Paperboard binding device for corrugated paper box production
Technical Field
The utility model relates to the technical field of corrugated case production, in particular to a paperboard binding device for corrugated case production.
Background
Corrugated container board is the important material of corrugated container box production, in corrugated container box's production, because corrugated container board's specification all is inequality, need cut corrugated container board promptly, the corrugated container board after cutting need bind, just can place well, and corrugated container board need put neatly before binding, just can bind well.
However, the cardboard binding device for corrugated case production in the related art has the defects that the cardboard is not convenient to compress and then bind, so that the volume of the cardboard bundle formed during binding is large, the storage of the cardboard is not facilitated, and the corrugated cardboard is not convenient to put in order before binding, so that the cardboard bundle is scattered, and therefore, the cardboard binding device for corrugated case production is provided for solving the problems.
Disclosure of utility model
The utility model aims to solve the defects, and provides a paperboard binding device for producing corrugated cartons.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a device is binded to cardboard that corrugated container box production was used, is including being used for binding the binding table that uses corrugated container board, the first groove of groove and groove two have been seted up at the top of binding the table, the first groove and groove two intercommunication, all activity has been placed in first groove and the second groove and has been binded the area, it is provided with correction mechanism to bind the bench, the top fixedly connected with four backup pads of binding the table, all is provided with pushing mechanism between two backup pads that are located the front side and two backup pads that are located the rear side.
As the preferable one of the utility model, the correcting mechanism comprises a driving motor rotatably connected to the bottom of the binding table, two lower racks and two upper racks which are slidably arranged in the binding table, a rotating shaft is fixedly connected to an output shaft of the driving motor, a lower gear and an upper gear are fixedly sleeved on the outer side of the rotating shaft, the lower gear is meshed with the two lower racks, the upper gear is meshed with the two upper racks, one ends of the two lower racks, which are far away from each other, are fixedly connected with a first connecting plate, the front side and the rear side of the first connecting plate are fixedly connected with a first connecting plate, the top of the first connecting plate is fixedly connected with a second connecting plate, one ends of the two upper racks, which are far away from each other, are fixedly connected with a second connecting plate, and the tops of the two second connecting plates are fixedly connected with a second correcting plate.
As the preferable mode of the utility model, the top of the binding table is provided with eight rectangular openings, the four second sliding plates and the four first sliding plates are respectively sleeved in the corresponding rectangular openings in a sliding way, the inner walls of the two sides of the rectangular openings are fixedly connected with the same guide rod, and the four second sliding plates and the four first sliding plates are respectively sleeved on the outer sides of the corresponding guide rods in a sliding way.
As the preferable mode of the utility model, the four second sliding plates and the four first sliding plates are all sleeved in the binding table in a sliding way.
As the preferable mode of the utility model, the four second sliding plates and the four first sliding plates are arranged in a rectangular distribution based on the binding table and are symmetrically distributed based on the first grooves and the second grooves.
As the preferable one of the utility model, the pushing mechanism comprises a driving cavity arranged in the supporting plate and a servo motor fixedly connected to one side of the left supporting plate, a driving shaft is fixedly connected to an output shaft of the servo motor, two driving bevel gears are fixedly sleeved on the outer side of the driving shaft, a threaded rod is rotatably connected to the inner wall of the bottom of the driving cavity, a driven bevel gear is fixedly connected to the top end of the threaded rod, the two driving bevel gears are respectively meshed with the corresponding driven bevel gears, lifting plates are sleeved on the outer sides of the two threaded rods in a threaded mode, and a pressing plate is fixedly connected to one side, close to each other, of the two lifting plates.
As the preferable mode of the utility model, one side, close to each other, of the two supporting plates is provided with a limiting opening, and the two lifting plates are respectively sleeved in the corresponding limiting openings in a sliding way.
As preferable, the bottom of the binding table is fixedly connected with four supporting legs.
According to the paperboard binding device for corrugated paper box production, binding belts are placed in a first groove and a second groove, paperboards are stacked on the top of a binding table, a driving motor is started, the driving motor drives a rotating shaft to rotate, the rotating shaft drives an upper gear and a lower gear to rotate, the lower gear drives two lower racks to move inwards, the two lower racks drive two connecting plates to move inwards, the two connecting plates drive four first sliding plates to approach each other with a first correcting plate, left and right correcting can be carried out on a paperboard stack, the paperboard stack is placed in order, meanwhile, the upper gear drives the two upper racks to approach each other with two second connecting plates, the two connecting plates drive four second sliding plates to approach each other with a second correcting plate, and further, the paperboard stack can be corrected from front side and rear side, and left and right, so that the paperboard stack is placed in order, and the uniformity of later bundling is improved;
According to the paperboard binding device for corrugated paper box production, the servo motor drives the driving shaft to rotate, the driving shaft drives the two driving bevel gears to synchronously rotate, the two driving bevel gears drive the two driven bevel gears to synchronously rotate with the threaded rod, the two threaded rods drive the two lifting plates to move downwards with the pressing plate, and further the paperboard pile can be pressed at four points, so that the paperboard pile is more compact, the volume of a paperboard bundle is reduced, the storage and the transportation of the later paperboard bundle are facilitated, and then staff can bind the paperboard bundle in a cross shape through the two binding belts, so that the binding effect is better, and the situation that single paper bundle is easy to be scattered is avoided;
The utility model has reasonable structural design, and through the arrangement of the first correction plates and the second correction plates, the paperboard stacks can be corrected in a front-back and left-right manner, so that the paperboard stacks are placed more orderly, the uniformity of later bundling is improved, and the paperboard stacks can be pressed down at four points before bundling, so that the paperboard stacks are more compact, the volume of the paperboard bundles is reduced, and the storage and transportation of the later paperboard bundles are facilitated.
Drawings
Fig. 1 is a schematic structural view of a cardboard binding device for producing corrugated cardboard boxes according to the present utility model;
fig. 2 is a cross-sectional view of a cardboard binding apparatus for corrugated case production according to the present utility model;
FIG. 3 is a schematic view of the portion A in FIG. 2;
Fig. 4 is a schematic structural view of a pressing mechanism of a cardboard binding device for producing corrugated cardboard boxes.
The device comprises a binding table 1, a binding belt 2, a groove one, a groove two, a binding belt 4, a correction mechanism 5, a pressing mechanism 6, a 7, a supporting plate 501, a rectangular opening 502, a guide rod 503, a correction plate two, a correction plate one, a connecting plate two, a connecting plate 506, a sliding plate two, a sliding plate 507, a sliding plate one, a connecting plate one, a 509, an upper rack 510, an upper gear 511, a lower rack 512, a lower gear 513, a rotating shaft 514, a driving motor 61, a servo motor 62, a lifting plate 63, a driving shaft 64, a driving bevel gear 65, a driven bevel gear 66, a pressing plate 67, a limiting opening 68, a threaded rod 69 and a driving cavity.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1-4, the cardboard binding device for corrugated cardboard production comprises a binding table 1 for binding corrugated cardboard, wherein a first groove 2 and a second groove 3 are formed in the top of the binding table 1, the first groove 2 is communicated with the second groove 3, binding belts 4 are movably arranged in the first groove 2 and the second groove 3, a correction mechanism 5 is arranged on the binding table 1, four supporting plates 7 are fixedly connected to the top of the binding table 1, a pressing mechanism 6 is arranged between the two supporting plates 7 positioned on the front side and the two supporting plates 7 positioned on the rear side, and four supporting legs are fixedly connected to the bottom of the binding table 1.
Further, referring to fig. 1-3, the correction mechanism 5 includes a driving motor 514 rotatably connected to the bottom of the binding table 1, and two lower racks 511 and two upper racks 509 slidably disposed in the binding table 1, a rotation shaft 513 is fixedly connected to an output shaft of the driving motor 514, a lower gear 512 and an upper gear 510 are fixedly sleeved on an outer side of the rotation shaft 513, the lower gear 512 is meshed with the two lower racks 511, the upper gear 510 is meshed with the two upper racks 509, two ends of the two lower racks 511, which are far away from each other, are fixedly connected with a first connecting plate 508, front and rear sides of the first connecting plate 508 are fixedly connected with a first sliding plate 507, a top of the first sliding plate 507 is fixedly connected with a first correction plate 504, one ends of the two upper racks 509, which are far away from each other, are fixedly connected with a second connecting plate 505, two sides of the connecting plate 505 are fixedly connected with a second sliding plate 506, and the tops of the two sliding plates 506 are fixedly connected with a second correction plate 503.
By adopting the scheme, the driving motor 514 is started, the driving motor 514 drives the rotation shaft 513 to rotate, the rotation shaft 513 drives the upper gear 510 and the lower gear 512 to rotate, the lower gear 512 drives the two lower racks 511 to move inwards, the two lower racks 511 drive the two first connecting plates 508 to move inwards, the two first connecting plates 508 drive the four first sliding plates 507 and the first correcting plates 504 to be close to each other, so that the paperboard stack can be corrected left and right, the paperboard stack is placed more orderly, meanwhile, the upper gear 510 drives the two upper racks 509 and the two second connecting plates 505 to be close to each other, the two second connecting plates 505 drive the four second sliding plates 506 and the second correcting plates 503 to be close to each other, the paperboard stack can be corrected from front and back sides, the paperboard stack can be corrected from front, back and right, the paperboard stack can be placed more orderly, and the uniformity of later bundling is improved.
Further, eight rectangular openings 501 are formed in the top of the binding table 1, four second sliding plates 506 and four first sliding plates 507 are respectively and slidably sleeved in the corresponding rectangular openings 501, the same guide rods 502 are fixedly connected to the inner walls of two sides of the rectangular openings 501, the four second sliding plates 506 and the four first sliding plates 507 are respectively and slidably sleeved on the outer sides of the corresponding guide rods 502, the four second sliding plates 506 and the four first sliding plates 507 are respectively and slidably sleeved in the binding table 1, the four second sliding plates 506 and the four first sliding plates 507 are arranged in rectangular distribution based on the binding table 1 and are symmetrically distributed based on the grooves I2 and II 3, the sliding plates 506 and the sliding plates I507 are conveniently guided, movement of the four second sliding plates 506 and the four first sliding plates 507 are distributed at gaps between the grooves I2 and II 3, and the binding operation of the binding belt 4 on the cardboard bundles is not hindered.
Further, referring to fig. 1, 2 and 4, the pressing mechanism 6 includes a driving cavity 69 formed in the supporting plate 7, and a servo motor 61 fixedly connected to one side of the left supporting plate 7, a driving shaft 63 is fixedly connected to an output shaft of the servo motor 61, two driving bevel gears 64 are fixedly sleeved on an outer side of the driving shaft 63, a threaded rod 68 is rotatably connected to an inner wall of a bottom of the driving cavity 69, a driven bevel gear 65 is fixedly connected to a top end of the threaded rod 68, the two driving bevel gears 64 are respectively meshed with the corresponding driven bevel gears 65, lifting plates 62 are sleeved on outer sides of the two threaded rods 68 in a threaded mode, and pressing plates 66 are fixedly connected to one sides of the two lifting plates 62, which are close to each other.
By adopting the scheme, the servo motor 61 drives the driving shaft 63 to rotate, the driving shaft 63 drives the two driving bevel gears 64 to synchronously rotate, the two driving bevel gears 64 drive the two driven bevel gears 65 and the threaded rod 68 to synchronously rotate, and the two threaded rod 68 drives the two lifting plates 62 and the pressing plate 66 to move downwards, so that the paperboard pile can be pressed downwards at four points, the paperboard pile is more compact, the volume of the paperboard bundle is reduced, and the storage and the transportation of the later paperboard bundle are facilitated.
Further, limiting openings 67 are formed in one sides, close to each other, of the two support plates 7, the two lifting plates 62 are respectively arranged in the corresponding limiting openings 67 in a sliding sleeved mode, the lifting plates 62 are conveniently guided, and movement of the lifting plates is enabled to be stable and smooth.
In the utility model, when the carton bundling device is used, the bundling belt 4 is firstly placed in the first groove 2 and the second groove 3, then the paperboards are stacked on the top of the bundling table 1, then the driving motor 514 is started, the driving motor 514 drives the rotation shaft 513 to rotate, the rotation shaft 513 drives the upper gear 510 and the lower gear 512 to rotate, the lower gear 512 drives the two lower racks 511 to move inwards, the two lower racks 511 drive the two first connecting plates 508 to move inwards, the two first connecting plates 508 drive the four first sliding plates 507 and the first correcting plates 504 to be close to each other, so that the paperboards can be corrected left and right, the paperboards can be placed more orderly, the upper gear 510 drives the two upper racks 509 and the two second connecting plates 505 to be close to each other, the two connecting plates 505 drive the four second sliding plates 506 and the correcting plates 503 to be close to each other, the paperboards can be corrected from front side to back side to left and right, the paperboards can be placed more orderly, and the uniformity of later bundling can be improved.
Then start two servo motor 61, servo motor 61 has driven the rotation of drive shaft 63, drive shaft 63 has driven the synchronous revolution of two initiative bevel gears 64, two initiative bevel gears 64 have driven the synchronous revolution of two driven bevel gears 65 and threaded rod 68, two threaded rod 68 have driven the lower of two lifter plates 62 and clamp plate 66, and then can push down the cardboard heap four-point, make the cardboard heap compacter, the volume of cardboard bundle has been reduced, do benefit to the depositing and the transportation of later stage cardboard bundle, then personnel pass through two bundling belts 4, can be the cross and bundle the cardboard bundle, make bundling effect better, avoid single bundling and the circumstances that easily take place the disorder appear.