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    • 2. 发明申请
    • WORK INSPECTOR AND CARRIER
    • 工作检查员和承运人
    • US20110057373A1
    • 2011-03-10
    • US12922922
    • 2008-03-19
    • Hisayuki SueokaSouta OhgaYoshiaki Araki
    • Hisayuki SueokaSouta OhgaYoshiaki Araki
    • B23Q1/64
    • G01M13/04
    • A work inspector and carrier according to the present invention includes a carrier unit (40, 50, 60) for carrying a workpiece from a carry-in area to a carry-out area, and an inspection unit (70) for performing a predetermined inspection on the workpiece. The carrier unit is formed so as to move the inspection unit (70) together with the workpiece in order to carry the workpiece from the carry-in area to the carry-out area while performing the inspection by the inspection unit. When carrying the workpiece from the carry-in area to the carry-out area, the inspection unit performs the predetermined inspection on the workpiece while being moved together with the workpiece. Compared with a case where the workpiece is stopped at a predetermined inspecting position to perform the predetermined inspection on the workpiece and thereafter the is carried (inspection and transportation are performed separately), the overall time required for inspection and transportation can be shortened.
    • 根据本发明的工作检查员和载体包括用于将工件从进入区域运送到进出区域的承载单元(40,50,60)和用于执行预定检查的检查单元(70) 在工件上。 载体单元形成为使检查单元(70)与工件一起移动,以便在由检查单元进行检查的同时将工件从进入区域运送到进出区域。 当将工件从搬运区域运送到进出区域时,检查单元在与工件一起移动的同时对工件进行预定检查。 与工件在预定检查位置停止以对工件进行预定检查并且随后进行检查和运输分开的情况相比,可以缩短检查和运输所需的总体时间。
    • 4. 发明申请
    • PRODUCTION APPARATUS
    • 生产设备
    • US20110000063A1
    • 2011-01-06
    • US12867093
    • 2008-02-20
    • Hisayuki SueokaSusumu NoguchiHiroyuki ShigaHitoshi Tsugawa
    • Hisayuki SueokaSusumu NoguchiHiroyuki ShigaHitoshi Tsugawa
    • B23P21/00
    • B23P21/006B23P15/14B23P19/02B23Q7/02B23Q39/044B23Q39/046Y10T29/49829Y10T29/49945Y10T29/513Y10T29/5137Y10T29/5196Y10T29/53404Y10T74/2191
    • A production apparatus of the present invention produces a component assembly to an object to be processed in which a jig for holding a subsidiary component is set to a main component by sequentially performing predetermined processes in a plurality of processing areas (A1 to A6) arranged in a ring formation and then, by separating the jig, and includes a rotational table main body (20) rotated and driven by steps of a predetermined angle, a plurality of holding/transfer units (30) arranged in a circumference direction so as to rotate integrally with the rotational table main body and capable of holding the object or the component assembly and transferring the same onto processing tables in the plurality of processing areas, a plurality of loading portions (40) provided on the rotational table main body corresponding to the plurality of holding/transfer units and capable of loading the jig, and a plurality of processing units (60 to 110) provided for performing predetermined processes in the plurality of processing areas. As a result, the component assembly can be efficiently produced while size reduction, cost lowering and the like of the apparatus are achieved.
    • 本发明的制造装置通过在多个处理区域(A1〜A6)中顺序地进行规定的处理,将待组件的部件组件(A1〜A6) 环形,然后通过分离夹具,并且包括以预定角度的台阶旋转和驱动的旋转台主体(20),沿圆周方向布置的多个保持/传送单元(30),以便旋转 与旋转台主体一体地固定物体或部件组件并将其传送到多个处理区域中的处理台上;多个装载部分(40),设置在与多个处理区域对应的旋转台主体上 保持/传送单元并能够装载夹具的多个处理单元(60至110),用于执行预定处理 在多个处理区域中。 结果,可以在实现装置的尺寸减小,成本降低等的同时有效地制造部件组件。
    • 8. 发明申请
    • CONVEYER DEVICE
    • 输送装置
    • US20110073436A1
    • 2011-03-31
    • US12994274
    • 2008-05-28
    • Hisayuki SueokaHitoshi TsugawaSusumu Noguchi
    • Hisayuki SueokaHitoshi TsugawaSusumu Noguchi
    • B65G43/00
    • B23Q39/04B23Q1/0045
    • A production device according to the present invention includes a plurality of processing units (41 to 45) arranged so as to consecutively perform a plurality of types of processing with respect to workpieces, a transport unit (30) that successively transports the workpieces toward the plurality of processing units, a plurality of monitor operation panels (80, 90) capable of monitoring the processing in the plurality of processing units and performing an adjustment operation regarding the processing or performing an operation regarding the overall operation and stop, and a plurality of movable holding mechanisms (60, 70) that movably holds the respective monitor operation panels toward each of the plurality of processing units. Thus, by configuring the monitor operation panels (80, 90) to be movable toward the plurality of processing units, an operator can monitor the overall processing and can smoothly perform a recovery operation of troubles having occurred in each processing unit, an adjustment operation for it, and others as required when producing machine components or electronic components while achieving a simple construction, cost reduction, and others.
    • 根据本发明的生产装置包括多个处理单元(41至45),其被布置为连续地对工件进行多种处理;传送单元(30),其将工件朝向多个 处理单元的多个监视器操作面板(80,90),能够监视多个处理单元中的处理并执行关于整个操作和停止的处理或执行操作的调整操作,以及多个可移动 保持机构(60,70),其将各个监视器操作面板朝向多个处理单元中的每一个移动地保持。 因此,通过将监视器操作面板(80,90)配置为能够朝向多个处理单元移动,操作者可以监视整体处理,并且可以平滑地执行在每个处理单元中发生的故障的恢复操作, 它和其他产品在生产机器组件或电子部件时也是如此,同时实现简单的结构,降低成本等。
    • 9. 发明授权
    • Method and device for adjusting valve clearance
    • 调节阀门间隙的方法和装置
    • US08689444B2
    • 2014-04-08
    • US12996527
    • 2008-06-06
    • Hisayuki SueokaYasuyoshi MiyauchiYasuo MoriseTatsumi Otomura
    • Hisayuki SueokaYasuyoshi MiyauchiYasuo MoriseTatsumi Otomura
    • B23P6/00
    • F01L1/20F01L1/185F01L2103/01F01L2105/00F01L2800/09F01L2820/02G01B5/0032Y10T29/49233Y10T29/49407Y10T29/52Y10T137/0491
    • A method for adjusting a valve clearance in a cylinder head using a rocker arm of a support point adjustable type. In the method, an adjustment screw is rotated in one direction until a camshaft comes in contact with a cam shaft contact section to make the amount of valve opening zero, then further rotated until the valve is released with a certain valve opening amount, and after that, rotated in a reverse direction by a certain rotation angle and accordingly loosened until a desired valve clearance value is obtained. In the process above, the method determines a first rotation angle of the adjustment screw necessary for the adjustment screw to move from a position where the valve is released with the certain valve opening amount to a position where the camshaft comes in contact with the camshaft contact section. Then, the method determines a second rotation angle of the adjustment screw necessary for the adjustment screw to move from the position where the camshaft comes in contact with the camshaft contact section to a position where the desired valve clearance value can be obtained. After that, the method rotates the adjustment screw in the reverse direction by a given rotation angle that is a sum of the first and second rotation angles.
    • 一种用于使用支撑点可调节型的摇臂来调节气缸盖中的气门间隙的方法。 在该方法中,调节螺钉沿一个方向旋转,直到凸轮轴与凸轮轴接触部分接触以使阀开度为零为止,然后进一步旋转直到阀门以一定的阀门开度释放,之后 其以相反的方向旋转一定的旋转角度,并因此松动直到获得期望的阀间隙值。 在上述过程中,该方法确定调节螺丝所必需的调节螺钉的第一旋转角度,其从阀门释放的位置以一定的阀打开量移动到凸轮轴与凸轮轴接触件接触的位置 部分。 然后,该方法确定调节螺钉所需的调节螺钉的第二旋转角度从凸轮轴与凸轮轴接触部分接触的位置移动到可以获得期望的阀间隙值的位置。 之后,该方法使调节螺钉沿相反方向旋转给定的旋转角度,该旋转角度是第一和第二旋转角度的和。
    • 10. 发明授权
    • Work inspector and carrier
    • 工作督察和承运人
    • US08556245B2
    • 2013-10-15
    • US12922922
    • 2008-03-19
    • Hisayuki SueokaSouta OhgaYoshiaki Araki
    • Hisayuki SueokaSouta OhgaYoshiaki Araki
    • B23Q1/25B23Q1/64B23Q3/00B25B11/00B25B1/22B65G47/10B65G17/00
    • G01M13/04
    • A work inspector and carrier includes a carrier unit (40, 50, 60) for carrying a workpiece from a carry-in area to a carry-out area, and an inspection unit (70) for performing a predetermined inspection on the workpiece. The carrier unit is formed so as to move the inspection unit (70) together with the workpiece in order to carry the workpiece from the carry-in area to the carry-out area while performing the inspection by the inspection unit. When carrying the workpiece from the carry-in area to the carry-out area, the inspection unit performs the predetermined inspection on the workpiece while being moved together with the workpiece. Thus, the overall time required for inspection and transportation can be reduced.
    • 工作检查员和托架包括用于将工件从进入区域运送到进出区域的托架单元(40,50,60)以及用于对工件执行预定检查的检查单元(70)。 载体单元形成为使检查单元(70)与工件一起移动,以便在由检查单元进行检查的同时将工件从进入区域运送到进出区域。 当将工件从搬运区域运送到进出区域时,检查单元在与工件一起移动的同时对工件进行预定检查。 因此,可以减少检查和运输所需的总体时间。