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    • 1. 发明申请
    • Paper powder removing apparatus
    • 纸粉去除装置
    • US20070029000A1
    • 2007-02-08
    • US10549622
    • 2003-12-04
    • Hidetoshi KonnoYasuyuki MoriyamaDaisuke Sagawa
    • Hidetoshi KonnoYasuyuki MoriyamaDaisuke Sagawa
    • B65B1/04
    • B65B55/24
    • A carton paper powder removing apparatus of the present invention is capable of sufficiently removing paper powder in a tubular carton and preventing the carton from being deformed even if a large volume of air or a powerful air is blown therein. The carton paper powder removing apparatus of a paper liquid container packaging and filling machine comprises a paper powder removing nozzle 2 having an air jetting port 4 at a tip part, a paper powder return prevention means 7 installed in a space between a nozzle outer wall and a carton inner wall, and a paper powder collecting means 5 installed near the upper opening part of the bottomed tubular carton and having an air suction port 6 disposed therein, wherein the paper powder removing nozzle 2 is reciprocatingly moved between the upper opening part of the bottomed tubular carton 1 and the inside of the carton, whereby paper powder in the carton can be removed.
    • 本发明的纸盒除纸装置能够充分地除去管状纸箱中的纸粉,并且即使在其中吹入大量空气或强大的空气也能防止纸箱变形。 纸液容器包装和填充机的纸盒纸粉除去装置包括在顶端具有空气喷射口4的纸粉去除喷嘴2,安装在喷嘴外壁和喷嘴外壁之间的空间中的纸粉返回防止装置7, 纸箱内壁,以及安装在有底的管状纸箱的上部开口部附近并具有设置在其中的吸气口6的纸粉收集装置5,其中纸粉除去喷嘴2在第 有底的管状纸箱1和纸箱的内部,从而可以去除纸箱中的纸粉。
    • 2. 发明授权
    • Flaw detector
    • 探伤仪
    • US07015700B2
    • 2006-03-21
    • US10432908
    • 2001-12-26
    • Hidetoshi KonnoYasuyuki MoriyamaMichio Sugata
    • Hidetoshi KonnoYasuyuki MoriyamaMichio Sugata
    • G01N27/02
    • G01M3/40G01N27/20G01N27/205G01N2033/0081
    • Flaw detection apparatus includes an electrode disposed in a region surrounded by a packaging material including a layer of an electrically-conductive material; a cutting member made of an electrically-conductive material and adapted to cut a predetermined portion of the packaging material; a variable detector, disposed between the electrode and the cutting member, for detecting an electrical variable; and flaw detection processor for reading the detected variable and for determining, on the basis of the detected variable, a flaw in the packaging material. In this case, the variable detector is disposed between the electrode and the cutting member.
    • 缺损检测装置包括设置在由包括导电材料层的包装材料包围的区域中的电极; 由导电材料制成并适于切割包装材料的预定部分的切割构件; 设置在所述电极和所述切割构件之间的用于检测电气变量的可变检测器; 以及用于读取检测到的变量并用于基于检测到的变量确定包装材料中的缺陷的缺陷检测处理器。 在这种情况下,可变检测器设置在电极和切割构件之间。
    • 8. 发明授权
    • Pull-tab for liquid container
    • 液体容器拉片
    • US5647500A
    • 1997-07-15
    • US677176
    • 1996-07-09
    • Hidetoshi KonnoMasamichi KanekoJunichi Satoyoshi
    • Hidetoshi KonnoMasamichi KanekoJunichi Satoyoshi
    • B65D5/70B65D17/34B65D17/50
    • B65D5/708B65D17/505B65D2517/0013B65D2517/0086B65D2517/5018B65D2517/5064B65D2517/5086
    • A pull-tab for a liquid container according to the present invention is designed in form of a sheet, and by providing a cutting line in form of a ring, leaving a connecting sector on the periphery, it comprises a handle sector, being the portion outside said cutting line, and a main sector, being the portion inside the cutting line. By providing another cutting line in convex arc in the direction away from the connecting sector on the main sector, a fastening sector is formed. In this pull-tab, the main sector covers the pouring mouth when the connecting sector is positioned near outer periphery of the pouring mouth of the liquid container. A sector between an end of the main sector opposite to the connecting sector and a fastening sector is bonded to the surface of the liquid container. When the handle sector is lifted up and the main sector is pulled up with edges of the bonded sector as a supporting axis, the fastening sector is turned, and its forward end is stopped on the surface of the liquid container.
    • 根据本发明的用于液体容器的拉片被设计成片材的形式,并且通过提供环形切割线,在周边上留下连接部分,其包括手柄部分,作为部分 在切割线之外,主要部分是切割线内的部分。 通过在远离主扇区上的连接扇区的方向上提供另一个弧形切割线,形成紧固扇区。 在该拉片中,当连接部分位于液体容器的倾倒口的外周附近时,主部分覆盖浇口。 与主要扇区的与连接扇区相对的端部与紧固部分之间的区段结合到液体容器的表面。 当手柄扇区被提起并且主扇区被拉起并带有边缘的接合扇区作为支撑轴线时,紧固扇区被转动,并且其前端停在液体容器的表面上。
    • 9. 发明授权
    • Isocyanurate ring-containing crosslinked polyurethane polyurea
particulate polymer and process for producing the same
    • 含异氰脲酸酯环的交联聚氨酯聚脲颗粒聚合物及其制备方法
    • US5292829A
    • 1994-03-08
    • US838898
    • 1992-02-21
    • Hidetoshi KonnoYoichi TanimotoIchiro MuramatsuMitsuo KaseNoboru Okoshi
    • Hidetoshi KonnoYoichi TanimotoIchiro MuramatsuMitsuo KaseNoboru Okoshi
    • C08G18/00C08G18/08C08G18/10C08G18/32C08G18/42C08G18/79C08J3/03C08L75/02
    • C08G18/791C08G18/0866C08G18/10C08G18/3225C08G18/4269Y10S525/902Y10S528/902Y10T428/2982
    • A crosslinked polyurethane polyurea spherically particulate polymer having an average particle diameter of 0.1 to 500 .mu.m, wherein the polymer molecule contains an isocyanurate ring in an amount of 10 to 30% by weight is disclosed. A process for producing the crosslinked polyurethane polyurea spherically particulate polymer is also disclosed. The process comprises the steps of: reacting an isocyanurate ring-containing polyisocyanate compound with a polyhydroxy compound to form an organic phase capable of forming a three-dimensional crosslinked structure due to the reaction, wherein the amount of isocyanate groups in the polyisocyanate compound is stoichiometrically larger than that of hydroxyl groups in the polyhydroxy compound; finely dispersing the organic phase into water; and adding a polyamine to the dispersion to make interfacial polymerization between the organic phase and the polyamine and a polyurethane-forming reaction within particles, wherein the amount of the polyamine is stoichiometrically equivalent to or smaller than the stoichiometrical excess of isocyanate groups. The particulate polymer is excellent in solvent resistance and has a completely spherical shape without wrinkle on the particle surface. The particulate polymer has a good toughness and mechanical properties. Further, the particulate polymer has no reactive isocyanate group in the polymer molecule.
    • 公开了平均粒径为0.1〜500(my)m的交联聚氨酯聚脲球形聚合物,其中聚合物分子含有10〜30重量%的异氰脲酸酯环。 还公开了制备交联聚氨酯聚脲球形聚合物的方法。 该方法包括以下步骤:使含异氰脲酸酯环的多异氰酸酯化合物与多羟基化合物反应,形成能够由于反应形成三维交联结构的有机相,其中多异氰酸酯化合物中的异氰酸酯基团的化学计量 大于多羟基化合物中羟基的数目; 将有机相精细分散于水中; 并向分散体中加入多胺以在有机相和多胺之间进行界面聚合,并在颗粒内形成聚氨酯形成反应,其中多胺的化学计量等于或小于异氰酸酯基团的化学计量过量。 颗粒聚合物耐溶剂性优异,并且具有完全球形,在颗粒表面没有皱纹。 颗粒聚合物具有良好的韧性和机械性能。 另外,粒子状聚合物在聚合物分子中不具有活性异氰酸酯基。