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    • 111. 发明授权
    • Oxygen-absorbing container cap
    • 吸氧容器盖
    • US07704407B2
    • 2010-04-27
    • US11921769
    • 2005-06-15
    • Ryosei MakinoTadayoshi TakashimaKazuhiro Sasakura
    • Ryosei MakinoTadayoshi TakashimaKazuhiro Sasakura
    • C06B23/00C06B43/00C01B3/00C01B6/00C02F1/70C01B17/62B01J20/26
    • B65D81/266B65D41/3423C08K5/0008C08K5/103C08K2201/005C08K2201/012Y02E60/324
    • The present invention provides an oxygen-absorbing resin composition, which is superior in oxygen absorbability, absorbs oxygen remaining in the container after sealing, keeps the contents in the container in good preservation, and improves moldability, dispersibility of the oxygen absorbent, stability of the oxygen absorbing performance, performance of preventing peeling and separation of the oxygen absorbent from the base resin, rigidity of the sealing part, and the like, which become problems in the case of including an oxygen absorbent having high oxygen absorbability and low compatibility with the base resin, as well as provides an oxygen-absorbing container cap and an oxygen-absorbing container plug using the same.The present invention provides an oxygen-absorbing resin composition characterized by being obtained by dispersing and blending an oxygen absorbent containing 20% or more of particles having a particle diameter of 1000 μm or less at a ratio of 20% or less to a base resin.
    • 本发明提供吸氧性优异的氧吸收性树脂组合物,其吸收密封后的容器中剩余的氧气,保持容器内容物的良好保存性,提高成型性,吸氧剂的分散性, 氧吸收性能,防止氧吸收剂从基础树脂剥离和分离的性能,密封部的刚性等,在包含具有高氧吸收性的氧吸收剂和与碱的相容性低的情况下成为问题 树脂,并且提供吸氧容器盖和使用其的吸氧容器塞。 本发明提供一种氧吸收性树脂组合物,其特征在于,通过将含有20%以上的粒径为1000μm以下的粒子的氧吸收剂与基础树脂以20%以下的比例分散混合而获得。
    • 112. 发明授权
    • Inspection device for mouth of container
    • 容器口检查装置
    • US07238930B2
    • 2007-07-03
    • US10542098
    • 2004-01-21
    • Tsukasa Watanabe
    • Tsukasa Watanabe
    • B07C5/12B07C5/34G01N21/90G01N9/04G01N7/00G01N40/14
    • G01B11/24G01B11/12
    • A container mouth inspection device which can produce an ideal optical image that reliably provides information on the inner contour of the container mouth, and which enables accurate and speedy measurement of the inside diameter or the like of the container mouth. The container mouth inspection device includes a light source (2) for emitting diffused light to the bottom (99b) of the container (99) having a mouth (99a), and an optical system (1) in which a lens (10) and a diaphragm (11) are arranged along an optical axis (5) extending through the center of the mouth (99a) of the container (99) such that the diaphragm (11) is positioned behind the lens (10). The diaphragm (11) is offset backward from a back focus of the lens (10) along the optical axis (5) by a predetermined distance d so as to form an optical image of the mouth (99a) in a position behind the diaphragm (11).
    • 一种容器口检查装置,其可以产生可靠地提供关于容器口的内轮廓的信息的理想光学图像,并且能够准确且快速地测量容器口的内径等。 容器口检查装置包括用于向具有口部(99a)的容器(99)的底部(99b)发射漫射光的光源(2),以及光学系统(1),其中透镜 )和沿着延伸穿过容器(99)的口(99a)的中心的光轴(5))布置的隔膜(11),使得隔膜(11)位于透镜(10)后面。 光阑(11)从透镜(10)的后焦点向后偏离预定距离d,以在光阑后面形成口(99a)的光学图像 (11)。
    • 115. 发明公开
    • CONTAINER WALL THICKNESS INSPECTION DEVICE
    • EP3249345A4
    • 2018-07-18
    • EP15878933
    • 2015-12-16
    • NIHON YAMAMURA GLASS CO LTD
    • TAMBO GOROTANAKA NAOHIRO
    • G01B7/06B07C5/12G01B5/20G01B11/14G01B11/24G01B21/08G01N21/90
    • G01B7/08B07C5/124G01B5/20G01B7/06G01B7/087G01B11/14G01B11/24G01B21/08G01N21/90
    • This invention relates to a container wall thickness inspection device 1 for inspecting a container 10A in which regions with a relatively greater wall thickness (flat portion Rf) and regions with a relatively smaller wall thickness (corner portion Rc) are distributed in the circumferential direction, the container wall thickness inspection device 1 comprising: a wall thickness measurement device (electrostatic capacity detector 4) with a sensor unit 5 for measuring a wall thickness of a site facing the sensor unit 5 on the outer peripheral surface of the container 10A; a rotary drive mechanism for axially rotating the container 10A around the central axis of the container in order to measure a wall thickness of the container over the entire circumference by the wall thickness measurement device; a region detection device (photoelectric sensor 8) for detecting which region of the container 10A corresponds to the site being measured for its wall thickness by the wall thickness measurement device; and a determination device for making a pass/fail determination with respect to the wall thickness of the container 10A based on measured wall thickness values over the entire circumference of the container 10a, which are obtained from outputs of the wall thickness measurement device. The determination device comprises a storage unit for storing a pass/fail determination standard value with respect to the wall thickness for each region, and a comparison unit for comparing each measured wall thickness value obtained from the outputs of the wall thickness measurement device with a pass/fail determination standard value stored in the storage unit corresponding to the region detected by the region detection device.
    • 116. 发明公开
    • GOB PRODUCTION APPARATUS
    • EP3109205A4
    • 2017-12-13
    • EP15769160
    • 2015-03-25
    • NIHON YAMAMURA GLASS CO LTD
    • TANAKA NAOHIROKAWAHARA RYUSUKE
    • C03B7/00C03B7/086C03B7/10
    • C03B7/005C03B7/086C03B7/10
    • A gob forming device for forming a gob that is fed into a mold for molding a glass product after adjusting the gob to an optimum weight and shape, the gob forming device comprising: one or two cameras 71,72 configured to capture one or more images of a gob in the falling path of the gob, the gob being obtained by cutting molten glass extruded from a circular orifice 11 of a gob feeder 1; an image processor 70 configured to perform image processing to measure the weight of the gob and feature values of the gob based on the one or more 2-D images of the gob captured by the one or two cameras, the feature values defining the shape of the gob, the weight and the feature values being measured by approximating the shape of the gob's cross section in the direction perpendicular to the longitudinal direction as a circle or ellipse and; drive mechanisms 40, 50, and 64 to 66 configured to individually drive respective adjustment mechanisms to adjust the gob to achieve a desired weight and shape; a storage device configured to store, as reference data, a standard weight of the gob and an optimum value of each of the feature values of the gob; and a control device 8 configured to drive the drive mechanisms 40, 50, and 64 to 66 so that the drive mechanisms operate to ensure that the difference between the weight of the gob measured by the image processor 70 and the corresponding reference data stored in the storage device is an acceptable value and the differences between the feature values of the gob measured by the image processor 70 and the corresponding reference data stored in the storage device are acceptable values.
    • 117. 发明公开
    • GOB PRODUCTION APPARATUS
    • VORRICHTUNG ZUR HERSTELLUNG EINES GLASKOLBENS
    • EP3109205A1
    • 2016-12-28
    • EP15769160.1
    • 2015-03-25
    • Nihon Yamamura Glass Co., Ltd.
    • TANAKA, NaohiroKAWAHARA, Ryusuke
    • C03B7/01
    • C03B7/005C03B7/086C03B7/10G05B2219/37357G05B2219/37555G05B2219/45009
    • A gob forming device for forming a gob that is fed into a mold for molding a glass product after adjusting the gob to an optimum weight and shape, the gob forming device comprising:
      one or two cameras 71,72 configured to capture one or more images of a gob in the falling path of the gob, the gob being obtained by cutting molten glass extruded from a circular orifice 11 of a gob feeder 1;
      an image processor 70 configured to perform image processing to measure the weight of the gob and feature values of the gob based on the one or more 2-D images of the gob captured by the one or two cameras, the feature values defining the shape of the gob, the weight and the feature values being measured by approximating the shape of the gob's cross section in the direction perpendicular to the longitudinal direction as a circle or ellipse and;
      drive mechanisms 40, 50, and 64 to 66 configured to individually drive respective adjustment mechanisms to adjust the gob to achieve a desired weight and shape;
      a storage device configured to store, as reference data, a standard weight of the gob and an optimum value of each of the feature values of the gob; and
      a control device 8 configured to drive the drive mechanisms 40, 50, and 64 to 66 so that the drive mechanisms operate to ensure that the difference between the weight of the gob measured by the image processor 70 and the corresponding reference data stored in the storage device is an acceptable value and the differences between the feature values of the gob measured by the image processor 70 and the corresponding reference data stored in the storage device are acceptable values.
    • 一种用于形成料滴的料滴形成装置,所述料滴形成装置在将料滴调节到最佳重量和形状之后进料到用于模制玻璃产品的模具中,所述料滴形成装置包括:一个或两个相机71,72,被配置为捕获一个或多个图像 在料滴的落下路径中的料滴,通过切割从料滴进料器1的圆形孔11挤出的熔融玻璃获得料滴; 图像处理器70被配置为基于由一个或两个相机捕获的一个或多个二维图像执行图像处理以测量料滴的重量和料滴的特征值,特征值定义为 料滴,重量和特征值通过将垂直于纵向方向的方向的料滴横截面的形状近似为圆形或椭圆形来测量; 驱动机构40,50和64至66,其被配置为独立地驱动相应的调节机构来调节料滴以实现期望的重量和形状; 存储装置,被配置为存储料滴的标准重量作为参考数据,并且存储料滴的每个特征值的最佳值; 以及控制装置8,其被配置为驱动驱动机构40,50和64至66,使得驱动机构操作以确保由图像处理器70测量的料滴的重量与存储在图像处理器70中的相应参考数据之间的差异 存储装置是可接受的值,并且由图像处理器70测量的料滴的特征值与存储在存储装置中的相应参考数据之间的差异是可接受的值。
    • 120. 发明公开
    • GLASS PRODUCT MOLDING MACHINE
    • MASCHINE ZUR FORMUNG VON GLASPRODUKTEN
    • EP2484642A1
    • 2012-08-08
    • EP10820436.3
    • 2010-09-24
    • Nihon Yamamura Glass Co., Ltd.
    • Nishimura TakahiroKataoka MasakiOhno ShintaroKotoh Takahiro
    • C03B9/38C03B9/41
    • C03B9/3816C03B9/3875C03B9/3883C03B9/3891C03B9/41
    • In a glass product forming machine having molds 1A and 1B each composed of a pair of split molds 11 and 12, and a mold cooling device X for cooling the molds 1A and 1B to control the temperatures thereof, in order to prevent the occurrence of a defect such as deformation or cracks in a formed article due to a temperature difference between the split molds 11 and 12, the mold cooling device X is configured to include: cooling mechanisms 3R and 3L provided to the respective split molds, the cooling mechanisms each individually applying cooling air to each of the split molds 11 and 12 of the molds 1A and 1B; valve mechanisms 30R and 30L for individually opening and closing each of paths for introducing cooling air to the respective cooling mechanisms 3R and 3L; temperature detection means for detecting the temperature of at least one of the split molds; and a temperature control device 9 for generating and outputting control signals for controlling the opening and closing operations of the respective valve mechanisms 30R and 30L on the basis of the detected temperature value by the temperature detection means.
    • 在具有由一对分割模具11和12构成的模具1A和1B的玻璃制品成型机中,以及用于冷却模具1A和1B以控制其温度的模具冷却装置X,以防止发生 模具冷却装置X由于分型模具11和12之间的温度差导致成形品中的变形或裂纹等缺陷,模具冷却装置X构成为包括:设置在各个分割模具上的冷却机构3R,3L,各冷却机构 对模具1A,1B的各模具11,12分别施加冷却空气; 用于单独地打开和关闭用于将冷却空气引导到各个冷却机构3R和3L的各个路径的阀机构30R和30L; 用于检测所述分模中的至少一个的温度的温度检测装置; 以及温度控制装置9,用于根据温度检测装置检测到的温度值产生和输出用于控制各个阀机构30R和30L的打开和关闭操作的控制信号。