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    • 2. 发明专利
    • Nozzle structure of inert gas replacing device
    • 燃气替代装置的喷嘴结构
    • JP2005329987A
    • 2005-12-02
    • JP2004150791
    • 2004-05-20
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • MORITA YOSHIYUKISENBON KATSUMITANIOKA MITSUOTOMIKURA SHIGERUWATABE FUMIAKISUZUKI NAGAFUMIEBARA TAKESHI
    • B65B31/04
    • PROBLEM TO BE SOLVED: To provide an inert gas replacing device which has an inert gas blowout face that can be easily removed for cleaning when the blowout face gets dirty or the mesh thereof clogs and prevents a soiled material from entering a nozzle chamber as well to simplify sanitation work for the device and improve the operating rate of a line.
      SOLUTION: According to the inert gas replacing device, a nozzle structure 1 having the box-like nozzle chamber 2 is arranged along a container transfer line. The nozzle chamber 2 has the inert gas blowout face that is covered with a nozzle plate 4 having a number of inert gas blowout holes. The nozzle plate 4 is fitted slidably into the opening end of the body of the nozzle chamber 2 in a detachable manner. The nozzle plate 4, therefore, can be removed easily from the nozzle chamber 2 to be cleaned when the contents are scattered onto the nozzle plate 4 to soil it. The nozzle plate 4 attached to the chamber 2 prevents the scattered contents from entering the chamber 2, thus keeping the chamber 2 clean.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种惰性气体更换装置,其具有惰性气体喷出面,当喷出面变脏或其网堵塞并防止污染的材料进入喷嘴室时,可以容易地去除清洁面 同时简化了设备的卫生工作,提高了生产线的运行速度。 解决方案:根据惰性气体置换装置,沿着容器传送线布置具有盒状喷嘴室2的喷嘴结构1。 喷嘴室2具有被具有多个惰性气体吹出孔的喷嘴板4覆盖的惰性气体喷出面。 喷嘴板4以可拆卸的方式可滑动地配合到喷嘴室2的主体的开口端。 因此,当内容物散布到喷嘴板4上时,喷嘴板4可以容易地从喷嘴室2移除以进行清洁。 安装在室2上的喷嘴板4防止散落的内容物进入室2,从而保持室2的清洁。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Device and method for inspecting vessel
    • 检查船舶的装置和方法
    • JP2007192646A
    • 2007-08-02
    • JP2006010631
    • 2006-01-19
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • SUZUKI NAGAFUMI
    • G01M3/36B65B57/02G01M3/26
    • G01M3/38G01M3/36
    • PROBLEM TO BE SOLVED: To provide a vessel inspection device capable of accurately inspecting the internal pressure of the vessel even when the conveyed vessel vibrates or is tilted. SOLUTION: The device includes a first distance detector 10a, second distance detector 10b and third distance detector 10c installed so that distance detection points SP1, SP2 and SP3 are arranged in a conveyance passage 200 in the direction crossing the conveying direction A of a can 100, a detection distance acquiring means 24 (S1-S5) for acquiring a distance value H1 to the center section of a bottom face 101 of the can 100 detected by the first distance detector 10a, and simultaneously distance values H2 and H3 to two peripheries of the bottom face 101 detected by the second distance detector 10b and third distance detector 10c when the can 100 is conveyed, and an arithmetic means 24 (S6 and S7) for performing calculation using an inspection value PDth according to difference between the distance value H1 and each of the distance values H2 and H3 as information indicating the internal pressure of the can 100. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够精确地检查容器的内部压力的容器检查装置,即使当输送的容器振动或倾斜时。 解决方案:装置包括第一距离检测器10a,第二距离检测器10b和第三距离检测器10c,其安装成使得距离检测点SP1,SP2和SP3在与输送方向A交叉的方向上布置在输送通道200中 罐100,检测距离获取装置24(S1-S5),用于获取由第一距离检测器10a检测到的罐100的底面101的中心部分的距离值H1,同时将距离值H2和H3相对于 运送装置100时由第二距离检测器10b检测的底面101的两个周边和第三距离检测器10c;以及运算装置24(S6和S7),用于使用检查值PDth根据距离 值H1和每个距离值H2和H3作为指示罐100的内部压力的信息。版权所有(C)2007,JPO和INPIT
    • 5. 发明专利
    • Airtightness inspection device and method of bottle casing
    • 空气检测装置和瓶子的方法
    • JP2008008627A
    • 2008-01-17
    • JP2006176064
    • 2006-06-27
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • SUZUKI NAGAFUMI
    • G01M3/04B65B57/02G01M3/26
    • PROBLEM TO BE SOLVED: To provide an inspection device capable of more efficiently inspecting the airtightness of a bottle casing.
      SOLUTION: The inspection device comprises a cap member 121 for covering an inspection part including a joint of a nozzle section 12 of the bottle casing 10 to a bottle body 11, a suction mechanism 122 for sucking the gas in a cap member 121, a pressing mechanism 150 for partially pressing a drum part 11b of the bottle body 11, a gas detecting means 123 for outputting a detection signal according to the amount of gas resulting from the contents in the bottle casing 10 contained in the gas sucked by the suction mechanism 122 in a state where the drum part 11b of the bottle body 11 is partially pressed by the pressing mechanism 150, and a determining means 200 (S7 and S8) for determining suitability of the airtightness of the casings 10 based on a detection result output from the gas detecting means 123.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供能够更有效地检查瓶壳的气密性的检查装置。 解决方案:检查装置包括用于将包括瓶壳10的喷嘴部分12的接头的检查部分覆盖到瓶体11的盖构件121,用于将气体吸入盖构件121的抽吸机构122 用于部分地按压瓶主体11的鼓部11b的按压机构150,气体检测装置123,用于根据包含在由所述瓶体11吸入的气体中的瓶子10中的内容物产生的气体量输出检测信号 通过按压机构150将瓶主体11的鼓部11b部分地按压的状态的吸引机构122和基于检测结果来判定壳体10的气密性的适合性的判定单元200(S7和S8) 来自气体检测装置123的输出。(C)2008,JPO&INPIT
    • 6. 发明专利
    • Airtightness inspection method of casing, and airtightness inspection system of casing used for the method
    • 空气质检检查方法及方法的空气检测系统
    • JP2008008626A
    • 2008-01-17
    • JP2006176063
    • 2006-06-27
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • SUZUKI NAGAFUMI
    • G01M3/04B65B57/02G01M3/26G01M3/32
    • PROBLEM TO BE SOLVED: To provide an airtightness inspection method of a casing allowing finding of an airtightness failure by an extremely small defect such as a pin hole while preventing the reduction of inspection efficiency as much as possible.
      SOLUTION: The airtightness inspection method comprises a casing storing process of storing a plurality of casings 10 holding contents in a case 100, a gas detecting process of sucking gas in the case 100 storing the plurality of casings 10 and detecting gas resulting from the contents of the casings 10 from the sucked gas, and a determining process of determining suitability of the airtightness of the plurality of casings 10 stored in the case 100 based on a detection result in the gas detecting process.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种壳体的气密性检查方法,允许通过诸如针孔的极小缺陷来发现气密性故障,同时尽可能地防止检查效率的降低。 解决方案:气密性检查方法包括:将容纳在壳体100中的多个保持内容物的壳体10存储的壳体存储过程,在存储多个壳体10的壳体100中吸入气体的气体检测过程,并且检测由 来自吸入气体的壳体10的内容物,以及基于气体检测处理的检测结果确定存储在壳体100中的多个壳体10的气密性的适合性的判定处理。 版权所有(C)2008,JPO&INPIT
    • 8. 发明专利
    • Gripper device for gripping hollow body
    • 用于传送中空身体的抓斗装置
    • JP2003019744A
    • 2003-01-21
    • JP2002175428
    • 2002-06-17
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • TAKANO SHOICHIROSAWANE NOBORUSUZUKI NAGAFUMIUEDA MASAHIRONIO MASAAKI
    • B29C49/42B25J15/08B29L22/00
    • PROBLEM TO BE SOLVED: To obtain a gripper device capable of accurately positioning a hollow body such as a preform, a bottle or the like, even a preform with a ratchet to strongly grip the same, capable of holding the hollow body to a stable posture even during the feed without inclining the same and capable of transferring and delivering the hollow body with high positioning accuracy.
      SOLUTION: In the gripper device having a pair of forks having gripping parts provided thereto in an openable and closable manner and gripping the hollow body, the gripping part 2 is formed from arcuate gripping surfaces 4 and groove-like cavities 3 are formed to the gripping surfaces along a circumferential direction and flanges 5 curved in a state concentric to the gripping surfaces of the gripping parts are formed to the side surfaces in the vicinity of the gripping parts of the forks in a projected state.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:为了获得能够精确地定位诸如预成型件,瓶子等的中空体的夹持装置,即使是具有棘轮的预成型件也能够牢固地夹持该夹持装置,能够将中空体保持在稳定的姿势 即使在进给期间也不倾斜,并且能够以高定位精度传送和输送中空体。 解决方案:在具有一对叉子的夹具装置中,其具有以可打开和关闭的方式设置在其中并夹紧中空体的夹持部分,夹持部分2由弓形夹持表面4形成,并且凹槽形空腔3形成为夹紧 沿着圆周方向的表面和在与抓握部的抓握表面同心的状态下弯曲的凸缘5形成为在突出状态下的叉的夹持部分附近的侧表面。
    • 9. 发明专利
    • Molding equipment of cup-shaped container, molding method and cup-shaped container
    • 杯形容器的成型设备,成型方法和杯形容器
    • JP2007111888A
    • 2007-05-10
    • JP2005302905
    • 2005-10-18
    • Asano Laboratories Co LtdToyo Seikan Kaisha Ltd東洋製罐株式会社株式会社浅野研究所
    • SASAKI MASAYUKISHIMOMURA TORUSUZUKI NAGAFUMITANAKA SHINJIGOTO OSAMUMATSUOKA KIKUOTAKAI TOSHIHIROMIZOGUCHI KENICHIMAEDA RYUJI
    • B29C51/10B29C51/36B29L22/00B65D1/26
    • PROBLEM TO BE SOLVED: To provide molding equipment of a cup-shaped container capable of making the air passing resistance of an air passage as low as possible to rapidly send in micropressure air and capable of precisely control the pressure at the time of sheet draw molding. SOLUTION: In the molding equipment of the cup-shaped container constituted so that a resin sheet 11 softened by heating is pushed in the cavity 20A of a mold 20 by a plug 30 and positive micropressure air (p) is supplied into the cavity 20A from the micropressure air supply passage 50 provided to the mold 20 while positive micropressure is produced in the space between the resin sheet 11 and the inner periphery of the cavity 20A to surround the resin sheet 11 around the plug 30 while the drawn resin sheet 11 is closely brought into contact with the inner peripheral surface of the mold 20 to be molded into a cup shape, the micropressure air supply passage 50 provided to the mold 20 is formed into a slit shape and the length of a slit is made long while restricting the width of the slit to a predetermined width to ensure the cross-sectional area of a flow channel to enhance air suction efficiency. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供能够使空气通道的空气通过阻力尽可能低的杯形容器的模制设备,以便在微压空气中快速发送并且能够精确地控制压力在 拉伸成型。 解决方案:在杯形容器的成型设备中,通过加热软化的树脂片11通过塞子30被推入模具20的空腔20A中,并将正的微压空气(p)供应到 同时在树脂片11与空腔20A的内周之间的空间中产生正的微压力,以围绕插塞30围绕树脂片11,同时拉伸树脂片 11与模具20的内周面紧密接触以成型为杯状,设置在模具20上的微压气体供给通路50形成为狭缝状,并且狭缝的长度长, 将狭缝的宽度限制在预定宽度,以确保流道的横截面积,以提高吸气效率。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Inert gas replacing device
    • 燃气替代装置
    • JP2005329986A
    • 2005-12-02
    • JP2004150785
    • 2004-05-20
    • Toyo Seikan Kaisha Ltd東洋製罐株式会社
    • MORITA YOSHIYUKISENBON KATSUMITANIOKA MITSUOTOMIKURA SHIGERUWATABE FUMIAKISUZUKI NAGAFUMIEBARA TAKESHI
    • B65B31/04
    • PROBLEM TO BE SOLVED: To provide an inert gas replacing device which effectively prevents dropping of waterdrop or dirt accumulating on the roof of the device into a container.
      SOLUTION: On an inert gas replacement packaging line, the top part of a container transfer passage, through which the container transferred by a container transfer conveyor 6 passes, is covered with a semi-closed type tunnel 5 consisting of nozzle chambers 2 arranged along both sides of the container transfer passage and the roof 3 covering the part of top part between the nozzle chambers 2. The roof 3 of the tunnel 5 is formed to be sloped widthwise of the conveyor 6, so that waterdrop on the roof 3, which results from the condensation of contents or steam scattered from the container onto the roof 3, are guided along a sloped surface to flow toward the top outside of an opening of the container and fail to drop into the container.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种惰性气体更换装置,其有效地防止将装置顶部的水滴或污垢积聚在容器中。 解决方案:在惰性气体替换包装线上,由容器传送输送机6转移的容器通过的容器传送通道的顶部被覆盖有由喷嘴室2组成的半封闭式隧道5 沿着容器传送通道的两侧布置并且覆盖喷嘴室2之间的顶部的一部分的顶部3.隧道5的顶部3形成为沿传送带6的宽度方向倾斜,使得屋顶3上的水滴 由容器内散发的内容物或蒸汽冷凝到屋顶3上而产生的,沿着倾斜表面被引导以朝向容器开口的顶部流动,并且不能落入容器中。 版权所有(C)2006,JPO&NCIPI