Method of making multi-layered ceramic substrates
    2.
    发明授权
    Method of making multi-layered ceramic substrates 失效
    制作多层陶瓷基板的方法

    公开(公告)号:US5662755A

    公开(公告)日:1997-09-02

    申请号:US526312

    申请日:1995-09-11

    摘要: A method of making a multi-layered ceramic substrate which includes the steps of laminating a desired number of green sheets each being made of glass ceramics containing at least an organic binder and a solvent and each having a pattern of electrodes formed thereon by the use of an electroconductive paste, to thereby provide a green sheet laminate, The electrodes on opposite surfaces or an entire surface layer of the green sheet laminate are subsequently printed with a paste comprising an inorganic component added with at least an organic binder containing a Zn composition. On each surface of the laminate printed with the paste of the Zn composition, a green sheet made of an inorganic composition incapable of being sintered at a temperature of crystallization of the glass ceramics is then laminated thereby providing a laminate plate which is subsequently fired. After the firing, both of the inorganic composition incapable of firing sintered and the Zn composition are removed from the opposite surfaces of the laminate. The paste of the Zn composition may contains a main component selected from the group consisting of Zn, ZnO, Zn(OH).sub.2, ZnAl.sub.2 O.sub.4, and ZnCO.sub.3.

    摘要翻译: 一种制造多层陶瓷基板的方法,其包括以下步骤:将所需数量的生坯片材层叠,所述生坯片材由至少含有有机粘合剂和溶剂的玻璃陶瓷制成,并且各自具有通过使用 导电糊,从而提供生片层压体。随后用包含添加至少含有Zn组合物的有机粘合剂的无机组分的糊料印刷相对表面上的电极或生片层压体的整个表面层。 在印有Zn组合物的糊料的层压板的每个表面上,将由玻璃陶瓷的结晶温度下不能烧结的无机组合物制成的生片层叠,从而提供随后烧制的层压板。 烧成后,从层叠体的相对面除去无法烧成的无机组合物和Zn组合物。 Zn组合物的糊剂可以含有选自Zn,ZnO,Zn(OH)2,ZnAl 2 O 4和ZnCO 3的主要成分。

    Touch panel including a wiring substrate disposed between a pair of substrates and a method for producing the same
    3.
    发明授权
    Touch panel including a wiring substrate disposed between a pair of substrates and a method for producing the same 有权
    包括设置在一对基板之间的布线基板的触摸面板及其制造方法

    公开(公告)号:US09007330B2

    公开(公告)日:2015-04-14

    申请号:US12596718

    申请日:2009-01-29

    IPC分类号: G06F3/045

    CPC分类号: G06F3/045 Y10T29/49117

    摘要: A touch panel and a method of producing the touch panel are provided in which a touch panel having a gap between two transparent substrates that is uniform in a plane can stably be obtained by setting a gap between the two transparent substrates in an area where a wiring substrate is disposed to a desired gap. A touch panel includes a pair of transparent substrates opposed to and away from each other and connection terminals provided on at least one of opposed surfaces of the pair of transparent substrates. A wiring substrate that is disposed between the pair of transparent substrates and has one surface electrically connected to the connection terminals and the other surface disposed away from one of the transparent substrates opposed to the other transparent substrate on which the connection terminals are provided. An insulating layer provided in a gap between the pair of transparent substrates in an area where the wiring substrate is disposed in a state where the wiring substrate and the connection terminals are connected.

    摘要翻译: 提供一种触摸面板和制造触摸面板的方法,其中通过在两个透明基板之间设置间隙,可以稳定地获得具有在平面中均匀的两个透明基板之间的间隙的触摸面板 衬底被设置到期望的间隙。 触摸面板包括彼此相对且远离的一对透明基板和设置在该对透明基板的至少一个相对表面上的连接端子。 布线基板,其布置在所述一对透明基板之间,并且具有与连接端子电连接的一个表面和远离设置有连接端子的另一透明基板相对的透明基板之一的另一表面。 在配线基板和连接端子连接的状态下,在配线基板的配置区域中设置在一对透明基板的间隙中的绝缘层。

    Solid oxide fuel cell and manufacturing method thereof
    4.
    发明授权
    Solid oxide fuel cell and manufacturing method thereof 有权
    固体氧化物燃料电池及其制造方法

    公开(公告)号:US07914941B2

    公开(公告)日:2011-03-29

    申请号:US12576472

    申请日:2009-10-09

    IPC分类号: H01M4/90 H01M8/12

    摘要: An electric power generation cell 1 is constituted by arranging a fuel electrode layer 4 on one side of a solid electrolyte layer 3 and an air electrode layer 2 on the other side of the solid electrolyte layer 3. The solid electrolyte layer 3 is constituted of an oxide ion conductor mainly composed of a lanthanum gallate based oxide. The fuel electrode layer 4 is constituted of a porous sintered compact having a highly dispersed network structure in which a skeletal structure formed of a consecutive array of metal grains is surrounded by mixed conductive oxide grains. For the air electrode layer 2, a porous sintered compact mainly composed of cobaltite is used. This configuration reduces the overpotentials of the respective electrodes and the IR loss of the solid electrolyte layer 3, and accordingly can actualize a solid oxide type fuel cell excellent in electric power generation efficiency.

    摘要翻译: 发电单元1通过在固体电解质层3的一侧配置燃料电极层4和在固体电解质层3的另一侧设置空气极层2而构成。固体电解质层3由 氧化物离子导体主要由没有没有的镧镧氧化物组成。 燃料电极层4由具有高度分散的网状结构的多孔烧结体构成,其中由连续阵列的金属颗粒形成的骨架结构被混合的导电氧化物颗粒包围。 对于空气电极层2,使用主要由钴酸盐组成的多孔烧结体。 由此,能够降低各电极的超电势和固体电解质层3的IR损失,能够实现发电效率优异的固体氧化物型燃料电池。

    Process for producing carbon nanotube reinforced composite material
    5.
    发明申请
    Process for producing carbon nanotube reinforced composite material 失效
    生产碳纳米管增强复合材料的工艺

    公开(公告)号:US20060058443A1

    公开(公告)日:2006-03-16

    申请号:US11088328

    申请日:2005-03-23

    IPC分类号: C08K3/04

    摘要: An object is to provide a process for producing a carbon nanotube (CNT) reinforced composite material, wherein CNT is homogeneously dispersed in a resin to obtain the composite material having an excellent mechanical strength. Hydrophilic CNTs 12 are dispersed in a first solvent 11 to prepare a first dispersion liquid 13. The dispersion liquid 13 and a synthetic resin raw material 15 are added to a second solvent 14 and the resulting mixture is stirred to prepare a third dispersion liquid 17 where a second dispersion liquid 16 in which the synthetic resin raw material 15 is dissolved in the dispersion liquid 13 is dispersed in the solvent 14. The solvents 11 and 14 are removed from the dispersion liquid 17 to obtain a mixture of the hydrophilic CNTs 12 and the synthetic resin raw material 15. The mixture is molded to obtain the composite material in which the synthetic resin is reinforced with the hydrophilic CNTs 12. The second solvent 14 has smaller solubility of the synthetic resin raw material 15 than that of the solvent 11, is substantially not compatible to the solvent 11, and has volume larger than that of the solvent 11. The dispersion liquid 17 is sprayed on a substrate and the solvents 11 and 14 are removed to obtain the mixture and simultaneously to conduct molding of the mixture.

    摘要翻译: 本发明的目的是提供一种碳纳米管(CNT)增强复合材料的制造方法,其中,CNT均匀地分散在树脂中,得到机械强度优异的复合材料。 将亲水性CNT 12分散在第一溶剂11中以制备第一分散液13。 将分散液13和合成树脂原料15加入到第二溶剂14中,搅拌所得混合物以制备第三分散液17,其中合成树脂原料15溶解在分散体中的第二分散液16 液体13分散在溶剂14中。 从分散液17中除去溶剂11和14,得到亲水性碳纳米管12和合成树脂原料15的混合物。将该混合物成形,得到合成树脂用亲水性CNT 12增强的复合材料 第二溶剂14的合成树脂原料15的溶解度小于溶剂11的溶解性,与溶剂11基本上不相容,体积大于溶剂11的体积。将分散液17喷雾到 底物和溶剂11和14被除去以获得混合物并同时进行混合物的模制。

    Manufacturing method of wiring board, and conductive paste used therein
    6.
    发明授权
    Manufacturing method of wiring board, and conductive paste used therein 失效
    接线板的制造方法及其中使用的导电糊

    公开(公告)号:US06514364B2

    公开(公告)日:2003-02-04

    申请号:US09459778

    申请日:1999-12-13

    IPC分类号: B32B3112

    摘要: The conductive particles can be sintered without being influenced by softening and removing of the adhesive layer. As a result, a wiring pattern of high precision can be formed without causing deformation of conductive pattern. It includes a step of filling grooves having a wiring pattern on a film with a conductive paste containing conductive component and resins, a step of adhering the conductive paste side surface of the film having the conductive paste to the adhesive layer side surface of the ceramic substrate having the adhesive layer, a step of forming a conductive pattern on the adhesive layer surface by peeling off the film substrate from a first laminated body having the film, conductive paste, adhesive layer, ceramic substrate, and film, and transferring the conductive paste filling up the grooves onto the surface of the adhesive layer, and a step of firing a second laminated body having the ceramic substrate, adhesive layer and conductive pattern, removing the adhesive layer, and sintering the conductive particles, in which the conductive component in the conductive paste is sintered at least (i) after the adhesive layer is softened, or (ii) after the adhesive layer is burnt.

    摘要翻译: 导电粒子可以不受粘合剂层的软化和去除的影响而被烧结。 结果,可以形成高精度的布线图案,而不会导致导电图案的变形。 其包括在膜上填充具有导电性成分和树脂的导电膏的布线图案的槽的步骤,将具有导电性浆料的膜的导电性糊料侧表面粘接到陶瓷基板的粘合剂层侧面的工序 具有粘合剂层的步骤,通过从具有膜,导电浆料,粘合剂层,陶瓷基板和膜的第一层压体剥离薄膜基材,在粘合剂层表面上形成导电图案的步骤,并且将导电浆料填充物 将凹槽放置在粘合剂层的表面上,以及烧制具有陶瓷基板,粘合剂层和导电图案的第二层压体的步骤,去除粘合剂层并烧结导电颗粒,其中导电 糊剂至少(i)在粘合剂层软化之后烧结,或(ii)在粘合剂层被燃烧之后。

    Method of manufacturing composite electronic component
    7.
    发明授权
    Method of manufacturing composite electronic component 失效
    复合电子元器件制造方法

    公开(公告)号:US6141847A

    公开(公告)日:2000-11-07

    申请号:US997164

    申请日:1997-12-23

    IPC分类号: H01G4/40 H01G7/00

    摘要: A ceramic substrate 1 made of magnetic substance on which an inductor 2 is formed is prepared. A ceramic substrate 3 made of dielectric substance on which a capacitor 4 is formed is also prepared. An intermediate layer 5 made of lass paste is printed on the inductor 2 and the capacitor 4. After debinding the substrates 1 and 3 independently, both the substrates are filed with the intermediate layer 5 therebetween so that both the substrates may be glued and integrated. As such, because the debinding process is provided before filing, less gas is generated in firing, and as a result, voids are restrained from occurring.

    摘要翻译: 制备由其上形成有电感器2的磁性物质制成的陶瓷基板1。 还制备了由其上形成有电容器4的介电材料制成的陶瓷基板3。 在电感器2和电容器4上印刷由轻质糊料制成的中间层5.在独立地剥离基板1和3之后,两个基板之间留有中间层5,使得两个基板可以胶合并整合。 因此,因为脱脂处理在提交之前提供,所以在烧制中产生较少的气体,结果,抑制了空隙的发生。

    Conductive ink
    10.
    发明授权
    Conductive ink 失效
    导电油墨

    公开(公告)号:US5407473A

    公开(公告)日:1995-04-18

    申请号:US174807

    申请日:1993-12-29

    摘要: Conductive ink has an inorganic compound comprising 70.0-95.0 wt. % of CuO which is conductive and 5.0-30.0 wt. % of inorganic binder mixed with each other, and solvent and organic binder in which the inorganic compound is dispersed. The inorganic binder consists of lead borosilicate crystalline glass or aluminum borosilicate crystalline glass soften and crystallizes at 850.degree.-950.degree. C. The diameter of CuO powder of the inorganic compound is 100-7.0 .mu.m. The diameter of the lead borosilicate crystalline glass powder or the aluminum borosilicate crystalline glass powder of the inorganic compound is 1.0-5.0 .mu.m. The organic binder consists of ethyl cellulose or copolymer of polyisobytylmethacrylate and poly.alpha.-methylstyrene. The conductive ink contains the organic binder at 0.5-2.0 wt. %.

    摘要翻译: 导电油墨具有70.0-95.0重量%的无机化合物。 导电的CuO%和5.0-30.0wt。 相互混合的无机粘合剂的%,以及其中分散无机化合物的溶剂和有机粘合剂。 无机粘合剂由硼硅酸铅晶体玻璃或硼硅酸铝晶体玻璃软化并在850-950℃下结晶。无机化合物的CuO粉末的直径为100-7.0μm。 硼硅酸铅晶体玻璃粉末或无机化合物的硼硅酸铝结晶玻璃粉末的直径为1.0-5.0μm。 有机粘合剂由乙基纤维素或聚甲基丙烯酸异丁酯和聚α-甲基苯乙烯的共聚物组成。 导电油墨含有0.5-2.0重量%的有机粘合剂。 %。