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    Design and Preparation of Fe-Ni Soft Magnetic Alloy Absorbing Materials
    Fe-Ni软磁合金吸波材料的设计与制备
    Study of Microwave Absorbing Performances of Nano-Fe_3Al Intermetallic
    纳米Fe_3Al金属间化合物吸波性能的研究
    Cement-based Composite Materials for Microwave Absorbing
    水泥基复合吸波材料
    A New Type of Wave Absorbing Material
    新型吸波材料研究
    The Study of Honeycomb Sandwich Microwave Absorbing Materials
    蜂窝夹层结构吸波材料研究
    EFFECT OF SINTERING TEMPERATURE ON MICROWAVE ABSORBING BEHAVIOUR OF Mn-Zn FERRITE
    烧结温度对Mn-Zn铁氧体吸波性能的影响
    Absorption and Reflection of Electromagnetic Wave by Absorbing Material
    吸波材料对电磁波的吸收与反射
    RESEARCH AND DEVELOPMENT FOR COMPOSITE RADAR ABSORBING MATERIAL (RAM) AND RADAR ABSORBING STRUCTURES (RAS)
    雷达吸波复合材料和雷达吸波结构(RAS)的研制与发展
    Structural Wave Absorbing Materials and the Prospect of Their Applications
    结构吸波材料及其应用前景
    Computer-aided Design for Double-layered Microwave Absorbing Coatings
    双层微波吸收涂层的计算机辅助设计
    CAA for 1.3μm InP/InGaAsP SLD with a Buried Bent Absorbing Guide Structure
    InP/InGaAsP 1.3μm弯曲波导吸收区超辐射发光二极管的计算机辅助分析
    THE STUDY OF HONEYCOMB SANDWICH MICROWAVE ABSORBING MATERIALS DIP COATING SYSTEM
    蜂窝夹层结构吸波材料浸渍胶液体系的研究
    AB_2 Type Zr-Based Laves Phase Alloys and Hydrogen Absorbing Electrodes
    AB_2型锆基Laves相合金及贮氢电极
    The Effects of Electromagnetic Parameters of Radar Absorbing Materials on Optimizing Design Results of Electric Properties
    吸波材料电磁参数测量对电性能优化设计结果的影响
    PREPARATION AND SURFACE PROPERTIES OF A La-Ni-Cu-Mn HYDROGEN-ABSORBING ALLOY
    镧镍铜锰吸氢合金的制备与表面性质
    DESIGN OF ELECTROMAGNETIC WAVE ABSORBING SHEETS AND APPLICATION OF ABSORBING MATERIALS
    电磁波吸收层的设计与吸波材料的应用
    PREPARATION WATER ABSORBING CAPACITY AND WATER RETENTION POWER OF AVM/MTI COMPOSITES
    AVM/蒙脱石复合材料的制备及吸水保水性能的研究
    Loss Substance and Developing Tendency of Radar Absorbing Materials (RAM)
    吸波材料(RAM)用损耗介质及RAM技术发展趋势
    Ball milling with 1.00% Pd could significantly improve the hydriding/dehydriding(H/D) performance of nanocrystalline Mg2Ni. Comparing with the Mg2Ni alloyprepared by melting,the sample could easily absorb hy-drogen at 423 and 473 K under the initial hydrogen pres-sure of 1.17 MPa without activation.
    添加1.00%Pd机械球磨,可显著地改善纳米Mg2Ni合金的吸/放氢动力学性能,在初始氢压为1.17 MPa、温度为423和473 K时,同熔炼法制备的合金相比,材料无需活化即可快速吸氢;
    Experimental results indicated that the composite material absorbed distilled water,tap water and 0.9% NaCl solution absorbency 720,304,74g/g at 70℃ with the content of cross linker,illite,acrylamide and initiator 0.02%,80%,80%,0.25% of the quality of monomer respectively,and neutralization 90%. The absorbency have exceeded the requirement of The National 863 Program.
    实验表明:当温度为70℃,以丙烯酸单体为基准,交联剂用量0.02%,伊利石用量80%,中和度90%,丙烯酰胺用量80%,引发剂用量0.25%时,所合成的复合材料吸蒸馏水、自来水、盐水倍率最高,分别为720、304、74g/g,超过国家“863”项目技术指标的要求。
 

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