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    • 1. 发明申请
    • Local clean robot-transport plant and robot-transport manufacturing method
    • 本地清洁机器人运输工厂和机器人运输制造方法
    • US20070274814A1
    • 2007-11-29
    • US11797528
    • 2007-05-04
    • Atsuko KawasakiMasahiro KiyotoshiShoko ItoMakiko KatanoAyako Mizuno
    • Atsuko KawasakiMasahiro KiyotoshiShoko ItoMakiko KatanoAyako Mizuno
    • H01L21/677
    • H01L21/67276H01L21/67271H01L21/67727H01L21/6773
    • A local clean robot-transport plant includes: a plurality of manufacturing apparatuses; a plurality of closed-type transport containers; a container discrimination/selection apparatus; an apparatus group control server. Each of the plurality of closed-type transport containers stores and transports an intermediate product of manufacturing processes along a plurality of interprocess transport paths defined among the plurality of manufacturing apparatuses in accordance with a flow of the manufacturing processes. The container discrimination/selection apparatus is configured to discriminate and select the closed-type transport container of transport type 1 and the closed-type transport container of transport type 2, respectively, from among the plurality of closed-type transport containers. The apparatus group control server is configured to collectively control operation of the plurality of manufacturing apparatuses and the container discrimination/selection apparatus to move the closed-type transport container of transport type 2 to a specific interprocess transport path and to move the closed-type transport container of transport type 1 to the interprocess transport path other than the specific interprocess transport path.
    • 本地清洁机器人运输设备包括:多个制造装置; 多个封闭式运输容器; 容器辨认/选择装置; 设备组控制服务器。 多个封闭式运输容器中的每一个根据制造过程的流程,沿着多个制造装置之间限定的多个处理间传送路径来存储和传送制造过程的中间产品。 容器识别/选择装置被配置为分别从多个封闭式运输集装箱中分别选择运输类型1的封闭式运输集装箱和运输类型2的封闭式运输集装箱。 设备组控制服务器被配置为共同地控制多个制造设备和容器识别/选择设备的操作,以将传送类型2的封闭式运输容器移动到特定的处理间传送路径,并且移动封闭式传送 1类运输集装箱到特定进程间运输路径以外的进程间运输路径。
    • 6. 发明授权
    • Flower pot for group planting
    • 花盆用于群种植
    • US06269588B1
    • 2001-08-07
    • US09376303
    • 1999-08-18
    • Shoko Ito
    • Shoko Ito
    • A47G700
    • A01G9/022
    • A flower pot for group planting of flower plants or the like which is mounted on a pole comprises a flower pot body (1) having planting openings (6) of which upper part is opened and provided in a plurality of locations in the periphery of said body (1), and having a hole (8) provided in the bottom of said body for inserting the pole; and a cylindrical mounting member (2) for inserting the upper part of said pole, at least the bottom of said mounting member is opened and said mounting member is fixedly or removably mounted vertically around said hole (8). The outer face of said flower pot is covered by the group planted flower plants and not exposed when said flower pot in which flower plants have been group planted is mounted on the pole, and accordingly the beauty of the flowers planted in said flower pot is kept well and the decoration effect is increased, and said flower pot is securely mounted on the pole and accordingly does not fall even when subjected to strong winds.
    • 安装在杆上的花卉植物等的组种植花盆包括花盆体(1),花盆体(1)具有种植开口(6),其上部被打开并设置在所述 主体(1),并且具有设置在所述主体的底部中的用于插入杆的孔(8); 以及用于插入所述杆的上部的圆柱形安装构件(2),至少所述安装构件的底部打开,并且所述安装构件被固定地或可移除地垂直地安装在所述孔(8)周围。所述花的外表面 盆栽被种植的花卉植物覆盖,并且当将种植了花卉植物的花盆安装在杆上时不暴露,因此在花盆中种植的花的美丽保持良好,装饰效果为 并且所述花盆牢固地安装在杆上,因此即使经受强风也不会下降。
    • 7. 发明授权
    • Gas turbine blade
    • 燃气轮机叶片
    • US4992026A
    • 1991-02-12
    • US370080
    • 1989-06-22
    • Fumio OhtomoYasuo OkamotoShoko ItoYoshitaka FukuyamaHideo IwasakiTakeshi Watanabe
    • Fumio OhtomoYasuo OkamotoShoko ItoYoshitaka FukuyamaHideo IwasakiTakeshi Watanabe
    • F01D5/18
    • F01D5/187F05D2260/202F05D2260/2212
    • A blade of a gas turbine includes a main body having a dovetail portion and a blade portion extending from the dovetail portion. A cooling air passage for flowing a cooling air is formed in the main body to cool the blade portion. The passage includes a cooling air inlet port open to the dovetail portion and an outlet port open to an extended tip of the blade portion. A first passage portion extends from the inlet port to the portion close to the extended tip along a leading edge of the blade portion. A final passage portion extends from the dovetail portion to the outlet port. The flow sectional area of the final passage portion is gradually decreased from the dovetail portion toward the outlet port. The final passage portion communicates with a number of film cooling holes which are open to the suction side surface of the blade portion.
    • 燃气涡轮机的叶片包括具有燕尾部分的主体和从燕尾部分延伸的叶片部分。 在主体中形成用于流动冷却空气的冷却空气通道以冷却叶片部分。 通道包括通向燕尾部分的冷却空气入口和与叶片部分的延伸尖端相通的出口。 第一通道部分沿着叶片部分的前缘从入口延伸到靠近延伸尖端的部分。 最后通道部分从燕尾部分延伸到出口。 最终通道部分的流动截面积从燕尾部分朝向出口逐渐减小。 最后的通道部分与许多对叶片部分的吸力侧表面开口的薄膜冷却孔连通。
    • 10. 发明授权
    • Transition piece between combustor liner and gas turbine
    • 燃烧器衬套与燃气轮机之间的过渡件
    • US09200526B2
    • 2015-12-01
    • US13332106
    • 2011-12-20
    • Shoko ItoDaizo SaitoYoshiaki Sakai
    • Shoko ItoDaizo SaitoYoshiaki Sakai
    • F02C3/02F23R3/54F01D9/02
    • F01D9/023
    • A transition piece 10 in an embodiment is provided with an inner duct 20 through which a combustion gas is led to a turbine part 130 and an outer duct 30 that is provided so as to cover an outer periphery of the inner duct 20 and has a plurality of ejection holes 31 to eject air onto an outer peripheral surface of the inner duct 20 formed therein. It is structured such that a channel cross-sectional area of a cooling air channel 50 that is formed between the inner duct 20 and the outer duct 30 and through which the air ejected from the ejection holes 31 flows gradually decreases at an air flow downstream side rather than the portion where the ejection holes 31 are formed, and gradually increases from a throat portion 60 having the minimized channel cross-sectional area to an air flow downstream side.
    • 在一个实施例中的过渡件10设置有内部管道20,燃烧气体通过该管道20被引导到涡轮机部分130和外部管道30,外部管道30设置成覆盖内部管道20的外周并且具有多个 的喷射孔31以将空气喷射到形成在其中的内部管道20的外周表面上。 其结构使得形成在内部管道20和外部管道30之间的冷却空气通道50的通道横截面积,并且从喷射孔31喷出的空气流过的通道横截面积在空气流下游侧逐渐减小 而不是形成喷射孔31的部分,并且从具有最小的通道横截面积的喉部60逐渐增加到气流下游侧。