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    • 1. 发明申请
    • Transparent Conductive Formed Article for a Touch Panel and Touch Panel
    • 用于触摸屏和触摸屏的透明导电成型品
    • US20080029292A1
    • 2008-02-07
    • US11587157
    • 2005-04-19
    • Ryuji TakayamaHidemi ItoHitoshi MasagoJunichi Nakanishi
    • Ryuji TakayamaHidemi ItoHitoshi MasagoJunichi Nakanishi
    • H01B5/14
    • G06F3/045
    • There are provided a transparent conductive formed article for a touch panel, having a conductive layer which is excellent in abrasion resistance and elasticity, shows little change in surface resistivity at the time of the use of a touch panel, and does not change hues of the transmitting light, and a touch panel that use the same. The transparent conductive formed article for a touch panel is prepared by forming a transparent conductive layer 12 comprising ultra fine conductive fibers 4 on at least one side of a transparent substrate 11, and the touch panel is prepared using the aforementioned transparent conductive formed article as an electrode. The ultra fine conductive fibers of the transparent conductive layer 12 are dispersed without aggregation and dispersed and contacted with one another in a state in which said fibers are separated one by one or in a state in which a bundle formed by the gathering of two or more fibers is separated from other bundles. Accordingly, the surface resistivity can be easily controlled to 104Ω/□ or less, and the light transmittance of the conductive layer at a wavelength of 550 nm to 75% or more.
    • 提供了一种用于触摸面板的透明导电成形制品,具有耐磨性和弹性优异的导电层,在使用触摸面板时表面电阻率几乎没有变化,并且不改变 透射光,以及使用其的触摸面板。 通过在透明基板11的至少一侧上形成包含超细导电纤维4的透明导电层12,制备触摸面板用透明导电性成形体,使用上述透明导电性成型体 电极。 透明导电层12的超细导电纤维不会聚集而分散和分散并彼此接触,在这些状态下,所述纤维被逐一分离,或者通过聚集两个或多个 纤维与其他束分离。 因此,可以容易地将表面电阻率控制在10±4Ω/□以下,导电层的波长为550nm〜75%以上的透光率。
    • 2. 发明授权
    • Transparent conductive formed article for a touch panel and touch panel
    • 用于触摸屏和触摸屏的透明导电成型制品
    • US07956287B2
    • 2011-06-07
    • US11587157
    • 2005-04-19
    • Ryuji TakayamaHidemi ItoHitoshi MasagoJunichi Nakanishi
    • Ryuji TakayamaHidemi ItoHitoshi MasagoJunichi Nakanishi
    • H01R4/02
    • G06F3/045
    • A touch panel-use transparent conductive molded product having a conductive layer excellent in wear resistance and flexing resistance, small in surface resistivity change when the touch panel is in use, and free from a change in transmitted light hue, and a touch panel using it. The touch panel-use transparent conductive molded product comprises a fine-conductive-fibers (4)-containing, transparent conductive layer (12) formed on at least one surface of a transparent substrate (11), and the touch panel uses the above transparent conductive molded product as an electrode. The fine conductive fibers in the transparent conductive layer (12) are dispersed without being aggregated, and touch each other while being dispersed with each of them separated from each other or each bundle of several fibers separated from each other. Therefore, it is possible to control a surface resistivity to 104Ω/□ or smaller, and a conductive layer light beam transmittance at a wavelength of 550 nm to 75% or larger.
    • 一种触摸面板使用的透明导电模制产品,其具有耐磨性和抗弯曲性优异的导电层,当使用触摸面板时表面电阻率变化小,并且没有透射光色调的变化,以及使用它的触摸面板 。 触摸面板使用的透明导电模制产品包括形成在透明基板(11)的至少一个表面上的含有导电纤维(4)的透明导电层(12),并且触摸面板使用上述透明 导电成型体作为电极。 透明导电层(12)中的细导电纤维被分散而不聚集,并且彼此接触,彼此分离,彼此分离或每束彼此分离的几根纤维彼此分离。 因此,可以将表面电阻率控制在104&OHgr /□以下,在550nm〜75%以上的导电层光束透射率。
    • 3. 发明申请
    • AIR CONDITIONER
    • 冷气机
    • US20120000224A1
    • 2012-01-05
    • US13256034
    • 2010-03-15
    • Toshihiro KizawaJunichi NakanishiKenjirou Suzuki
    • Toshihiro KizawaJunichi NakanishiKenjirou Suzuki
    • F25B29/00F25B49/02
    • F24F5/0089F24F1/0007F25B13/00F25B41/04F25B2313/02334F25B2313/02741F25B2313/0314F25B2500/08F25B2600/2515
    • An air conditioner executes a heating operation using at least a high pressure refrigerant, and includes a refrigerant circuit configured to execute a vapor compression refrigeration cycle. The refrigerant circuit includes a convective heat exchanger, a radiant heat exchanger, an open/close valve and a check valve. The convective heat exchanger executes heat exchange between the high pressure refrigerant flowing inside and an air flowing towards outside. The radiant heat exchanger heats a predetermined member using the high pressure refrigerant flowing inside to cause the predetermined member to emit a radiant heat. The open/close valve is disposed upstream of the radiant heat exchanger in order to block a flow path of the high pressure refrigerant flowing towards the radiant heat exchanger during the heating operation. The check valve is disposed between the radiant heat exchanger and the open/close valve.
    • 空调器使用至少高压制冷剂来执行加热运转,并且包括构造成执行蒸汽压缩制冷循环的制冷剂回路。 制冷剂回路包括对流换热器,辐射热交换器,开闭阀和止回阀。 对流换热器在内部流动的高压制冷剂和向外流动的空气之间进行热交换。 辐射热交换器使用在内部流动的高压制冷剂加热预定构件,使预定构件发出辐射热。 打开/关闭阀设置在辐射热交换器的上游,以阻止在加热操作期间流向辐射热交换器的高压制冷剂的流动路径。 止回阀设置在辐射热交换器和开/关阀之间。