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    • 5. 发明授权
    • Vertical-type filling and packaging machine
    • 立式灌装包装机
    • US5463851A
    • 1995-11-07
    • US272396
    • 1994-07-20
    • Katsumi Nagai
    • Katsumi Nagai
    • B29C65/18B29C65/74B65B9/12B65B51/32B65B9/08B65B51/14B65B51/30
    • B29C66/349B29C65/18B29C65/7451B29C66/1122B29C66/4312B29C66/81427B29C66/81431B29C66/8181B29C66/83221B29C66/8491B65B51/32B65B9/12B29C66/81417
    • A vertical-type filling and packaging machine for filling and packaging a filling material in a tubular film of resin has a pair of squeezing rollers rotatably disposed one on each side of the tubular film filled with a filling material. The squeezing rollers press against the tubular film to clamp and feed the tubular film downwardly and create an unfilled region in the tubular film. A heat sealing mechanism which is disposed downwardly of the squeezing rollers for heat-sealing and severing the unfilled region has a heater bar for heat-sealing the unfilled region and a cooling bar for cooling the portion which has been heat-sealed by the heater bar. The heater bar and the cooling bar are successively pressable against a portion of the unfilled region while the tubular film is being held at rest. A cutting device, which may be an independent cutting blade or a triangular protrusion on the heater bar, severs the heat-sealed portion, thereby producing a sacked product. A plurality of film support members are disposed downwardly of the heat-sealing mechanism for gripping and holding a lower end of the unfilled region from the time the unfilled region is heat-sealed until the unfilled region is severed by the heat sealing mechanism.
    • 用于在树脂管状膜中填充和包装填充材料的垂直型填充和包装机具有一对挤压辊,其可旋转地设置在填充有填充材料的管状膜的每一侧上。 挤压辊压靠在管状膜上以夹紧并向下供给管状膜,并在管状膜中产生未填充区域。 设置在挤压辊的下方用于热封和切断未填充区域的热封机构具有用于热封未填充区域的加热棒和用于冷却由加热棒热封的部分的冷却棒 。 当管状膜保持静止时,加热棒和冷却条可连续地压靠未填充区域的一部分。 可以是加热棒上的独立切割刀片或三角形突起的切割装置切断热密封部分,从而产生被包装的产品。 多个膜支撑构件设置在热封机构的下方,用于从未填充区域被热封直到未填充区域被热封机构切断之后夹持和保持未填充区域的下端。
    • 7. 发明授权
    • Packaging apparatus
    • 包装设备
    • US07934361B2
    • 2011-05-03
    • US12089854
    • 2005-10-19
    • Orihiro TsurutaKatsumi NagaiKazumi Nakazato
    • Orihiro TsurutaKatsumi NagaiKazumi Nakazato
    • B65B9/06
    • B65B9/20B65B9/2007B65B41/16B65B41/18B65B51/303B65H19/1852B65H23/1882B65H2301/512145B65H2701/1752B65H2801/81
    • There is provided a packaging apparatus including a mechanism for joining a film from a film roll and a film from another film roll to each other. The packaging apparatus is capable of preventing a joint of the films from suffering a thermal sealing failure thereby increasing production efficiency. Package apparatus (10) includes film supply mechanism (10A) for joining and supplying films (1A, 1B) and packaging mechanism (10C) for producing package bags from the film. Film accumulator (10B) for guiding and holding the film in a meandering fashion is disposed between film supply mechanism (10A) and packaging mechanism (10C). Some of accumulating rollers (21) of film accumulator (10B) are movable to a predetermined position depending on the size of package bags to be manufactured. The length of the film from a position in which the films are joined to each other to a position in which the film is horizontally sealed is changed to prevent the joint between the films from being placed in the position in which the film is horizontally sealed.
    • 提供了一种包装装置,其包括用于将膜从胶片卷和膜与另一胶卷相互连接的机构。 包装装置能够防止膜的接合受到热封失效,从而提高生产效率。 包装装置(10)包括用于从薄膜制造包装袋的薄膜(1A,1B)和包装机构(10C)的接合和供应的薄膜供应机构(10A)。 在薄膜供给机构(10A)和包装机构(10C)之间配置用于以蜿蜒的方式引导和保持薄膜的薄膜收纳部(10B)。 膜蓄积器(10B)的一些积聚辊(21)可以根据待制造的包装袋的尺寸移动到预定位置。 改变膜从胶片彼此接合的位置到膜被水平密封的位置的膜的长度,以防止膜之间的接合处于膜被水平密封的位置。
    • 8. 发明授权
    • Lift cylinder and mast assembly of forklift
    • 叉车升降缸和桅杆总成
    • US06296081B1
    • 2001-10-02
    • US09287835
    • 1999-04-07
    • Katsumi NagaiTakaki OgawaYasuhiko Naruse
    • Katsumi NagaiTakaki OgawaYasuhiko Naruse
    • B66B300
    • B66F9/08B66F9/20G01S15/88
    • An ultrasonic sensor detects whether a piston is at the lowest position. The sensor is not affected by the environment or damaged by contact with other objects. The sensor is located in the bottom of a mast cylinder, transmits ultrasonic waves to the bottom of a piston and receives ultrasonic waves reflected by the piston. The sensor then outputs electric signals based on the received ultrasonic waves. The ultrasonic sensor is electrically connected to a transmitter-receiver, which, in turn, is electrically connected to a controller. The transmitter-receiver includes an ultrasonic wave generator and sends ultrasonic wave transmitting signal having a predetermined frequency to the ultrasonic sensor based on control signals from the controller. The controller measures time from when it outputs the ultrasonic wave transmitting signal to when the sensor receives a reflected wave. The controller then compares the measured time with a threshold value thereby judging whether the piston is at the lowest position.
    • 超声波传感器检测活塞是否处于最低位置。 传感器不受环境影响或与其他物体的接触造成损坏。 传感器位于桅杆气缸的底部,将超声波传送到活塞的底部,并接收由活塞反射的超声波。 然后,传感器基于接收到的超声波输出电信号。 超声波传感器电连接到发射器 - 接收器,发射器 - 接收器又与控制器电连接。 发射机 - 接收机包括超声波发生器,并且基于来自控制器的控制信号向超声波传感器发送具有预定频率的超声波发射信号。 控制器测量从输出超声波发射信号到传感器接收到反射波时的时间。 然后,控制器将测量的时间与阈值进行比较,从而判断活塞是否处于最低位置。
    • 10. 发明授权
    • Apparatus for making a necked-in container with a double seam on
container cover
    • 用于在容器盖上制作带有双层接缝的颈缩容器的装置
    • US4808053A
    • 1989-02-28
    • US17552
    • 1987-02-24
    • Katsumi NagaiAkio Shinjyo
    • Katsumi NagaiAkio Shinjyo
    • B21D51/26B21D51/30B21D51/32B65G37/00B65G47/84
    • B21D51/32B65D7/36
    • A barrel and a cover, to be combined into a container, are rotated by a preliminary machining feeder while they are supported by a first rotatable seaming chuck and a first holder. During rotation of the preliminary machining feeder, a flange of the barrel and an end hook of the cover are pressed by a first seaming segment against the first seaming chuck, so that the barrel and the cover are preliminarily fastened and necked in. The barrel and the cover are then transferred by a transfer unit to a final machining feeder on which the barrel and the cover are supported by a second rotatable seaming chuck and a second holder. The final machining feeder is rotated to feed the barrel and the cover while they are finally fastened and necked in by a second seaming segment. The first and second seaming segments are arcuate in shape and have their inner shaping surfaces progressively approaching the preliminary and final machining feeders, respectively, in the direction of rotation thereof.
    • 组合成容器的桶和盖通过预加工进料器旋转,同时它们由第一可旋转接缝卡盘和第一保持器支撑。 在预加工进料器旋转期间,筒体的凸缘和盖的端钩被第一接缝部分压靠在第一接缝卡盘上,使得筒和盖预先紧固并颈缩。 然后将盖子通过转印单元传送到最终的加工进料器,其中筒体和盖子由第二可旋转接缝卡盘和第二保持器支撑。 旋转最终加工进料器,以便在最后通过第二接缝部分紧固和颈缩的同时进给筒和盖。 第一和第二接缝段的形状为弧形,并且其内部成形表面分别在其旋转方向上逐渐接近预加工和最终加工进料器。