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    • 69. 发明授权
    • Cathode ray tube and manufacturing apparatus for the same
    • 阴极射线管及其制造装置
    • US6062933A
    • 2000-05-16
    • US390958
    • 1999-09-03
    • Shinji KasukawaAkihiko FukuyamaKoji Takahashi
    • Shinji KasukawaAkihiko FukuyamaKoji Takahashi
    • H01J9/34C03B23/217H01J9/26
    • C03B23/217H01J9/263Y10T279/26
    • A manufacturing apparatus for a cathode ray tube attaches an electron gun to a neck of a glass valve while grasping the neck with a chuck apparatus. The chuck apparatus has at least three chuck members, a chuck member holding unit and an interlocking unit. Each chuck member has a neck contacting surface that lies on a single plane that is parallel with a central axis of the neck. The chuck member holding unit holds the chuck members so as to allow movement of the neck contacting surface of each chuck member from a periphery of the neck toward the central axis of the neck. The interlocking unit causes an interlocked movement of the chuck members so that the neck contacting surface of each chuck member moves with an equal displacement toward the central axis of the neck.
    • 用于阴极射线管的制造装置将电子枪连接到玻璃阀的颈部,同时用卡盘装置抓住颈部。 卡盘装置具有至少三个卡盘构件,卡盘构件保持单元和联锁单元。 每个卡盘构件具有位于与颈部的中心轴线平行的单个平面上的颈部接触表面。 卡盘构件保持单元保持卡盘构件,以允许每个卡盘构件的颈部接触表面从颈部的周边朝向颈部的中心轴线移动。 互锁单元引起卡盘构件的互锁运动,使得每个卡盘构件的颈部接触表面朝向颈部的中心轴线等移位。
    • 70. 发明授权
    • Air conditioning apparatus for vehicle
    • 车用空调设备
    • US6016967A
    • 2000-01-25
    • US944448
    • 1997-10-06
    • Tetsuya TakechiKoji TakahashiHideaki InazawaYasuhiro SatoTatsuo TsunookaToshiaki Nomura
    • Tetsuya TakechiKoji TakahashiHideaki InazawaYasuhiro SatoTatsuo TsunookaToshiaki Nomura
    • B60H1/00B60H1/02
    • B60H1/00849B60H1/00064B60H2001/00107B60H2001/00128B60H2001/00135
    • According to the present invention, in an air conditioning apparatus setting a double laminar mode in which an inside air and an outside air are blown while being partitioned, when the maximum heating state is set during an air outlet mode in which air is blown out simultaneously from both of a foot opening portion toward feet of a passenger and a defroster opening portion toward a windshield, a passage for conditioned air is partitioned into a first air passage for the inside air and a second air passage for the outside air. The first air passage is communicated with the foot opening portion, and the second air passage is communicated with the defroster opening portion. In the double laminar mode, at an air downstream side of a heating heat exchanger, there is formed a communication path communicating between the first air passage and the second air passage, and an amount of the outside air at the side of the second air passage is set to be larger than that of the inside air at the side of the first air passage, so that the outside air in the second passage flows into the first air passage through the communication path. In this way, it is possible to improve a defrosting performance of the windshield.
    • 根据本发明,在设置分隔内部空气和外部空气的双重层流的空调装置中,当在同时吹出空气的排风模式中设定最大加热状态时 从脚踏开口部分朝向乘客的脚部和除霜器开口部分朝向挡风玻璃,用于调节空气的通道被分隔成用于内部空气的第一空气通道和用于外部空气的第二空气通道。 第一空气通道与脚部开口部连通,第二空气通路与除霜器开口部连通。 在双层流模式中,在加热热交换器的空气下游侧,形成有连通第一空气通路与第二空气通路的连通路,第二空气通路一侧的外部空气量 被设定为大于第一空气通路侧的内部空气的大小,使得第二通路内的外部空气通过连通路径流入第一空气通路。 以这种方式,可以提高挡风玻璃的除霜性能。