr0·3MnO3(100nm)/La0·96Sr0·04MnO3(5nm)/La0·7Sr0·3MnO3(100nm)的隧道结外... 利用磁控溅射和Sr成分的调制以及原位热处理方法,在10mm×10mm大小的(001)取向SrTiO3单晶衬底上制备出三明治结构为La0·7Sr0·3MnO3(100nm)/La0·96Sr0·04MnO3(5nm)/La0·7Sr0·3MnO3(100nm)的隧道结外延薄膜,然后再次利用磁控溅射方法,在三层单晶膜上方继续沉积Ir22Mn78(15nm)/Ni79Fe21(5nm)/Pt(20nm)等金属三层膜.最后利用深紫外曝光和Ar离子束刻蚀等微加工技术,制备出长短轴分别为12和6μm或者8和4μm大小的椭圆形La1-xSrxMnO3成分调制的复合磁性隧道结.在4·2K和外加磁场8T的测试下,La1-xSrxMnO3成分调制的复合磁性隧道结其隧穿磁电阻(TMR)比值达到3270%,直接从实验上证实了铁磁性La0·7Sr0·3MnO3金属氧化物的自旋极化率(97%)可接近100%,具有很好的半金属性质. 展开更多
关键词 LA1-XSRXMNO3 半金属 成分调制 复合磁性隧道结 隧穿磁电阻 磁性隧道结 调制 成分 复合 金属氧化物
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Effect of Y_2O_3-MgO Addition on Heterogeneous Precipitation-Thermal Reduction Synthesis and Sintering of FeeMo/Si_3N_4 Powders 被引量:3
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作者 Ruiming Yin Fubao Ji +3 位作者 Qinglin Hou Fusheng Liu Jing Li Linzhang Chen 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2014年第3期285-289,共5页
Effect of Y2O3-MgO addition on heterogeneous precipitation-thermal reduction synthesis and the sintering of Fe-Mo/Si3N4 powders has been investigated. It was found that the whiskers-like β-Si3N4, good wettability pha... Effect of Y2O3-MgO addition on heterogeneous precipitation-thermal reduction synthesis and the sintering of Fe-Mo/Si3N4 powders has been investigated. It was found that the whiskers-like β-Si3N4, good wettability phases on Si3N4 surface, and high toughness Fe phase appeared in Fe-Mo/Si3N4 cermets with Y2O3-MgO additives. The results show that Y2O3-MgO additives can effectively optimize the microstructures of Fe-Mo/ Si3N4 cermets, and improve the material mechanical properties. Therefore, it indicated that Y2O3-MgO additives can be used for strengthening of eintered cermets, and the dual function of whiskers self-toughening and different metal-composition toughening can be achieved in Fe-Mo/Si3N4 cermets with Y2O3-MgO additives. 展开更多
关键词 Y2O3--MgO addition Fe-Mo/Si3N4 metal-composition Whiskers self-toughening
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Development of accumulative roll bonding for metallic composite material preparation and mechanical/functional applications
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作者 Bo Feng Hao-kun Yang +3 位作者 Xiao-hui Li Xiao-wei Feng Tian-lai Chen Guo-feng Li 《Journal of Iron and Steel Research International》 SCIE EI CAS 2024年第11期2611-2621,共11页
Accumulative roll bonding(ARB)is a severe plastic deformation method to prepare the metallic composite material by physical method at room to elevate temperature,without the generation of additional waste solid or gas... Accumulative roll bonding(ARB)is a severe plastic deformation method to prepare the metallic composite material by physical method at room to elevate temperature,without the generation of additional waste solid or gas.With the physical characteristicsmulti-material and hybrid structure,the mechanical and function properties of the ARB composite material,like Al/steel,Al/Mg,Al/Cu,etc.,shall have the"1+1>2"effect on the mechanical and functional properties,including the remarkable properties that include lightweight,high strength,thermal/electrical conductivity,electromagnetic shielding,and other functions.To deeply investigate the preparation method and microstructural evolution of various metal laminates by ARB,as well as the mechanical and functional properties of the laminate,an overview of the history of ARB technique,the breakthrough of ARB sheet properties,as well as the relative products in industries is provided.Addi-tionally,the future development of ARB technology and the utilization of composite materials in different areas will be discussed. 展开更多
关键词 Accumulative roll bonding metal-composite material:Mechanical property Functional property:Industrial application
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