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活化烧结
    STUDY ON LOW TEMPERATURE ACTIVATED SINTERING OF MOLYBDENUM——The Sintering Characteristics of Mo-Ni-P System
    钼粉的低温活化烧结研究——Mo-Ni-P系的低温烧结特性
    A STUDY ON ACTIVATED SINTERING OF NATURAL MAGNESITE
    菱镁矿活化烧结研究
    ACTIVATED SINTERING OF NATURAL HIGH PURITY MgO-CaO SERIES MATERIALS
    天然高纯MgO-CaO材料的活化烧结
    CARBON-DOPED ACTIVATED SINTERING OF B_4C
    B_4C的掺碳活化烧结
    Plasma Sintering and Plasma Activated Sintering
    等离子烧结与等离子活化烧结
    New Application of Plasma Activated Sintering in Preparation of Materials
    等离子体活化烧结在材料制备中的新应用
    New Technique and Application of Plasma Activated Sintering
    等离子活化烧结新技术及应用
    Carbon-doping Activated Sintering of B_4C Powders Obtained by Jet Milling
    气流粉碎B_4C粉末的掺碳活化烧结研究
    Studies on Activated Sintering of Jet Milled B_4C Powders
    气流粉碎B_4C粉末的活化烧结研究
    RESEARCH INTO LIQUID PHASE ACTIVATED SINTERING TECHNIQUES OF W-35%Cu
    W-35%Cu液相活化烧结工艺研究
    STUDY ON PREPARATION OF WC-6Co-1.5Al CERMETS BY HIGH ENERGY BALL MILLING AND FIELD ACTIVATED SINTERING
    WC-6Co-1.5Al合金高能球磨-电场活化烧结工艺的研究
    Application of Plasma Activated Sintering in Preparation of Thermoelectric Materials
    等离子体活化烧结在热电材料制备中的应用
    Numerical Simulation of Temperature Distribution during Electric Field Activated Sintering
    电场活化烧结温度场的数值模拟
    Mechanism and Application of Plasma Activated Sintering Processing
    等离子体活化烧结过程的机理与应用
    Microstructure and Mechanical Properties of TiC-Ni Cermets Prepared with Mechanically Activated Sintering
    机械活化烧结TiC-Ni系金属陶瓷的组织及力学性能
    WC-10%Co-5%Ni cemented carbide enhanced by rare-earth and diamond was prepared in a hot-pressing activated sintering process with Ni-Ce composite powder produced with coprecipitation technology and diamond plated W by vacuum vapor deposit.
    采用以共沉淀方法制备的Ni Ce复合粉末、真空蒸镀W的金刚石等为原料,热压活化烧结,制取了具有高强度、高硬度的稀土金刚石增强WC 10%Co 5%Ni硬质合金复合齿。
    The results show that hardness of WC-10%Co-5%Ni cemented carbide prepared in the hot-pressing activated sintering is 90, strength is 1918 MPa, toughness against impact is more than 200 J, and wear ratio is 30.21.Rare earth Ce can be made more homogeneous in the alloy by adding Ni-Ce powder produced with coprecipitation.
    研究结果表明:采用热压活化烧结获得的稀土金刚石增强WC 10%Co 5%Ni硬质合金复合齿的洛氏硬度为90,断裂强度为1 918 MPa,抗冲击性能>200 J,磨耗比为30.21。 采用中间合金Ni Ce的方式加入稀土Ce使稀土在合金中的分布更均匀。
    The WC-6Co-1.5Al cermets of high density was produced by field activated sintering technology at with the pressure of 30 MPa,the pulse current electricity of 1 560 A and the sintering time within 6 min.
    利用电场活化烧结技术能在电流为1 560 A,压力为30 MPa,烧结时间为6 min的情况下获得较为致密的硬质合金块体;
    ACTIVATED SINTERING (DENSIFICATION) OF NATURAL HIGH PURITY DOLOMITES
    天然高纯白云石的活化烧结
    Activated Sintering Whisker-reinforced Hot injection Moulding Alumina Matrix Composite
    活化烧结热压铸异型Al_2O_3复合材料
 

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