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陶瓷烧结
    MICROWAVE SINTERING---NEW TECHNOLOGY FOR CERAMIC SINTERING
    陶瓷烧结新技术——微波烧结
    Design of the Control Program for Advanced Silicon Nitride Ceramic Sintering Plant
    氮化硅陶瓷烧结设备的智能化控制程序设计
    At first, during the process of Al2O3 ceramic sintering and preparation, Al2O3 ceramic has been pre-calcining and sintering with strict temperature rising pace under normal pressure, obtaining pure Al2O3 ceramic for further precision-grinding, assuring the material characters of artificial joint.
    首先,在Al_2O_3陶瓷烧结制备工艺中,通过常压烧结并配合严格的升温制度,分别进行了Al_2O_3陶瓷的预烧结和烧结,制备了精密磨削加工所需的高纯Al_2O_3陶瓷,保证了最终人工关节产品的组织性能。
    Microwave is widely used in synthesize chemistry、 analytical chemistry、 ceramic sintering、 rubber、 plastic etc.
    微波能在合成化学、分析化学、陶瓷烧结以及橡胶工业、造纸工业、皮革工业、香料萃取、塑料工业等化学化工领域都有广泛地应用。
    By applying crystal boundary engineering theory and selecting Y2O3 and La2O3 dual-rare-earth Oxides, which could form a high fire - resistant crystal boundary, as a ceramic sintering aids, the so processed material prossesses an excellent high - temperature strength.
    运用晶界工程理论,选择能形成高耐火度晶界相的Y_2O_3(氧化钇)和La_2O_3(氧化镧)双稀土氧化物为Si_3N_4陶瓷烧结助剂,材料具有优异的高温强度.
    Modeling and Simulation of Microstructure Evolution in Ceramic Sintering
    陶瓷烧结过程显微组织演化的模型化与模拟
    The ceramic sintering theory of ceramic has been employedto fabricate PLZT ceramics with different compositions but the same grainsize. The grain sizes of PLZT samples with 11 different compositions havebeen controlled within 0.7~0.8μm.
    在本研究中,利用陶瓷烧结理论中的晶粒生长公式,计算得到不同的烧结制度,从而使所研究的11个成分点的PLZT陶瓷的晶粒大小控制在0.7~0.8μm范围内。
    The key problem in ceramic sintering is the atom diffusion or mobility.
    陶瓷烧结的关键问题,是原子的扩散和迁移,适当的掺杂物在陶瓷烧结过程中能促进缺陷的形成.
    In the past ten years or so, microwave energy has been widely employed in food processing, agriculture, forestry, light industry, medical and health, rubber and plastics curing, ceramic sintering, extractive metallurgy, organic synthesis, hydrolysis of biological sample and solvent extraction.
    在过去的十几年中,微波能已广泛应用于食品加工、农业、林业、轻工业、医疗卫生、橡胶和塑料的固化、陶瓷烧结、提取冶金、有机合成、生物样品水解、微波辅助提取等领域。
    The essay deals with silicon nitride ceramic sintering kinetics and analyzes the factors affecting silicon nitride ceramic sintering,thus providing basis for silicon nitride ceramic sintering.
    本文研究了氮化硅陶瓷烧结动力学,分析了影响氮化硅陶瓷烧结的因素,为氮化硅陶瓷烧结提供了依据
    In this paper, the current technology of ceramic sintering is mainly introduced.
    主要介绍了当前较重要的陶瓷烧结新工艺。
    Been main raw material with industrial wasted residue about fly ash,slay and wasted glass,increased the additive such as oxidizer,bonding agent and crystal agent caused glass crystallize,new building glass-ceramics plate has been developed by traditional ceramic sintering process.
    以粉煤灰、矿渣和废玻璃等工业废渣为主要原料,添加诸如助熔剂、粘结剂及可诱发玻璃体结晶和微分相的晶核剂等添加剂,通过陶瓷烧结法制备建筑微晶复合板。
 

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