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    • 21. 发明授权
    • Laminated solenoid plunger for solenoid assembly
    • 螺线管总成层压螺线管柱塞
    • US07414504B2
    • 2008-08-19
    • US11452534
    • 2006-06-14
    • Robert W. LundstromPeter E. Johnson
    • Robert W. LundstromPeter E. Johnson
    • H01F3/00H01F7/08
    • B41J3/385B44B5/0061H01F7/1623H01F7/1638H01F2007/086
    • A solenoid plunger for use in solenoid driven multi-line embossing systems is constructed of magnetic steel laminations that are attached to a center block which is machined to mount a solenoid shaft and anti-rotate pins. The laminations are attached to the center block with screws and vacuum epoxy glued for a very high cycle life. The laminated steel construction dramatically reduces eddy currents, which allows the magnetic field to rise and fall much more quickly than a conventional steel plunger. It also increases the magnetic force in the solenoid. This reduction in solenoid plunger eddy currents and increase of magnetic force in the solenoid structure itself operates to increase embosser throughput. The laminated steel construction further reduces embosser solenoid heating which also contributes to improved embossing control.
    • 用于电磁驱动多线压花系统的螺线管柱塞由附着在中心块上的磁钢叠层构成,该中心块被加工成安装螺线管轴和防旋转销。 叠片用螺钉和真空环氧树脂胶粘在中心块上,具有非常高的循环寿命。 层压钢结构大大减少涡流,这使得磁场比传统的钢柱塞更快地上升和下降。 它也增加了螺线管中的磁力。 螺线管柱塞涡流的这种减少和螺线管结构本身的磁力的增加就会起作用,从而提高压塞产量。 层压钢结构进一步减少了压花螺线管加热,这也有助于改进压花控制。
    • 23. 发明授权
    • Plate feed apparatus
    • 送纸装置
    • US4758126A
    • 1988-07-19
    • US16350
    • 1987-02-19
    • Peter E. JohnsonDavid A. Johnson
    • Peter E. JohnsonDavid A. Johnson
    • B65H1/02B65H3/10B65H5/12
    • B65H3/10Y10S414/12
    • The plate feed apparatus of the present invention is comprised of a cylindrical carrier having air inlet holes located in its periphery which are connected to a vacuum source. A stack of plates is fed toward the carrier on a conveyor belt and each time one of the air inlet openings becomes aligned with the plates the front plate in the stack becomes affixed to the carrier and is rotated with it away from the stack. The plates then are released from the carrier for further handling. In order to prevent the plate being carried from striking the remaining plates a gap must be provided between them. In one embodiment this is accomplished by locating rollers, whose axes are parallel with the axis of the carrier, at the periphery of the carrier in positions which are rotationally ahead of the air inlet openings. In a second embodiment a pair of levers are mounted rotatably outwardly of the carrier sides. Rollers contact the levers at the proper rotational orientation of the carrier and rotate them rearwardly so that they contact the plates and move them away from the carrier. A return spring pulls the levers back toward the carrier. In both embodiments the forwardmost plate becomes free to move back toward the carrier as the air inlet opening becomes aligned with the plates. The vacuum then pulls the forward plate away from the stack thereby creating the necessary gap between it and the rest of the plates in the stack.
    • 本发明的送纸装置由圆筒状的载体构成,该圆柱形载体具有位于其周边的与真空源连接的进气孔。 一堆板在输送带上被运送到载体上,并且每当空气入口开口中的一个与板对齐时,堆叠中的前板就固定在载体上并随着其离开堆叠而旋转。 然后将板从载体上释放以进一步处理。 为了防止板被携带而撞击剩余的板,它们之间必须有间隙。 在一个实施例中,这通过将辊的轴线与载体的轴线平行的方式定位在承载件的周边处,其位置旋转地位于空气入口开口的前方。 在第二实施例中,一对杠杆可旋转地安装在托架侧面的外侧。 辊子以承载件的正确旋转方向接触杠杆并向后旋转,使得它们接触板并将其从载体移开。 复位弹簧将杠杆向载体拉回。 在两个实施例中,当空气入口开口与板对准时,最前面的板自由地朝向载体移回。 然后真空将前板拉离堆叠,从而在其与堆叠中的其余板之间形成必要的间隙。
    • 28. 发明授权
    • Battery plate feeder having oscillating pick-up head
    • 具有振荡拾取头的电池板进料器
    • US6062807A
    • 2000-05-16
    • US55851
    • 1998-04-08
    • Peter E. JohnsonDavid A. Johnson
    • Peter E. JohnsonDavid A. Johnson
    • B65H1/14B65H3/08B65H3/42B65H5/12B65H5/24B65G59/04
    • B65H3/42B65H1/14B65H3/0816B65H5/12B65H5/24B65H2301/33214B65H2403/514B65H2511/15B65H2511/51B65H2557/51
    • A plate feed apparatus has a cylindrical pick-up head having a predetermined number of pick-up units. The pick-up head rotates with a first shaft at a first rotational speed. A feed mechanism places the uppermost plate in a stack of plates a nominal distance from the periphery of the pick-up head when a plate is removed from the stack. A vacuum is selectively drawn through each pick-up unit to pull the outermost plate into contact with the pick-up unit. A second shaft has a cylindrical bore which rotatably journals the first shaft and is offset from the centerline of the second shaft. The second shaft is rotated counter to the first shaft at a speed which is a multiple of the speed of the first shaft equal to the number of pick-up units. This causes the speed of the pick-up unit to be slower and its distance from the uppermost plate in the stack less each time a pick-up unit picks up a plate. The number of pick-up units and the diameter of the pick-up head are established relative to the size of the plates such that plates overlap one another on the pick-up head. An outfeed conveyer has a higher surface speed than the pick-up units so that the plates do not overlap on the outfeed conveyer. The feed mechanism places another stack of plates under the stack of plates before the stack becomes depleted.
    • 送纸装置具有具有预定数量的拾取单元的圆柱形拾取头。 拾取头以第一转速与第一轴旋转。 当板从堆叠中取出时,进给机构将最上面的板放置在距离拾取头的周边的标称距离的一叠板中。 通过每个拾取单元选择性地抽出真空以拉动最外面的板与拾取单元接触。 第二轴具有圆柱形孔,其可转动地使第一轴轴颈并偏离第二轴的中心线。 第二轴以与第一轴的速度的倍数等于拾取单元的数量的速度相对于第一轴旋转。 这使得拾取单元的速度较慢,并且每次拾取单元拾取板时,其距堆叠中最上面的板的距离较小。 拾取单元的数量和拾取头的直径相对于板的尺寸确定,使得板在拾取头上彼此重叠。 出料输送机具有比拾取单元更高的表面速度,使得板在出料输送机上不重叠。 在堆栈耗尽之前,进给机构将另一叠板堆放在堆叠的板下。
    • 29. 发明授权
    • High speed sorter/stacker
    • 高速分拣机/堆垛机
    • US5454687A
    • 1995-10-03
    • US900529
    • 1992-06-17
    • Peter E. JohnsonDavid A. Johnson
    • Peter E. JohnsonDavid A. Johnson
    • B65G57/32B65H29/26B65H31/28B65H33/16H01M10/04H01M10/14B65G57/06
    • H01M10/0404B65G57/32B65H29/26B65H31/28B65H33/16H01M10/14
    • An apparatus for sorting and stacking thin rigid plates, such as used in storage batteries, receives the plates horizontally in spaced-apart groups, transports the groups horizontally and deposits them into stacks on a stacking apparatus that orients them vertically and delivers them for further processing. The groups of plates are carried on a conveyor system having chains that are spaced further apart than the width of the plates. Opposed pads extending inwardly from the chains engage the edges of the plates. Each pad has a length approximately equal to the height of the plates and is separated from each adjacent pad by a distance that is greater than the height of the plates. Stops located between the chains contact the groups of plates and prevent their continued movement with the chains thus causing them to drop between adjacent pads and off of the conveyor. In a preferred embodiment the apparatus includes a collection system that causes every group of plates in a stack to drop the same distance. Also, in a preferred embodiment, at least some groups of plates in each stack are displaced onto a transfer conveyor, that operates at a lower speed than the main conveyor, before they reach the stacking apparatus. Thus, there is more time between the arrival of groups of plates at the stacking apparatus, which permits the just formed stack to be advanced without interference from the first group of the next stack.
    • 用于分类和堆叠诸如在蓄电池中使用的薄的刚性板的装置在间隔开的组中水平地接收板,并将它们水平地输送,并将它们堆积在堆叠装置上,使其垂直定向并将其递送进行进一步处理 。 板组承载在具有比板的宽度更远分开的链条的输送系统上。 从链条向内延伸的相对的焊盘与板的边缘接合。 每个垫具有大约等于板的高度的长度,并且与每个相邻的垫分开大于板的高度的距离。 位于链条之间的止动件与板组接触,并防止它们随着链条的继续运动,从而导致它们在相邻垫片之间掉落并且离开输送机。 在优选实施例中,该装置包括收集系统,其使堆叠中的每一组板落下相同的距离。 而且,在优选实施例中,每个堆叠中的至少一些板组被移动到转移输送机上,该输送机在它们到达堆垛装置之前以比主输送机低的速度操作。 因此,在堆叠装置之间的板组到达之间有更多的时间,这允许刚刚形成的堆叠在没有来自下一堆叠的第一组的干扰的情况下前进。
    • 30. 发明授权
    • Apparatus for stacking pasted battery plates
    • 用于堆叠电镀电镀板的装置
    • US5129643A
    • 1992-07-14
    • US628469
    • 1990-12-17
    • Peter E. JohnsonDavid A. Johnson
    • Peter E. JohnsonDavid A. Johnson
    • B65G57/11H01M10/04
    • B65H29/66B65H33/12H01M10/0404
    • Battery plates from the high speed output conveyor of a pasted plate making machine are deposited onto a lower speed first conveyor in an overlapped fashion to create a shingled stream of plates. As plates drop off of the discharge end of the first conveyor they are accumulated in vertical stacks on a second conveyor that is located below the first conveyor. Whenever a stack is completed the second conveyor is moved approximately one plate width to remove the stack and the process continues. In order to provide time to move the stack, the flow of plates on the first conveyor is disrupted when the stack is being moved. In the preferred embodiment the disruption is caused by squeezing the plates between the jaws of a clamping mechanism that the plates pass through. A counter is used to count the number of plates in a stack and a controller causes the clamping mechanism to be engaged at the proper time, causes the second conveyor to remove the just-formed stack and then causes the second conveyor to stop and the clamping mechanism to be reopened so that a second stack can be formed. A gate extends across the second conveyor when the stack is being formed to ensure that the stack is straight. The gate is raised upon command from the controller when movement of the second conveyor commences and lowered again when movement of the second conveyor ceases.