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    • 3. 发明授权
    • Gas circuit breaker
    • 气体断路器
    • US5977502A
    • 1999-11-02
    • US237920
    • 1999-01-27
    • Hitoshi MizoguchiTadashi MoriHiromichi KawanoKatsumi SuzukiMitsuru Toyoda
    • Hitoshi MizoguchiTadashi MoriHiromichi KawanoKatsumi SuzukiMitsuru Toyoda
    • H01H33/825H01H33/90H01H33/91H01H33/915H01H33/18H01H33/70H01H33/82
    • H01H33/901
    • The gas circuit breaker has a configuration such that a stationary contact section and a movable contact section are arranged in an arc-extinguishing gas sealed container, to face each other, and the movable contact section includes a hollow operating rod having an exhaust hole at its rear portion, a movable cylinder arranged around the rod, a hollow movable arc contact provided on the movable cylinder and an insulating nozzle surrounding the movable arc contact. The movable contact section further includes a stationary piston portion insertable/removable inside the movable cylinder, and the space formed by the movable cylinder and the current collecting cylinder fixed to the stationary piston portion is partitioned by a parting plate into a thermal pressure elevation room space at front side and a compression room space at rear side. During the electrode opening operation, the compression room space is compressed by the interaction between the movable cylinder and the piston portion, thus increasing the pressure in the space, and the speed of the movement of the operating rod is slowed down just before the completion of the electrode opening operation.
    • 气体断路器具有这样的结构,使得固定接触部分和可动接触部分布置在灭弧气体密封容器中以彼此面对,并且可动接触部分包括在其中具有排气孔的中空操作杆 后部,围绕杆布置的可动缸,设置在可动气缸上的中空可动电弧触点和围绕可动电弧触点的绝缘喷嘴。 可动接触部分还包括可移动的气缸中可插入/移动的静止活塞部分,并且由可移动气缸和固定到静止活塞部分的集流筒形成的空间由分型板分隔成热压升高室空间 在前侧和后侧的压缩室空间。 在电极打开操作期间,压缩室空间被可动气缸和活塞部分之间的相互作用压缩,从而增加了空间中的压力,并且操作杆的移动速度在完成之前变慢 电极打开操作。
    • 6. 发明申请
    • Fluorine-containing copolymer
    • 含氟共聚物
    • US20090247691A1
    • 2009-10-01
    • US12316179
    • 2008-12-10
    • Jun KanegaJi-Shan JinKatsumi SuzukiTakashi EnokidaKeisuke Kokin
    • Jun KanegaJi-Shan JinKatsumi SuzukiTakashi EnokidaKeisuke Kokin
    • C08L27/12C08F16/24
    • C08G65/3355C07F9/4006C08G65/007
    • A fluorine-containing copolymer, which comprises a hydroxyl-terminated fluorine-containing vinyl ether, represented by the following general formula: CF2═CFORfCH2OH (where Rf is a fluoroalkylene group, a fluoroalkyl ether group, or a fluoroalkoxyfluoroalkyl ether group, having 1-25 carbon atoms), and at least one of other fluorine-containing unsaturated monomers, where a high-molecular weight fluorine-containing copolymer having a melt viscosity (230° C.) of 0.1-100 g/10 min. is insoluble in a solvent, and can be used suitably for melt molding, whereas a low-molecular weight fluorine-containing copolymer having a glass transition temperature Tg of 20° C., or higher, and a number average molecular weight Mn of 1,000, or more is soluble in a solvent, and can be used suitably for coating agents, etc. The fluorine-containing copolymer has a high light transmissivity, and a low refractive index, and also has, as such, a good adhesiveness to various substrated without any surface treatment, any adhesives, or the like.
    • 包含由下述通式表示的羟基封端的含氟乙烯基醚的含氟共聚物:<?在线式描述=“在线式”末端=“lead”→CF 2 -CFORfCH 2 OH (其中,Rf为具有1-25个碳原子的氟代烷基,氟代烷基醚基或氟代烷氧基氟代烷基醚基),和 至少一种其它含氟不饱和单体,其中熔体粘度(230℃)为0.1-100g / 10min的高分子量含氟共聚物。 不溶于溶剂,可适用于熔融成型,而玻璃化转变温度Tg为20℃以上,数均分子量Mn为1000的低分子量含氟共聚物, 以上的溶剂可溶于溶剂,可以适合用于涂布剂等。含氟共聚物透光性高,折射率低,并且具有良好的粘合性,适合各种不含底物 任何表面处理,任何粘合剂等。
    • 7. 发明授权
    • Film formation method and orientation film formation method
    • 成膜方法和取向膜的形成方法
    • US07575774B2
    • 2009-08-18
    • US12019995
    • 2008-01-25
    • Katsumi SuzukiKohei IshidaYoshikazu Hama
    • Katsumi SuzukiKohei IshidaYoshikazu Hama
    • B05D5/12
    • G02F1/133711G02F1/1303G02F1/133723G02F1/13378
    • In a film formation method, a droplet discharge unit discharges droplets of a functional liquid material on a substrate as the droplet discharge unit is moved with respect to the substrate to form a liquid film on the substrate. The film formation method includes discharging a plurality of first droplets onto a plurality of first positions on the substrate with the first positions being arranged so that the first droplets do not touch each other on the substrate, discharging a plurality of second droplets onto a plurality of second positions on the substrate with the second positions being disposed between the first droplets that were discharged on the substrate; and causing the second droplets to touch a plurality of adjacent ones of the first droplets to form the liquid film.
    • 在成膜方法中,当液滴喷射单元相对于基板移动时,液滴喷射单元将基板上的功能液体材料的液滴排出,从而在基板上形成液膜。 成膜方法包括将多个第一液滴排放到基板上的多个第一位置上,其中第一位置被布置成使得第一液滴在基板上不彼此接触,将多个第二液滴排放到多个 第二位置位于衬底上,第二位置被布置在被排出到衬底上的第一液滴之间; 并使第二液滴接触多个相邻的第一液滴以形成液膜。