会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明专利
    • Method and device for removing electric charge of resin-made container
    • 用于去除树脂容器的电荷的方法和装置
    • JP2012030842A
    • 2012-02-16
    • JP2010171958
    • 2010-07-30
    • Shibuya Kogyo Co LtdSuntory Holdings Ltdサントリーホールディングス株式会社澁谷工業株式会社
    • KOBAYASHI TOSHIYASUGIMORI TOMOHIKONISHINO YUKINOBUHAYASHI MASAMINISHI TOKUOYAMAMOTO YUKIHIROONISHI TAKUYA
    • B65B55/08B65B55/04B65B55/24H05F3/02
    • PROBLEM TO BE SOLVED: To reduce an electric potential difference between outer and inner surfaces of a resin-made container 2 sterilized by irradiation with an electron beam.SOLUTION: A rinser 122 into which a resin-made container 2 irradiated with an electron beam is carried is provided with: an inner surface jetting nozzle 148 jetting cleaning liquid to an inner surface of the resin-made container 2; and an outer surface jetting nozzle 152 jetting the cleaning liquid to an outer surface side. The nozzles 148, 152 are grounded via rotary tables 140, 150, a rotary shaft 138, a base 154 supporting the rotary shaft 138, and the like of the rinser 122. The cleaning liquid at the inner surface side is conducted with the cleaning liquid at the outer surface side by evenly jetting the cleaning liquid to the front surfaces of the outer surface side and the inner surface side of the resin-made container 2 after being irradiated with the electron beam, and the electric charge attached to the surface having higher electric potential from among the electric charges attached to the inner surface side and the outer surface side of the resin-made container 2 is moved to the surface having lower electric potential to remove the electric potential difference between the inner and outer surfaces.
    • 要解决的问题:减少通过用电子束照射灭菌的树脂制容器2的外表面和内表面之间的电位差。 解决方案:承载用电子束照射的树脂制容器2的冲洗器122设置有:内表面喷射喷嘴148,将清洗液体喷射到树脂制容器2的内表面; 以及将清洗液喷射到外表面侧的外表面喷射喷嘴152。 喷嘴148,152经由旋转台140,150,旋转轴138,支撑旋转轴138的底座154等与接头122接合。内表面侧的清洗液与清洗液 通过在照射电子束之后将清洗液均匀地喷射到树脂制容器2的外表面侧和内表面侧的前表面,并且附着在表面上的电荷较高 附着在树脂制容器2的内表面侧和外表面侧的电荷之间的电位移动到具有较低电位的表面以去除内表面和外表面之间的电位差。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Electron beam sterilization method and electron beam sterilization device
    • 电子束灭菌方法和电子束灭菌装置
    • JP2012066847A
    • 2012-04-05
    • JP2010213578
    • 2010-09-24
    • Shibuya Kogyo Co LtdSuntory Holdings Ltdサントリーホールディングス株式会社澁谷工業株式会社
    • KOBAYASHI TOSHIYANAKAJIMA MASARUNISHINO YUKINOBUHAYASHI MASAMINISHI TOKUOYAMAMOTO YUKIHIROONISHI TAKUYA
    • B65B55/08A61L2/08B65B55/04G21K5/00G21K5/04
    • PROBLEM TO BE SOLVED: To minimize the potential difference between the outer side and inner side of a wall surface of a resin container 2, in the sterilization of the resin container 2 by irradiation with electron beams.SOLUTION: A first sterilization wheel 8 carries the resin container 2 to a first electron beam irradiation area A in front of a first electron beam radiation device 12, and a second sterilization wheel 14 carries the container 2 to a second electron beam irradiation area B in front of a second electron beam radiation device 16 on the downstream side. The first electron beam radiation device 12 radiates electron beams at an accelerating voltage of a magnitude such that electrons penetrate the wall surface of the container 2 (e.g., 300 kV). The second electron beam radiation device 16 radiates electron beams at an accelerating voltage of a magnitude such that electrons do not penetrate the wall surface of the container 2 (e.g., 150 kV). Since electrons are accumulated on the inner surface side of the wall surface of the container 2 in the first irradiation, and electrons are accumulated on the outer surface side of the wall surface in the second irradiation, the potential difference between the inner and outer surfaces is minimized as the whole.
    • 要解决的问题:为了最小化树脂容器2的壁面的外侧和内侧之间的电位差,在通过照射电子束对树脂容器2的灭菌中。 解决方案:第一灭菌轮8将树脂容器2运送到第一电子束辐射装置12前面的第一电子束照射区域A,第二灭菌轮14将容器2运送到第二电子束照射 区域B位于下游侧的第二电子束辐射装置16的前方。 第一电子束辐射装置12以使得电子穿过容器2的壁表面(例如,300kV)的大小的加速电压辐射电子束。 第二电子束辐射装置16以电子不穿透容器2的壁表面(例如,150kV)的加速电压辐射电子束。 由于在第一次照射中电子积聚在容器2的壁面的内表面侧,并且在第二次照射中电子积聚在壁面的外表面侧,所以内外表面之间的电位差为 整体最小化。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Method and device for surface modification of resin container
    • 树脂容器表面改性的方法和装置
    • JP2012091833A
    • 2012-05-17
    • JP2010241176
    • 2010-10-27
    • Shibuya Kogyo Co LtdSuntory Holdings Ltdサントリーホールディングス株式会社澁谷工業株式会社
    • KOBAYASHI TOSHIYATAKAHASHI TOKIONISHINO YUKINOBUHAYASHI MASAMINISHI TOKUOYAMAMOTO YUKIHIROONISHI TAKUYA
    • B65B55/08B65B55/04
    • C08J7/123B65B55/08B65B55/24B65B61/00
    • PROBLEM TO BE SOLVED: To apply surface modification to a resin container 2 to improve hydrophilicity by injecting plasma.SOLUTION: The resin container 2 is supported by a plurality of supporting means provided at a sterilizing wheel 10 so as to be transported by rotation, and sterilized on irradiation with an electron ray when it passes a front side of an electron ray irradiation device 12. Plasma injecting devices 20 (20A, 20B, 20C) are arranged as surface modification means in a container transporting route of a providing wheel 8 for providing the resin container 2 at the sterilizing wheel 10. When the plasma is injected to internal and external surfaces of an opening 2a of the resin container 2 being transported, the surfaces are modified to improve the hydrophilicity. As a result, when a part of a human body touches the opening 2a of the resin container 2, an electric charge accumulated on irradiation with the electron ray becomes easier to flow, so that the generation of static electricity can be suppressed.
    • 要解决的问题:将表面改性施加到树脂容器2上以通过注入等离子体来改善亲水性。 解决方案:树脂容器2由设置在消毒轮10上的多个支撑装置支撑,以便通过旋转传送,并且当其通过电子束照射的前侧时用电子束照射来灭菌 装置12.等离子体注入装置20(20A,20B,20C)被布置为用于在消毒轮10处提供树脂容器2的提供轮8的容器输送路径中的表面改性装置。当将等离子体注入内部和 树脂容器2的开口2a的外表面被输送,表面被改性以改善亲水性。 结果,当人体的一部分接触树脂容器2的开口2a时,在电子束照射下累积的电荷变得容易流动,从而可以抑制静电的产生。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Container sterilizer
    • 集装箱灭菌器
    • JP2009132506A
    • 2009-06-18
    • JP2007310413
    • 2007-11-30
    • Shibuya Kogyo Co Ltd澁谷工業株式会社
    • NISHINO YUKINOBUNISHI TOKUOYAMAMOTO YUKIHIRO
    • B65G47/86A61L2/08B65B55/04B65B55/08
    • B65G47/244A61L2/087A61L2202/122A61L2202/23B65B55/08B65G47/847
    • PROBLEM TO BE SOLVED: To provide a container sterilizer capable of performing conveyance while keeping the predetermined distance between a surface of irradiation and a resin bottle in the section of irradiation for irradiating electron beams from the surface of irradiation of an electron beam irradiation device. SOLUTION: Grippers are provided on an outer circumferential part of a rotating body 14 at equal spacing in the circumferential direction, and a resin bottle is conveyed by holding a neck part of the resin bottle 8. A container sterilizer comprises a rotating means for rotating the grippers with respect to the rotating body 14, and an advancing/retracting means for keeping the predetermined distance from a surface 12a of irradiation of an electron beam irradiation device. The predetermined distance between the resin bottle 8 and the surface 12a of irradiation of the electron beam is kept by advancing/retracting the grippers in the radial direction by the advancing/retracting means. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够在从电子束照射的照射的表面照射电子束的照射部分中保持照射表面和树脂瓶之间的预定距离的同时进行输送的容器式灭菌器 设备。 解决方案:夹持器在圆周方向上以相等的间隔设置在旋转体14的外周部上,并且通过保持树脂瓶8的颈部部分来输送树脂瓶。容器消毒器包括旋转装置 用于使夹持器相对于旋转体14旋转;以及前进/后退装置,用于保持与电子束照射装置的照射的表面12a的预定距离。 树脂瓶8与电子束照射表面12a之间的预定距离通过前进/后退装置使夹持器沿径向前进/后退而保持。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Electron beam sterilizer
    • 电子束灭菌器
    • JP2008239181A
    • 2008-10-09
    • JP2007079888
    • 2007-03-26
    • Shibuya Kogyo Co Ltd澁谷工業株式会社
    • NISHINO YUKINOBUNISHI TOKUOYAMAMOTO YUKIHIRO
    • B65B55/08A61L2/08B65B55/04G21K5/00G21K5/04G21K5/10
    • B65B55/08G21K5/02G21K5/04G21K5/08G21K5/10
    • PROBLEM TO BE SOLVED: To securely sterilize containers by emitting electron beams to all containers 2 being conveyed, even if sparks are produced in an electron beam emitting device 28. SOLUTION: Electron beams are generated by heating a filament 42 disposed in a vacuum chamber 40 and are taken out into atmosphere through the window foils 48 of an irradiation windows 46 made in an irradiating section 44. Then, containers 2 are irradiated with these electron beams. Each of the containers 2 are held by the container holders 36A and 36B of a container conveying device 24, conveyed, and passed in front of the irradiation windows 46. When sparks are produced, irradiation is temporarily interrupted. The length of each of the irradiation windows 46 in the direction X of container conveyance is greater than the distance by which the container 2 is conveyed during the interruption. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:即使在电子束发射装置28中产生火花,也可以通过向输送的所有容器2发射电子束来对容器进行可靠的消毒。解决方案:通过加热灯丝42产生电子束 设置在真空室40中,并通过在照射部分44中形成的照射窗口46的窗口纸片48取出到大气中。然后,用这些电子束照射容器2。 每个容器2由容器输送装置24的容器保持器36A和36B保持,输送并在照射窗口46的前方通过。当产生火花时,暂时中断照射。 每个照射窗口46在容器运输方向X上的长度大于在中断期间容器2被传送的距离。 版权所有(C)2009,JPO&INPIT