MODULE FOR TURNING OVER FOLDING PACKAGES AND FOLDING PACKAGE PRODUCTION LINE INCORPORATING SUCH A MODULE
20190210827 · 2019-07-11
Inventors
Cpc classification
B65H15/016
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65G47/252
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/2614
PERFORMING OPERATIONS; TRANSPORTING
B65H29/12
PERFORMING OPERATIONS; TRANSPORTING
B65H33/12
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/11
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/01
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/25
PERFORMING OPERATIONS; TRANSPORTING
B65H2403/944
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/02
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/02
PERFORMING OPERATIONS; TRANSPORTING
B65H2220/11
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/2615
PERFORMING OPERATIONS; TRANSPORTING
B65H2402/10
PERFORMING OPERATIONS; TRANSPORTING
B65H2515/10
PERFORMING OPERATIONS; TRANSPORTING
B65H2515/34
PERFORMING OPERATIONS; TRANSPORTING
B65H2515/34
PERFORMING OPERATIONS; TRANSPORTING
B65H5/023
PERFORMING OPERATIONS; TRANSPORTING
B65H29/20
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/1766
PERFORMING OPERATIONS; TRANSPORTING
B65H2515/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65G47/252
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The module (3) comprises a frame having vertical pillars (30A, 30B), a rotary turnover structure (4) arranged horizontally between the vertical pillars and comprising rotation shafts (400A) supported by bearings (300A) with which the vertical pillars are respectively equipped. A motor (303B) applies a first mechanical torque to one of the rotation shafts when a folding package turnover is ordered in the machine. The module also comprises additional means (5) for applying a second mechanical torque to the other rotation shaft upon a folding package turnover.
Claims
1. Module for turning over folding packages that can be incorporated in a folding package production line (1), comprising a frame having first and second vertical pillars (30B, 30A), a rotary turnover structure (4) arranged horizontally between the vertical pillars (30B, 30A) and comprising first and second rotation shafts (400B, 400A) supported by first and second bearings (300A) with which the first and second vertical pillars (30B, 30A) are respectively equipped, and a motor (303B) for applying a first mechanical torque to the first rotation shaft (400B) when a folding package turnover is ordered, characterized in that it comprises additional means (5, 305B, 306B, 308B, 301A, 303A, 304A, 302A) for applying a second mechanical torque to the second rotation shaft (400A) upon a folding package turnover.
2. The module of claim 1, in which the additional means (5, 305B, 308B, 301A, 303A, 304A, 302A) comprise a transmission shaft (5) coupled mechanically in rotation to the motor (303B) and applying the second mechanical torque to the second rotation shaft (400A), the sum of the first and second mechanical torques corresponding to a total mechanical torque supplied by the motor (303B).
3. The module of claim 2, comprising a first pulley (306B) and a first distribution belt (308B) for mechanically coupling in rotation the transmission shaft (5) to the motor (303B).
4. The module of claim 2, comprising a second pulley (301A, 304A, 302A) and a second distribution belt (303A) for mechanically coupling in rotation the transmission shaft (5) to the second rotation shaft (400A).
5. The module of claim 1, in which the motor (303B) and the additional means (5, 305B, 308B, 301A, 303A, 304A, 302A) simultaneously apply the first and second mechanical torques to the first and second rotation shafts (400B, 400A).
6. The module of claim 1, in which the rotary turnover structure (4) comprises at least one double-belt conveyor (42A) arranged vertically and comprising a horizontal pinching plane in an intermediate zone for transporting and holding the folding packages (2) between the facing high (420AH) and low (420AL) belts of the conveyor (42A).
7. The module of claim 6, in which the rotary turnover structure (4) comprises two double-belt conveyors (42A, 42B) arranged vertically and means (41H, 41L, 42H, 42L, 42) for adjusting distance between two respective vertical planes of the double-belt conveyors (42A, 42B).
8. The module of claim 6, in which a double-belt conveyor (42A) comprises first and second sets of rollers (423L, 423H) mounted on dedicated jacks (424L, 424H) arranged vertically and distributed over a length of transport of the double-belt conveyor (42A), the first set of rollers (423L) guiding a low belt (420AL) of the conveyor and the second set of rollers (423H) guiding a high belt (420AH) of the conveyor (42A).
9. The module of claim 8, in which adjustable and different pressures are applied to the high (420AH) and low (420AL) belts by the dedicated vertical jacks (424L, 424H) at the level of a pinching plane of the conveyor (42A), the pressure applied to the low belt (420AL) supporting the weight of the folding packages being greater than the pressure applied to the high belt (420AH).
10. Folding package production line comprising a folding-gluing machine (10), a counting-segmentation module (11), a turnover module (12) and a set of conveyors (141, 142, 143), characterized in that the turnover module (12) is a module as claimed in claim 1 for turning over folding packages (30).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0036] Other advantages and features of the present invention will emerge more clearly on reading the following description of a number of particular embodiments with reference to the attached drawings, in which:
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[0044]
EXEMPLARY EMBODIMENTS OF THE INVENTION
[0045] Referring mainly to
[0046] The turnover module 3 mainly comprises a bridge frame formed by a front pillar 30A, a rear pillar 30B and a transverse high beam 31, and a turnover structure 4.
[0047] The front 30A and rear 30B pillars are arranged vertically and are joined mechanically in their high parts to the ends of the horizontally arranged transverse high beam 31. The pillars 30A, 30B comprise low parts forming level-adjustable supporting bases that can rest on a factory floor. The duly formed bridge frame is leveled in a conventional manner.
[0048] The turnover structure 4 is mounted horizontally between the two pillars 30A and 30B. The structure 4 comprises front 40A and rear 40B cradle plates arranged in parallel vertical planes and joined by means of four transverse bars 41H, 41L and 42H, 42L mounted horizontally. The bars 41H, 41L, 42H, 42L are fixed at their ends to fixing flanges (not represented) of the cradle plates 40A, 40B. These flanges are positioned in a rectangle on the cradle plates 40A, 40B.
[0049] The cradle plates 40A, 40B comprise, in central parts, respective rotation shafts 400A, 400B. These rotation shafts 400A, 400B are inserted into through bearings with which the front and rear pillars 30A, 30B are respectively equipped. The through bearing receiving the shaft 400A can be seen in
[0050] The rotation shafts 400A, 400B and the corresponding bearings (300A) are aligned on the horizontal axis of rotation AA, shown in
[0051] Referring also to
[0052] In other embodiments of the invention, the proposed combination of two conveyors 42A, 42B can be replaced by a single conveyor having extra-wide transport belts.
[0053] The double conveyors 42A and 42B each comprise two single-belt conveyors 42AH, 42AL and 42BH, 42BL, each designated by the terms conveyor subassembly hereinbelow. The conveyor subassemblies 42AH and 42BH are mounted in the high part of the turnover structure 4 and are supported by the parallel high transverse bars 41H and 42H. The conveyor subassemblies 42AL and 42BL are mounted in the low part of the turnover structure and are supported by the parallel low transverse bars 41L and 42L.
[0054] As shown in
[0055] The sliding of the conveyor subassemblies onto the transverse bars of the cradle allows their separation to be adjusted in order to configure the module for different folding box dimensions, for example, or according to parameters linked to the operation of the production line.
[0056] A staggered vertical alignment between the conveyors 42AH and 42AL can be seen in
[0057] As clearly emerges in
[0058] Each conveyor 42AH, 42AL comprises a first set of loose rollers 421 mounted on shafts fixed to a plate 422AH, 422AL, and ensuring the guiding of the belts 420AH, 420AL, respectively.
[0059] Each conveyor subassembly 42AH, 42AL also comprises a second set of loose rollers 423H, 423L supported by a set of dedicated jacks 424H, 424L fixed to the plates 422AH, 422AL, respectively. In this embodiment of the invention, eight high jacks 424H and eight low jacks 424L are provided. Obviously, the numbers thereof will depend on the different possible applications of the turnover module according to the invention.
[0060] According to the invention, the axes of the jacks 424H, 424L are vertical and therefore control vertical movements of the sets of loose rollers 423H, 423L. This feature of vertical arrangement of the jacks 424H, 424L greatly facilitates the control of the pinching zone between the facing belts 420AH and 420AL. It is thus possible to control the separation between the belts according to the thickness of the shingle stream portions of folding boxes to be processed, by a simple adjustment of the air pressure applied to the jacks. Furthermore, very advantageously, the flatness of the transport plane in the pinching zone, ensured by the lower belt 420AL (in the position of the conveyor subassemblies of
[0061] As can be seen also in
[0062] The mechanical architecture described above for the conveyors 42A, 42B and proposed in the present invention adds an optimization of the transfer and of the holding of the shingle stream portions of folding boxes in the turnover structure of the module, an optimization which helps to significantly reduce scrap from the folding boxes.
[0063] The conveyors incorporated in the turnover structure known from the inventive entity have an architecture of the type of that shown in
[0064] The rotational driving of the belts of the conveyors 42A, 42B is now described in detail hereinbelow with reference more particularly to
[0065] As emerges clearly in
[0066] As shown more particularly in
[0067] The drive pulley 45m is actuated in rotation by a motor 300B shown in
[0068] The rotational driving of the turnover structure 4 is now described in detail hereinbelow with reference more particularly to
[0069] According to the invention, the turnover structure 4 is driven in rotation from its two rotation shafts 400A, 400B housed in respective bearings (see 300A in
[0070] The motor dedicated to the rotational actuation of the turnover structure 4 is shown in
[0071] The toothed pulley 306B participates in the transmission of a second part of the rotation torque supplied by the motor 303B to the rotation shaft 400A of the turnover structure 4.
[0072] As shown in
[0073] The transmission shaft 5 is mechanically fixed at its two ends onto respective hubs of the toothed pulleys 305B and 301A and transmits the second part of the torque supplied by the motor 303B to the toothed pulley 301A.
[0074] As shown in
[0075] Obviously, the invention is not limited to the particular embodiment which has been described here by way of example. Different variant embodiments will be able to be produced by those skilled in the art depending on the applications concerned.
[0076] The turnover module according to the invention is described here in a particular embodiment which uses only a single motor supplying all the rotation torque to the turnover structure, this torque being distributed over the two rotation shafts of the turnover structure using distribution means comprising the transmission shaft 5. Obviously, another embodiment could provide two synchronously controlled motors, each of them being dedicated to driving a rotation shaft of the turnover structure.