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    • 1. 发明授权
    • Display device cabinet
    • 显示设备柜
    • US08971027B2
    • 2015-03-03
    • US13554129
    • 2012-07-20
    • Hideo YonezawaYuki KitaAkihiro FujikawaKenji OguraTsukasa Fujimoto
    • Hideo YonezawaYuki KitaAkihiro FujikawaKenji OguraTsukasa Fujimoto
    • H05K5/00H05K7/00G06F1/16
    • G06F1/1601
    • In a display device cabinet, a fixing assembly to join a front panel and a rear panel include a first fixing mechanism that uses attachment screws and a second fixing mechanism that uses no attachment screws, which have a structure that prevents the application of excessive force to engaging openings and protrusions during the assembly process and disassembly process. The second fixing mechanism includes protrusions on an edge frame of the front panel, a mating piece provided on the rear panel, engaging openings provided in the mating piece, and rib-shaped plates defining stopper elements between the edge frame and the outer frame of the display module. The stopper elements prevent the protrusions from slipping out of the engaging openings by contacting the outer frame. The stopper elements are shaped to prevent interference between the stopper elements and the outer frame during cabinet assembly.
    • 在显示装置机柜中,用于连接前面板和后面板的固定组件包括使用附接螺钉的第一固定机构和不使用安装螺钉的第二固定机构,其具有防止施加过大力的结构 在组装过程和拆卸过程中接合开口和突起。 第二固定机构包括在前面板的边缘框架上的突起,设置在后面板上的配合件,设置在配合件中的接合开口,以及限定止动件的肋状板,位于边缘框架和外框架之间 显示模块。 止动件通过接触外框来防止突起从接合开口滑出。 挡块元件成型为防止柜体组装期间止挡元件与外框架之间的干涉。
    • 5. 发明授权
    • Flange coupling for connecting pipes for carrying refrigerant during
refrigerating cycle
    • 用于在制冷循环期间承载制冷剂的连接管的法兰联接器
    • US5294156A
    • 1994-03-15
    • US838100
    • 1992-02-20
    • Kouzi KumazakiKenji OguraHiroshi ImaidaTatsuhisa Hayashi
    • Kouzi KumazakiKenji OguraHiroshi ImaidaTatsuhisa Hayashi
    • B60H1/32F16L39/00F25B41/00F16L3/22F16L23/02
    • F25B41/003F16L39/00
    • Aluminum pipes 63 and 65 are provided at the ends thereof with a flange unit 3 constructed by two separate flange sections 5 and 7 produced by injection moulding a plastic material selected from polypropylene, polyoximethylen, epoxy, polyester or nylon 66. As the plastic resin material, nylon 66 is most preferable. The flange sections 5 and 7 from semicircular grooves in which the pipes 63 and 65 are accommodated, and the sections 5 and 7 are moved toward each other to be brought into a face to face contact while projected portions 27 and 29 of the first section 5 are engaged with hook portions 59 and 61 of the second section 7. Then the sections 5 and 7 are connected to each other by a screw 7, to obtain an assembled state of the flange unit 3. With this flange assembly, a contact between different metal materials does not occur, and thus any corrosion of the pipes is substantially prevented.
    • 铝管63和65的端部设置有凸缘单元3,该凸缘单元3由通过注射成型从聚丙烯,聚邻苯乙烯,环氧树脂,聚酯或尼龙66中选择的塑料材料制成的两个单独的凸缘部分5和7构成。作为塑料树脂材料 ,尼龙66是最优选的。 来自容纳管63和65的半圆形槽的凸缘部分5和7,并且部分5和7彼此相对移动以与第一部分5的突出部分27和29面对面地接触 与第二部分7的钩部59和61接合。然后,部分5和7通过螺钉7彼此连接,以获得凸缘单元3的组装状态。利用该凸缘组件,不同的 不会发生金属材料,因此基本上防止了管道的任何腐蚀。
    • 6. 发明授权
    • Automotive air conditioner
    • 汽车空调
    • US5062275A
    • 1991-11-05
    • US489188
    • 1990-03-08
    • Toshio HirataKenji OguraTakehito Mizutani
    • Toshio HirataKenji OguraTakehito Mizutani
    • B60H1/32F25B9/00F25B45/00
    • B60H1/3217B60H1/00585F25B45/00F25B9/006F25B2400/16
    • An automotive air conditioner using a mixed type coolant of a higher boiling point coolant and a lower boiling point coolant. The air conditioner employs a stacking container connecting to an upper portion of a receiver for introducing a gas phased coolant which contains much of the lower boiling point coolant via a first valve. The stacking container is also connected to a suction side of a compressor via a second valve. The air conditioner becomes a mixing mode when the first valve closes a conduit and the second valve opens a conduit for introducing the lower boiling point coolant into a refrigerant circuit. The cooling ability is increased during the mixing mode. The air conditioner becomes a separating mode when the first valve opens the conduit and the second valve closes the conduit for separating the lower boiling point coolant circulating in the refrigerant circuit and stacking the same in the container. The consuming energy for operating the refrigerant circuit is decreased during the separating mode.
    • 使用高沸点冷却剂和低沸点冷却剂的混合型冷却剂的汽车空调。 空调器采用连接到接收器的上部的堆叠容器,用于引入通过第一阀包含大量低沸点冷却剂的气相冷却剂。 堆叠容器也经由第二阀连接到压缩机的吸入侧。 当第一阀关闭导管并且第二阀打开用于将低沸点冷却剂引入制冷剂回路的导管时,空调成为混合模式。 在混合模式下,冷却能力提高。 当第一阀打开管道并且第二阀关闭用于分离在制冷剂回路中循环的低沸点冷却剂并将其堆放在容器中的管道时,空调变成分离模式。 用于操作制冷剂回路的消耗能量在分离模式期间减小。