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    • 1. 发明授权
    • Thermally responsive valve device
    • 热响应阀装置
    • US4303195A
    • 1981-12-01
    • US190767
    • 1980-09-25
    • Nobuyuki HashimotoAtsushi Satomoto
    • Nobuyuki HashimotoAtsushi Satomoto
    • G05D23/10
    • G05D23/10Y10T137/87121
    • A thermally responsive valve includes first and second bimetallic disks which are adapted to snap-over in response to first and second predetermined temperatures. First and second inlet ports are connected to vacuum and atmospheric pressure sources respectively and first and second outlet ports are connectable to first and second vacuum actuators respectively. The thermally responsive valve further includes first and second valve members, one of which controls the communication of vacuum to the first vacuum actuator in response to the snap-over action of the first bimetallic disk and the other of which controls the application of vacuum to said second vacuum actuator in response to the snap-over action of the second bimetallic disk. When communication between the vacuum source and the first and second vacuum actuators is interrupted by said first and second valve members, the first and second actuators will be then connected to the atmosphere through the second inlet port.
    • 热响应阀包括第一和第二双金属盘,其适于响应于第一和第二预定温度进行卡扣。 第一和第二入口分别连接到真空和大气压源,第一和第二出口分别可连接到第一和第二真空致动器。 热响应阀还包括第一和第二阀构件,其中一个阀构件响应于第一双金属盘的卡扣动作而控制真空与第一真空致动器的连通,另一个控制真空对所述第一双金属盘的应用 第二真空致动器响应于第二双金属盘的卡扣动作。 当真空源与第一和第二真空致动器之间的连通被所述第一和第二阀构件中断时,第一和第二致动器然后将通过第二入口连接到大气。
    • 2. 发明授权
    • Thermally responsive valve device
    • 热响应阀装置
    • US4322032A
    • 1982-03-30
    • US152967
    • 1980-05-23
    • Nobuyuki HashimotoAtsushi Satomoto
    • Nobuyuki HashimotoAtsushi Satomoto
    • F16K31/70F02M25/06F02M25/07G05D23/185G05D23/10
    • G05D23/185F02M25/06F02M26/56F02M2026/004Y02T10/121
    • The thermally responsive valve device is comprised of a body having three passages therein, the first of which is adapted to be conected to a vacuum source while the second and third passages are each adapted to be connected to a suitable fluid operated device. The first passage is in constant fluid communication with two spaced apart fluid chambers within the body while the second and third passages are in selective communication with said chambers respectively. A valve member is located in each chamber for controlling communication of the second and third passages with their respective chambers. A pair of snapacting bimetallic disks are mounted in spaced relation within a third chamber in alignment with each other and each valve member. An operating rod is disposed in operative engagement between one of said disks and one of said valve members and a hollow tubular sleeve concentric with said rod is disposed in operative engagement between the other of said disk and the other of said valve members. A spring is operatively associated with each valve member for biasing the respective valve member toward said bimetallic disk to allow communication between said first passage and said second and third passages.
    • 热响应阀装置包括其中具有三个通道的主体,其中第一通道适于与真空源连接,而第二和第三通道各自适于连接到合适的流体操作装置。 第一通道与主体内的两个间隔开的流体室恒定流体连通,而第二和第三通道分别与所述腔室选择性地连通。 阀构件位于每个室中,用于控制第二和第三通道与它们各自的室的连通。 一对弯曲的双金属盘以相互间隔的关系安装在第三腔内,彼此对准并且每个阀构件对齐。 操作杆设置成在所述盘中的一个和所述阀构件中的一个之间操作地接合,并且与所述杆同心的中空管状套管布置成在所述盘中的另一个和所述阀构件中的另一个之间可操作地接合。 弹簧与每个阀构件可操作地相关联,用于将相应的阀构件朝向所述双金属盘偏置,以允许所述第一通道和所述第二和第三通道之间的连通。
    • 8. 发明申请
    • LIQUID CRYSTAL DEVICE
    • 液晶装置
    • US20130265536A1
    • 2013-10-10
    • US13994733
    • 2011-12-20
    • Nobuyuki Hashimoto
    • Nobuyuki Hashimoto
    • G02F1/1339
    • G02F1/1339G02B1/118G02C7/083G02C2202/20G02F1/133377G02F1/133502G02F1/133526G02F1/13392G02F1/13394G02F2001/133388G02F2001/133565G02F2001/294G02F2201/38G02F2203/28
    • The present invention is directed to the provision of a liquid crystal device constructed by sealing a liquid crystal material between substrates, wherein provisions are made to prevent reflections at the sealing, thereby achieving excellent transparency. The liquid crystal device includes a first substrate disposed on a viewing side, a second substrate disposed opposite the first substrate, a sealing member disposed between the first substrate and the second substrate, a liquid crystal layer provided between the first substrate and the second substrate and sealed by the sealing member, and a muslin structure or moth-eye structure placed between the first substrate and the sealing member. The muslin structure or moth-eye structure serves to form a smooth refractive index gradient between the sealing member and the first transparent substrate, thereby enhancing the transparency of the liquid crystal device.
    • 本发明涉及提供一种液晶装置,其通过将液晶材料密封在基板之间,其中设置防止在密封处的反射,由此实现优异的透明度。 液晶装置包括设置在观察侧的第一基板,与第一基板相对配置的第二基板,设置在第一基板和第二基板之间的密封部件,设置在第一基板和第二基板之间的液晶层, 由密封构件密封,以及布置在第一基板和密封构件之间的细棉布结构或蛾眼结构。 细棉结构或蛾眼结构用于在密封构件和第一透明基板之间形成平滑的折射率梯度,从而提高液晶装置的透明度。