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    • 2. 发明专利
    • VACUUM TYPE SEWAGE COLLECTING FACILITY
    • JPH09221813A
    • 1997-08-26
    • JP2928996
    • 1996-02-16
    • HITACHI METALS LTD
    • HIRAO NORIAKIWATANABE TOSHIYUKI
    • E03F1/00E03F5/22
    • PROBLEM TO BE SOLVED: To remove a foreign matter by removably fitting an adapter to a vacuum valve when a controller is removed from the vacuum valve, connecting the vacuum valve and one end of an intake pipe via a three-way valve, and connecting a vacuum generating member to the other end of the intake pipe. SOLUTION: When such an abnormality occurs that a foreign matter 30 is pinched between the valve element 3a and valve seat 3b of a vacuum valve 3, a vacuum valve controller 4 is removed from the vacuum valve 3, and an adapter 11 having a connection pipe 12 branched from a three-way valve 13 is fitted. The tip of the connection pipe 12 and the tip of an intake pipe 7 are connected to the three-way valve 13, a vacuum generating member 14 is fitted to the other end of the intake pipe 7, and the vacuum valve 3 is opened. After the foreign matter 30 is moved and sucked into a vacuum main pipe via a vacuum branch pipe and the vacuum valve 3 is returned to the normal state, the adapter 11 is removed, and the vacuum valve controller 4 is fitted. The foreign matter 30 of the vacuum valve 3 is quickly removed, and the maintenance efficiency can be improved.
    • 3. 发明专利
    • VACUUM SOIL WATER COLLECTING SYSTEM
    • JPH04131441A
    • 1992-05-06
    • JP25102390
    • 1990-09-20
    • HITACHI METALS LTD
    • IWASAKI KATSUMIWATANABE TOSHIYUKIYAMASHITA NOBUYUKIIIJIMA KATSU
    • E03F1/00E03F5/22
    • PURPOSE:To reduce the burden of exposure to air in a sewage treatment works by exposing a vacuum tank to oxygen including gas after the tank is set under atmospheric pressure at night, to drain soil water in the tank, and by making the tank and vacuum pipings communicate with each other, to suck the soil water in a soil water measure, to the tank. CONSTITUTION:For about 16 hours during a daytime and night, a vacuum pump 6 is operated, and soil water drained from a soil water source 1 is sucked into a vacuum tank 5. When the discharge quantity of the soil water is remarkably lowered at midnight, then the vacuum tank 5 and vacuum pipings 4 are interrupted from each other and after that, into the tank 5, atmospheric air is introduced, and it is roughly set under atmospheric pressure. The air is fed to an air dispersing pipe 7 in the tank 5 from a blower 8, and the soil water is exposed to air for about 8 hours. Then, a pressure-feeding pump 9 is operated, and the soil water in the tank 5 is drained. Besides, the tank 5 and the pipings communicate with each other, and the pump 6 is operated, and the interior of the tank 5 is set under negative pressure again.
    • 5. 发明专利
    • Sliding conveyer
    • 滑动输送机
    • JPS6118613A
    • 1986-01-27
    • JP13933084
    • 1984-07-05
    • Hitachi Metals Ltd
    • WATANABE TOSHIYUKI
    • B65G21/12B65G25/00B65G25/06
    • B65G21/12
    • PURPOSE:To simplify the structure and to reduce a sliding conveyer to a compact size by providing a prime mover on a movable frame and supporting the movable frame only by a roller in the conveyer where the movable frame is moved by one prime mover to advance and retreat to an unloading position. CONSTITUTION:A fixed frame 2 is disposed on a floor 1, and the fixed frame 2 is provided with a pair of a lower rotatable roller 3 and an upper rack 4. A driving pulley 6 is fitted in a driving shaft 8 supported by a bearing 7 on one end of a movable frame 5. A driven pulley 9 is disposed on the other end of the movable frame 5, and an endless flexible member 10 is extended between the driven pulley 9 and the driving pulley 6. Further, a pinion 12 is fixed to the driving shaft 8 and engaged with the rack 4. The driving shaft 8 is driven by a prime mover 13 fixed to the movable frame 5. In this arrangement, the prime mover 13 is disposed on the movable frame 5, and the movable frame 5 is supported by the roller 3 to simplify the structure of a sliding conveyer and reduce the conveyer to a compact size.
    • 目的:为了简化结构,并通过在可移动框架上提供原动机来将滑动输送机减小到紧凑的尺寸,并且仅通过输送机中的辊支撑可移动框架,其中可移动框架由一个原动机移动以前进, 撤退到卸货位置。 构成:固定框架2设置在地板1上,固定框架2设置有一对下部可旋转辊3和上部齿条4.驱动滑轮6装配在由轴承支承的驱动轴8中 可动框架5的一端上设置有可动框架5的可动框架5的另一端上设有从动滑轮9,在从动滑轮9和驱动滑轮6之间延伸有环形柔性构件10.此外,小齿轮12 被固定到驱动轴8并与齿条4接合。驱动轴8由固定到可动框架5的原动机13驱动。在这种布置中,原动机13设置在可动框架5上, 可移动框架5由辊3支撑以简化滑动输送机的结构,并将输送机减小到紧凑的尺寸。
    • 6. 发明专利
    • ANAEROBIC BACTERIA TANK
    • JP2003251390A
    • 2003-09-09
    • JP2002060322
    • 2002-03-06
    • HITACHI METALS LTD
    • WATANABE TOSHIYUKIMIYASAKA KUNIO
    • C02F3/10C02F3/28
    • PROBLEM TO BE SOLVED: To solve the point at issue that the ascending flow discharge port is provided to the lower part of an anaerobic bacteria tank to be positionally set on the basis of the inner walls of the anaerobic bacteria tank and filter beds are also arranged on the basis of the inner walls, that is, the filter beds are first arranged at the crossing point of the inner walls in the contact state with the inner walls and subsequently arranged so as to be brought into contact with the inner walls and, on and after, the adjacent parts of the respective filter beds are mutually brought to a contact state to successively arrange the filter beds and a row of the filter beds adjacent to the inner walls is arranged lastly but gaps are required between the filter bed of the outermost row and the inner walls because the filter bed of the outermost row can not be arranged if there are no gaps but the short-circuit flow of sewage is generated in the gaps between the filter bed of the outermost row and the inner walls and the cleaning capacity of sewage due to anaerobic microorganisms lowers. SOLUTION: In the anaerobic bacteria tank having the filter beds 25 provided in the cylindrical part 61 of the body thereof, a blocking material 27 is provided in the gaps between the inner walls 61a-61d of the cylindrical part 61 and the filter beds 25. COPYRIGHT: (C)2003,JPO
    • 7. 发明专利
    • VACUUM TYPE WASTE WATER COLLECTION FACILITY
    • JPH11181869A
    • 1999-07-06
    • JP34828697
    • 1997-12-17
    • HITACHI METALS LTD
    • WATANABE TOSHIYUKIHIRAO TENMEI
    • E03F3/02
    • PROBLEM TO BE SOLVED: To detect ant abnormal state before the overflow of waste water by connecting an outlet pipe in the middle of a connection pipe jointing a controller to a vacuum piping, installing a movable member to an open end of outlet pipe and connecting a float member to a movable member. SOLUTION: When a vacuum valve 3 is operating normally, a connection pipe 5, a branch vacuum pipe 22 and an outlet pipe 13 are maintained to a vacuum state. And the water level in a catch basin 1 is at the NL position, a float 32 is at the NL position, and a movable piece contacts to the end face of outlet pipe ands closes it. And if the water level in a catch basin 1 rises to the position of HL, the float 32 also rises to the position of HL, the movable piece is separated from the end face of the outlet pipe 13 by the link mechanism containing first and second rods 19a, 19b, and atmospheric air flows to the vacuum valve and the vacuum is destroyed. Moreover, are is sucked by the warning horn attached to the end portion of the outlet pipe 13 and a warning sound is generated and the anomaly in the catch basin 1 is detected. Thus, the anomaly in the vacuum valve 3 can be detected before the waste water overflows from the catch basin 1.
    • 9. 发明专利
    • Scum removing apparatus
    • SCUM拆卸装置
    • JP2003010844A
    • 2003-01-14
    • JP2001198036
    • 2001-06-29
    • Hitachi Metals Ltd日立金属株式会社
    • UNISHI TOSHIYUKIWATANABE TOSHIYUKIHIRAO TENMEI
    • E03F5/14C02F1/40
    • PROBLEM TO BE SOLVED: To solve such a problem that the scum removing apparatus of a sedimentations basin in which a cam plate is pushed down by the roller attached to the scraper arm moving through the sedimentation basin to revolve a scum pipe, has a complicated structure and easily misoperated.
      SOLUTION: The scum removing apparatus is provided with a cam roller 9 to a scraper arm 4 and providing a first cam plate 7 and a second cam plate 8 to a scum pipe 5 and, when the scraper arm 4 is moved to approach the scum pipe 5, the cam roller 9 contacts with the first cam plate 7 and, when the scraper arm 4 is further moved, the scum pipe 5 is revolved to a position where an inflow port 53 faces to scum from the original position through the first cam plate 7 and, when the scraper arm 4 is moved further, the cam roller 9 comes into contact with the second cam plate 8 and, when the scraper arm 4 is moved furthermore, the scum pipe 5 is revolved through the second cam plate 8 to return to the original position.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题为了解决这样一个问题,即通过安装在刮板上的滚轮将凸轮板向下推动的沉淀池的浮渣装置移动通过沉降池旋转浮渣管,具有复杂的结构 并容易误操作。 解决方案:浮渣除去装置在刮刀臂4上设置有凸轮9,并将第一凸轮板7和第二凸轮板8设置在浮渣管5上,并且当刮板4移动以接近浮渣管 如图5所示,凸轮辊9与第一凸轮板7接触,并且当刮刀臂4进一步移动时,浮渣管5旋转到通过第一凸轮板从原始位置流入端口53面对浮渣的位置 如图7所示,当刮刀臂4进一步移动时,凸轮辊9与第二凸轮板8接触,并且当刮板4进一步移动时,浮渣管5通过第二凸轮板8旋转以返回 到原来的位置。
    • 10. 发明专利
    • VACUUM SEWAGE-COLLECTING EQUIPMENT
    • JPH09137495A
    • 1997-05-27
    • JP28156695
    • 1995-10-30
    • HITACHI METALS LTD
    • WATANABE TOSHIYUKIYAMASHITA NOBUYUKINEGISHI TOSHIYUKI
    • E03F3/02
    • PROBLEM TO BE SOLVED: To prevent the increase of lift loss in a vacuum pipe only by addition of a simple structure, by installing a pump between a sewage storage tank connected to the upstream side vacuum pipe and the downstream side vacuum pipe. SOLUTION: When an electric motor-driven valve 8a and a solenoid valve 8c are closed and a motor-driven valve 8b is opened and the water level in a sewage storage tank 4 is lowered to L or a lower level, sewage flows from the upstream side vacuum pipe 1 in the tank 4 and the water level rises up to H. Then, the motor-driven valve 8a is opened and the motor-driven valve 8b is closed and the pump is driven. Then, the water level in the tank 4 is lowered to L or a lower level and the pump 5 is brought to a stop, and the motor-driven valve 8a is closed and the solenoid valve 8c is opened to prevent air-lock and after air has been taken into the downstream side vacuum pipe 2, the solenoid valve 8c is closed and the motor-driven valve 8b is opened to return the condition to the initial state. In this way, since the sewage in the pipe 1 is transferred to the pipe 2 by the pump 5, even if the pipe 2 is positioned at a higher level than the pipe 1, lift loss is not brought.