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    • 1. 发明授权
    • Component feeding method and device
    • 元件供料方式及装置
    • US06513563B1
    • 2003-02-04
    • US09341807
    • 1999-09-30
    • Takashi AndoTeruo KawaguchiYuji NagasawaShuuichi KubotaMamoru Inoue
    • Takashi AndoTeruo KawaguchiYuji NagasawaShuuichi KubotaMamoru Inoue
    • B65H528
    • H05K13/0419Y10T156/17Y10T156/1744Y10T156/1906
    • A component feeding apparatus for pitch-feeding taping components (1) to a component feed position (30), peeling a cover tape (1b) short of the component feed position (30) and taking out and feeding a component (5) from an accommodation portion (1c) at the component feed position (30), wherein the component is supplied stably in an appropriate posture to the component feed position (30). A slit (36) is formed in a shutter (35) capable of moving between a position at which the upper surface of the taping component (1) is covered and a position at which the component feed position is opened so that a cover tape (1b) peeled from the taping component (1) can be passed through the slit (36) and can be pulled up, and the peeling step of the cover tape (1b) and the pitch-feeding step of the taping component (1) can be separated from each other to prevent the component (5) from greatly moving and assuming an irregular posture inside the accommodation portion (1c).
    • 一种用于将带状部件(1)俯仰到部件供给位置(30)的部件供给装置,剥离部件供给位置(30)以外的盖带(1b),并从部件供给位置 在部件供给位置(30)处的容纳部(1c),其中,以适当的姿势将部件稳定地供给到部件供给位置(30)。 在能够在胶带部件(1)的上表面被覆盖的位置与打开部件供给位置的位置之间移动的挡板(35)上形成狭缝(36),从而使盖带 从胶带组件(1)剥离的图1b的纸1b可以穿过狭缝36并被拉起,并且胶带(1b)的剥离步骤和胶带组件(1)的间距进给步骤可以 彼此分离以防止部件(5)在容纳部分(1c)内大大移动并且呈现不规则姿势。
    • 2. 发明授权
    • Component suction method
    • 元件抽吸法
    • US06190115B1
    • 2001-02-20
    • US09125511
    • 1998-08-20
    • Hideo SuzukiMamoru InoueTakashi Ando
    • Hideo SuzukiMamoru InoueTakashi Ando
    • B65B6900
    • H05K13/0417H05K13/0409Y10T29/53178Y10T29/53183
    • A component suction method including feeding components (8) accommodated in component storage spaces (9c) of a tape base (9a) to a predetermined position, lowering a nozzle (7) capable of sucking the components supplied to the predetermined position, stopping the nozzle (7) at a predetermined distance from an upper surface of the tape base, pushing an undersurface of the component up when the nozzle is at a bottom dead center position or a position adjacent to the center, vacuum-sucking the component by the nozzle at the bottom dead center position or at the position adjacent to the center, and moving the component sucked by the nozzle to a predetermined position of a board after the vacuum-sucking.
    • 一种部件抽吸方法,包括将容纳在带基(9a)的部件存储空间(9c)中的馈送部件(8)放置到预定位置,降低能够吸取供给到预定位置的部件的喷嘴(7),停止喷嘴 (7)在距离带基的上表面预定距离处,当喷嘴处于下死点位置或与中心相邻的位置时将部件的下表面向上推动,通过喷嘴将部件真空吸附 下死点位置或与中心相邻的位置,并且在真空吸附之后将由喷嘴吸取的部件移动到板的预定位置。
    • 3. 发明授权
    • Part supplying device
    • 零件供应装置
    • US06082428A
    • 2000-07-04
    • US91855
    • 1998-06-25
    • Takashi AndoMamoru Inoue
    • Takashi AndoMamoru Inoue
    • B23P19/06B65H23/18B65H41/00H01F7/02H05K13/02H05K13/04B65H5/28
    • H05K13/021H05K13/0417Y10S156/941Y10T156/11Y10T156/19Y10T156/1983
    • The present invention is intended to feed components stably and speedily in a component feed apparatus whereby components stored in the form of a taped component, while being transferred along a component feed guide, are sequentially supplied to a predetermined position to be mounted to a printed board. In order to accomplish the object, a magnet is set in the vicinity of a slit of a component feed guide at which a covering tape is separated from the taped component. The magnet magnetically attracts the component, to thereby prevent the component from being forcibly dragged together with the covering tape when the covering tape is separated. Quick and stable supply of the component can be accordingly ensured.
    • PCT No.PCT / JP96 / 03804 Sec。 371日期:1998年6月25日第 102(e)日期1998年6月25日PCT 1996年12月26日PCT公布。 出版物WO97 / 24912 PCT 日期1997年7月10日本发明旨在在部件供给装置中稳定且快速地供给部件,由此沿着部件供给引导件传送的以带状部件的形式存储的部件被顺序地供给到预定位置 安装在印刷电路板上。 为了实现该目的,将磁体设置在部件供给引导件的狭缝附近,其中覆盖带与带状部件分离。 磁体吸引该部件,从而防止当覆盖带分离时,该部件与覆盖带强制地被牵引在一起。 因此可以确保组件的快速稳定供应。
    • 4. 发明授权
    • Component suction method
    • 元件抽吸法
    • US06494667B1
    • 2002-12-17
    • US09721879
    • 2000-11-27
    • Hideo SuzukiMamoru InoueTakashi Ando
    • Hideo SuzukiMamoru InoueTakashi Ando
    • B65G1133
    • H05K13/0417H05K13/0409Y10T29/53178Y10T29/53183
    • A component suction method including feeding components (8) accommodated in component storage spaces (9c) of a tape base (9a) to a predetermined position, lowering a nozzle (7) capable of sucking the components supplied to the predetermined position, stopping the nozzle (7) at a predetermined distance from an upper surface of the tape base, pushing an undersurface of the component up when the nozzle is at a bottom dead center position or a position adjacent to the center, vacuum-sucking the component by the nozzle at the bottom dead center position or at the position adjacent to the center, and moving the component sucked by the nozzle to a predetermined position of a board after the vacuum-sucking.
    • 一种部件抽吸方法,包括将容纳在带基(9a)的部件存储空间(9c)中的馈送部件(8)放置到预定位置,降低能够吸取供给到预定位置的部件的喷嘴(7),停止喷嘴 (7)在距离带基的上表面预定距离处,当喷嘴处于下死点位置或与中心相邻的位置时将部件的下表面向上推动,通过喷嘴将部件真空吸附 下死点位置或与中心相邻的位置,并且在真空吸附之后将由喷嘴吸取的部件移动到板的预定位置。
    • 5. 发明授权
    • Component suction method
    • 元件抽吸法
    • US08196773B2
    • 2012-06-12
    • US10281993
    • 2002-10-29
    • Hideo SuzukiMamoru InoueTakashi Ando
    • Hideo SuzukiMamoru InoueTakashi Ando
    • B65H5/28G07F11/68
    • H05K13/0417H05K13/0409Y10T29/53178Y10T29/53183
    • A component suction method including feeding components accommodated in component storage spaces of a tape base to a predetermined position, lowering a nozzle capable of sucking the components supplied to the predetermined position, stopping the nozzle at a predetermined distance from an upper surface of the tape base, pushing an undersurface of the component up when the nozzle is at a bottom dead center position or a position adjacent to the center, vacuum-sucking the component by the nozzle at the bottom dead center position or at the position adjacent to the center, and moving the component sucked by the nozzle to a predetermined position of a board after the vacuum-sucking.
    • 一种部件抽吸方法,包括将容纳在带基部的部件存储空间中的进给部件馈送到预定位置,降低能够吸取供给到预定位置的部件的喷嘴,使喷嘴从胶带基座的上表面停止预定距离 当喷嘴处于下死点位置或与中心相邻的位置时,将部件的下表面向上推动,在下死点位置或与中心相邻的位置通过喷嘴真空吸附部件,以及 在真空抽吸之后,将由喷嘴吸入的部件移动到板的预定位置。
    • 7. 发明授权
    • Porous regenerated cellulose hollow fiber and process for preparation
thereof
    • 多孔再生纤维素中空纤维及其制备方法
    • US4604326A
    • 1986-08-05
    • US604512
    • 1984-04-27
    • Seiichi ManabeMichitaka IwataMamoru Inoue
    • Seiichi ManabeMichitaka IwataMamoru Inoue
    • B01D71/10D01D5/24D01F1/08D01F2/04D02G3/00
    • B01D71/10B01D69/08B01D69/087D01F2/04Y10T428/2935Y10T428/2975
    • A porous regenerated cellulose hollow fiber obtained by a micro-phase-separation method is described. The hollow fiber is characterized in that the viscosity average molecular weight is at least 5.times.10.sup.4, each of the average pore diameter D.sub.1 on the inner wall surface of the hollow fiber and the average pore diameter D.sub.2 on the outer wall surface is 0.02 to 10 .mu.m, the in-plane porosity Pr on the outer wall surface is at least 10%, and the hollow fiber comprises a wall thickness portion having pores piercing therethrough between the inner wall surface and outer wall surface and a hollow portion extending continuously over the entire fiber length. The hollow fiber is prepared by a process characterized in that at the steps of extruding a cuprammonium solution of a cellulose from an annular spinning orifice and coagulating, regenerating and water-washing the extrudate, the spinning solution is extruded from an outer annular spinning orifice and a liquid having a coagulating action to the spinning solution is extruded from a central spinning orifice, and micro-phase-separation is caused to occur before the coagulation.
    • 描述通过微相分离方法获得的多孔再生纤维素中空纤维。 中空纤维的特征在于,中空纤维的内壁面上的平均孔径D1和外壁面的平均孔径D2的粘均分子量为至少5×10 4,为0.02〜10μm 外壁表面上的面内孔隙率Pr至少为10%,中空纤维包括在内壁表面和外壁表面之间具有穿孔的壁厚部分和在整个纤维上连续延伸的中空部分 长度。 中空纤维是通过以下方法制备的,其特征在于在从环形纺丝口挤出纤维素的铜铵溶液并使挤出物凝结,再生和水洗的步骤中,纺丝溶液从外环形纺丝孔挤出, 从中心纺丝口挤出对纺丝溶液具有凝结作用的液体,在凝固前发生微相分离。
    • 9. 发明授权
    • Apparatus for grinding spherical surface
    • 用于研磨球面的装置
    • US5525096A
    • 1996-06-11
    • US202125
    • 1994-02-25
    • Kiyoshi MayaharaMamoru InoueKeniti Matumura
    • Kiyoshi MayaharaMamoru InoueKeniti Matumura
    • B24B13/00
    • B24B13/0031
    • An apparatus for grinding spherical surfaces of workpieces includes a grinding section having a grindstone rotating mechanism for rotating around an axis of a shaft thereof with a grindstone held at an end of the shaft, a feeding mechanism for feeding the grindstone rotating mechanism toward the workpiece in a direction along the shaft, and a fixing mechanism for holding the grindstone rotating mechanism and the feeding mechanism and determining an angle 1 inclination of the short of the grindstone rotating mechanism with respect to the workpiece. A plurality of workpiece holding mechanisms are provided for holding the workpieces at ends of shafts thereof, the workpiece held by at least one of the workpiece holding mechanisms being opposed to the grindstone. A workpiece rotating mechanism is provided for rotating the workpiece holding mechanism which holds the workpiece opposed to the grindstone. A workpiece positioning section is provided for holding the workpiece holding mechanisms and being rotated and stopped so that an unground workpiece held by at least one of the workpiece holding mechanisms is placed at a workpiece replacing position when a ground workpiece held by the other of the workpiece holding mechanisms has been placed at a grinding position of the grindstone rotating mechanism.
    • 一种用于研磨工件的球面的装置,包括:研磨部,具有磨石旋转机构,用于绕轴的轴线旋转,砂轮保持在轴的端部;进给机构,用于将磨石旋转机构朝向工件进给; 沿着轴的方向,以及用于保持磨石旋转机构和进给机构的固定机构,并且确定磨石旋转机构的相对于工件的角度1的倾斜度。 设置多个工件保持机构,用于将工件保持在其轴的端部,由至少一个工件保持机构保持的工件与磨石相对。 设置有工件旋转机构,用于旋转保持与砂轮相对的工件的工件保持机构。 设置工件定位部,用于保持工件保持机构并旋转停止,使得当由工件中的另一个保持的接地工件时,由至少一个工件保持机构保持的未接地工件被放置在工件更换位置 保持机构已经被放置在砂轮旋转机构的研磨位置。
    • 10. 发明授权
    • Apparatus for polishing a spherical surface
    • 用于抛光球面的装置
    • US5482495A
    • 1996-01-09
    • US128088
    • 1993-09-29
    • Kiyoshi MayaharaMamoru InoueKeniti Matumura
    • Kiyoshi MayaharaMamoru InoueKeniti Matumura
    • B24B13/02B24B49/00
    • B24B13/02
    • An apparatus for polishing spherical surfaces of workpieces includes a polishing device rotating on a shaft thereof while holding a polishing tool at an end of the shaft. A pivoting device pivots the polishing device around a polishing position of the tool. A plurality of workpiece holders each hold a workpiece at an end thereof so that one of the workpieces is opposed to the tool. Workpiece holder-holding devices hold the workpiece holders so as to be rotatably and vertically movably. A workpiece holder-pressing device presses at least one of the workpiece holders held by the workpiece holder-holding device against the tool. A rotary table rotates while holding the workpiece holders and the workpiece holder-holding devices, thus placing at least one of the workpiece holders at a workpiece replacing position when the other of the workpiece holders is placed at the polishing position of the polishing device.
    • 用于抛光工件的球面的装置包括在轴上旋转的抛光装置,同时将抛光工具保持在轴的端部。 枢转装置围绕抛光位置枢转抛光装置。 多个工件保持件在其一端保持工件,使得工件中的一个与工具相对。 工件保持器保持装置保持工件保持件以可旋转和垂直移动的方式。 工件保持器按压装置将由工件保持器保持装置保持的至少一个工件保持器压靠在工具上。 旋转台在保持工件保持器和工件保持器保持装置的同时旋转,从而当另一个工件保持器位于抛光装置的抛光位置时,将至少一个工件保持器放置在工件更换位置。