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    • 1. 发明授权
    • Case holding mechanism
    • 案件保留机制
    • US07584931B2
    • 2009-09-08
    • US11397635
    • 2006-04-05
    • Hiroyasu OhsawaKazuya MatsuuraTakashi SakagamiKouichi Ikuma
    • Hiroyasu OhsawaKazuya MatsuuraTakashi SakagamiKouichi Ikuma
    • A47G1/10A45F5/00
    • B60R11/00B60R5/04
    • A case holding mechanism includes a holding member and a member to be held thereby, one being mounted to the case and another to a body to which the case is to be held. The member to be held includes a first pair of parallel guide portions and another pair of parallel guide portions perpendicular to the one paired guide portions. The holding member disposed to be movable with respect to the guide portions therealong in a state restricted in thickness direction of the guide portions and adapted to hold the member to be held. The holding member includes a pair of slide portions slidable along outer surfaces of one paired guide portions, a lock portion extending between the paired slide portions in parallel with the one paired guide portions and engaged with the other paired guide portions, and a base portion connecting the slide portions and the lock portion.
    • 壳体保持机构包括保持构件和待保持的构件,一个安装在壳体上,另一个安装到要保持壳体的主体。 要保持的构件包括第一对平行引导部分和垂直于一对引导部分的另一对平行引导部分。 所述保持构件被设置成能够在导向部的厚度方向上受限制的状态下相对于引导部移动,并且适于保持待保持的构件。 保持构件包括可沿着一对引导部分的外表面滑动的一对滑动部分,在一对滑动部分之间平行于一对引导部分延伸并与另一个引导部分接合的锁定部分,以及连接 滑动部分和锁定部分。
    • 2. 发明申请
    • Canister
    • US20050039603A1
    • 2005-02-24
    • US10877988
    • 2004-06-29
    • Kazuya MatsuuraTakashi SakagamiKazuhiro Yamaguchi
    • Kazuya MatsuuraTakashi SakagamiKazuhiro Yamaguchi
    • F02M25/08B01D53/04B01D53/02
    • B01D53/0415B01D53/0446B01D2253/102B01D2257/702B01D2258/01B01D2259/40081B01D2259/40086B01D2259/4516B01D2259/4566
    • There is prevented reduction in volume of a chamber, by which an activated charcoal layer for a canister is divided into sections. [MEANS TO SOLVE THE SUBJECT] In a canister, an activated charcoal layer is placed in a fluid passage by which an air intake port is connected to a charge port or purge port, and a chamber dividing the charcoal layer into sections so as to traverse the fuel passage is defined by a grid and a filter pad placed on the surface of the grid. The grid has apertures uniformly formed on the surface of the grid contacting with the filter pad, so as to communicate with the chamber. Formation of the apertures on the surface of the grid prevents the filter pad from coming into the mesh of the grid, thus maintaining flatness of the filter pad. The original volume of the chamber can be maintained, so as to enable the fuel from the fuel tank to be absorbed effectively by the first and second layers of the charcoal layer, thus preventing the fuel from being released into the air. The fuel with an appropriate concentration can be supplied when the fuel is sucked by an engine.
    • 防止室的体积减小,通过该室的活性炭层被分成多个部分。 [解决方案的手段]在罐中,将活性炭层放置在流体通道中,通过该通道将进气口连接到进料口或吹扫口,以及将炭层分成多个部分以横越 燃料通道由放置在电网表面上的格栅和滤垫定义。 栅格具有均匀地形成在与滤板接触的栅格表面上的孔,以便与室连通。 在栅格表面上形成孔径防止过滤垫进入网格的网格,从而保持过滤垫的平整度。 可以保持室的原始体积,以使来自燃料箱的燃料能够被炭层的第一层和第二层有效地吸收,从而防止燃料被释放到空气中。 当燃料被发动机吸入时,可以提供具有适当浓度的燃料。
    • 10. 发明授权
    • Molten metal supply device
    • 熔融金属供应装置
    • US5700422A
    • 1997-12-23
    • US630747
    • 1996-04-10
    • Hirotake UsuiKazuya MatsuuraShin Nitta
    • Hirotake UsuiKazuya MatsuuraShin Nitta
    • B22D39/02C21D11/00
    • B22D39/023
    • A molten metal supply device capable of supplying molten metal with high precision to an injection sleeve of a die-casting machine, and capable of reducing molten metal leakage and damage to a molten metal conduit bridging between a holding furnace and the injection sleeve. The holding furnace is divided into a holding chamber and a supply chamber in fluid connection with the injection sleeve through the conduit. Both chambers can be selectively brought into and out of fluid connection by a stopper. First and second immersion bodies are immersibly provided to the chambers, respectively. The laser sensor detects a predetermined level of the molten metal. The first immersion body is immersed until the sensor detects the surface of the molten metal, whereupon the stopper blocks fluid communication between the chambers. By then lowering the second immersion body, molten metal is pushed out of the supply chamber and a predetermined amount of molten metal is supplied to the injection sleeve. The conduit includes a duct and a mouthpiece, The duct is provided by an inner ceramic layer, an outer stainless steel tube, a heat line wound over the stainless steel tube, and a mortar layer.
    • 一种熔融金属供给装置,其能够高精度地供给压铸机的注射套筒的熔融金属,并且能够减少熔融金属泄漏以及对保持炉和注射套筒之间桥接的熔融金属管道的损坏。 保持炉被分成通过管道与注射套筒流体连接的保持室和供应室。 两个腔室都可以通过止动器选择性地进入和离开流体连接。 第一和第二浸没体分别浸没在室中。 激光传感器检测熔融金属的预定水平。 第一浸没体浸入到传感器检测到熔融金属的表面之前,止动件阻挡腔室之间的流体连通。 然后,通过降低第二浸没体,将熔融金属从供给室推出,并将预定量的熔融金属供应到注射套筒。 管道包括管道和接口管道,管道由内部陶瓷层,外部不锈钢管,缠绕在不锈钢管上的热管和砂浆层提供。