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- Keywords barium titanate;nanopowder;solgel; 钛酸钡;纳米晶粉体;溶胶-凝胶;
- Keywords barium titanate;sintering;thermal dilatometer;shrinkage; 钛酸钡;烧结;热膨胀;收缩率;
- Keywords barium plumbate;barium titanate;defect structure;conductivity; 铅酸钡;钛酸钡;缺陷结构;电导率;
- Keywords barium titanate crystallite;hydrothermal;crystallographic feature; 钛酸钡微晶;水热法制备;结晶学特性;
- Keywords barium titanate powder;tetragonal phase;qualitative analysis of XRD; 钛酸钡粉体;四方相;XRD定量分析;
- Keywords barium titanate;citrate Sol-Gel;square crystalloid;nanometer; 钛酸钡;柠檬酸盐溶胶-凝胶;四方相;纳米尺寸;
- Keywords Barium titanate;Barium titanyl oxalate tetrahydrate;Electronic ceramic powder;Reaction.kineticcs; 钛酸钡;草酸氧钛钡;电子陶瓷粉;热分解反应动力学;
- Keywords Barium Titanate Barium Titanyl Oxalate preparation X. R. D optimum conditions.; 钛酸钡;草酸氧钛钡;合成;X-射线衍射;最佳条件;
- Keywords barium titanate;microcrystal;thermodynamics;phase transition;sol-gel method; 钛酸钡;微晶;相变;热力学;溶胶-凝胶法;
- Keywords barium titanate;barium titanyl oxalate tetrahydrate;thermal decomposition.; 钛酸钡;草酸氧钛钡;热分解;
- Keywords barium titanate;PTC effect;room-temperature resistivity;acceptor doping;grain;grain boundary;domain; 钛酸钡;PTC效应;室温电阻率;受主;液相掺杂;晶粒;晶界;畴;
- Keywords barium titanate;nanopowder;direct reactive preciptation method;electric ceramics;dielectric materials; 钛酸钡;纳米粉体;直接反应沉淀法;电子陶瓷;介电材料;
- Keywords Barium Titanate;Carbon Black;Sol-gel;Electroconductivity;Dielectromagnetic Properties;Electromagnetic Wave Absorption Properties; 钛酸钡;炭黑;溶胶-凝胶;导电性;介电特性;吸波性能;
- Analysis of compensation defect of barium titanate ceramics. 钛酸钡陶瓷补偿缺陷分析。
- Common ceramic elements are barium titanate and lead zirconate-titanate. 普通的陶瓷元件分别是钛酸钡和锆钛酸铅。
- The cold-pressing ceramic processing technique was used to prepare high-permittivity Barium Titanate ceramics. 摘要采用冷压陶瓷处理技术制备了高介电率钛酸钡陶瓷材料。
- THE PRODUCTION AND TECHNOLOGICAL DEVELOPMENT OF ELECTRONIC CERAMIC MATERIAL BARIUM TITANATE. 电子陶瓷材料钛酸钡的生产工艺及技术进展。
- The cold-pressing ceramic processing technique was used to prepare Ce-doped Barium Titanate ceramics. 摘要采用冷压陶瓷处理技术制备了铈参杂的铁酸钡陶瓷。
- Among other things,Curie point shift and the possible mechanisms responsible for Curie point shift in barium titanate ceramics were discussed. 钛酸钡陶瓷中的居里点是其最重要的性能之一,受到人们的广泛关注。
- EEStor is instead creating better nonconductive material for use between the metal sheet, using a chemical compound called barium titanate. EEStor取代的设计是制造更好的用于金属单元之间的绝缘材料,使用一种化学混合物叫做钛酸钡。