
综合评述
(溶胶凝胶法制各低温共烧低介高频纳米陶瓷粉体及其应用技术研究)[D]Hangzhou:ZhejiangUniversity,2007: 6~7
[27]ChenXiangchong(陈祥冲),HuangXinyou(黄新友).贱
金属内电极多层陶瓷电容器研发产业及现状New Materials Industries(新材料产业),2005(3):57~60
[28]Xiao Peiyi(肖培义),Lai Yongxiong(赖永雄.Ni/Cu电
极耐中压MLCC的试制[J]ElectronicMass(电子质量), 2007(5): 36~38
[29] Lee Y C, Lee C T, Wang S, et al. A study of Ceramic Ad-
dition in End Termination of Multilayer Ceramics Capacitors with Cofiring Process[J]. Materials Chemistry and Physies,
2006,100(23): 355~360
维普资讯
Vol.27.No.9.2008
[30] Lee Y C, Investigation of Thin Film EndTermination on
Multilayer Ceramic Capacitors[J]- Materials Chemistry and Physics,2008,110(1);100~105
[31] Kim M S, Jeon Sohyun, Lee Dae Su, et al. Lead-Frec
NKN5LT Piezoelectric Materials for Multilayer Ceramic Actuator[J] Joumal of Electroceramics. 2008, D01 10.1007/ S108320089470x
[32] Fang Yonghan, Hu Ang, Ouyang Shixi, et al. The Effect of
Calcination on the Microwave Dielectric Properties of Ba(MguTaan)O,[JJ: Journal of the European Ceramic Socity, 2001, 21(15): 2 745~2 750
ResearchProgressonElectrodePasteoftheMultilayer
Ceramic Capacitor Zhang Lili, Xuan Tianpeng
(Hefei University of Tecology, Hefei 230009, China)
Abstract: The composition, structure and requirements of the Multilayer Ceramic Capacitor (MLCC) were simply introduced in the paper, The constitution, function and impact of electrode paste for MLCC were comprehensively expounded. The Variety, properties and applications of the conductive phase, glass phase, organic carrier were recommended. Finally the research progress and develop ment trend of the electrode paste for MLCC were described.
Keywords: multilayer ceramic capacitor; chip capacitor; electrode paste
Biography: Zhang Lili, Candidate for Master, School of Material Seience and Engineering, Hefei University of Technology,
Hefei 230051, P.R. China, Tel: 0086~5512903124, Email: xtpxm@mail.hf.ah.en 专利信息()
专利名称:铝、钛及其合金异种金属交流钨极氢弧焊电弧
微熔钎焊方法
专利申请号:200710071786.6 公开号:CN101015876
专利申请人:哈尔滨工业大学
申请日:2007-02-14 公开日:2007-08-15
涉及一种铝、钛及其合金异种金属交流钨极氨弧焊电弧微熔钎焊方法。它针对钛的散热问题,及现有设备昂贵、生产周期长的缺点,提出本方法:①将钛或钛合金板对接处开坡口和钝边,其下部固定在带有循环冷却水装
置的铜卡具上,其上部安有振动装置,将它们置于充满情性气体的焊接舱中:②启动循环冷却水装置和振动装置并焊接,利用交流钨极氩弧焊电弧微熔钎焊方法在钛或钛合金板的坡口处堆敷铝合金,完成后将铝合金开成 1~5cm厚的铝合金层,并开坡口和钝边;③将另一块待焊的铝或铝合金板的对接处开坡口和钝边,置于焊接舱中,启动循环冷却水装置和报动装置并焊接,焊件在焊接舱中冷却至室温。所开的坡口和钝边都为30°~55°的坡口和1~3mm的钝边。