Device for laying piles of printed output
专利摘要:
In a counter stacker for stacking and dividing every predetermined number of printed copies including a counter disposed on a first path of convey along which said copies are successively conveyed partially superimposed one on the other at a constant pitch of superimposing, a first dividing plate disposed on said path and adapted to be inserted between said copies, the above mentioned system has an odd copies dividing and delivering mechanism including a second dividing plate located at the same position with the first dividing plate or at least at a downstream side position of the first dividing plate and a second path only for odd copies and shunting from said first path at said second dividing plate. The system further has means for actuating the first dividing plate in accordance with a sum of the standard number S of fixed copies and a number F of odd copies which is coded on a label to be attached to a bundle of odd copies, the means being adapted to actuate, only when the number F in not equal to zero, the second dividing plate when the standard number S has been counted, and means incorporating a folding device disposed on the path of odd copies and adapted to actuate the device only when the height of stacking of the odd copies is smaller than a threshold, to fold the copies across a longitudinal center to impart a sufficient strength to the later. 公开号:SU740151A3 申请号:SU772553901 申请日:1977-12-16 公开日:1980-06-05 发明作者:Кавада Томоси 申请人:Кабусики Кайся Токио Кикаи Сейсакусе (Фирма); IPC主号:
专利说明:
(54) DEVICE FOR LAYING INTO STEPS OF PRINTING The invention relates to printing. A device for stacking printed products is known, comprising a conveying system comprising a series of conveyors installed one after the other, mounted on one of them a counter, a shut-off device connected to a control mechanism, and a rotary table (1). The known device is inefficient and has limited technological capabilities. In order to increase productivity and expand technological capabilities, the proposed device has an additional transport system parallel to the first, a pivotally mounted guide plate installed between the first and second transport systems and a pair of photoelectric converters located one below the other on the first the conveyor of the additional conveying system, and an electrically associated stop for printed products, Anchored on the second conveyor of an additional conveying system of PRODUCTS we, feshchuyuschiy mezhgnizm, including disks with grooves with a drive for rotation, pneumatic cylinders, two pairs of folding forks installed on the rods of the last G installed in the grooves of the disks, and located at the working branches a second conveyor of an additional conveying system of photocells electrically connected with the folding forks. Figure 1 shows the described device, a general view; FIG. 2 shows a section A-A of FIG. 1; FIG. 3 shows a section B — B of FIG. 1; FIG. 4 is a top view of the label; Figs. L-10 are a diagram of the separation of printed products; figure 11 section bb of figure 1; on Fig - the mechanism of preparation of printed products for folding, top view; on Fig - section GGD 11; Fig, 14-23 - the scheme of work of the stacker of printed products. A device for stacking printed products contains a conveying system comprising a series of installed one after the other conveyors having rollers 1, located between the side frames 2 and 3, and wire strips covering the rollers 4. Printed products 5 Or are served sequentially a row / at a constant well: no overlap of the preceding instance with a subsequent one so that the edge of the subsequent keekshler is superimposed on the back edge of the previous instance. On the conveyor belt there is a counter b for counting the number of product instances 5 at the expense of the 6 rib during the movement of the printed product a cutter 7 is placed to view the following instances, the slider 7 is connected to the control mechanism in the form of a pneumatic cylinder 8. For the border between the remaining specimens, when the cutter is 76 OTHERS, a guide plate 9 is used. At the end of the first transport system, there is a device for placing the copies in the foot and removing the standard number of specimens, which includes the top 10 and the bottom 11fuckers forks and swivel hundred 12c pusher "i1 13. Table 12 Can be rotated 180. When a given number of instances will be shown on the Sha counter and on the hay of the upper fork 10, the hydraulic cylinder 14 is turned on, which removes the upper fork 10, resulting in the printed copies of the printed product 5 falling on the lower fork 11, which is held again horizontal position and trim. After that, it is fed to the turntable 12 by turning on the hydraulic cylinder 15, which removes the lower plug 11 from under the foot of the printed product 5. Since r | turntable 12 makes a 180 turn with each drop of 1NII on it a stack of printed products. The packs are stacked alternately with a turn of 180 from the adjacent foot. When a predetermined number of packs is otschtabeliroiroyu, put into action a pusher of 13 dy ar put one on the round packs from the turntable 12V The second transporting system: one after another conveyors containing rollers 16 and oxBaraiiBairoftie 1: july "and wire tapes 17. One of the conveyors has latch cutter 18 printed products, and at the end of this system the device 19 for stacking copies and removal is smoldering feet. Otsykatel 18 is located in the same way by the fact that they are 7 and against the flow of printed products, /. . . ,: The cylinder 20 includes a cut-off 18 so that it is included in a series of 31kzeshins for the IRa iipe the second three-porting system. The device 19 for stacking instances and removing the foot | An odd number of instances 1 and consists of a FORK 21, a removable 22 and a pusher 23. The fork 21 is lowered below the removable roller 22 when the installation is finished; vis: dig the flap and allow the pusher 23 to submit copies of an additional transport system, including conveyors 24 and 25. An uneven number of printed products 5 stacked in a foot is transferred by conveyor 24 to conveyor 26 and is folded in half by the transfer process so as to give the desired degree of rigidity when the thickness of the foot is small. Such folding is performed automatically by photoelectric converters 26 and 27, which fix the height of the foot. Photoelectric converters 26 and 27 are installed one below the other on the first conveyor 24 of the additional conveying system and are electrically connected to the stop 28 for printed products 5. Photoelectric converters 29 and 30 and 30 are also installed on the conveyor 24 the first 31 and the second 32 plugs. The stop 28 is mounted on the side of the conveyor 24. When the photoelectric converter 27 is triggered, the stop 28 of the pneumatic cylinder 33 is fed to the position of the high end of the conveyor 24. Between the stop 28 and the surface of the conveyor 24 there is a gap through which the lower half of the layers of the printed product 5 passes. The stop 28 blocks the way of the upper half layers 34 (see fig. 14). The first photoelectric converter 29 is located downstream of the conveyor 24 relative to the stop 28 by an interval equal to half the length from the abutment, and is put into action when the foot losette has a mean value, i.e. when the front of the lower layers of printed products 5 passes the gap between the stops 26 and the conveyor 24 and reaches the electric converter 29, which is triggered, and the conveyor 24 is stopped and stop 28 is removed. Then the conveyor 24 continues motion. The second conveyor 25 of the additional conveying system contains a folding of two pairs of the mechanism, the fold of the forks 3t, 35. and 32, 36. The photoframerictor 30 is located from the photoelectric transducer 37 at a distance equal to half the length of the printed product instance 5, When folding the forks 32 and 36 are cleaned into the pipe above the conveyor 24, the longitudinal central portion of the lower half of the layers of instances is clamped with rods forming plugs 32 and 36. The folding forks 31 and 35 are positioned transversely relative to the second conveyor 25 and with an interval from the second pair of folding forks 32 and 36 in the upward direction along the movement of the conveyors 24 and 25 equal to half the length of the specimen, and are directed inside the conveyor 25 opposite to each other. height. The level of the first pair of folding forks 31 and 35 above the level of the second pair of folding forks 32 and 36 (see Fig. 13). Therefore, when the folding forks 31 and 35 are retracted to a position above the second conveyor 25, the longitudinal center of the upper half of the layers 34 is clamped by two rods constituting the first folding forks 31 and 35 The folding forks 31, 35, 32, 36 are mounted on the rods of pneumatic cylinders 38, 39 and 40, 41, respectively, and rotate relative to the conveyors by means of rotation 42, which transmits angular movement through gears 43 and 44 to the intermediate shaft 45. The angular the offset is then transmitted from the sprockets 46 and 47, which are attached to the ends of the shaft 45 to the sprockets 48 and 49 via chains 50 and 51. The sprockets 48 and 49 are mounted on sleeves 52 and 53, which are rotationally attached to the side frames 54 and 55 From sleeves 52 and 53, they run horizontally and into the pair of guide rods 56, 57 and 58, 59, which are located at an angle of 180 in each pair. The guide rods 56-59 at the ends have discs 60, 61 with grooves 62-65 and end plates 66 and 67, each of which has openings 68-71 The angular misalignment of the sleeves 52 and 53 is transferred to the filter plugs 31, 35 through the guide rods 56-59, the disks 60 and 61, and the end plates 66 and 67. An odd number of instances is registered by stamping code 72 on label 73, which is attached to a pack of an odd number of instances on the outside of column 74 with the recipient address. Labels 73 are located on the conveyor 75 (fig.Z). The label feeder 76 includes a pneumatic suction device 77, which provides a consistent supply of labels 73 to the conveyor 78. Camera 79 serves to read code 72 on label 73 and interacts with lamp 80. Readable data serve for the signals on the cutters 7 and 18, with the result that an encoded odd number of instances can be fed to the conveyor 25. The label 73 is fed to a position above the palletizing device when it is necessary to fold the printed product to obtain the desired format. To attach the label 73 to folded copies of printed products, it serves 0 a pressure plate 81, which is force-fed in the direction of the second conveyor by means of a pneumatic cylinder 82 ,, Figure 6 and 7 shows the condition 5 when data are not received regarding an odd number of instances, i.e. when an odd number of instances F is zero, and the number of instances read by counter 6 is compared 0 with a standard number S. When the read number of copies of the printed product matches the specified standard number S, the length of the examples of the number S is read and the cutter 7 5 is lowered. Thus, the specimens in the upper side, along the printed product 5, cannot advance and are separated from the previous specimens, the number of which is S. 0 Accordingly, the previous instances of the number S are fed to the device for laying and removing the foot and placed on the turntable 12. When a given number of packs of specimens 5 is stacked to form a larger pack; the pusher 13 is turned on, which feeds the stack from the table 12. Thus, the second cutter 18 does not work when there is no supply of the F number, i.e. when only the standard number of S. If code 72 on label 73 indicates that the number of copies is F, i.e. when the F number is non-zero, then in this case it is first omitted 5, the cutter 18, as soon as the standard number has been / submitted, of instances S, as a result of which the selection of the standard number of copies S is completed, after which the subsequent copies are directed to the second path of printed production for the selection of a coded odd number of copies F, as seen in FIGS. 7 and 8. On the other hand, the cut-off 7 5 is lowered after the total number of F + S instances has passed to stop; subsequent movement of the instances (Fig. 9). Thus, the cutter 7 completes the separation of S + F instances. However, due to the selection of an odd number of instances by a cutter 18, only the standard number of instances F remains on the first path of movement. 5 printed products 5, and the rest the number of copies, F, is directed to the second path of movement of the printed matter. The first cutter 7 (Fig. 10) returns to its original position only after the second cutter 18 returns to its original position. The work of the cutters 7 and 18 should take into account the difference in the distance between the counter b and the needle cutters 7 and 18, when the distance is between the counter b and the cutter 7 is not equal to the distance between the counter 6 and the cutter 18.,. Pt ii there is an oscillation of the lyrechins of the hatching of one instance by another, i.e. and ZyggoPreddydushchepolpi ripne next, with the result that the total length of a number of specimens also fluctuates, the separators 7 and 18 it is preferable to put into action, respectively, the measured length of a number of specimens. An odd number of instances F, directed to the second way of moving printed materials, is placed on the plug 21. Subsequent lowering of the FORK 21 pbs In order to feed the printed equipment 5 with the push rod 23 to the first conveyor 24. At the upper end of the printed product 5 end conveyor 24 are located photovoltaic, converters 26 and 27, working depending on the height of the foot in the following three conditions: a) when the height of the foot is so small that none of the photovoltaic npe66pa3OBafeSeTi does not work; b) when the height of the foot is measured and only the lower photoelectric converter 27 is activated; c) when the height was high on CTfOJibKO is great, that both photoelectric converters are activated 26 and 27.,., .. ,,.;. 1,:.: „ in case of (a), none of the stops 28 for the upper layers and the folding forks 31 and 35 are not included. The second conveyor 25 stops when the front edge of the foot of the copies reaches the photoelectric converter 30 (Fig. 19). Then inevmotsilindry 40 and 41 operate on the filing of the forks 32 and 36, resulting in the rods forming the forks 32 and 36, we can clamp the intermediate and central parts of the specimens 83. The second plug turns around the top bar YG 1- cycle OLS5 in the direction that tf & Shv & p & ks (SH1-1L: avlensh rotation of the second conveyor 25, resulting in erWfb n f oiicXoa "folding copies (Fig. 20). Then fold the forks 32 and 36 in cross-section NAYASCHENGY Concerning the conveyor 25 by means of pneumatic cylinders 40 and 41, The pressing plate 81 is lowered by the action of the pneumatic cylinder 82 in order to attach the label 73 to the instance 83 (Fig. 21). Then the conveyor 25 is turned on (Fig. 22). In case (b), the stop 28 extends forward under the influence of the pneumatic cylinder 33 to a position above the conveyor 25. Therefore, the upper layers 34 of the production copies are held by the stop 28. As soon as the lower half of the printed product layers 5 that has passed out of the action of the stop the distance is half the length of the instance, the leading edge of this half interacts with the photoelectric converter 29 and the conveyor 24 stops. Thus, the upper layers 34 of the samples remain behind the lower layers of the printed product 5 at a distance equal to half the length of the copy. As soon as the conveyor 24 begins to move, copies of the printed product are moved to the conveyor 25 so that the front edge of the instances interacts with the photoelectric converter 30 and the conveyor 25 stops, at which time the folding forks 31 and 35, 32 and 36 are simultaneously alternating inward and positioned above the conveyor 25 so that the middle parts of the upper and lower halves of the layers of printed products 5 are pressed by the rods of the respective plugs (Fig. 14). The folding forks 32 and 36 are then made half a turn (Fig. 15), with the result that the front half of the lower layers of the printed product 5 is superimposed on the front field of the upper layers 34, and the folding forks 31 and 35 play a half turn for folding the rear half of the upper layers 34 with the back half of the lower layers of printed products. Then the folding forks 31,35 32 and 36 are removed using pneumatic cylinders 38-41 in the transverse direction relative to the conveyor 25. The plate of astinum 81 is lowered by means of the pneumatic cylinder 82 and delivers the label 73 to the copy. Further on, Conayer 25.-. In case (c), the folding forks 31, 35, 32 and 36 do not turn on, as a result of which the printings B samples are moved until the front edge of the copies interacts with the photoelectric converter 30. At this moment the pressure plate 81 is lowered 5 cylinder 82 and sakpeitl label 73 and instance (Fig. 23), after which the second conveyor 25 is turned on.
权利要求:
Claims (1) [1] When copies of printed matter 5 are in the fourth quarter of a sheet (quarto) and the folding mechanism passes, they are folded to form 1/8 of a sheet (octave) Formula of the invention containing a transport system comprising one by one conveyors, mounted on one of them a counter, a shut-off device associated with the control mechanism, and a rotary table, characterized in that, in order to increase the productivity of the device and expand its technology capabilities, it has an additional transport system parallel to the first one, a pivotally mounted horizontal guide plate installed between the first and second transport systems and the associated I /. gr :: sr-v-c: a fix, n “Igdg- ЗД7. u, A ; L with a control mechanism, a pair of photoelectric converters arranged one below the other on the first conveyor of an additional conveying system, and an electrically connected stop for printed products mounted on the second conveyor of an additional conveying system, a folding mechanism including disks having grooves with a drive rotation, pneumatic cylinders, two pairs of l located one and the other folding forks installed on the rods of the last d can be installed in the slots of the discs, and workers branches of the second conveyor conveying additional photocells system; electrically connected with the folding forks. Sources of information taken into account in the examination: 1. US patent No. 3469836, cl. 271-64, 1968 (prototype). 6-6 17 16 1 o) (YAG S Fig. 5 5 T - AU 51 "7 -Sff 2if four/ FIG. eleven . J " Fi.p
类似技术:
公开号 | 公开日 | 专利标题 SU740151A3|1980-06-05|Device for laying piles of printed output US3902710A|1975-09-02|Accordion, folding and cutting apparatus DE2952939C2|1986-01-09|Packing machine for cigarettes US5515667A|1996-05-14|Device for forming a stack extending perpendicular to the standing, sequential printed sheets GB2079259A|1982-01-20|Apparatus and method for the continuous collection and discharge of sheets DE19757163A1|1999-06-24|Sheet printing machine with post-processing unit US4172531A|1979-10-30|Apparatus for transforming a stream of overlapping paper sheets into a staple of sheets JP2009544066A|2009-12-10|Processing stacks of securities paper into bundles and bundle packs DE3735486A1|1989-02-09|DEVICE FOR TURNING AND STACKING FOLDED BOX BLANKS FROM SHEET MATERIAL GB2161147A|1986-01-08|Stacking and delivering paper napkins etc CA1046095A|1979-01-09|Stack tilter and feeding means for automatic blank handling US3254889A|1966-06-07|Stacking and handling apparatus DE3744458A1|1988-07-07|METHOD AND DEVICE FOR PRODUCING AND PACKING BLISTER PACKS US5392700A|1995-02-28|Apparatus for use in handling signatures EP1607355A1|2005-12-21|Device and method for processing planar substrates into packs CN1070819C|2001-09-12|Method and device for separating groups of flat products from each other, and folding machine comprising said device GB1593010A|1981-07-15|Sheet stacking apparatus US4403899A|1983-09-13|Apparatus for gathering writing pads or the like FI86285C|1992-08-10|ANORDNING FOER STAPLING SAERSKILT AV TRYCKALSTER SOM TILLFOERS OEVERLAPPSVIS SAMT FOERFARANDE FOER ANORDNINGENS DRIFT. US4270908A|1981-06-02|Apparatus for the stacking and connection of synthetic-resin foil or sheet bags US3980183A|1976-09-14|Delivery and collecting arrangement for rotary machines for printing books or magazines US6113344A|2000-09-05|Method and apparatus for sorting stacks GB2235683A|1991-03-13|Box stacking device. US20040056406A1|2004-03-25|Sheet feeding CN210140314U|2020-03-13|Vertical paper collecting stacking equipment
同族专利:
公开号 | 公开日 US4302198A|1981-11-24| JPS5393904A|1978-08-17| JPS5730724B2|1982-06-30|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 CN104709509A|2015-03-23|2015-06-17|宁波家联塑料科技有限公司|Automatic collecting and packaging machine|US2133262A|1937-09-27|1938-10-11|Paul S Bauer|Machine for separating, counting, and delivering sheet material| US3364827A|1965-11-19|1968-01-23|Cutler Hammer Inc|Programming console for counter stacker| US3568578A|1969-07-10|1971-03-09|Yuji Fujishiro|Counter stacker of the rolling press| JPS4926737B1|1970-11-11|1974-07-11| US3859898A|1971-11-12|1975-01-14|Fmc Corp|Method of and apparatus for stacking flexible articles| US3851773A|1972-07-08|1974-12-03|W Kluge|Stacking device, particularly for newspapers|US4569513A|1981-04-06|1986-02-11|Wamac-Idab Ab|Newspaper stacking plant| JPS58216516A|1982-05-29|1983-12-16|Tokyo Shibaura Electric Co|Bundling device for paper-sheet group| JPH0440915Y2|1985-07-31|1992-09-25| US4753429A|1986-11-13|1988-06-28|Pitney Bowes Inc.|Collating station for inserting machine| US4772003A|1987-02-24|1988-09-20|Dainihon Insatsu Kabushiki Kaisha|Apparatus for stacking signatures or the like| US4768767A|1987-02-26|1988-09-06|R. Funk & Co.|Sheet distributing method and apparatus| DE3940243C2|1989-12-05|1994-01-20|Gaemmerler Hagen|Device for supplying a stream of sheet materials which is conveyed in a scale formation| EP0478911B1|1990-10-04|1995-04-05|Ferag AG|Device for the selective transfer of overlapping articles from a first conveyor to a second conveyor| US5346206A|1992-01-02|1994-09-13|Rima Enterprises, Inc.|Processing a stream of imbricated printed products into successive stacks| US5294100A|1992-06-22|1994-03-15|Brown Printing Company|Method and apparatus for securing plural printed material with peelable tabs| US5425457A|1992-10-08|1995-06-20|Williams; Scott V.|Document mailbox device| US5364085A|1993-03-22|1994-11-15|Gbr Systems Corporation|Accumulator with "first page holder" feature| US5467973A|1993-04-21|1995-11-21|Quad/Tech, Inc.|Apparatus and method for addressing variable thickness signatures| US7096088B2|2001-10-01|2006-08-22|Quad/Graphics, Inc.|Combined mailing streams|
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申请号 | 申请日 | 专利标题 JP754377A|JPS5730724B2|1977-01-26|1977-01-26| 相关专利
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