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    • 11. 发明申请
    • VESSEL STERILIZATION APPARATUS
    • 血管消毒装置
    • US20100270477A1
    • 2010-10-28
    • US12734708
    • 2008-11-10
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • A61L2/08H01J37/20
    • B65G47/244A61L2/087A61L2202/122A61L2202/23B65B55/08B65G47/847
    • In an irradiation region A in which an electron beam irradiator emits an electron beam through an irradiating surface 12a of the electron beam irradiator, a resin bottle 8 is conveyed with a distance between the irradiating surface 12a and the resin bottle 8 being maintained constant. Grippers 6 are arranged to an outer peripheral portion of a rotary body 14 in a circumferential direction thereof at an equal interval, and the resin bottles 8 are conveyed with neck portions 8a thereof being held. Rotating means (52, 58, 62) for rotating the grippers 6 with respect to the rotary body 14 and forward/rearward moving means (18, 50) keeping constant a distance from the irradiating surface 12a of the electron beam irradiator are provided. In the electron beam irradiation region A, the gripper 6 is moved forward or rearward in a radial direction by the forward/rearward moving means in the electron beam irradiation region A to thereby maintain constant the distance between the resin bottle 8 and the electron beam irradiating surface 12a.
    • 在其中电子束照射器通过电子束照射器的照射表面12a发射电子束的照射区域A中,在照射表面12a和树脂瓶8之间的距离保持恒定的情况下输送树脂瓶8。 夹爪6以等间隔配置在旋转体14的圆周方向的外周部,树脂瓶8被保持颈部8a输送。 提供用于相对于旋转体14旋转夹具6的旋转装置(52,58,62)和与电子束照射器的照射表面12a保持恒定距离的前/后移动装置(18,50)。 在电子束照射区域A中,夹持器6通过电子束照射区域A中的向前/向后移动装置沿径向向前或向后移动,从而保持树脂瓶8与电子束照射之间的距离恒定 表面12a。
    • 12. 发明申请
    • VESSEL FILLING SYSTEM
    • VESSEL灌装系统
    • US20100132307A1
    • 2010-06-03
    • US12448634
    • 2007-12-26
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • B65B55/08
    • B67C7/0073A61L2/087A61L2202/122A61L2202/23B65B55/027B65B55/08
    • Atmosphere in a sterilization box 18 is prevented from entering into a filler chamber 44 side, and also, atmosphere on the filler side is prevented from flowing on the sterilization box 18 side. An intermediate chamber 40 is disposed between the sterilization box 18 for performing sterilization by electron beam irradiation to a vessel 2 and the chamber 44 in which a filler 42 is disposed for filling the sterilized vessel 2 with inner content. A pressure in the intermediate chamber 40 is controlled, by pressure control means, so as to be higher than a pressure in the sterilization box 18 and higher than a pressure in the chamber 44 provided with the filler 42. Since the pressure in the intermediate chamber 40 is highest, atmosphere in the upstream-side sterilization box 18 is prevented from flowing in the filler 42 side and atmosphere in the chamber 44 for the filler 42 is also prevented from flowing in the sterilization box 18 side.
    • 消毒箱18中的气氛被阻止进入填充室44侧,并且防止填料侧的气氛在灭菌箱18侧流动。 中间室40设置在灭菌箱18之间,用于通过电子束照射到容器2进行灭菌,并且在室44中设置填充物42以填充内含物的灭菌容器2。 通过压力控制装置控制中间室40中的压力,以便高于灭菌箱18中的压力并高于设置有填料42的室44中的压力。由于中间室中的压力 40最高时,防止上游侧消毒箱18中的气氛在填充物42侧流动,并且还防止了用于填充物42的室44中的气氛在灭菌箱18侧流动。
    • 13. 发明申请
    • ELECTRON BEAM STERILIZER
    • 电子束灭菌器
    • US20100123090A1
    • 2010-05-20
    • US12451535
    • 2008-05-20
    • Yokinobu NishinoTokuo NishiYukihiro Yamamoto
    • Yokinobu NishinoTokuo NishiYukihiro Yamamoto
    • B65B55/08G21K5/08G21K5/10G21K5/04
    • A61L2/087A61L2202/23B65B55/08G21K5/02G21K5/10
    • It is aimed to completely sterilize entire surface of a resin bottle 2 while performing a stable conveyance thereof and to enable high speed operation, thus simplifying a structure. Bottle holding means 28 is provided with a rotation shaft 38, a neck gripper 70 mounted to a lower end of the rotation shaft 38, a rotating body 30 for rotating and moving the neck gripper 70 and rotating (revolving) means (segment gear 54, pinion gear 46, disc-shaped cam 66, etc.), and while conveying the resin bottle 2 in the state of being held, the resin bottle 2 is sterilized by the irradiation with the electron beam through the irradiation window 19 of the electron beam irradiation device 18. The entire surface of the resin bottle 2 is completely sterilized by being rotated by the rotating means during the movement in front of the irradiation window 19, and thereafter, the rotating means is inverted in position to return the neck gripper to thereby discharge the bottle.
    • 其目的是在树脂瓶2的整个表面完全消毒,同时进行稳定的输送并且能够进行高速操作,从而简化结构。 瓶保持装置28设置有旋转轴38,安装到旋转轴38的下端的颈部夹持器70,用于旋转和移动颈部夹持器70的旋转体30和旋转(旋转)装置(分段齿轮54, 小齿轮46,圆盘状凸轮66等),并且在保持状态下输送树脂瓶2时,通过电子束的照射通过电子束的照射窗19对树脂瓶2进行灭菌 照射装置18.树脂瓶2的整个表面通过在照射窗19前面的运动期间被旋转装置旋转而完全消毒,此后,旋转装置在其位置反转以使颈部夹持器返回 排出瓶子。
    • 14. 发明申请
    • VESSEL STERILIZATION APPARATUS
    • 血管消毒装置
    • US20100072395A1
    • 2010-03-25
    • US12448308
    • 2007-12-27
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • H01J37/20B01J19/12
    • B65B55/08A61L2/087B65B31/025B65B55/027G21K5/10
    • Nitrogen oxide generated in an irradiation chamber 30 by electron beam irradiation is suppressed from being changed to nitric acid.An irradiation surface (irradiation window 29a to which a window foil 29b is attached) of an electron beam irradiation device 28 is directed toward a vessel 2 conveyed by a vessel conveying device 24 to thereby irradiate the vessel 2 with the electron beam to sterilize the vessel, an irradiation chamber 30 is provided so as to surround the irradiation surface of the electron beam irradiation device 28 and the vessel 2 subjected to the irradiation, a discharge chamber 32 is provided on an outlet side of the irradiation chamber 30, and dry-air supply means 80 for supplying a dried aseptic air is connected to the irradiation chamber 30. By removing moisture within the irradiation chamber 30 which is irradiated with the electron beam, the changing of the nitrogen oxide to the nitric acid is suppressed to thereby prevent metal portions from corroding.
    • 通过电子束照射在照射室30中产生的氧化氮被抑制为硝酸。 电子束照射装置28的照射面(安装有窗口箔29b的照射窗29a)被照射到由容器输送装置24输送的容器2,从而用电子束照射容器2,对容器进行灭菌 设置有照射室30,以照射电子束照射装置28和经受照射的容器2的照射面,在照射室30的出口侧设置有排出室32, 用于供应干燥的无菌空气的供给装置80连接到照射室30.通过除去照射电子束的照射室30内的水分,可以抑制氮氧化物向硝酸的变化,从而防止金属部分 腐蚀。
    • 15. 发明授权
    • Article conveying device
    • 物品输送装置
    • US07681713B2
    • 2010-03-23
    • US12070506
    • 2008-02-19
    • Tokuo NishiKoji KayaTatsuhiro NakadaHideki NishikawaTakashi Shimomura
    • Tokuo NishiKoji KayaTatsuhiro NakadaHideki NishikawaTakashi Shimomura
    • B65G47/86
    • B65G47/847B65G29/00B65G2201/0247
    • An upstream side wheel includes grippers B which do not perform opening and closing operations for themselves, and a downstream side wheel includes grippers A each having an opening and closing mechanism, and in a delivery position in which both the wheels are adjacent to each other, a plastic bottle 1 is delivered from the gripper B to the gripper A. Here, if the upstream side wheel or the downstream side wheel abnormally stops, the grippers A are switched from a use state to a retreat state. Thereby, interference between plastic bottles gripped by the upstream side grippers and the grippers of the downstream side wheel is avoided. Even if one of the wheels abnormally stops, the other wheel can be continuously operated without increasing the equipment in size.
    • 上游侧轮包括不对其自身进行打开和关闭操作的夹持器B,并且下游侧轮包括具有打开和关闭机构的夹持器A,并且在两个轮彼此相邻的传送位置中, 将塑料瓶1从夹具B输送到夹具A.这里,如果上游侧轮或下游侧轮异常停止,则把持器A从使用状态切换到后退状态。 由此,避免了由上游侧夹持器和下游侧轮的夹持器夹持的塑料瓶之间的干扰。 即使其中一个车轮异常停止,另一个车轮可以连续运行,而不会增加设备的大小。
    • 16. 发明申请
    • GRIPPER
    • US20100061831A1
    • 2010-03-11
    • US12449239
    • 2008-01-18
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • B65G47/90B66C1/28B25J15/08B65B55/08B65G47/86
    • A61L2/087A61L2202/122A61L2202/23B25J15/08B65B55/08B65G47/842B65G47/90B65G2201/0247Y10S294/902
    • When a bottle 4 made of resin is irradiated with an electron beam while it is being held by a gripper 2, an area of the bottle 4 which is shielded from the electron beam by the gripper 2 is minimized.The gripper has a pair of supports 22A, 22B positioned on opposite sides of the bottle made of resin, and abutments 24A, 24B disposed respectively on the supports 22A, 22B for holding the bottle 4 made of resin, each of the abutments 24A, 24B comprising two thin plates 26A, 28A, 26B, 28B which are vertically spaced from each other. The abutments 24A, 24B hold the bottle 4 by gripping a neck 4a of the bottle 4 on its opposite sides. While holding the bottle 4, the supports 22A, 22B are held out of contact with an outer surface of the bottle 4, allowing the electron beam to travel around the neck 4a to sterilize the entire surface of the bottle 4.
    • 当由树脂制成的瓶子4在被夹持器2保持时被电子束照射时,通过夹持器2屏蔽电子束的瓶子4的区域被最小化。 夹具具有一对位于由树脂制成的瓶的相对侧上的支撑件22A,22B和分别设置在用于保持由树脂制成的瓶4的支撑件22A,22B上的支座24A,24B,每个支座24A,24B 包括彼此垂直间隔开的两个薄板26A,28A,26B,28B。 支座24A,24B通过在相对的两侧夹住瓶子4的颈部4a来保持瓶子4。 在保持瓶子4的同时,支撑件22A,22B与瓶子4的外表面保持不接触,允许电子束在颈部4a周围行进,对瓶子4的整个表面进行消毒。
    • 19. 发明授权
    • Vessel sterilization apparatus
    • 船舶灭菌装置
    • US08373138B2
    • 2013-02-12
    • US12448308
    • 2007-12-27
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • Yukinobu NishinoTokuo NishiYukihiro Yamamoto
    • H01J37/20
    • B65B55/08A61L2/087B65B31/025B65B55/027G21K5/10
    • An irradiation surface of an electron beam irradiation device 28 is directed toward a vessel 2 conveyed by a vessel conveying device 24 to thereby irradiate the vessel 2 with the electron beam to sterilize the vessel, an irradiation chamber 30 is provided so as to surround the irradiation surface of the electron beam irradiation device 28 and the vessel 2 subjected to the irradiation, a discharge chamber 32 is provided on an outlet side of the irradiation chamber 30, and dry-air supply means 80 for supplying a dried aseptic air is connected to the irradiation chamber 30. By removing moisture within the irradiation chamber 30 which is irradiated with the electron beam, the changing of nitrogen oxide to nitric acid is suppressed to thereby prevent metal portions from corroding.
    • 电子束照射装置28的照射面朝向由容器输送装置24输送的容器2,从而用电子束照射容器2,对容器进行灭菌,照射室30设置成包围照射 电子束照射装置28和经受照射的容器2的表面,在照射室30的出口侧设置有排出室32,并且将用于供给干燥的无菌空气的干燥空气供给装置80连接到 照射室30.通过除去照射电子束的照射室30内的水分,可以抑制氮氧化物变为硝酸,从而防止金属部分腐蚀。