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    • 6. 发明授权
    • Rotary movement converting mechanism and measuring instrument
    • 旋转运动转换机构和测量仪器
    • US06915591B2
    • 2005-07-12
    • US10731791
    • 2003-12-09
    • Shuuji HayashidaYuji FujikawaOsamu SaitoMasamichi Suzuki
    • Shuuji HayashidaYuji FujikawaOsamu SaitoMasamichi Suzuki
    • G01B3/18G01B5/02
    • G01B3/18
    • A rotary movement converting mechanism for converting a rotary movement of a rotary body (43) into a linear movement of a movable body (2) has a support body (42) fixed to a body frame (3) and provided with a slit (42A) along an axial direction of the rotary body (43), a spiral groove (43A) formed on the inner circumference of the rotary body (43), and a top member (41) provided on the movable body (2). The top member (41) has an engaging member (41 A) inserted through the slit (42A) and having a tip end engaged with the spiral groove (43A), and a stop member (41C) for stopping the linear movement of the movable body (2) when a load is applied on the linear movement of the movable body (2). Accordingly, when a load is applied on the linear movement of the movable body (2), the linear movement is stopped and the minute displacement of the movable body (2) is restrained, thereby enhancing the stability of a measuring instrument in measuring a workpiece.
    • 用于将旋转体(43)的旋转运动转换为可移动体(2)的直线运动的旋转运动转换机构具有固定到主体框架(3)并且设置有狭缝(42)的支撑体(42) A)沿着旋转体(43)的轴向,形成在旋转体(43)的内周上的螺旋槽(431)和设置在可动体(2)上的顶部构件(41)。 顶部构件(41)具有通过狭缝(42A)插入并具有与螺旋槽(43A)接合的末端的接合构件(41A)和用于停止线性运动的止动构件(41C) 当对可动体(2)的线性运动施加负载时,可移动体(2)的位置。 因此,当在可移动体(2)的线性运动上施加负载时,线性运动被停止并且可移动体(2)的微小位移被抑制,从而提高了测量仪器在测量工件时的稳定性 。
    • 8. 发明授权
    • Micrometer
    • 千分尺
    • US08296966B2
    • 2012-10-30
    • US13081843
    • 2011-04-07
    • Shuji HayashidaYuji Fujikawa
    • Shuji HayashidaYuji Fujikawa
    • G01B3/18
    • G01B3/18
    • A micrometer includes: a body; a fixed sleeve that is fixed to the body; a spindle that is screwed to the fixed sleeve; a thimble that is rotatably fitted to an outer circumference of the fixed sleeve and has an outer end connected to the spindle; an operation sleeve fitted over a range from an outer circumference of the thimble to an outer end of the spindle and being rotatable relative to the thimble; and a constant pressure mechanism that is disposed between the operation sleeve and the spindle, the constant pressure mechanism transmitting a rotation of the operation sleeve to the spindle and allowing a free rotation of the operation sleeve against the spindle when a predetermined or more amount of load is applied on the spindle. Ball bearings are disposed between the thimble and the operation sleeve.
    • 千分尺包括:身体; 固定在身体上的固定套筒; 旋转固定套筒的主轴; 可旋转地安装在固定套筒的外周上并具有与主轴连接的外端的套管; 操作套筒,其安装在从所述套管的外周到所述心轴的外端的范围内,并且能够相对于所述套管旋转; 以及设置在所述操作套筒和所述主轴之间的恒压机构,所述恒压机构将所述操作套筒的旋转传递到所述主轴,并且当预定或更多的负载量允许所述操作套筒相对于所述主轴自由旋转 施加在主轴上。 滚珠轴承设置在套管和操作套筒之间。
    • 9. 发明授权
    • Inside diameter measuring tool
    • 内径测量工具
    • US08033032B2
    • 2011-10-11
    • US12501806
    • 2009-07-13
    • Yuji FujikawaMasahiko TachikakeKouji MatsumotoShuji Hayashida
    • Yuji FujikawaMasahiko TachikakeKouji MatsumotoShuji Hayashida
    • G01B3/18G01B5/12
    • G01B5/12G01B3/008
    • An inside diameter measuring tool includes: a main body; an axially moving spindle having a male screw to be screwed to the main body; a plurality of contact pieces provided on the main body, the measuring pieces moving in a direction substantially orthogonal to the axial direction of the spindle; and a conical member interposed between the contact pieces and the spindle, the conical member advancing and retracting the contact pieces in the direction substantially orthogonal to the axial direction of the spindle. The lead of the male screw of the spindle is 1.0 mm or more and the cone angle of the conical member is less than 53 degrees. Preferably, the lead of the male screw is 2.0 mm and the cone angle of the conical member is approximately 28 degrees.
    • 内径测量工具包括:主体; 轴向移动的主轴,其具有螺纹连接到主体的外螺纹; 所述多个接触片设置在所述主体上,所述测量件沿与所述心轴的轴向大致正交的方向移动; 以及插入在所述接触片和所述心轴之间的锥形构件,所述锥形构件沿着与所述心轴的轴向大致正交的方向推进和缩回所述接触片。 主轴的外螺纹的引线为1.0mm以上,锥形构件的锥角小于53度。 优选地,外螺纹的引线为2.0mm,锥形构件的锥角约为28度。
    • 10. 发明申请
    • PNEUMATIC TIRE AND METHOD FOR MANUFACTURING THE SAME
    • 气动轮胎及其制造方法
    • US20080216932A1
    • 2008-09-11
    • US12034749
    • 2008-02-21
    • Yuji FujikawaTakashi Nakatsuru
    • Yuji FujikawaTakashi Nakatsuru
    • B60C5/00B29C43/00
    • B60C13/001B29D2030/726Y10T152/10495
    • A pneumatic tire is provided in which the degree of freedom in designing markings shown on external surfaces thereof is enhanced without depending upon engraved letters on a conventional mold so as to meet requests from individual users while increasing the visibility of the markings so shown. In a pneumatic tire having markings on external surfaces thereof, thermoplastic resin films of which a center line average surface roughness (Ra) of a surface is in the range of 0.1 to 1.5 μm are affixed to predetermined positions on external surfaces of a green tire of the tire and the green tire is then vulcanization molded, whereby markings are formed. Surfaces of the markings are made up of a specular surface of which Ra is in the range of 0.1 to 1.5 μm, and a background portion 11 which surrounds peripheries of the markings is made up of a rough surface of which Ra exceeds 1.5 μm.
    • 提供了一种充气轮胎,其中在外部表面上显示的设计标记的自由度在不依赖于常规模具上的刻字的情况下增强,以满足来自各个用户的要求,同时增加如此显示的标记的可视性。 在其外表面具有标记的充气轮胎中,表面的中心线平均表面粗糙度(Ra)在0.1〜1.5μm的范围内的热塑性树脂膜被固定在生胎的生胎的外表面上的规定位置 然后对轮胎和生胎进行硫化成型,由此形成标记。 标记的表面由Ra为0.1〜1.5μm范围的镜面构成,并且标记周围的背景部11由粗糙面Ra超过1.5μm构成。