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    • 1. 发明专利
    • Kneading segment and kneading equipment
    • 开创性部门和装备设备
    • JP2012158145A
    • 2012-08-23
    • JP2011020760
    • 2011-02-02
    • Kobe Steel Ltd株式会社神戸製鋼所
    • GENNAI TATSUOKASAI SHIGEHIROFUNABASHI HIDEO
    • B29B7/42B29B7/58
    • B29B7/483B29B7/847B29C47/0009B29C47/402B29C47/6031B29C47/6056B29C47/767
    • PROBLEM TO BE SOLVED: To provide a kneading segment which does not produce a kneading material in which deterioration and chemical reaction occur with the lapse of time, i.e., impurities by preventing the kneading material from staying between parallel kneading segments, and thus prevents the impurities from being mixed into a normally-kneaded material, and thus can prevent the deterioration of quality as an extruded product.SOLUTION: In the kneading segment including a plurality of wings 20 integrally formed in an axial direction so that angles around the axis of the plurality of wings are shifted, at the top 21 of each wing 20, a first flow surface 30 which facilitates the flow of the kneading material between the wing top end surface 21a and the wing surface 23 is formed in a part where the wing top end surface 21a and the wing surface 23 are connected with each other. At the base end 22 of each wing 20, a second flow surface 31 which facilitates the flow of the kneading material between the wing surface 23 and the wing side surface 24 is formed in a part where the wing surface 23 and a wing side surface 24 of the other wing 20 adjacent to each wing 20 are connected with each other.
    • 要解决的问题:提供一种捏合段,其不产生在经过时间之后发生劣化和化学反应的捏合材料,即通过防止捏合材料停留在平行的捏合段之间的杂质,因此 防止杂质混入正常捏合材料中,从而可以防止作为挤出产品的质量劣化。 解决方案:在具有沿轴向一体形成的多个翼部20的混合部分中,使得围绕多个翼片的轴线的角度偏移,在每个机翼20的顶部21处,形成第一流动面30,第一流动面30 在机翼顶端面21a和机翼面23彼此连接的部分形成翼型顶端面21a与机翼面23之间的混合材料的流动。 在每个机翼20的基端22处,在机翼表面23和机翼侧表面24的一部分中形成有便于在机翼表面23和机翼侧表面24之间流动揉捏材料的第二流动表面31 与每个翼20相邻的另一翼20彼此连接。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Die for preparing resin pellet
    • 用于制备树脂片的DIE
    • JPH11277528A
    • 1999-10-12
    • JP8395198
    • 1998-03-30
    • Kobe Steel Ltd株式会社神戸製鋼所
    • KURODA YOSHINORITAKAHASHI KATSUNORIKASAI SHIGEHIROTANAKA TATSUYAKASHIWA MASAHIKO
    • B29B9/06
    • B29B9/065
    • PROBLEM TO BE SOLVED: To solve clogging by wholly and almost uniformly heating a number of resin extrusion nozzles and especially preventing a resin from being solidified in tapered parts of the resin extrusion nozzles.
      SOLUTION: In a die for preparing resin pellets wherein ring passages 3 and 4 in which a heating medium flows are provided on the outside and the inside of a nozzle part ring 2 and a number of heating channels 5 are formed between these outside ring passage 3 and inside ring passage 4 and a number of resin extrusion nozzles 6 passing through the nozzle part ring 2 are provided in each space between these heating channels 5, the heating channels 5 are extended at a specified length from the small diameter passage side to the large diameter passage side of the resin extrusion nozzles 6.
      COPYRIGHT: (C)1999,JPO
    • 要解决的问题:通过完全和几乎均匀地加热多个树脂挤出喷嘴,特别是防止树脂在树脂挤出喷嘴的锥形部分中固化而解决堵塞问题。 解决方案:在用于制备树脂颗粒的模具中,其中加热介质流动的环形通道3和4设置在喷嘴部分环2和多个加热通道5的外部和内部,并且在这些外部环形通道3之间形成 并且在这些加热通道5之间的每个空间中设置有环形通道4和通过喷嘴部分环2的多个树脂挤出喷嘴6,加热通道5从小直径通道侧延伸到特定长度 树脂挤出喷嘴6的直径通过侧。
    • 4. 发明专利
    • Power transfer structure and twin screw kneading extruder
    • 动力传动结构和双螺杆挤出机
    • JP2010099842A
    • 2010-05-06
    • JP2008270679
    • 2008-10-21
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIHONKE KOICHIKASAI SHIGEHIROMINAGAWA KOJI
    • B29B7/58B29C47/40
    • B29C47/0801B29C47/0009B29C47/40B30B11/241
    • PROBLEM TO BE SOLVED: To provide the power transfer structure of a twin screw kneading extruder which can exactly measure torque applied to a screw shaft and the twin screw kneading extruder. SOLUTION: The power transfer structure includes an output shaft 3, the screw shaft 4, a sleeve 6, and a sphere 7. The output shaft 3 is rotated by rotational force transmitted from a motor 21. The sleeve 6 transmits the rotational force of the output shaft 3 to the screw shaft 4. The sphere 7 is clamped between the output shaft 3 and the screw shaft 4. The output shaft 3, the screw shaft 4, and the sleeve 6 are spline-engaged. A curved surface protruding toward the end of the output shaft 3 and a curved surface protruding toward the end of the screw shaft 4 are formed in the sphere 7. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供可以精确地测量施加到螺杆轴的扭矩和双螺杆捏合挤出机的双螺杆捏合挤出机的动力传递结构。 解决方案:动力传递结构包括输出轴3,螺杆轴4,套筒6和球体7.输出轴3由从马达21传递的旋转力旋转。套筒6将旋转 输出轴3对螺杆轴4的力。球体7被夹持在输出轴3和螺杆轴4之间。输出轴3,螺杆轴4和套筒6是花键接合的。 在球体7中形成有朝向输出轴3的端部突出的弯曲表面和朝向螺杆轴4的端部突出的弯曲表面。(C)2010,JPO&INPIT
    • 6. 发明专利
    • Kneading device
    • 开发设备
    • JP2009096004A
    • 2009-05-07
    • JP2007267907
    • 2007-10-15
    • Kobe Steel Ltd株式会社神戸製鋼所
    • FUKUTANI KAZUHISAYAMADA SAYAKAKASAI SHIGEHIROYAMAGUCHI KAZUOYAMANE YASUAKI
    • B29B7/58B01F7/08
    • B29B7/483B29B7/484B29C47/6031B29C47/6056B29C47/662
    • PROBLEM TO BE SOLVED: To provide a kneading device, the wear of screws and a barrel of which can be reduced while the manufacturing processes of the screw and of the barrel are suppressed to becoming more complicated.
      SOLUTION: In this kneading device for executing kneading a kneading object introducing in the kneading space 6a in the barrel 6 by rotating around the shafts of a pair of screws 4 and 4, each screw 4 has a shape developing a deviation in the predetermined direction normal to the direction parallel to the running directions of a pair of the screws 4 and 4 the kneading of the kneading object, while the kneading space 6a has a shape, which is formed by joining a pair of housing spaces 6b and 6b respectively housing each screw 4 therein so as to overlap each other at some radial part, and the radius in the predetermined direction, in which the deviation of each screw 4 develops, of each housing space 6b is formed larger than he radii in the remaining other directions.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决问题的方案为了提供一种捏合装置,可以抑制螺杆和筒的制造过程变得更加复杂的螺杆和筒的磨损,同时可减少磨损。 解决方案:在该捏合装置中,通过围绕一对螺钉4和4的轴线旋转,在捏合物体中进行捏合物体的捏合,从而在筒体6内的捏合空间6a中进行捏合, 在与一对螺钉4和4的行进方向平行的方向上的预定方向是捏合对象的捏合,而捏合空间6a具有通过分别连接一对容纳空间6b和6b而形成的形状 将每个螺钉4容纳在其中以在某个径向部分彼此重叠,并且在每个容纳空间6b中形成每个螺钉4的偏差的预定方向上的半径形成为大于其余其它方向上的半径 。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Screen changer
    • 屏幕更换
    • JP2006116908A
    • 2006-05-11
    • JP2004309712
    • 2004-10-25
    • Kobe Steel Ltd株式会社神戸製鋼所
    • KASAI SHIGEHIROROKUSHA TAKESHINISHIGUCHI MASATERUMINATO RYOTAKAMIMURA TATSUYAMIYAKE TSUNAICHI
    • B29C47/68B29L31/14
    • PROBLEM TO BE SOLVED: To be able to certainly perform air-bleeding in a preliminary packing of a melting resin performed at the time of a screen change, and not to invite complication of structure or the like in a screen changer suitably used for a resin-kneading extruder or the like. SOLUTION: The screen changer comprises: a housings 5 in which a resin passage 7 is formed in the shape of internal penetration; and a slider 6 meeting the resin passage 7 within this housings 5 and equipped with a filtration section 30 holding a screen for filtration. Between surfaces in which the housing 5 and the slider 6 are connected, when the slider 6 is made into a preliminary packing position of a melting resin which makes one corner section of the filtration section 30 communicate with the resin passage 7, an air collection clearance 35 which communicates with the other corner which is in the opposite side by a direction of plane with the above corner of the filtration section 30 is formed. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了能够在屏幕变化时进行的熔融树脂的预备填充中肯定地进行排气,并且不会在适当使用的换网器中引起结构等的复杂化 用于树脂捏合挤出机等。 解决方案:换网器包括:壳体5,其中树脂通道7形成为内部穿透的形状; 以及在该壳体5内与树脂通路7相接的滑块6,其配有保持过滤用的筛网的过滤部30。 在壳体5和滑块6连接的表面之间,当滑块6成为使过滤部分30的一个角部分与树脂通道7连通的熔化树脂的预填充位置时,空气收集间隙 35形成与过滤部30的上述角部的与平面方向相反的另一角部。 版权所有(C)2006,JPO&NCIPI
    • 10. 发明专利
    • Kneter
    • DE102008042838B4
    • 2017-09-14
    • DE102008042838
    • 2008-10-14
    • KK KOBE SEIKO SHO (KOBE STEEL LTD )
    • FUKUTANI KAZUHISAYAMADA SAYAKAKASAI SHIGEHIROYAMAGUCHI KAZUOYAMANE YASUAKI
    • B01F7/08B29B7/48
    • Kneter mit: einem Paar Schnecken (4, 4), die parallel zueinander angeordnet sind; einem Gehäuse (6), das einen Knetraum (6a) zum Aufnehmen des Paars Schnecken (4, 4) in dessen Inneren hat; und einer Antriebseinheit (2) zum Drehen des Paars Schnecken (4, 4) um deren entsprechende Achsen, wobei der Kneter ein zu knetendes Material, das in den Knetraum (6a) eingeführt wird, durch Drehen der Schnecken (4, 4) um deren entsprechende Achsen knetet, wobei jede der Schnecken (4, 4) eine Gestalt hat, die eine Ablenkung in einer spezifischen Richtung, die senkrecht zu deren Achse verläuft, während eines Knetens des zu knetenden Materials generiert; und der Knetraum (6a) eine derartige Gestalt hat, dass ein Paar Aufnahmeräume (6b, 6b) zum jeweiligen Aufnehmen der Schnecken (4, 4) miteinander so verbunden ist, dass sie einander in einer radialen Richtung teilweise überlappen, wobei jeder der Aufnahmeräume (6b, 6b) einen Abschnitt mit großem Durchmesser in zumindest einem Abschnitt in der axialen Richtung der Schnecken (4, 4) aufweist, der Abschnitt mit großem Durchmesser auf eine derartige Art und Weise ausgebildet ist, dass ein Durchmesser von ihm in der spezifischen Richtung größer als in jeder anderen Richtung ist.