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    • 1. 发明申请
    • 阀式给油器
    • WO2007147356A1
    • 2007-12-27
    • PCT/CN2007/070105
    • 2007-06-12
    • 王东升
    • 王东升
    • F16N25/00
    • F16N25/02
    • A valve-type oil feeder contains a shell, a spool and a piston, there are a valve chamber and a piston chamber in the shell,the valve chamber contains a oil inlet, the first outlet and the second outlet, the piston chamber contains a oil intake cavity, a oil discharging cavity and a oil outlet, the oil intake cavity is in communication with the second outlet, the oil discharging cavity is separately in communication with the first outlet and the oil outlet; the spool is set in the valve chamber and is movable between the beginning position and the working position, when it is at the beginning position, the oil inlet ends up at the second outlet, the first outlet is in communication with the second outlet, and when it is at the working position, the oil inlet is in communication with the second outlet, the first outlet ends up at the second outlet. The oil feeder adapts to all kinds of liquids and semi-liquids, all pressure, and all concentration. By controlling the movement of the spool, the oil feeder can conveniently supply lubricant when demanded, and it is easy to regulate the supply amount of the lubricant. The oil feeder has simple structure, abroad application, low producing cost, and reliable run.
    • 3. 发明申请
    • 流体传感器
    • WO2007147355A1
    • 2007-12-27
    • PCT/CN2007/070104
    • 2007-06-12
    • 王东升
    • 王东升
    • G01P13/00G01F23/00
    • G01P13/00
    • A fluid sensor includes a valve body (1), a valve core (2) and a position sensor (8) for the valve core. The valve body (1) has an inner cavity (10) including an inflowing cavity (11) and an outflowing cavity (12), and there is an inflowing port (3) connecting with the inflowing cavity (11) at one side of the valve body (1), and there is an outflowing port (5) connecting with the outflowing cavity (12) at the other side. The valve core (2) is located inside the inner cavity (10) and a flowing path (4) is formed into the interior. The entrance (41) of the flowing path (4) is connected with the inflowing cavity (11). The valve core (2) can be moved between an original position and an operating position, and the exit (42) of the flowing path is blocked off by means of the inner wall of the valve body (1) at the original position, and the exit (42) of the flowing path is connected with the outflowing cavity (12) at the operating position. The position sensor (8) for the valve core is used to detect the position of the valve core (2). The inflowing cavity (11) is connected with the outflowing cavity (12) by means of a draining hole (6).