This invention relates to a feed mechanism for a laminating machine and more specifically to a mechanism for feeding individual sheets to be laminated from a stack in succession to a laminating machine of the kind which draws from a roll a continuous film of laminating material and lays it on the sheets as they travel in an overlapping relation through heated rollers to effect the lamination. The sheets are “oversize” to allow for the overlap and the overlapping areas are subsequently trimmed off. For example to create A3 posters sheets of SRA3 are fed to the laminating machine and after laminating are trimmed to A3 size.
Heavy duty feed mechanisms are available for laminating on an industrial scale but these are costly and cumbersome. A principal object of the present invention is to provide a more simple and economical feed mechanism.
In accordance with the present invention there is provided a feed mechanism for supplying similar sheets to be laminated from a stack thereof in succession but in an overlapping relationship to a laminating machine, the feed mechanism comprising a table for supporting a stack of individual sheets to be laminated, all of the same dimensions and an endless-belt traction device equipped with suction above the table, characterised by the provision of height-adjustment means for maintaining the traction device at a predetermined spacing above the stack as the stack diminishes and means for elevating the stack from the table to bring the topmost sheet to be captured and displaced by the traction device, the elevating means being actuated to lift the stack before the trailing end of a sheet being moved by the traction device has left the same so that the sheets are fed to the laminating machine in an overlapping relation.
Said means for maintaining the traction device at a predetermined spacing above the stack may include a sensor which controls the height-adjustment means to maintain a constant distance between itself and the topmost sheet of the stack. The height-adjustment means may be adapted to raise the table as the stack diminishes. It may comprise a lazy tongs which supports the table. Alternatively the height-adjustment means may be adapted to lower the traction device as the stack diminishes.
Means is preferably provided for timing a reciprocating movement of the elevating means in accordance with the length of the stack and the speed at which the laminating machine is operating to achieve the desired overlap. The elevating means may be a cam rotatably mounted beneath the top of the table and means is preferably provided for rotating the cam initially in an anti-clockwise direction to lift a leading portion of a first sheet toward the traction device and thereafter intermittently rotating the cam in a clockwise direction to lift a subsequent sheet into contact with a trailing portion of the sheet being moved by the traction device.
Alternatively the elevating means may comprise a plunger reciprocable between a position below and a position above the top surface of the table. Preferably the elevating means comprises two plungers reciprocable between positions below and above the top surface of the table, a first plunger being nearer to the leading edge of the stack than the other, the first plunger being actuated to lift the stack to bring a topmost sheet of the stack to be captured and displaced by the traction device and the other plunger being thereafter actuated to bring subsequent sheets into contact with the traction device in an overlapping relationship with preceding sheets.
The elevating means may comprise one or more blowers which direct jets of air to the stack to separate upper sheets of the stack, the blower operating intermittently to achieve a desired overlap of sheets displaced by the traction device.
Preferred embodiments of the invention will now be described by way of non-limitative example with reference to the accompanying schematic drawings, in which:
All four embodiments of the invention illustrated have features in common which have been given the same reference numerals.
The feed mechanism 10 illustrated in
The mechanism 10 is designed to lift sheets of paper from a stack 13 thereof and pass them in succession but in an overlapping relation to the conveyor 21. The mechanism comprises a table 11 on which a stack 13 of paper has been loaded. There is a mark 12 on the top of the table against which the operator positions the leading edge of the stack 13. A slide 14 is brought into abutment with the trailing end of the stack and side plates 30 (
Suspended above the table 11 is a traction device 15. This is of a known kind and will not be described in detail, but it comprises a perforated endless belt extending horizontally and provided internally with the inlet of a suction device, so that paper lifted toward the underside of the belt will be captured by the belt and move with it. The device 15 is carried by a structure 18 from which there also depends a sensor 16. A pressure element 19 exerts to a gentle pressure on a rear region of the stack.
The table 11 is supported by lazy tongs 20. A screw device (not shown) extends or retracts the lazy tongs 20 to raise or lower the table 11. The screw device is controlled by the sensor 16 in such a way as to maintain a constant spacing of the traction device 15 above the is stack 13 as the latter diminishes. This spacing say approximately 3 cm—is just sufficient to prevent the suction of the traction device 15 lifting paper from the stack 13 until a topmost sheet of the stack has been lifted toward the traction device 15 as will now be described.
Beneath the top of the table 11 and operating through a slot therein is a cam 17 angularly moveable about a horizontal axis. The slot is covered by a plate 26 which can be displaced by the cam 17.
To enable the traction device 15 to draw the topmost sheet from the stack 13 the cam 17 is rotated counter-clockwise to the 1 o′clock position shown in
It will be apparent from the drawings that in all embodiments of the invention the means, such as the cam 17, for elevating the stack does not press the stack against the underside of the traction device. Instead it raises the stack just sufficiently for its topmost sheet to be sucked up to the traction device, which then transports it to the conveyor 21. A sheet of paper lifted to within, say 1 cm, of the underside of the belt of the traction device 15 will then travel with the belt.
To assist the separation of the sheets of the stack an array of three blowers 22 blow jets of air at the leading end of the stack 13 and blowers 25 blow air at its sides. To prevent the blowers 22 from blowing sheets from the stack backwards away from the conveyor 21 a pressure element 19 exerts pressure on the rear end of the stack 13. This pressure is gentle enough to be overcome by the traction device 15 when it is pulling a sheet from the top of the stack. The pressure element 19 may have a spring-loaded plunger (not shown) or it may simply be a weight.
As the trailing edge of the topmost sheet is about to leave the traction device 15 the cam 17 is rotated clockwise to the 11 o′clock position of
To bring each subsequent sheet to be moved by the traction device 15 the cam 17 is rotated to and from the position of
The feed mechanism of
Also in this embodiment the cam 17 is replaced by a pair of solenoid-actuated plungers 23 and 24 which move through respective openings in the top of the table 11 from positions within the table to positions above it, thus displacing a plate 24 covering the openings. To bring a first sheet from the top of the stack 13 toward the belt of the traction device 15 the plunger 23 is extended as shown in
It will be apparent that the cam 17 and the plungers 23 and 24 may be extended or may be multiplied across the width of the stack 13 so that the plate 24, which is preferably flexible, is lifted uniformly across its width and not at one or more points only.
In the embodiment of the invention illustrated in
In the embodiment of the invention illustrated in
Number | Date | Country | Kind |
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1001814.1 | Feb 2010 | GB | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/GB2011/000147 | 2/4/2011 | WO | 00 | 7/31/2012 |