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    • 1. 发明专利
    • キャッパ
    • CAPPER
    • JP2015054724A
    • 2015-03-23
    • JP2013190944
    • 2013-09-13
    • 澁谷工業株式会社Shibuya Kogyo Co Ltd
    • KITAMOTO HIROAKIMASUMOTO SATOSHIMATSUI HAJIMEHOSOKI DAISUKEISHIYAMA RYOJI
    • B67B3/20
    • 【解決手段】グリッパは一対の把持部材を有するとともに、各把持部材における容器の所要部分を把持する把持面に、当該容器の外面に係合して容器の回転を阻止する回転防止部を備えている。上記グリッパによる容器の受け取り位置に、上記容器を押圧する補助把持手段を設け、上記グリッパが上記受け取り位置において容器を受け取る際、上記把持部材が閉鎖されて上記回転防止部が容器の外面に係合するのに先行して、上記補助把持手段が容器を押圧して、当該補助把持手段と把持部材との間で容器を保持するようにする。【効果】グリッパへの容器の確実な受け渡しを行うことができる。【選択図】図5
    • 要解决的问题:提供一种能够可靠地执行容器传送的封盖器。解决方案:封盖机包括具有一对夹持构件的夹持器和与容器的外表面接合并防止容器旋转的旋转防止部件 所述容器位于夹持表面上,用于夹持每个夹持构件中的所述容器的所需部分。 用于按压容器的辅助夹紧装置通过夹持器设置在容器的容纳位置。 当夹持器在接收位置处接收容器时,辅助夹紧装置按压容器,使得容器保持在辅助夹紧装置和夹持构件之间,之后夹紧构件被关闭并且防止旋转部分与 容器的外表面。
    • 3. 发明专利
    • Capping method
    • CAPPING方法
    • JP2009179342A
    • 2009-08-13
    • JP2008018984
    • 2008-01-30
    • Shibuya Kogyo Co Ltd澁谷工業株式会社
    • MATSUI HAJIMEKITAMOTO HIROAKIKASAI MITSURUTAKEBE MINORUMINAMOTO TOSHIYUKIMIYAZAKI TAKASHI
    • B67B3/20
    • PROBLEM TO BE SOLVED: To enable to cap a vessel surely without damage of a cap and the vessel.
      SOLUTION: In a method of capping the vessel while detecting torque working on a capping head, when the cap is attached to the vessel, the cap can be positioned to the vessel in a predetermined direction by an engagement protrusion mounted on the cap and a getting-over protrusion and a stopper protrusion both mounted on the vessel. The capping head rotates the cap by a predetermined command torque To. When the torque working on the capping head reduces by a predetermined torque from the maximum torque Tdb, the detecting means determines that the engagement protrusion got over the getting-over protrusion (Tdc) and then detects the minimum torque Tdd. When the torque increases by the predetermined torque from the minimum torque, the engagement protrusion comes into contact with the stopper protrusion and the detecting means determines the end of capping (Tde).
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了能够确保船只盖帽,而不会损坏船只和船只。 解决方案:在检测在封盖头上工作的扭矩的同时对容器进行加盖的方法中,当盖连接到容器时,盖可以通过安装在帽上的接合突起沿预定方向定位在容器上 以及两个安装在容器上的过渡突起和止动突起。 盖帽头以预定的指令扭矩To旋转盖子。 当在顶盖上工作的转矩从最大扭矩Tdb减小预定扭矩时,检测装置确定接合突起超过翻转突起(Tdc),然后检测最小扭矩Tdd。 当扭矩从最小扭矩增加预定扭矩时,接合突起与止动突起接触,并且检测装置确定封盖结束(Tde)。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • BOTTLE STAND FOR CAPPER
    • JP2000007094A
    • 2000-01-11
    • JP18822698
    • 1998-06-18
    • SHIBUYA KOGYO CO LTD
    • KITAMOTO HIROAKI
    • B67B3/20
    • PROBLEM TO BE SOLVED: To provide a bottle stand for a capper, which sinks when a load is applied to a container from above, and regulate a repulsive force of the bottle stand, which works upward. SOLUTION: A bottle stand 108 has a setting portion 124 on which a container 6 is set, a supporting portion 104 provided around the setting portion, an urging means adapted to urge the setting portion upward, and stopper 124a for restricting a limit of upward movement of the setting portion. The setting portion is not moved downward under a state that the container is set thereon and, when a load is applied to the container by a capping head, the setting portion is sunk to reduce a load acting on the container. The urging means comprises a first permanent magnet 140 mounted to the underface of the setting portion, a second permanent magnet 144 which is mounted on a bottle stand base 142 disposed beneath the setting portion and which has the same magnetic pole as that of the first magnet, and a regulating means 146 adapted to regulate a repulsive force of both the magnets by causing the second magnet to move up and down. With this arrangement, when containers are changed in size, the repulsive force of the magnets can easily be regulated according to the weight of such containers, so that it is unnecessary to replace attachments to the bottle stand for each of different containers.
    • 5. 发明专利
    • CAPPING HEAD
    • JPH08244887A
    • 1996-09-24
    • JP7077095
    • 1995-03-03
    • SHIBUYA KOGYO CO LTD
    • KITAMOTO HIROAKIKAWAKAMI NOZOMI
    • B67B3/20
    • PURPOSE: To change the torque at the time of capping in stages, and also, highly accurately control the torque at the completion of a screwing. CONSTITUTION: A capping head 1 is equipped with a first clutch 3 consisting of a magnetic clutch, and a second clutch 5 consisting of an air clutch which can change a transmittable torque. Then, at the time of capping by the capping head 1, a cap 7 is temporarily clamped on a container by transmitting a small torque to a chuck by the second clutch 5 first. Then, the torque which can be transmitted by the second clutch 5 is switched from small to large. Since the large torque which can be transmitted by the second clutch 5 is larger than a torque which can be transmitted by the first clutch 3, consequently, the cap 7 is clamped further by a specified torque which can be transmitted by the first clutch 3, and the capping is completed.
    • 6. 发明专利
    • DEFECTIVE CAP-REJECTING DEVICE
    • JPH07101494A
    • 1995-04-18
    • JP26816093
    • 1993-09-30
    • SHIBUYA KOGYO CO LTD
    • KITAMOTO HIROAKI
    • B67B3/06B67B3/26
    • PURPOSE:To provide a defective cap-rejecting device for which the judging precision of an inspecting device to judge whether a cap is accetable or not has been improved, and at the same time, which can avoid the decrease in the working ratio due to the operation stop when a defective cap is generated, and in addition, is suitable as an auxiliary mechanism for a cap feeding device to a capper in a clean booth. CONSTITUTION:For a cap feeding device being equipped with a cap sorter to align caps 14 and a chute 4 to carry the caps which are aligned by the cap sorter, a vertical form dropping part 8 is formed on the path of the chute. At the same time, an inspecting device 9 which judges whether or not the cap being dropping in the dropping part is acceptable, and a sensor to detect the operation timing of the inspecting device are provided. In addition, on the downstream side of the inspecting device, a rejecting device 10 which rejects a defective cap from the chute on the basis of an output from the inspecting device is arranged.
    • 7. 发明专利
    • Powder transporting device
    • 粉末运输设备
    • JP2012224447A
    • 2012-11-15
    • JP2011094193
    • 2011-04-20
    • Shibuya Kogyo Co Ltd澁谷工業株式会社
    • MATSUI HAJIMEONISHI TAKUYAKITAMOTO HIROAKIHAYASHI MASAMI
    • B65G54/02H02N1/00
    • PROBLEM TO BE SOLVED: To enable transportation of a small amount of powder by adjusting a gap of a guide electrode or a magnitude of voltage applied thereto, since the powder close to the guide electrode receives repulsive force by the voltage of the guide electrode, and the amount of the powder between guide electrodes can be adjusted to a small amount.SOLUTION: A powder transportation device includes: a transportation plate 5 for transporting a powder 3; a charging unit 7 for charging the powder; a plurality of parallel electrodes 21A-21C disposed in the direction crossing the transportation direction of the powder on the transportation plate; and application units 22A-22C for applying voltage to the parallel electrodes in a specific order. The powder can be transported along transportation paths 12A-12C by applying the voltage to the parallel electrodes in a specific order. On both sides of transportation paths 12A-12C, guide electrodes 23A-23D are disposed, and the voltage of the polarity same as that of charged powder is applied to the guide electrodes.
    • 要解决的问题:为了通过调节引导电极的间隙或施加到其上的电压的大小来实现少量粉末的输送,因为靠近引导电极的粉末通过引导件的电压接收排斥力 电极,导向电极之间的粉末的量可以调节到少量。 解决方案:粉末输送装置包括:输送粉末3的输送板5; 用于对粉末进行充电的充电单元7; 多个平行电极21A-21C,沿着与输送板上的粉末的输送方向交叉的方向设置; 以及用于以特定顺序向平行电极施加电压的应用单元22A-22C。 通过以特定的顺序向平行电极施加电压,可以沿着输送路径12A-12C输送粉末。 在输送路径12A-12C的两侧设置有引导电极23A-23D,并且将与充电粉末相同的极性电压施加到引导电极。 版权所有(C)2013,JPO&INPIT
    • 8. 发明专利
    • Capping method and capping apparatus
    • 封盖方法和封盖装置
    • JP2005193937A
    • 2005-07-21
    • JP2004001121
    • 2004-01-06
    • Shibuya Kogyo Co Ltd澁谷工業株式会社
    • KITAMOTO HIROAKIMATSUI HAJIME
    • B67B3/26B67B3/20
    • PROBLEM TO BE SOLVED: To execute a capping process using an actual torque acting on a cap to achieve highly precise capping.
      SOLUTION: An actual torque that corresponds to a monitor torque and an actual revolution speed is given by a test, using the monitor torque and actual revolution speed that acts on a servomotor 7 via a capping head 6, and is stored in a memory 46 of a control means 8. Upon capping, an actual torque corresponding to a detected monitor torque and an actual revolution speed is read out of the memory 46, and a revolution angle of the capping head 6 from a time the actual torque reaches a temporary screwing ending torque to a time reaching a screwing ending torque is calculated. The calculated revolution angle is used to determine whether the capping is fine or not.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:使用作用在盖上的实际扭矩来执行加盖过程,以实现高精度的封盖。

      解决方案:使用通过封盖头6作用于伺服电动机7的监视扭矩和实际转速,通过试验给出对应于监视转矩和实际转速的实际转矩,并存储在 控制装置8的存储器46.在加盖时,从存储器46读出与检测到的监视转矩和实际转速相对应的实际转矩,并且从实际转矩达到一定时间开始的转头角度 计算临时拧紧结束扭矩达到螺旋结束扭矩的时间。 计算的转角用于确定封盖是否正常。 版权所有(C)2005,JPO&NCIPI

    • 10. 发明专利
    • CAPPING METHOD AND CAPPING APPARATUS
    • JP2001072186A
    • 2001-03-21
    • JP25441999
    • 1999-09-08
    • SHIBUYA KOGYO CO LTD
    • KITAMOTO HIROAKI
    • B67B3/20
    • PROBLEM TO BE SOLVED: To accurately judge a seating point regardless of solid difference between a cap and a container or whether the container is wet or dry. SOLUTION: A rotary encoder 6 is attached to a torque motor 3 to input one pulse to a control device 8 at each time when the torque motor 3 is rotated. The output torque at a time when the torque motor 3 is rotated is detected by a torque detector 7 to be inputted to the control device 8. When a control part 8A drives the torque motor 3, an operation part 8B calculates the change quantity of the output torque per a unit angle of rotation and a comparing part 8C compares this change quantity with a predetermined reference value. At a point of time when the change quantity exceeds the reference value, the control device 8 judges that the upper end of the mouth part 1a of the container becomes the seating point brought into contact with the packing 9 in a cap 5 and seams the cap 5 by a predetermined angle of rotation from this point of time to stop the operation of the torque motor 3.