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    • 1. 发明专利
    • Continuous kneader
    • 连续的KNEADER
    • JP2011152705A
    • 2011-08-11
    • JP2010015549
    • 2010-01-27
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NARUKAWA YUTAKAHONKE KOICHINAKASHITA TOMONORI
    • B29B7/38B01F7/08B01F15/00B29C47/58
    • B29C47/64
    • PROBLEM TO BE SOLVED: To provide a continuous kneader which shows the increased torsional rigidity and torsional vibrational intrinsic value of a kneading rotor between a drive part and a kneading segment. SOLUTION: The continuous kneader 1 comprises a barrel 6 with an internal cavity, a kneading rotor 2 which is inserted in the barrel 6 and includes a kneading part 4 for kneading a material installed halfway through the kneading rotor 2 in the axial direction and the drive part 5 for rotating the kneading rotor 2. In addition, the continuous kneader is characterized in that at least three radial bearings 3 for supporting the kneading rotor 2 rotatably are installed in the axial direction. In order to make a distance between the kneading part 4 and the drive part 5 short, at least one piece of the radial bearing 3 of the total three is arranged at the drive part side rather than the kneading part 4, and also, the rest of the radial bearings 3 are arranged at the counter drive part side rather than the kneading part 4. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种显示搅拌转子在驱动部分和捏合段之间增加的扭转刚度和扭转振动本征值的连续捏合机。 解决方案:连续捏合机1包括具有内腔的筒6,插入筒6中的捏合转子2,包括捏合部4,用于捏合在混炼转子2的中途沿轴向方向安装的材料 以及用于旋转捏合转子2的驱动部5.此外,连续捏合机的特征在于,在轴向安装至少三个用于支撑捏合转子2的径向轴承3。 为了使捏合部4和驱动部5之间的距离短,在驱动部侧而不是捏合部4上配置有至少一个总共3个的径向轴承3,其余部分 径向轴承3布置在反向传动部分侧而不是捏合部分4上。版权所有(C)2011,JPO&INPIT
    • 2. 发明专利
    • Monitoring method in balance test and dynamic balance measuring device
    • 平衡测试和动态平衡测量装置中的监测方法
    • JP2011191249A
    • 2011-09-29
    • JP2010059239
    • 2010-03-16
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIOKADA TORUHONKE KOICHI
    • G01M1/16G01M17/02
    • PROBLEM TO BE SOLVED: To prevent measurement of an erroneous dynamic balance in a balance test for measuring a dynamic balance of a tire by using a dynamic balance measuring device. SOLUTION: The balance test for measuring the dynamic balance of the tire 2 by measuring load generated when rotating the tire 2 analyzes the load into frequency components and detects disturbance giving influence on the dynamic balance test on the basis of high-order components of the frequency components. The high-order components are secondary or higher-order components. The disturbance is generated by a change of mechanical characteristics of the dynamic balance measuring device 1. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了防止通过使用动平衡测量装置测量轮胎的动平衡的平衡测试中的错误动平衡的测量。

      解决方案:通过测量轮胎2旋转时产生的负载来测量轮胎2的动平衡的平衡测试将负荷分析为频率分量,并基于高阶分量检测对动平衡测试产生影响 的频率分量。 高阶分量是次要或高阶分量。 通过动平衡测量装置1的机械特性的变化产生干扰。版权所有:(C)2011,JPO&INPIT

    • 3. 发明专利
    • Kneader
    • 利拿
    • JP2011083700A
    • 2011-04-28
    • JP2009238537
    • 2009-10-15
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIHONKE KOICHI
    • B01F7/02B01F7/08B01F15/00B29B7/38F16F15/22
    • B29C47/6031B29C47/0857
    • PROBLEM TO BE SOLVED: To suppress the vibration of a casing by reducing the bearing load produced by the inertial force caused by the excitation of a kneading rotor at the time of kneading. SOLUTION: The kneader is equipped with the kneading rotor 2 provided in the casing 3, the bearings for supporting the kneading rotor 2 in a freely rotatable manner and a drive device 4 for rotationally driving the kneading rotor 2. The kneading rotor 2 is extended in its axial center direction on the side opposite to the drive device 4 and a loading member 11 for reducing the load of the bearings caused by the inertial force of the kneading rotor 2 produced at the time of kneading is provided to the extension part 10 of the kneading rotor 2. The weight of the loading member 11 is calculated corresponding to the mass of the kneading rotor 2 between the bearings. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:通过减少在捏合时由捏合转子的激发引起的惯性力产生的轴承负荷来抑制壳体的振动。 解决方案:捏合机配备有设置在壳体3中的捏合转子2,用于以可自由旋转的方式支撑捏合转子2的轴承和用于旋转驱动捏合转子2的驱动装置4.捏合转子2 在与驱动装置4相反的一侧的轴向中心方向上延伸,并且用于减少由捏合时产生的混合转子2的惯性力引起的轴承的负载的装载部件11设置在延伸部 根据揉合转子2的轴承质量计算装载部件11的重量。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Biaxial continuous kneader
    • 双向连续式KNEADER
    • JP2010179562A
    • 2010-08-19
    • JP2009024827
    • 2009-02-05
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NARUKAWA YUTAKANAKASHITA TOMONORI
    • B29B7/58B01F7/02B01F7/08B01F15/00
    • PROBLEM TO BE SOLVED: To provide a kneader formed to exhibit high rigidity even while making a frame member light in weight.
      SOLUTION: The kneader 1 is provided with: a kneading rotor to be rotated in a barrell 2; and at least one frame member 12 for supporting the kneading rotor to be rotated freely. The frame member 12 is fixed to a fortifying member 18 buried in a basic foundation 17. It is preferable that two or more drive-side frame members 12 for supporting the kneading rotor are arranged on the drive side and two or more branched legs 21 are arranged on the basic foundation 17 side. It is more preferable that the frame members 12 on the drive side or the legs 21 are connected to one another while interposing the fortifying member 18 between the connected ones.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:即使在使框架构件重量轻时,也提供形成为显示高刚性的捏合机。 解决方案:捏合机1设置有:在酒吧2中旋转的捏合转子; 以及至少一个框架构件12,用于支撑捏合转子以自由旋转。 框架构件12被固定在埋设在基础基座17中的加强构件18上。优选的是,在驱动侧配置有两个以上的用于支撑搅拌转子的驱动侧框架构件12,两个以上的分支支脚21 安排在基础17一侧。 更优选的是,驱动侧的框架构件12或腿部21彼此连接,同时将强化构件18插入在连接的构件之间。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Vibration control mechanism for twin screw extruder
    • 双螺杆挤出机振动控制机理
    • JP2014172203A
    • 2014-09-22
    • JP2013044138
    • 2013-03-06
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIUEDA HIROKI
    • B29C47/08B29B7/46B29C47/40
    • PROBLEM TO BE SOLVED: To reliably prevent vibration from occurring when screws are operated at a high rotation rate or the like in operation of a twin screw extruder.SOLUTION: A vibration control mechanism 1 for a twin screw extruder 2 includes: a pair of kneading screws 4 and 4 rotating for each other; a cylindrical long barrel 3 inside which these kneading screws can be accommodated; and a drive unit 5 for supporting one end side of the barrel 3 to a foundation F as well as providing rotary drive force to the pair of kneading screws 4 and 4. A barrel support part 10 protrudently formed along a direction perpendicular to the longitudinal direction of the barrel 3 is provided under the barrel 3, and a holding member 11 for sandwiching and holding the barrel support part 10 from both sides is provided on the side of the foundation F. Attenuating means 12 for attenuating vibration occurring in the barrel 3 is provided between the barrel support part 10 and the holding member 11.
    • 要解决的问题:为了可靠地防止在双螺杆挤出机的操作中螺杆以高旋转速度等操作时发生振动。解决方案:双螺杆挤出机2的振动控制机构1包括:一对捏合 螺丝4和4相互旋转; 可容纳这些捏合螺杆的圆柱形长筒3; 以及用于将筒3的一端侧支撑到基座F的驱动单元5,以及向一对捏合螺钉4和4提供旋转驱动力。沿着与纵向方向垂直的方向突出地形成的筒支撑部10 筒体3设置在筒体3的下方,并且在基座F的侧面设置有用于从两侧夹持并保持筒体支撑部件10的保持部件11.用于衰减筒体3中发生的振动的衰减装置12是 设置在筒支撑部10和保持构件11之间。
    • 6. 发明专利
    • Mechanism and method for vibration control of twin-screw extruder
    • 双螺杆挤出机振动控制的机理及方法
    • JP2014156020A
    • 2014-08-28
    • JP2013026711
    • 2013-02-14
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIUEDA HIROKI
    • B29C47/40
    • PROBLEM TO BE SOLVED: To surely prevent vibration generated in a twin-screw extruder.SOLUTION: A vibration control mechanism 1 is provided in a twin-screw extruder 2 which comprises: a pair of mutually rotating kneading screws 4, 4; a long cylindrical barrel 3 capable of accommodating the pair of kneading screws 4, 4; and a drive device 5 supporting one end side of the barrel 3 and giving a rotational driving force to the pair of kneading screws 4, 4. In the vibration control mechanism 1, an upward projecting part 6 which projects upward from the outer peripheral surface of the barrel 3 is provided on the longitudinal other end side of the barrel 3, and the upward projecting part 6 is provided with a vibration control member 13 which generates a frictional force and an impact force to suppress vibration of the barrel 3.
    • 要解决的问题:确保防止在双螺杆挤出机中产生的振动。解决方案:在双螺杆挤出机2中设置振动控制机构1,该双螺杆挤出机2包括:一对相互旋转的搅拌螺杆4,4; 能够容纳一对捏合螺丝4,4的长筒状筒3; 以及驱动装置5,其支撑筒体3的一端侧,并向一对捏合螺杆4,4提供旋转驱动力。在振动控制机构1中,从外周面向上突出的向上突出部6 筒3设置在筒体3的纵向另一端侧,并且向上突出部6设置有产生摩擦力和冲击力的振动控制构件13,以抑制筒体3的振动。
    • 7. 发明专利
    • Tire balance testing method and tire balance testing machine
    • 轮胎平衡测试方法和轮胎平衡测试机
    • JP2012247351A
    • 2012-12-13
    • JP2011120384
    • 2011-05-30
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIOKADA TORU
    • G01M1/16
    • G01M1/16
    • PROBLEM TO BE SOLVED: To highly accurately check an unbalanced state of tires even in the area where a rotation speed of tires is not fixed, and to shorten a check cycle time as further as possible, as a result.SOLUTION: According to a tire balance testing method, a load generated in a spindle shaft 2 holding tires T is measured in the state of installing a plurality of tires T for which mounting angles of the tires T to the spindle shaft 2 are made different, and at various rotation speeds. From the measured balance load, correction data in the case of rotation acceleration or rotation deceleration of the tires T are determined. In the case of actual measurement, a balance load generated in the rotating spindle shaft 2 is measured and the measured balance load is corrected by using the correction data, thereby measuring an unbalanced state of the tires T.
    • 要解决的问题:为了高度精确地检查轮胎的不平衡状态,即使在轮胎的旋转速度不固定的区域中,结果也能够缩短检查循环时间。 解决方案:根据轮胎平衡测试方法,在安装轮胎T与主轴2的安装角度的多个轮胎T的状态下,测量在保持轮胎T的主轴2中产生的载荷 制成不同的旋转速度。 从测量的平衡负载中,确定在轮胎T的旋转加速度或旋转减速度的情况下的校正数据。 在实际测量的情况下,测量在旋转主轴2中产生的平衡负载,并通过使用校正数据校正测量的平衡载荷,从而测量轮胎T的不平衡状态。(C) 2013年,JPO&INPIT
    • 8. 发明专利
    • Biaxial kneading extruder
    • 双向咀嚼机
    • JP2013237218A
    • 2013-11-28
    • JP2012112536
    • 2012-05-16
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIUEDA HIROKI
    • B29B7/46
    • B29C47/64
    • PROBLEM TO BE SOLVED: To control vibration of a frame member disposed to a drive side and a kneading rotor supported therewith by reinforcing the vibration reduction member only at a necessary part of the frame member in a biaxial kneading extruder.SOLUTION: A biaxial kneading extruder 1 includes: a barrel 2 of which inside is a cavity: a right and left pair of kneading rotors 3 inserted in the barrel 2; and a drive part 4 that rotates the kneading rotor 3, wherein at least three pieces of frame members that rotatably support the kneading rotors 5, 6, 8 are provided in an axial direction of the kneading rotor 3. Two frame members 5, 6 among at least three frame members 5, 6, 8 are disposed at the drive part 4 side, and in the above two frame members, vibration reduction members 22, 23 that reduce vibration by exciting force generated by the rotation of the above kneading rotor 3 are provided for the above two frame members, and the vibration reduction members 22 and 23 are being fastened to bridge the upper parts of two frame members 5 and 6.
    • 要解决的问题:为了控制设置在驱动侧的框架构件的振动和通过在双轴捏合挤出机中仅在框架构件的必要部分加强减振构件来支撑的振动转子。解决方案:双轴捏合挤出机 1包括:筒体2,其内部是空腔:插入筒体2中的左右一对捏合转子3; 以及使捏合用转子3旋转的驱动部4,其中,在捏合转子3的轴向设置有至少三个可旋转地支撑捏合转子5,6,8的框架构件。两个框架构件5,6之间 至少三个框架构件5,6,8设置在驱动部分4侧,并且在上述两个框架构件中,通过由上述捏合转子3的旋转产生的激励力减少振动的减振构件22,23是 设置在上述两个框架构件上,并且减振构件22和23被紧固以桥接两个框架构件5,6的上部。
    • 9. 发明专利
    • Dynamic balance measuring device
    • 动态平衡测量装置
    • JP2011196836A
    • 2011-10-06
    • JP2010064228
    • 2010-03-19
    • Kobe Steel Ltd株式会社神戸製鋼所
    • NAKASHITA TOMONORIOKADA TORUHONKE KOICHISARUMARU SHOGO
    • G01M1/16G01M17/02
    • PROBLEM TO BE SOLVED: To provide a dynamic balance measuring device including a load stabilizing mechanism for reducing a measurement error due to motion of a driving belt in measuring an unbalance load of a tire.SOLUTION: The dynamic balance measuring device 1a includes a tire rotating shaft 3 on which a tire 2 whose dynamic balance is to be measured is mounted, a rotation driving device 6 having a driving shaft 5 provided in parallel to the tire rotating shaft 3, a driving belt 7 wound around a driving pulley 12 provided on the driving shaft 5 of the rotation driving device 6 and a driven pulley 10 having a different diameter from that of the driving pulley 12 and provided on the tire rotating shaft 3, and a load detector 8 for detecting a load applied to the tire rotating shaft 3. The dynamic balance measuring device 1a moreover includes an adjust pulley 9a pressed by the driving belt 7 for adjusting tension of the driving belt 7 and also adjusting the moving direction of the driving belt 7 with respect to the direction of the load detected by the load detector 8.
    • 要解决的问题:提供一种动平衡测量装置,包括负载稳定机构,用于在测量轮胎的不平衡载荷时减少由于传动带的运动引起的测量误差。解决方案:动平衡测量装置1a包括轮胎旋转 在其上安装有要测量动平衡的轮胎2的轴3,具有平行于轮胎旋转轴3设置的驱动轴5的旋转驱动装置6,围绕设置在轮胎旋转轴3上的驱动滑轮12的驱动带7 旋转驱动装置6的驱动轴5和与驱动滑轮12的直径不同且设置在轮胎旋转轴3上的从动滑轮10以及用于检测施加到轮胎旋转轴3的负荷的负载检测器8 动平衡测量装置1a还包括由驱动带7按压以调节传动带7的张力的调节滑轮9a,并且还调节驱动带7的移动方向 g带7相对于由负载检测器8检测的负载方向。
    • 10. 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