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    • 1. 发明专利
    • Production method for scale-like base metal powder and conductive paste
    • 用于鳞片状金属粉末和导电性浆料的生产方法
    • JP2005256039A
    • 2005-09-22
    • JP2004066708
    • 2004-03-10
    • Daiken Kagaku Kogyo KkToho Titanium Co LtdToyo Aluminium Kk大研化学工業株式会社東洋アルミニウム株式会社東邦チタニウム株式会社
    • KAMIYAMA RIYUUSUKEHARADA AKIOINOUE GIICHIAOKI TADAAKITAKATORI HIDEOASAI TAKESHI
    • B22F9/04H01G4/12
    • PROBLEM TO BE SOLVED: To provide a production method for scaly base metal powder which is suitable for making a thin film by a conductive paste and makes a contribution to a cost reduction and the inexpensive conductive paste which adapts itself to a higher density and supermultiple layer formation of ceramic electronic components by using the scaly base metal powder manufactured by the manufacturing method.
      SOLUTION: The conductive paste 1 is produced by using the scaly base metal powder formed by using the base metal powder raw material manufactured by a CVD method of ≥5 μm in average grain size as a metal component and subjecting the base metal powder raw material to processing to a scaly form to the state that about ≤1 μm in the average flat length of respective metal scales and about ≤0.1 μm in average thickness can be attained. As a result, the film thickness of an electrode film thinner than the grain size cannot be obtained by a conventional globular metal power but the formation of the thin film below about 0.3 μm can be realized and the contribution can be made to manufacturing of the supermultilayered ceramic electronic components and the contribution to the cost reduction is made possible by using the scaly metal particulates 2.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供适合于通过导电糊制造薄膜并对成本降低有贡献的鳞片状贱金属粉末的制造方法以及使自身适应更高密度的便宜的导​​电浆料 并通过使用通过制造方法制造的鳞片状贱金属粉末来形成陶瓷电子部件的超多层。 解决方案:导电浆料1是通过使用通过使用平均粒度为≥5μm的CVD法制造的贱金属粉末原料作为金属成分并使贱金属粉末 可以将鳞片状的原料加工成各金属鳞片的平均扁平长度约≤1μm,平均厚度约≤0.1μm的状态。 结果,通过常规的球状金属功率不能获得比晶粒尺寸更薄的电极膜的膜厚度,但是可以实现低于约0.3μm的薄膜的形成,并且可以对超薄膜的制造作出贡献 陶瓷电子元件和通过使用鳞片状金属微粒2可以实现成本降低的贡献。版权所有(C)2005,JPO&NCIPI
    • 5. 发明专利
    • BaTiO3 OF PLANAR CRYSTAL, PRECURSOR THEREOF, METHOD FOR PRODUCING THEM, AND GREEN SHEET
    • 平面晶体的BaTiO3,其前身,生产它们的方法和绿色片
    • JP2008266086A
    • 2008-11-06
    • JP2007113580
    • 2007-04-23
    • Daiken Kagaku Kogyo Kk大研化学工業株式会社
    • MASUDA YOSHITAKEKAWAMOTO KUNIHITOKAMIYAMA RIYUUSUKE
    • C01G23/00C04B35/46C04B35/622H01G4/12H01G4/30
    • PROBLEM TO BE SOLVED: To provide a precursor of BaTiO 3 , and BaTiO 3 free from the generation of irregular particles caused by grinding, having a flat-shaped and large-sized crystal plane thin in the thickness direction and realizing the thinning of a green sheet, to provide a method for producing the same, and to provide a green sheet realizing thinning using the BaTiO 3 . SOLUTION: A mixed aqueous solution in which (NH 4 ) 2 TiF 6 , Ba(NO 3 ) 2 and H 3 BO 3 are dissolved is prepared, and a water-soluble cation polymer is added to the mixed aqueous solution, so as to produce a BaTiO 3 precursor composed of BaTiOF 4 whose crystals are grown into a planar crystal form. The pH of the mixed aqueous solution is preferably 1.8 or the vicinity thereof, and, as the water-soluble cation polymer, polyacrylamide is used. COPYRIGHT: (C)2009,JPO&INPIT
    • 待解决的问题:为了提供不含由研磨引起的不规则颗粒的产生的具有扁平形状和不平坦的形状的BaTiO 3 SBS 3和/或SBTiO 3 SBB 大尺寸的晶面在厚度方向上薄且实现生片的薄化,提供其制造方法,并提供使用BaTiO 3 SB实现薄化的生片。 溶液:将其中(NH 3 SB 4)SBF 2,SBF 3,SB(NO SB 3)/ SB >) 2 和H 3 SB 3 溶解,向混合水溶液中加入水溶性阳离子聚合物,因此 为了生产由BaTiOF SB SB4 / SBB组成的BaTiO 3 SBB,其晶体生长成平面晶体形式。 混合水溶液的pH优选为1.8或其附近,作为水溶性阳离子聚合物,使用聚丙烯酰胺。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Metal composite particle, conductive paste, glass precursor solution and method of manufacturing metal composite particle
    • 金属复合颗粒,导电胶,玻璃前驱物溶液及制备金属复合颗粒的方法
    • JP2006164838A
    • 2006-06-22
    • JP2004356746
    • 2004-12-09
    • Daiken Kagaku Kogyo Kk大研化学工業株式会社
    • KAMIYAMA RIYUUSUKEHARADA AKIO
    • H01B5/00H01B1/22
    • PROBLEM TO BE SOLVED: To provide conductive paste allowing a uniform plating process to be executed by applying it to an external electrode or an internal electrode in a ceramic electronic component, capable of improving solder wettability in component mounting and of providing an excellent electrical characteristic, or contributing to improvement of reliability; to provide metal composite particles, conductive paste and a glass precursor solution suitable for the paste material thereof; and to provide a method of manufacturing the metal composite particles.
      SOLUTION: Each of these metal composite particles 1 comprises a metal fine particle 2 and a glass precursor layer 5 supported to the surface of the metal fine particle 2. The glass precursor layer 5 comprises a glass precursor 6, an organic resin constituent 3 and an organic solvent constituent 4, and is kept in a molecular glass form without having completed glass transition.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供能够通过将其施加到陶瓷电子部件中的外部电极或内部电极来进行均匀电镀处理的导电膏,能够提高部件安装中的焊料润湿性并提供优异的 电气特性,或有助于提高可靠性; 提供适合于其糊料的金属复合颗粒,导电膏和玻璃前体溶液; 并提供一种制造金属复合颗粒的方法。 解决方案:这些金属复合颗粒1中的每一个包括金属细颗粒2和支撑在金属细颗粒2的表面上的玻璃前体层5.玻璃前体层5包括玻璃前体6,有机树脂成分 3和有机溶剂成分4,并且保持分子玻璃形式而没有完成玻璃化转变。 版权所有(C)2006,JPO&NCIPI
    • 8. 发明专利
    • NEEDLE CRYSTAL OF BaTiO3, PRECURSOR THEREOF, METHODS FOR PRODUCING THEM AND GREEN SHEET
    • BaTiO3的针状晶体,其前体,其生产方法和绿色片材
    • JP2008266085A
    • 2008-11-06
    • JP2007113579
    • 2007-04-23
    • Daiken Kagaku Kogyo Kk大研化学工業株式会社
    • MASUDA YOSHITAKEKAWAMOTO KUNIHITOKAMIYAMA RIYUUSUKE
    • C01F11/00C01G23/00C04B35/46C04B35/622H01B3/12H01G4/12
    • PROBLEM TO BE SOLVED: To provide BaTiO 3 which does not cause deterioration in dielectric characteristics caused by size effect, has a flat shape thin in the thickness direction and a large crystal face, and can provide a thin green sheet, and to provide a BaTiO 3 precursor, methods for producing the BaTiO 3 and the BaTiO 3 precursor and the thin green sheet obtained by using the BaTiO 3 . SOLUTION: A precipitate of the BaTiO 3 precursor (needle BaC 2 O 4 -0.5H 2 O) is formed by dissolving oxalic acid into isopropyl alcohol, then adding butyl titanate monomer into the resulting solution, adding NaOH and distilled water into the resulting mixed aqueous solution to adjust the pH of the solution to 7, adding barium acetate into the resulting oxalic acid mixed aqueous solution, and keeping the resulting mixture at room temperature for several hours without stirring. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供不导致由尺寸效应引起的介电特性劣化的BaTiO 3 SB <3>,在厚度方向上具有平坦的形状和大的晶面,并且可以提供 薄的生片,并提供一种BaTiO 3 SBS 3 / SB>前体,用于制备BaTiO 3 SB 3和/或SBTiO 3 SBB的前体和薄的生坯片 通过使用BaTiO 3 获得。 解决方案:将BaTiO 3 SBS前体(针BaC 2 4 -0.5H 2 O)是通过将草酸溶解在异丙醇中形成的,然后向所得溶液中加入钛酸丁酯单体,向所得混合水溶液中加入NaOH和蒸馏水,将溶液的pH调节至7,向所得草酸中加入乙酸钡 酸混合水溶液,并将所得混合物在室温下保持数小时而不搅拌。 版权所有(C)2009,JPO&INPIT
    • 9. 发明专利
    • Dielectric precursor solution, metal composite particle, and conductive paste
    • 电介质前驱体溶液,金属复合颗粒和导电胶
    • JP2006086012A
    • 2006-03-30
    • JP2004269272
    • 2004-09-16
    • Daiken Kagaku Kogyo KkFuji Kagaku Kk大研化学工業株式会社富士化学株式会社
    • KAMIYAMA RIYUUSUKEHARADA AKIOUCHIDA FUMIOSHIMIZU CHIEMI
    • H01B1/00C01G23/00H01B1/22
    • PROBLEM TO BE SOLVED: To provide a dielectric precursor solution and a conductive paste which contribute to multi-layering and high densification of electronic components or the like and contribute to cost reduction, and have little carbon remaining volume after calcination.
      SOLUTION: The dielectric precursor solution has a dielectric precursor substance which is constituted of a compound system composition containing a plurality of kinds of organic components, and this dielectric precursor solution and metal composite particles are dispersed in a solvent and a conductive paste 6 is obtained. When an electrode membrane is formed by calcination, a dielectric is formed simultaneously from a dielectric precursor compound 8. Since the dielectric precursor compound 8 is molecular size, the metal particles are sintered and a dense electrode membrane having high conductivity is formed, and sintering is suppressed by the dielectric formed simultaneously and heat shrinkage is prevented. With this metal composite particle powder provided, a user can form a conductive paste of desired performance, and by constituting the dielectric precursor substance by a compound system composition containing a plurality of kinds of organic components, reduction of the carbon remaining volume after calcination can be realized.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供有助于电子部件等的多层化和高致密化并有助于降低成本的电介质前体溶液和导电糊,并且在煅烧之后几乎没有碳剩余体积。 电解质前体溶液具有由含有多种有机成分的复合体系组合物构成的电介质前体物质,该电介质前体溶液和金属复合粒子分散在溶剂中,导电性膏6 获得。 当通过煅烧形成电极膜时,由电介质前体化合物8同时形成电介质。由于电介质前体化合物8是分子尺寸,金属颗粒被烧结,并且形成具有高导电性的致密电极膜,烧结是 被同时形成的电介质抑制,并且防止了热收缩。 通过提供这种金属复合粒子粉末,使用者可以形成所需性能的导电膏,并且通过用含有多种有机成分的复合体系组成构成电介质前体物质,可以减少煅烧后的碳剩余体积 实现。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Electrode paste, and manufacturing method of ceramic electronic component
    • 电石膏,陶瓷电子元件的制造方法
    • JP2005063707A
    • 2005-03-10
    • JP2003208124
    • 2003-08-20
    • Daiken Kagaku Kogyo Kk大研化学工業株式会社
    • KAMIYAMA RIYUUSUKEHARADA AKIO
    • H05K1/09H01B1/22H01G4/12H05K3/46
    • PROBLEM TO BE SOLVED: To provide an electrode paste capable of improving characteristics of an electrode film by expressing a high temperature sintering restraining action and a low temperature sintering restraining action in a baking process. SOLUTION: The electrode paste 1 contains at least metal powder, more than one kind of dielectric precursor material 8 forming a dielectric by baking, and dielectric powder. Sintering among metal fine particles 2 at low temperature is restrained by the dielectric precursor material 8 in a molecular state, and sintering among metal fine particles 2 at high temperature is restrained by the fine particles of the dielectric precursor material 8. The sintering can be restrained over a whole range of temperature ranging from low temperature to high temperature in the baking process. The paste is a kind of all-round electrode paste which can be utilized for high temperature sintering and low temperature sintering. The electrode paste for a thick film or a thin film can be provided by adjusting the viscosity by adding suitable quantity of organic solvent 10 and resin 12. It is suitable for the dielectric precursor material 8 to contain 0.1 to 10 mass% of metal against the total mass of the metal powder, and a suitable content of the dielectric powder is 0.1 to 30 mass%. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够通过在烘烤过程中表现高温烧结抑制作用和低温烧结抑制作用来提高电极膜的特性的电极浆料。 解决方案:电极浆料1至少含有金属粉末,多于一种通过烘焙形成电介质的电介质前体材料8和电介质粉末。 金属微粒子2在低温下的烧结被分子状态的电介质前体材料8抑制,金属微粒子2在高温下的烧结被电介质前体材料8的微粒抑制。可以抑制烧结 在烘烤过程中从低温到高温的整个温度范围。 该浆料是一种全能的电极浆料,可用于高温烧结和低温烧结。 可以通过添加适量的有机溶剂10和树脂12来调节粘度来提供用于厚膜或薄膜的电极浆料。适用于电介质前体材料8含有0.1至10质量%的金属 金属粉末的总质量和电介质粉末的合适含量为0.1〜30质量%。 版权所有(C)2005,JPO&NCIPI