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    • 13. 发明授权
    • Copolymer latex, method for preparing the same and use thereof
    • 共聚物胶乳,其制备方法及其用途
    • US5369166A
    • 1994-11-29
    • US24763
    • 1993-03-02
    • Yutaka OzawaHisanori Ohta
    • Yutaka OzawaHisanori Ohta
    • C08F236/12C08L13/02C08L33/06C08F4/28
    • C08L13/02C08F236/12
    • A copolymer latex is provided which comprises 30 to 90% by weight of a conjugated diene monomer unit, 9 to 50% by weight of an ethylenically unsaturated nitrile monomer unit, 0.1 to 20% by weight of an ethylenically unsaturated acid monomer unit and 0 to 20% by weight of an other ethylenically unsaturated monomer unit copolymerizable therewith, having a polystyrene-converted weight average molecular weight of 50,000 to 500,000, and containing 45% or less of methyl ethyl ketone insoluble matter. The latex is presented by emulsion polymerization using a polymerization initiator containing a peroxide whose decomposition temperature giving a half-life period of 10 hours is 100.degree. C. or higher and a reducing agent. The latex is used advantageously for dip molding.
    • 提供了一种共聚物胶乳,其包含30至90重量%的共轭二烯单体单元,9至50重量%的烯键式不饱和腈单体单元,0.1至20重量%的烯属不饱和酸单体单元和0至 20重量%的可与其共聚的其它烯键式不饱和单体单元,聚苯乙烯换算的重均分子量为50,000〜500,000,含有45%以下的甲乙酮不溶物。 使用含有过氧化物的聚合引发剂,通过乳液聚合提供胶乳,其分解温度为10分钟的半衰期为100℃以上,还原剂为10以上。 胶乳有利地用于浸渍成型。
    • 15. 发明授权
    • Microchip for forming emulsion
    • 微芯片用于形成乳液
    • US08231265B2
    • 2012-07-31
    • US12507369
    • 2009-07-22
    • Yutaka OzawaRyoichi OhigashiKoji FujimotoShoji Takeuchi
    • Yutaka OzawaRyoichi OhigashiKoji FujimotoShoji Takeuchi
    • B01F5/06
    • B01F3/0807B01F5/0646B01F5/0653B01F13/0062Y10T137/87652
    • A microchip for forming an emulsion has a first glass substrate, a second glass substrate and a silicon substrate. The silicon substrate has formed therein a first fluid flow path through which a first fluid flows and a second fluid flow path through which a second fluid that is not mixed with the first fluid flows. The first fluid flow path has a plurality of branched flow paths that join at a joint portion. The second fluid flow path communicates with the joint portion. The silicon substrate has formed therein an emulsion formation flow path that faces an edge portion of the second fluid flow path at the joint portion. An emulsion composed of the first fluid and the second fluid that is surrounded by the first fluid is formed in the emulsion formation flow path.
    • 用于形成乳液的微芯片具有第一玻璃基板,第二玻璃基板和硅基板。 硅衬底在其中形成有第一流体流过的第一流体流动路径和不与第一流体混合的第二流体流过的第二流体流动路径。 第一流体流动路径具有连接在接合部分处的多个分支流路。 第二流体流路与接合部连通。 硅衬底中形成有乳液形成流动路径,其在接合部分处面向第二流体流路的边缘部分。 在乳液形成流动路径中形成由第一流体和第一流体包围的由第一流体包围的乳液。
    • 16. 发明授权
    • Acrylic polymer emulsion and glove formed from the same
    • 丙烯酸聚合物乳液和手套由此形成
    • US07345111B2
    • 2008-03-18
    • US10560619
    • 2005-09-02
    • Yutaka OzawaNobuaki Takahashi
    • Yutaka OzawaNobuaki Takahashi
    • C08F236/04C08F2/16C08F218/08C08F214/06C08F220/18C08G18/62
    • C09D133/14C08F220/18
    • The present invention provides an acrylic polymer emulsion containing a polymer formed by polymerizing 100% by weight in total of a monodic mixture comprising 50 to 90% by weight of an alkyl acrylate or an alkyl methacrylate, 9 to 49% by weight of a vinyl monomer of which homopolymer having a glass transition temperature Tg is not lower than 80° C., 0.2 to 10% by weight of a vinyl monomer having a carboxyl group and 0.1 to 5% by weight of a crosslinkable monomer having a molecular weight of not less than 280. The acrylic polymer emulasion of present invention provides gloves for home uses, works, examination operations, medical uses and the like which are superior in practical performances such as tensile strength, elongation, alcohol resistance, detergent resistance, oil resistance, recovering property after a stretch and wearing touch.
    • 本发明提供一种含有聚合物的丙烯酸类聚合物乳液,所述聚合物通过聚合100重量%总共包含50至90重量%的丙烯酸烷基酯或甲基丙烯酸烷基酯,9至49重量%的乙烯基单体 其中玻璃化转变温度Tg的均聚物不低于80℃,0.2至10重量%的具有羧基的乙烯基单体和0.1至5重量%的分子量不少于的交联单体 本发明的丙烯酸聚合物乳液提供了在拉伸强度,伸长率,耐酒精性,耐洗涤性,耐油性,回收性等实用性能方面优异的家用,工作,检查操作,医疗用途等手套 经过拉伸和穿着的触感。
    • 20. 发明授权
    • Liquid crystal device, driving method therefor, and electronic apparatus using the same
    • 液晶装置及其驱动方法以及使用其的电子设备
    • US06501454B1
    • 2002-12-31
    • US09176888
    • 1998-10-22
    • Yutaka OzawaHiroaki Nomura
    • Yutaka OzawaHiroaki Nomura
    • G09G336
    • G09G3/3629G09G3/3614G09G2300/0486G09G2310/061G09G2320/0209G09G2330/021
    • A liquid crystal display method is provided in which various types of display patterns can be displayed with a predetermined driving voltage margin being maintained and power consumption does not increase. Accordingly, a driving method for a liquid crystal display device is provided using liquid crystal having two metastable states. A scanning signal has a reset period, a delay period, a selection period and a non-selection period in one frame period. The selection period is set to one horizontal scanning period 1H. The scanning signal is set to reset potentials reversed at an interval of a frame period in the reset period, set to selection potentials reversed at an interval of 1H/2 in the selection period, and set to non-selection potentials in the delay period and the non-selection period. The data potential of a data signal has potentials reversed at an interval of 1H/2. When the voltage difference between the scanning signal and the data signal is applied to the liquid crystal, a voltage having one polarity is not always applied to the liquid crystal for a period exceeding a 1H period in the delay period. Therefore, various display patterns can be displayed with a predetermined driving voltage margin being maintained. Since a voltage applied to the liquid crystal in the reset period is reversed in the positive and negative sides at an interval of a period longer than 1H, power consumption does not increase.
    • 提供一种液晶显示方法,其中可以以保持预定的驱动电压余量并且功耗不增加来显示各种类型的显示图案。 因此,使用具有两个亚稳态的液晶来提供液晶显示装置的驱动方法。 扫描信号在一个帧周期中具有复位周期,延迟周期,选择周期和非选择周期。 选择期间设定为1个水平扫描期间1H。 扫描信号被设置为在复位周期中以帧周期的间隔复位电位,在选择周期中被设置为以1H / 2的间隔反转的选择电位,并将其设置为延迟期间的非选择电位, 非选择期间。 数据信号的数据电位具有以1H / 2的间隔反转的电位。 当扫描信号和数据信号之间的电压差被施加到液晶时,在延迟时间段内,在液晶超过1H周期的时间内,并不总是施加一个极性的电压。 因此,可以以保持预定的驱动电压余量来显示各种显示图案。 由于在复位期间施加到液晶的电压在正负侧以大于1H的时间间隔反转,所以功耗不增加。