首页> 外国专利> Improvements in or relating to conveyor assemblies comprising a roller slat conveyorand diverter mechanism

Improvements in or relating to conveyor assemblies comprising a roller slat conveyorand diverter mechanism

机译:包括辊式板条输送机和转向机构的输送机组件的改进或与之相关的改进

摘要

894,824. Endless conveyers. TORONTO STAR Ltd. May 5, 1958, No. 14311/58. Class 78 (1). Bundles of newspapers 1 carried by an endless in-feed conveyer 2 comprising an endless series of load-supporting rollers 3 carried between a pair of endless chains 4 are diverted laterally of the conveyer by apparatus comprising a stop plate 16 or other means to arrest a bundle in diverting position, a reciprocating push plate 22 for diverting the bundle, and a further stop or other means for interrupting the feed of following bundles while the bundle is being diverted and until the push plate is in a position to divert a following bundle. In one embodiment, Figs. 1 and 2, the conveyer 2 delivers each bundle in turn over a driven roller 17 on to a platform comprising a number of rollers 15 where it is arrested by the stop plate 16. Two out-feed conveyers 13, 14 similar to conveyer 2 extend at right angles to the latter in opposite directions away from the platform to receive diverted bundles. A driven roller 30 is disposed between each of these conveyers and the platform. A pair of stops 20 which can be projected or retracted by fluidpressure cylinders 21 are arranged in a position to stop a following bundle. The push plate 22 is reciprocated by another fluid-pressure cylinder (not shown) through its pistonrod 26, the plate 22 being mounted on a cross - head guided on rods 24. A brake shoe 18 is movable by a further fluid-pressure cylinder 19 into and out of engagement with the underside of the load-supporting rollers of conveyer 2 as they approach the platform. An electro-pneumatic control circuit is provided to control the operation of the various cylinders and includes a pressuresensitive switch 27 operated by a bundle on the platform, switches operated at the opposite extremes of movement of the push plate 22, and a selector switch 29 manually settable to one of three positions, viz., a middle position in which successive bundles are delivered alternately to the two out-feed conveyers 13, 14, a left-hand position in which each bundle is delivered to the conveyer 13, and a right-hand position in which each bundle is delivered to conveyer 14. In operation, the brake shoe 18 is normally in engagement with the undersides of the rollers of conveyer 2 so that the leading bundle is accelerated away from a following bundle on to the platform and against the stop plate 16 to operate switch 27. This causes operation of cylinders 21 to raise the stops 20 and also operation of cylinder 19 to lower the brake shoe device so that a following bundle is stopped. A shuttle valve is also operated to cause push plate 22 to move over to its other end position and deliver the bundle on the platform to one of the conveyers 13, 14, If the control switch 29 is in its middle position the plate 22 remains in its other end position, the stops 20 are lowered and the brake shoe 18 raised to deliver a following bundle to the platform for delivery to the other of the two conveyers 13, 14. If the control switch 29 is in either end position the plate 22 is returned automatically to the appropriate side before a following bundle is delivered to the platform. In a second embodiment, Fig. 7, two in-feed conveyers similar to conveyer 2 deliver bundles from opposite sides to a platform comprising rollers 36 over intermediate driven rollers 37. Retractable members 49L and 49R which are projected or retracted by cylinders 50L, 50R respectively are provided as back stops and feed interrupting of following bundles is effected on the two conveyers by upper brake shoes 40L, 40R engageable with the upper surfaces of the rollers of the respective conveyers by operation of cylinders (not shown). Brake shoes 38L, 38R operated by further cylinders 39L, 39R are engageable with the lower surfaces of the rollers of the respective conveyers. A push plate 43 is mounted on a cross-head 41 slidable on rods 42 and operable by a piston-rod 45 of a cylinder (not shown). The various cylinders are operated through an electro-pneumatic control circuit including feeler switches 47L, 47R adjacent the back stops and further switches which are operated by the cross-head 41 at its limit positions. In addition feelers 51L, 51R over the respective infeed conveyers operate switches 52L, 52R respectively when a bundle passes them. In operation, the back stops 49L, 49R are normally raised. When a bundle engages a feeler 51L or 51R the appropriate back stop 49L or 49R is lowered to allow the bundle to be moved on to the platform and the respective lower brake shoe is raised into engagement with the conveyer rollers whilst the respective upper brake shoe is raised out of engagement with the conveyer rollers, so that the bundle is accelerated on to the platform and arrested by the other back stop. In this position the bundle closes the appropriate switch 47L or 47R which raises the lowered back stop, returns the brake shoes to the position shown in which the upper brake shoes engage the upper surfaces of the conveyer rollers to form a stationary table preventing feed of a following bundle, and operates the push plate 43 to deliver the bundle on the platform. When the push plate 43 has returned ready to deliver a subsequent bundle it prepares the control circuit for feeding a further bundle. The circuit is so arranged that if a further bundle is waiting in contact with the feeler 51L or 51R at the same conveyer as that from which the previous feed occurred this bundle is now fed to the platform even if a bundle is waiting on the other conveyer in contact with the other feeler, the latter bundle being fed to the platform only when a gap occurs in the supply of bundles on the conveyer from which a bundle was originally fed to the platform. In a further embodiment, Fig. 11, there are provided two in-feed conveyers 72L, 72R and two out-feed conveyers 73L, 73R. The arrangement of back stops, brake shoes, feelers and switches is the same as that of the previous embodiment, the control circuit being generally similar but incorporating a selector switch W similar to the switch 29 of the first embodiment and settable manually to determine whether successive bundles will be diverted to alternate out-feed conveyers, or to one, or to the other of the out-feed conveyers. In addition, there is provided a manuallyoperated switch NSP1/SP operable to cut out the control circuit, to cause a normally inoperative driving belt (Fig. 14, not shown) to be moved into engagement with the rollers 75 of the platform, and to drive both the conveyers 72L and 72R in the same direction so as to provide a through feed of bundles without diversion. In a further embodiment, Fig. 18, the arrangement is generally similar to the previous embodiment, but the vertically reciprocating back stops are replaced by sets of rollers 140 mounted on bars 141 which depend from respective transverse spindles 123L, 123R. The spindles are manually swingable by levers 124L, 124R respectively so that one set of rollers can be raised to horizontal position to allow feed of bundles from that side, the feelers over the in-feed conveyers being therefore omitted. The upper and lower brake shoes associated with each in-feed conveyer are mechanically linked so that they can be operated simultaneously by one cylinder, the upper brake shoe, e.g. 132L, being raised from contact with the upper surfaces of the conveyer rollers whilst the corresponding lower brake shoe 121L is simultaneously raised into contact with the conveyer rollers and vice-versa. The push plate 110 is mounted on a cross-head 111 above the platform, the cross-head being reciprocated by a cylinder 114. Switches 131L, 131R are operated by the cross-head at the ends of its movement, and switches 126L, 126R are operated by cams on the spindles 123L, 123R respectively when these are rotated manually, these switches being effective to start the diversion cycle. A selector switch 136 for selecting whether the bundles are delivered to one or other or both of the out-feed conveyers 116, 117 is also provided. In a modification, Fig. 20, the platform comprising rollers 144 is mounted, together with the push plate assembly 147 and vertically sliding back stops 149L, 149R, on a vertically reciprocating ram 145 so that diversion of the bundles mav be effected at a higher level than that of the in-feed conveyers 142L, 142R. Specifications 870,483 and 894,825 are referred to.
机译:894,824。无休止的输送机。 TORONTO STAR Ltd. 1958年5月5日,编号14311/58。 78级(1)。由包括循环的一对负载链辊3的循环进给输送机2承载的报纸束1在一对循环链4之间被包括止动板16或其他装置的装置在输送机的侧面转向。束处于转向位置,往复推动板22用于使束转向,以及另一挡块或其他装置,用于在束被转向时中断后续束的供给,直到推动板处于使后续束转向的位置为止。在一个实施例中,图1至图4示出了图1的实施例。参照图1和图2,输送机2将每个捆依次从动辊子17输送到包括多个辊子15的平台上,在该平台上,其被止动板16制动。两个类似于输送机2的输出输送机13、14延伸。在远离平台的相反方向上与后者成直角,以接收转向束。从动辊30布置在这些输送机中的每一个与平台之间。一对可通过液压缸21伸出或缩回的挡块20布置在一个位置,以阻止随后的束。推板22由另一个液压缸(未示出)通过其活塞杆26往复运动,推板22安装在导向杆24上的十字头上。制动蹄18可通过另一个液压缸19移动。当输送机2的负载支撑辊接近平台时,它们进入和脱离啮合。提供了一种电动-气动控制电路来控制各个气缸的操作,并包括一个压力感应开关27,该压力感应开关由一个捆在平台上操作,在推板22的相对极端运动时操作,以及手动选择开关29可设置为以下三个位置之一:中间位置,其中连续的纤维束交替输送到两个出纸输送机13、14;左手位置,其中每个纤维束输送至输送机13,右侧手动位置,其中每捆输送到输送机14。在操作中,闸瓦18通常与输送机2的辊子的底面接合,因此前一捆从后面的捆加速到平台上并抵靠止动板16来操作开关27。这使气缸21的操作使止动件20升高,并且气缸19的操作使制动蹄装置下降,从而使后续的束选择。还操作往复阀以使推板22移至其另一端位置,并将平台上的捆输送到输送机13、14之一。如果控制开关29处于其中间位置,则板22保持在在其另一端位置,停止器20下降,制动蹄18升高,以将随后的捆输送到平台,以输送到两个输送机13、14中的另一个。如果控制开关29在任一端位置,则板22在随后的捆绑软件交付到平台之前,将自动返回到适当的一侧。在图7的第二实施例中,两个类似于输送机2的进料输送机将捆束从相对的侧面传送到包括辊子36的平台,该平台包括中间从动辊子37上的辊子。可伸缩构件49L和49R由缸50L,50R伸出或缩回。分别设置为靠背挡块,并通过上制动蹄40L,40R在两个输送机上中断随后的捆束的进给,该制动闸可通过气缸的操作与相应输送机的辊的上表面接合。由另外的缸39L,39R操作的制动蹄38L,38R可与相应的输送机的辊的下表面接合。推板43安装在十字头41上,该十字头可在杆42上滑动并且可通过气缸的活塞杆45(未示出)操作。各个气缸通过电动气动控制电路进行操作,该电动气动控制电路包括与后挡块相邻的塞尺开关47L,47R,以及由十字头41在其极限位置操作的其他开关。另外,当捆束通过它们时,各个进给输送机上的塞子51L,51R分别操作开关52L,52R。在操作中,后止挡49L,49R通常被升高。当捆束与塞尺51L或51R接合时,适当的后挡块49L或49R降低,以允许捆束移动到平台上,并且相应的下部制动蹄被抬高以与传送辊接合,而相应的上部制动蹄则处于抬起,使其脱离与输送辊的接合,从而使捆包加速到平台上,并被另一个后挡块止住。在此位置,捆束闭合适当的开关47L或47R,该开关升高下降的后挡块然后,将制动蹄片返回到所示位置,在该位置,上部制动蹄片与传送辊的上表面接合,形成一个固定的工作台,以防止随后的捆束送入,并操作推板43将捆束输送到平台上。当推板43返回准备好输送随后的捆束时,它准备好控制电路以供给另一捆束。该电路的布置方式是,如果在与之前发生喂料的输送机相同的输送机上,另外的捆正在等待与探针51L或51R接触,则即使捆在另一输送机上等待,该捆现在仍被馈送到平台上在与另一个触角接触时,仅当输送机上的捆束供应出现间隙时,才将后者的捆束输送到平台,最初将捆束从输送机输送到平台。在图11的另一个实施例中,提供了两个进料输送机72L,72R和两个进料输送机73L,73R。靠背挡块,制动蹄,塞子和开关的布置与先前实施例的布置相同,控制电路总体上相似,但是结合了类似于第一实施例的开关29的选择器开关W,并且可以手动设置以确定是否连续。捆将被转移到备用出纸输送机上,或转移到另一台出纸输送机上。另外,提供了一个手动操作的开关N 1 ,该开关可操作以切断控制电路,以使通常不工作的传动带(图14,未示出)运动成与辊子75啮合。并沿相同方向驱动输送机72L和72R,以便提供捆扎的直通进给而不会转移。在另一个实施例中,图18,该布置大体上类似于先前的实施例,但是垂直往复运动的后止挡由安装在杆141上的一组辊140代替,该组辊140悬垂于各个横向心轴123L,123R。锭子可分别通过杆124L,124R手动地摆动,从而可以将一组辊升高到水平位置以允许从那一侧进给捆束,因此省略了进给传送器上的塞尺。与每个进料输送机相关的上,下闸瓦机械连接,以便它们可以通过一个气缸同时操作,例如,上闸瓦。 132L从与输送辊的上表面接触而升高,而相应的下制动蹄121L同时被升高而与输送辊接触,反之亦然。推板110安装在平台上方的十字头111上,十字头由缸体114往复运动。开关131L,131R在十字头运动结束时由十字头操作,并且开关126L,126R手动旋转时,分别通过主轴123L,123R上的凸轮操作凸轮,这些开关可有效启动转换循环。还设置有选择器开关136,该选择器开关136用于选择束是被输送到输出输送机116、117中的一个还是另一个。在图20的变型中,包括辊子144的平台与推板组件147和竖直滑动的后挡块149L,149R一起安装在竖直往复的滑枕145上,从而可以在更高的位置实现束的转向。比进料输送机142L,142R的水平。参考规格870,483和894,825。

著录项

  • 公开/公告号GB894824A

    专利类型

  • 公开/公告日1962-04-26

    原文格式PDF

  • 申请/专利权人 TORONTO STAR LIMITED;

    申请/专利号GB19580014311

  • 发明设计人 SYKES THOMAS ROBERT;

    申请日1958-05-05

  • 分类号B65G47/54;

  • 国家 GB

  • 入库时间 2022-08-23 17:38:41

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