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    • 6. 发明公开
    • CLOSING ASSEMBLY FOR A MAGNETO-RHEOLOGICAL DAMPER
    • 爱尔兰电子科技大学
    • EP3085989A1
    • 2016-10-26
    • EP16000892.6
    • 2016-04-21
    • BeijingWest Industries Co. Ltd.
    • Hart, John A.
    • F16F9/36F16F9/53
    • F16F9/363F16F9/535F16F2222/06F16F2224/045
    • The invention relates to a closing assembly for a damper comprising:
      an annular housing extending along a central longitudinal axis from a top end to a bottom end and defining a through bore axially extending therethrough having an inner surface,
      a guide defining a central opening axially extending therethrough and having a top and a bottom and being disposed in said through bore for guiding a piston rod of the damper,
      an upper seal disposed in said through bore in a spaced relationship with said top of said guide for contacting and sealing against the piston rod,
      a lower seal disposed in said through bore in a spaced relationship with said bottom of said guide for contacting and sealing against the piston rod, said guide having an exterior defining a plurality of longitudinally extending channels disposed in a spaced relationship circumferentially about said guide, and
      said top of said guide and said upper seal and said inner surface of said through bore defining a first chamber and said bottom of said guide and said lower seal and said inner surface of said through bore defining a second chamber in fluid communication with said first chamber through said channels for separating and maintaining a volume of isolated oil to lubricate said guide and said upper seal and said lower seal.
    • 本发明涉及一种用于阻尼器的关闭组件,包括:环形壳体,其沿着中心纵向轴线从顶端延伸到底端,并限定轴向延伸穿过其中的通孔,其具有内表面,引导件限定中心开口,轴向延伸 通过并具有顶部和底部并且设置在所述通孔中用于引导阻尼器的活塞杆,上部密封件以与所述引导件的所述顶部间隔开的关系设置在所述通孔中,用于接触和密封所述活塞杆 设置在所述通孔中的下部密封件,所述下部密封件以与所述引导件的所述底部间隔开的关系与所述活塞杆接触和密封,所述引导件具有限定多个纵向延伸的通道的外部,该多个纵向延伸的通道围绕所述引导件以周向的间隔设置, 并且所述引导件的所述顶部和所述上密封件以及所述通孔的所述内表面限定第一腔室和第二腔室 所述引导件的底部和所述下部密封件以及所述通孔的所述内表面限定通过所述通道与所述第一腔室流体连通的第二腔室,用于分离和保持一定体积的隔离油以润滑所述引导件和所述上部密封件和所述上部密封件 下封
    • 7. 发明公开
    • MAGNETORHEOLOGICAL FLUID DAMPER
    • DÄMPFERMIT EINER MAGNETORHEOLOGISCHENFLÜSSIGKEIT
    • EP2902658A1
    • 2015-08-05
    • EP14770844.0
    • 2014-03-10
    • Kayaba Industry Co., Ltd.
    • SAITO, KeijiNAKAMURA, KazuhisaTERAOKA, Takashi
    • F16F9/53
    • F16F9/3214F16F9/19F16F9/535F16F2222/06F16F2224/045F16F2228/066
    • A piston of a magnetorheological fluid shock absorber is provided with a piston core having a small diameter portion mounted on an end portion of the piston rod, an enlarged diameter portion formed continuously in an axial direction with a diameter larger than the small diameter portion and forming a stepped portion, and a large diameter portion formed continuously in the axial direction with a diameter larger than the enlarged diameter portion and having a coil; a ring body surrounding the outer periphery of the piston core and forming a flow passage of the magnetorheological fluid between itself and the large diameter portion; a plate formed annularly and arranged on the outer periphery of the small diameter portion and mounted on one end of the ring body; and a stopper mounted on the small diameter portion and sandwiching the plate between the stopper and the stepped portion.
    • 磁流变液体缓冲器的活塞设置有活塞芯,该活塞芯具有安装在活塞杆的端部上的小直径部分,其直径部分沿直径大于小直径部分的轴向连续形成,并形成 台阶部分和大直径部分,其在直径大于所述扩大直径部分的轴向方向上连续形成并具有线圈; 围绕活塞芯的外周的环形体,并且在其与大直径部分之间形成磁流变流体的流动通道; 环形地设置在小直径部分的外周上并安装在环体的一端的板; 以及安装在所述小直径部上并将所述板夹在所述止动件和所述台阶部之间的止动件。
    • 10. 发明公开
    • DEVICE AND METHOD FOR ROTATION
    • VORRICHTUNG UND VERFAHREN ZUR ERZEUGUNG EINER DREHBEWEGUNG。
    • EP0683317A1
    • 1995-11-22
    • EP92921212.4
    • 1992-10-07
    • TAKARA, Muneaki
    • TAKARA, Muneaki
    • F03G3/08
    • F16F15/30F16F2222/06H02K7/02H02K49/108Y02E60/16Y10S74/04Y10T74/2117
    • A device and method for efficiently rotating a rotating body in a layer structure consisting of a plurality of rotating plates arranged in layers and intends to provide a device for and method of rotation capable of efficiently converting sequentially input rotative driving power into the rotational energy of the whole of the rotating body in a layer structure. A rotating device of this invention comprises a layered rotating body composed of a plurality of rotating plates (11 to 17) arranged in layers with distances therebetween and their rotating axes (3) aligned, in which, on each of said layered rotating plates (11 to 17) of the rotating body, groups of magnetic poles (31 to 37) are provided on the respective surfaces of the plates facing neighboring layers, said groups of magnetic poles (31 to 37) are made equal in polarity to those (31 to 37) on the opposing rotating plate (11 to 17) surfaces in the neighboring layers, and each magnetic pole in said groups (31 to 37) is arranged so as to be alternately opposite in the rotational direction to each one in groups (31 to 37) on opposing plates (11 to 17) in neighboring layers. Such a rotating device as above can be used as for example, a flywheel energy storage system when the rotating plates are used as flywheel disks and rotated at high speed to store rotational energy of the flywheel disks.
    • 一种用于有效地旋转由层叠的多个旋转板组成的层结构的旋转体的装置和方法,并且旨在提供一种能够有效地将顺序地输入的旋转驱动力转换为旋转能量的旋转驱动力的装置和旋转方法 整个旋转体处于一层结构。 本发明的旋转装置包括由多个旋转板(11至17)组成的分层旋转体,所述多个旋转板(11至17)以其间距离排列并且其旋转轴线(3)对准,其中,在每个所述分层旋转板(11 至17),在面对相邻层的板的各个表面上设置有磁极组(31〜37),所述一组磁极(31〜37)的极性与(31〜 (31〜37)的各个磁极配置成与旋转方向交替地相反地分成各组(31〜37),在相对的旋转板(11〜17) 37)在相邻层中的相对板(11至17)上。 当旋转板用作飞轮盘并以高速旋转以存储飞轮盘的旋转能量时,可以使用如上所述的旋转装置,例如飞轮储能系统。