Angle adjusting device
    1.
    发明授权
    Angle adjusting device 失效
    角度调节装置

    公开(公告)号:US06565156B1

    公开(公告)日:2003-05-20

    申请号:US09889233

    申请日:2001-07-13

    IPC分类号: B60N224

    摘要: A ratchet gear is provided to each of a pair of arms (rotors), which are coupled through a bolt, at counter surfaces of a pair of their respective rotary portions opposing in an axial direction of the bolt serving as an axis of relative rotation, and each ratchet gear is provided with a plurality of gear teeth, while both the arms are pushed in their opposing direction by a spring, so that a relative rotating position of the arms is adjusted step by step per an angle set in accordance with the gear teeth, whereby it is possible to provide a rigid angle adjusting device that can be assembled at a low cost without increasing the size.

    摘要翻译: 在一对相对旋转部分的相对表面上,通过螺栓联接的一对臂(转子)中的每一个棘轮齿轮,其作为相对旋转轴线的螺栓的轴向方向相对, 并且每个棘轮齿轮设置有多个齿轮齿,同时两个臂通过弹簧以相反的方向被推动,使得臂的相对旋转位置按照根据齿轮设定的角度逐步地调节 齿,由此可以提供一种可以在不增加尺寸的情况下以低成本组装的刚性角度调节装置。

    Telescopic member, cylindrical body and molded body
    2.
    发明授权
    Telescopic member, cylindrical body and molded body 有权
    伸缩构件,圆柱体和成型体

    公开(公告)号:US06299113B1

    公开(公告)日:2001-10-09

    申请号:US09459571

    申请日:1999-12-13

    IPC分类号: F16M1100

    摘要: The invention provides a telescopic member having an inner cylinder slidably fitted into an outer cylinder in the axial direction and a lock mechanism, placed between the cylinders, for holding relative movements therebetween. A holder is secured to the outer cylinder and allows its inner circumferential surface to slide on the outer circumferential surface of the inner cylinder so that a frictional force is applied to the relative movements between the cylinders. The holder has a braking chamber on the side facing the inner cylinder to contain a friction body that rolls on the circumferential surface of the inner cylinder. The braking chamber has a taper surface so as to have a space that becomes narrower in the push-in direction of the inner cylinder, and first and second moving end surfaces that are separated with a predetermined distance in the push-in direction so as to intersect the taper surface, and is formed into a reversed trapezoidal shape in its cross-section viewed at one side. Therefore, it is possible to provide a stable frictional force against the movement of the inner cylinder in the push-in direction.

    摘要翻译: 本发明提供了一种伸缩构件,其具有可沿轴向可滑动地装配到外筒中的内筒和设置在缸之间的用于保持其间的相对运动的锁定机构。 保持器被固定到外筒,并允许其内周面在内筒的外周面上滑动,使得摩擦力施加到缸之间的相对运动。 保持器在面向内筒的一侧具有制动室,以容纳在内筒的圆周表面上滚动的摩擦体。 制动室具有锥形表面,以具有在内筒的推入方向上变窄的空间,以及在推入方向上以预定距离分隔的第一和第二移动端面,以便 与锥形表面相交,并在其一侧观察的横截面上形成为倒梯形。 因此,可以提供抵抗内筒在推入方向上的移动的稳定的摩擦力。

    Paint film transfer device
    3.
    发明授权
    Paint film transfer device 失效
    涂膜转移装置

    公开(公告)号:US5430904A

    公开(公告)日:1995-07-11

    申请号:US211376

    申请日:1994-03-30

    IPC分类号: B65H37/00 B43L19/00 B65H35/07

    CPC分类号: B65H37/007 Y10T156/1795

    摘要: An instrument for transferring coating film onto a surface requiring transfer printing. An instrument of this invention for transferring coating film is in such a structure that: a transfer head (4) is composed of a pressing body (4A) having a tape pressing surface (4a) roughly equal in width to the transfer tape (2) and of a pair of right and left side plates (4B) in contact with the transfer tape for controlling widthwise movement of the transfer tape part which is in contact with the tape pressing body (4A); the tape pressing surface (4a) of the tape pressing body (4A) and front edges (4b) of the side plates (4B) are adapted to be continuous or almost continuous in the direction of the width of tape; and each of front edges (4b) of the side plates (4B) is formed tapered so as to gradually depart from an imaginary straight line (X) passing through the tape pressing surface (4a) toward outer sides in the width direction of the tape; whereby the instrument exhibits high transfer printing function and is easy to operate because no damage is inflicted to the surface requiring transfer printing even when the case tilts.

    摘要翻译: 将涂膜转印到需要转印的表面上的仪器。 用于转印涂膜的本发明的仪器具有以下结构:转印头(4)由具有与转印带(2)的宽度大致相等的带按压表面(4a)的按压体(4A)构成, 以及与转印带接触的一对右侧板和左侧板(4B),用于控制与带按压体(4A)接触的转印带部分的宽度方向移动; 带按压体(4A)的带按压面(4a)和侧板(4B)的前边缘(4b)适于在带宽方向上连续或几乎连续; 侧板(4B)的前边缘(4b)的每个边缘(4b)形成为渐缩的,从而使经过带按压表面(4a)的假想直线(X)沿带的宽度方向的外侧逐渐偏离 ; 从而该仪器具有高转印功能,并且易于操作,因为即使在机壳倾斜的情况下也不会对需要转印的表面造成损坏。

    Method for Producing Ion Conductivity Providing Agent for Catalyst Electrode Layer in Anion-Exchange Membrane Type Fuel Cell
    4.
    发明申请
    Method for Producing Ion Conductivity Providing Agent for Catalyst Electrode Layer in Anion-Exchange Membrane Type Fuel Cell 审中-公开
    在阴离子交换膜型燃料电池中生产催化剂电极层的离子导电性提供剂的方法

    公开(公告)号:US20110104590A1

    公开(公告)日:2011-05-05

    申请号:US12995698

    申请日:2009-06-02

    IPC分类号: H01M8/10 H01B1/12 H01M4/88

    CPC分类号: H01M4/8663 H01M8/1018

    摘要: Disclosed is a method for producing an ion-conductivity providing agent for a catalyst electrode layer of an anion-exchange membrane type fuel cell comprising: producing anionic conductive resin including a quaternary onium base having a halogeno ion as its counterion, and bringing the halogen type anionic conductive resin into contact with carbonate solution and/or bicarbonate solution to directly obtain anionic conductive resin in which at least a part of the counterion of said quaternary onium base is CO32− and/or HCO3−, without ion exchange of the counterion to OH-type by using deleterious substance such as sodium hydroxide. The purpose is to provide a method for stably producing an ion-conductivity providing agent used for giving ion conductivity to a catalyst electrode layer of an anion-exchange membrane type fuel cell, the method being easy to operate, the ion-conductivity providing agent showing constant effect for giving ion conductivity.

    摘要翻译: 公开了一种阴离子交换膜式燃料电池用催化剂电极层的离子传导性提供剂的制造方法,其特征在于,包括:制造阴离子性导电性树脂,所述阴离子导电性树脂包含具有卤代离子作为其抗衡离子的季鎓碱, 阴离子导电树脂与碳酸盐溶液和/或碳酸氢盐溶液接触以直接获得阴离子导电树脂,其中所述季鎓碱的至少一部分抗衡离子为CO32-和/或HCO3-,而不与OH离子交换反离子 - 通过使用有害物质如氢氧化钠。 其目的是提供一种稳定地制造用于向阴离子交换膜型燃料电池的催化剂电极层提供离子传导性的离子传导性提供剂的方法,该方法易于操作,该离子导电性提供剂显示 恒定的离子传导效应。