Multi-card mutual stacking, pasting, pressing, conveying and stacking equipment
By designing multiple cards stacked, pasted, pressed and conveyed and palletized equipment, the card assembly process is automated, and the problems of high production costs and low efficiency caused by relying on manual operations in the prior art are solved, and the production efficiency and large-scale production capacity are improved.
Patent Information
- Application Number
- CN202510485102.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2045-04-17
AI Technical Summary
The existing card assembly process relies on a large number of manual operations, resulting in high production costs and low efficiency, making it difficult to meet the production needs of large-scale orders.
A conveying and palletizing equipment for stacking and pasting on each other is designed, and a conveying mechanism and toggle unit are used to automatically transport, pasting and pressing the cards through the conveying channel and the dispensing machine, reducing manual intervention.
The card assembly process is automated, labor intensity and production costs are reduced, production efficiency is improved, and production needs can be met for large-scale orders.
Smart Images

Figure CN120156959A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of card packaging equipment, and particularly relates to a multi-card stacking, pasting, pressing, conveying and palletizing equipment. Background Art
[0002] A card is a sheet cardboard product used for printing patterns or texts. Currently, there are various styles of cards on the market. One type is to bond two or more cards together to form a card group, which is used to display works, provide instructions, or serve as a gift.
[0003] In the processing and production of such a card group formed by bonding two or more cards together, it is usually achieved by manual assembly. That is, after dripping glue on the first card manually, the first card is placed in an oven to dry the glue and reduce moisture. Then, the second card is taken and stacked on the first card with glue dripped on it, and the two are pressed against each other. Finally, multiple assembled card groups are palletized to a predetermined quantity and collected and stored simultaneously.
[0004] The above processing and assembly method can complete the assembly of the card group. However, due to excessive reliance on manual operation, for a large order quantity, a larger number of operators are required to meet the production demand, which leads to an increase in production costs. It also requires a relatively high labor intensity of the operators to complete, and thus the production efficiency is relatively low.
[0005] Therefore, there is an urgent need for a technical solution to solve the above technical problems. Summary of the Invention
[0006] The purpose of the present invention is to provide a multi-card stacking, pasting, pressing, conveying and palletizing equipment. To solve the above technical problems, the present invention adopts the following technical solutions: A multi-card stacking, pasting, pressing, conveying and palletizing equipment includes a conveying device arranged along a predetermined direction. Along the conveying device, a first counting card dispenser for providing the first card to the conveying device, a dispensing machine for dripping glue on the first card, and a second counting card dispenser for providing the second card to the conveying device are sequentially arranged. The conveying device includes: A machine table, on which a conveying channel extending along a predetermined direction for accommodating the first card and the second card is provided, and a moving groove is provided on the bottom surface of the channel; A conveying mechanism, which is arranged on the machine table and is used to move the first card and the second card along the conveying channel. The conveying mechanism includes The transmission assembly is arranged in a predetermined direction and performs a cyclic motion, and also includes a A toggle unit, which is arranged opposite to the moving groove, includes a plurality of toggle units which are rotatably arranged on the transmission component at equal intervals, and the toggle unit moves along the moving groove and pushes the first card and the second card to move under the drive of the transmission component, and the toggle unit includes a toggle part rotatably connected to the transmission component, and the toggle part has a toggle state and a drooping state under the drive of the transmission component, wherein when the toggle part is in the toggle state, the end of the toggle part enters the conveying channel under the drive of the transmission component to push the first card and the second card to move along the conveying channel, and when the toggle part is in the drooping state, the toggle part naturally droops under the action of gravity.
[0007] Furthermore, the transmission assembly includes A sprocket, wherein the sprocket includes two sprockets rotatably mounted at both ends of the machine, and one of the sprockets is drivingly connected to the driving device; A transmission chain is sleeved on the sprocket and performs a circular motion under the sprocket, and the toggle unit is rotationally connected to the transmission chain.
[0008] Furthermore, the toggle unit includes a transmission shaft rotatably connected to the transmission chain; The toggle portion includes A toggle lever, one end of which is fixedly connected to the end of the transmission shaft on one side of the transmission chain, and further comprising A toggle block, wherein the toggle block is formed at an end of the toggle rod away from the transmission shaft, and the width of the toggle block is greater than the width of the moving groove; The toggle unit also includes a linkage rod, one end of which is fixedly connected to the end of the transmission shaft on the other side of the transmission chain, and the axes of the linkage rod and the toggle rod intersect to form a right angle, and the free end of the linkage rod extends away from the conveying direction.
[0009] Furthermore, the machine is also provided with a supporting plate, which is arranged under the table top of the machine and defines an escape space between the supporting plate and the machine for the conveying chain and the linkage rod to be placed therein; when the toggle unit rotates around the sprocket wheel and moves to the end position of the supporting plate under the drive of the transmission chain, the end of the supporting plate toggles the free end of the linkage rod, so that the linkage rod gradually swings to a horizontal state and moves in a predetermined direction in the escape space, so that the toggle part enters a toggle state; the linkage rod is driven by the conveying component and the supporting plate, so that the toggle part naturally droops under the action of gravity and enters a drooping state.
[0010] Furthermore, when the toggle portion is in the toggle state, the end of the toggle rod is located above the bottom surface of the conveying channel, so that a clamping space for accommodating one side edge of the first card is defined between the lower side surface of the toggle block and the bottom surface of the conveying channel.
[0011] Furthermore, a damping unit is provided on the machine platform at the downstream side of the first point card issuing machine to push the first card into the clamping space, and the damping unit includes: A damping beam, wherein the damping beam is suspended above the conveying channel; The damping member includes two damping members respectively located on both sides of the movable groove, and the damping member includes an elastic arm, one end of the elastic arm is fixedly mounted on the damping beam, and the other end extends toward the conveying channel and is inclined along the conveying direction. The damping member also includes a damping end portion, and the damping end portion is arranged at one end of the elastic arm away from the damping beam to apply elastic resistance to the first card.
[0012] Furthermore, a guide assembly is provided at a position above the conveying channel corresponding to the second point card issuing machine, and the guide assembly includes two guide plates respectively located on both sides of the movable groove and symmetrical to each other, and the guide plates are gradually inclined downward from one end toward the first point card issuing machine toward the second point card issuing machine, and the distance between the two guide plates gradually increases from one end toward the first point card issuing machine toward the second point card issuing machine, so that the second card can fall downward onto the first card.
[0013] Furthermore, the machine is further provided with a pressing unit at the downstream side of the second point card issuing machine, for pressing the first card and the second card stacked on each other, and the pressing unit includes: A pressing beam, the pressing beam being suspended above the conveying passage; The pressing member includes two pressing members respectively located on both sides of the moving groove, and each of the pressing members includes A clamping arm, one end of which is fixedly mounted on the clamping beam, and the clamping arm has elastic deformation that bends in the up-down direction, and also includes A pressing wheel is rotatably connected to the other end of the pressing arm, and a circumferential surface of the pressing wheel abuts against a surface of the conveying channel.
[0014] Furthermore, a palletizing device is provided at the downstream side of the conveying device along the conveying direction, and the palletizing device includes: A conveyor belt, wherein the conveyor belt is arranged along the conveying direction of the conveying device, and the inlet end of the conveyor belt is butted with the outlet end of the conveying device, and a stabilizing wheel is arranged at the inlet end of the conveyor belt, and the stabilizing wheel includes a rotating shaft suspended above the conveyor belt and a wheel body rotatably connected to the rotating shaft; A receiving platform is arranged at the downstream side of the conveyor belt, and the receiving platform surface is arranged at the lower side of the conveyor belt surface, so as to receive the cards dropped from the conveyor belt and stack a plurality of cards on each other.
[0015] Furthermore, along the conveying direction of the conveying device, a drying tunnel is provided on the machine platform between the dispensing machine and the second card counting machine. The drying tunnel spans the conveying channel and is used for drying the cards in the conveying channel.
[0016] The beneficial effects produced by the present invention are as follows: In a multi-card stacking, pasting, pressing, conveying and stacking device provided in the present embodiment, the toggle part is driven by the transmission component to enter the toggle state from one end of the conveying channel, so that the toggle part is in a vertical state. At this time, its end portion penetrates into the conveying channel and moves along the moving groove driven by the transmission component, so that the end portion of the toggle part pushes the first card located in the conveying channel to be conveyed along the conveying channel, and then the first card is conveyed to the glue dispenser and the second counting card issuing machine in turn, and the first card is dripped with glue and the second card is stacked in turn, so that the processing of stacking and pasting two cards can be completed. Through the technical solution provided by the present embodiment, the glue dispensing of the first cardboard and the stacking and pasting of the second cardboard can be completed in turn during the conveying process of the first cardboard. In the whole working process, the dependence on manual labor is reduced, the labor intensity and production cost of manual labor are reduced, and the production efficiency is improved. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of the present invention.
[0018] Figure 2 It is a top view of the conveying device in the present invention.
[0019] Figure 3 It is a front view of the conveying device in the present invention.
[0020] Figure 4 for Figure 2 Sectional view of AA.
[0021] Figure 5 The figure is a side view of the conveying device of the present invention with the sprocket wheel hidden.
[0022] Figure 6 It is a structural schematic diagram of the toggle unit and the conveyor chain status in the present invention.
[0023] Figure 7 for Figure 1 A partial enlarged view of point A in the middle.
[0024] Figure 8 for Figure 2 A partial enlarged view of point B in the middle.
[0025] In the figure: 100-transmission device; 200-first card counting machine; 300-glue dispenser; 400-second card counting machine; 101-machine; 102-transmission channel; 103-moving slot; 110-transmission mechanism; 120-transmission assembly; 130-sliding unit; 131-transmission shaft; 132-sliding part; 121-sprocket; 122-transmission chain; 1321-sliding rod; 1322-sliding block; 133-linking rod; 104-support plate; 105-avoidance space; 1323- Clamping space; 140-damping unit; 141-damping member; 1421-elastic arm; 1422-damping end; 150-guiding assembly; 151-guide plate; 160-pressing unit; 161-pressing beam; 162-pressing member; 1621-pressing arm; 1622-pressing wheel; 500-palletizing device; 501-conveyor belt; 502-stabilizing wheel; 5021-rotating shaft; 5022-wheel body; 503-receiving platform; 600-drying tunnel; 01-first card; 02-second card. DETAILED DESCRIPTION
[0026] In order to facilitate the understanding of those skilled in the art, the present invention is further described below in conjunction with the embodiments and drawings, and the contents mentioned in the embodiments are not intended to limit the present invention. The present invention is described in detail below in conjunction with the drawings.
[0027] The embodiment of the present invention provides a multi-card stacking, pasting, pressing, conveying and stacking device, which is used to stack and paste two cards to form a card group, and stack the processed card groups on each other for processing. Specifically, a first point card issuing machine 200 for providing a first card 01, a glue dispenser 300 for dripping glue on the first card 01, and a second point card issuing machine 400 for providing a second card 02 are placed in sequence on a machine table 101 along the conveying direction of a conveying channel 102, so that the first card 01 and the second card 02 placed in sequence can be stacked on each other in the conveying channel 102, and the two cards are bonded to each other by glue. It is worth noting that the first point card issuing machine 200 and the second point card issuing machine 400 can adopt devices with the same structure and can be implemented by existing technologies. The cards can be placed in sequence in the conveying channel 102, and a conveying mechanism 110 drives the conveying channel 1 02, so that the first card 01 can pass through the glue dispensing machine 300 and the second counting card issuing machine 400 in sequence, and perform glue dispensing processing and stacking the second card 02 processing in sequence. In the process of conveying the card, the toggle unit flows in the moving groove under the drive of the transmission component 130, so that the end of the toggle part 132 pushes the card to move in the conveying channel 102, and the toggle part 132 can be converted between the toggle state and the drooping state under the drive of the transmission component 130. Among them, with respect to a single toggle part 132, when the toggle part 132 is in the toggle state, the end of the toggle part 132 can be inserted into the conveying channel 102, so as to realize the toggle of the first card 01 located in the conveying channel 102, and when the toggle part 132 moves to the end of the conveying channel 102, it is converted to the drooping state, so that the toggle part 132 naturally droops under the action of gravity, which is convenient for following the transmission component 130 for circulation.
[0028] Specifically, Figure 1-6As shown in the figure, a stacking, pasting, pressing, conveying and palletizing device for multiple cards provided in this embodiment includes a conveying device 100 arranged along a predetermined direction. Along the conveying device 100, a first card counting and card issuing machine 200 for providing the first card 01 to the conveying device 100, a dispensing machine 300 for dripping glue on the first card 01, and a second card counting and card issuing machine 400 for providing the second card 02 to the conveying device 100 are sequentially arranged. Among them, the conveying device 100 includes a machine table 101 and a conveying mechanism 110. A conveying channel 102 extending along the predetermined direction for accommodating the first card 01 and the second card 02 is opened on the machine table 101, and a moving groove is opened on the bottom surface of the channel. The conveying mechanism 110 is arranged on the machine table 101, and the conveying mechanism 110 is used to push the first card 01 and the second card 02 to flow along the conveying channel 102. The conveying mechanism 110 includes a transmission component 130 and a pushing component. The transmission component 130 is arranged along the predetermined direction and performs a cyclic motion. The pushing unit is arranged opposite to the moving groove and includes a plurality of equally spaced ones rotatably arranged on the transmission component 130. And the pushing unit moves along the inside of the moving groove under the drive of the transmission component 130 and pushes the first card 01 and the second card 02 to move. The pushing unit includes a pushing part 132 rotatably connected to the transmission component 130. The pushing part 132 has a pushing state and a drooping state under the drive of the transmission component 130. Among them, when the pushing part 132 is in the pushing state, the end of the pushing part 132 enters the conveying channel 102 under the drive of the transmission component 130 to push the first card 01 and the second card 02 to move along the conveying channel 102. When the pushing part 132 is in the drooping state, the pushing part 132 naturally droops under the action of gravity.
[0029] In the process of conveying the cards, the toggle portion 132 is driven by the transmission component 130 to enter the toggle state from one end of the conveying channel 102, so that the toggle portion 132 is in a vertical state. At this time, its end portion penetrates into the conveying channel 102, and moves along the moving groove driven by the transmission component 130, so that the end portion of the toggle portion 132 pushes the first card 01 located in the conveying channel 102 to be conveyed along the conveying channel 102, and then the first card 01 is conveyed to the glue dispenser 300 and the second counting card issuing machine 400 in turn, and the glue dripping and stacking of the second card 02 are completed on the first card 01 in turn, so that the processing of stacking and pasting two cards on each other can be completed. It can be imagined that The technical solution adopted in this embodiment is to assemble and process two cards. At the same time, more point card issuing machines can be added to assemble and process multiple cards. It is worth noting that the first point card issuing machine 200 and the second point card issuing machine 400 can be implemented by adopting existing technical solutions, such as the technical solution provided in the Chinese utility model patent with announcement number CN210295180U and the name of point card issuing machine. Through the technical solution provided in this embodiment, the work of dispensing glue on the first cardboard and stacking and pasting the second cardboard can be completed in sequence during the conveying process of the first cardboard. In the whole working process, the dependence on manual labor is reduced, the labor intensity and production cost of manual labor are reduced, and the production efficiency is improved.
[0030] In this embodiment, the transmission assembly 130 uses a chain assembly to realize transmission, specifically, a transmission chain 122 including a sprocket 121, wherein the sprocket 121 includes two rotatably mounted at both ends of the machine 101, and one of them is in transmission connection with the driving device; the transmission chain 122 is sleeved on the sprocket 121, and performs a circular motion under the sprocket 121, and the toggle unit is rotatably connected to the transmission chain 122. In this embodiment, the driving device is a driving motor, which drives the active sprocket 121 to rotate, thereby the electric transmission chain 122 is transmitted, and drives the toggle unit to realize a circular flow, and enables the toggle unit 132 to toggle the first card 01 located in the conveying channel 102 in the toggle state.
[0031] In this embodiment, the toggle unit includes a transmission shaft 131 rotatably connected to the transmission chain 122; the toggle part 132 includes a toggle rod 1321 and a toggle block 1322, wherein one end of the toggle rod 1321 is fixedly connected to the end of the transmission shaft 131 on one side of the transmission chain 122, and the toggle block 1322 is formed at the end of the toggle rod 1321 away from the transmission shaft 131, and the width of the toggle block 1322 is greater than the width of the movable groove; at the same time, the toggle unit also includes a linkage rod 133, one end of the linkage rod 133 is fixedly connected to the end of the transmission shaft 131 on the other side of the transmission chain 122, and the axis of the linkage rod 133 intersects with the axis of the toggle rod 1321 to form a right angle, and the free end of the linkage rod 133 extends away from the conveying direction. Furthermore, in order to enable the toggle portion 132 to be switched to the toggle state under the drive of the transmission assembly 130, a support plate 104 is further provided on the machine 101. The support plate 104 is arranged below the tabletop of the machine 101 and defines an escape space 105 between the support plate 104 and the machine 101 for the conveyor chain and the linkage rod 133 to be located therein; when the toggle unit rotates around the sprocket 121 under the drive of the transmission chain 122 and moves to the end position of the support plate 104, the end of the support plate 104 toggles the free end of the linkage rod 133, so that the linkage rod 133 gradually swings to a horizontal state and moves in a predetermined direction in the escape space 105, so that the toggle portion 132 is switched to the toggle state; the linkage rod 133 is coupled to the support plate 104 under the drive of the transmission assembly, so that the toggle portion 132 naturally droops under the action of gravity and switches to a drooping state.
[0032] In the process of conveying the first card 01, the toggle unit moves under the drive of the transmission chain 122. When it moves to a sprocket 121 located at the front end of the machine 101, it moves along the circumferential surface of the sprocket 121. When it gradually moves to the upper side of the sprocket 121, the toggle portion 132 is in a downward vertical state under the action of gravity. That is to say, at this time, the linkage rod 133 is in a substantially horizontal state under the action of the toggle portion 132. When the transmission chain 122 gradually pulls the toggle unit to move, the end of the support plate 104 will toggle the end of the free end of the linkage rod 133, so that the linkage rod 133 revolves around the transmission chain 122. After the shaft 131 rotates and rotates 180 degrees, it is confined in the avoidance space 105 and supported by the support plate 104. At this time, the toggle part 132 is synchronously rotated while the linkage rod 133 rotates, and gradually becomes vertical, so that the toggle rod 1321 is located in the moving groove and the toggle block 1322 is placed in the conveying channel 102, so that the first card 01 located in the conveying channel 102 can be pushed in the process of being pushed by the transmission chain 122, thereby completing the conveying work of the first card 01, so that the first card 01 can pass through the dispensing machine 300 and the second counting card issuing machine 400 in sequence. It is worth noting here that the mass of the toggle part 132 is greater than the mass of the linkage rod 133, so that the toggle part 132 can fall downward under the action of gravity, and the linkage rod 133 can be in a roughly horizontal state when the toggle part 132 falls.
[0033] In this embodiment, in order to ensure the stability of the first card 01 during the process of pushing the first card 01, the length of the toggle rod 1321 is set so that the length of the toggle rod 1321 is greater than the depth of the moving groove. When the toggle portion 132 is in the toggle state, the end of the toggle rod 1321 is located above the bottom surface of the conveying channel 102, so that a clamping space 1323 for accommodating one side edge of the first card 01 is defined between the lower surface of the toggle block 1322 and the bottom surface of the conveying channel 102.
[0034] That is to say, in the process of pushing the first card 01, one side edge of the first card 01 can be placed just below the toggle block 1322 and restricted by the toggle block 1322 and the bottom of the conveying channel 102, thereby improving the stability of the first card 01 during the conveying process, and facilitating the dispensing of glue on the first card 01 and stacking the second card 02. In addition, it is worth noting that, since the mass of the toggle part 132 is greater than the mass of the linkage rod 133, when the toggle part 132 is in the toggle state, the toggle part 132 is in a vertical state, and in the process of being dragged by the transmission chain 122, the toggle part 132 will flip toward the direction of the first card 01 under the gravity and the dragging process, so that the first card 01 can be clamped in the process of flipping toward the direction of the first card 01, thereby further ensuring the stability of the first card 01 during the pushing process.
[0035] In this embodiment, in order to enable the first card 01 to be more smoothly accommodated in the clamping space 1323, a damping unit 140 is further provided on the machine 101 at the downstream side of the first counting card issuing machine 200, so as to push the first card 01 into the clamping space 1323. The damping unit 140 includes a damping beam 141 and a damping member 142 mounted on the damping beam 141, wherein the damping beam 141 is suspended above the conveying channel 102; it includes two damping members 142 respectively located on both sides of the movable groove, and the damping member 142 includes an elastic arm 1421, one end of the elastic arm 1421 is fixedly mounted on the damping beam 141, and the other end extends toward the conveying channel 102 and is inclined along the conveying direction. The damping member 142 also includes a damping end 1422, and the damping end 1422 is arranged at one end of the elastic arm 1421 away from the damping beam 141, so as to apply elastic resistance to the first card 01.
[0036] During the process of the transmission chain 122 toggling the toggle part 132, the first counting card issuing machine 200 puts the first card 01 into the conveying channel 102. At this time, the toggle part 132 pushes the first card 01 to move in the conveying channel 102. During this process, the toggle part 132 is prone to the situation as described above, that is, the toggle block 1322 falls forward due to the vibration of being dragged by gravity, so that the front lower edge of the toggle block 1322 closes the clamping space 1323, restricting the first card 01 from entering the clamping space 1323. At the corresponding position of the damping assembly where the first card 01 is pushed, the damping end 1422 provides an elastic resistance, thereby forcing the first card 01 to be pushed toward the clamping space 1323, and the first card 01 can be pushed into the elastic space. It is worth mentioning here that in order to facilitate the first card 01 to be pushed into the clamping space 1323 under the action of the damping assembly, the lower edge of the front side of the toggle block 1322 is set as an arc transition surface, so that under the push of the damping assembly, the first card 01 can smoothly enter the clamping space 1323 at the lower side of the toggle block 1322 through the arc transition surface.
[0037] In this embodiment, in order to enable the second card 02 introduced by the second point card issuing machine 400 to smoothly fall and stack on the first card 01, a guide assembly 150 is further provided at a position corresponding to the second point card issuing machine 400 on the conveying channel 102. The guide assembly 150 includes two guide plates 151 which are respectively located on both sides of the movable groove and are symmetrical to each other. The guide plates 151 are gradually inclined downward from one end facing the first point card issuing machine 200 toward the second point card issuing machine 400, and the distance between the two guide plates 151 gradually increases from one end facing the first point card issuing machine 200 toward the second point card issuing machine 400, so that the second card 02 can fall downward onto the first card 01.
[0038] When the first card 01 is pushed to the position of the second point card issuing machine 400, the second card 02 inserted by the second point card issuing machine 400 falls onto the guide assembly 150 and is supported by the two guide plates 151. At this time, the first card 01 moves on the lower side of the guide plate 151 under the push of the toggle portion 132. At the same time, the second card 02 located on the upper side of the guide plate 151 is pushed by the toggle block 1322 to move along the surface of the guide plate 151, thereby falling onto the first card 01 between the two guide plates 151. Since the second card 02 is guided by the two guide plates 151, it can slowly fall on the first card 01, thereby avoiding the situation where the second point card issuing machine 400 directly inserts it onto the first card 01 and causes inaccurate stacking position.
[0039] In the present embodiment, in order to press the stacked first card 01 and the second card 02 against each other, a pressing unit 160 is further provided on the machine 101 at the downstream side of the second point-issuing machine 400, so as to press the stacked first card 01 and the second card 02 against each other, and the pressing unit 160 includes a pressing beam 161 and a pressing member 162, wherein the pressing beam 161 is suspended above the conveying channel 102; the pressing member 162 includes two respectively located on both sides of the movable groove, and each pressing member 162 includes a pressing arm 1621 and a pressing wheel 1622, one end of the pressing arm 1621 is fixedly mounted on the clamping beam, and the clamping arm has an elastic deformation bending in the up and down directions, the pressing wheel 1622 is rotatably connected to the other end of the pressing arm 1621, and the circumferential surface of the pressing wheel 1622 abuts against the surface of the conveying channel 102.
[0040] The first card 01 and the second card 02 stacked on each other move along the conveying channel 102 under the push of the toggle part 132, and pass through the clamping unit 160, and the clamping wheel 1622 rolls the first card 01 and the second card 02 stacked on each other, so that the first card 01 and the second card 02 stacked on each other and bonded by glue can be compressed to improve the reliability of bonding.
[0041] In order to be able to stack the card group consisting of the first card 01 and the second card 02 that are bonded to each other, a stacking device 500 is arranged on the downstream side of the conveying device 100 along the conveying direction, and the stacking device 500 includes a conveyor belt 501 and a receiving platform 503, wherein the conveyor belt 501 is arranged along the conveying direction of the conveying device 100, and the inlet end of the conveyor belt 501 is connected to the outlet end of the conveying device 100, and a stabilizing wheel 502 is arranged at the inlet end of the conveyor belt 501, and the stabilizing wheel 502 includes a rotating shaft 5021 suspended above the conveyor belt 501 and a wheel body 5022 rotatably connected to the rotating shaft 5021; the receiving platform 503 is arranged on the downstream side of the conveyor belt 501, and the surface of the receiving platform 503 is arranged on the lower side of the surface of the conveyor belt 501, so as to receive the cards dropped from the conveyor belt 501 and stack multiple cards on each other.
[0042] The card group transferred from the conveying channel 102 to the conveyor belt 501 can be rolled by the stabilizing wheel 502 to ensure the stability of the card group during the transfer process. As the conveyor belt 501 is transported, the card group falls onto the receiving platform 503 and is stacked on the receiving platform 503 in sequence to complete the stacking.
[0043] In this embodiment, in order to ensure the reliability of bonding, along the conveying direction of the conveying device 100, a drying tunnel 600 is further provided on the machine platform 101 between the dispensing machine 300 and the second card counting and issuing machine 400. The drying tunnel 600 straddles the conveying channel 102 to perform a drying operation on the cards located within the conveying channel 102. Thus, the moisture in the glue can be dried to ensure the reliability of the bonding between the first card 01 and the second card 02.
[0044] The above is only a preferred embodiment of the present invention, and it is not intended to limit the present invention in any form. Although the present invention is disclosed above in a preferred embodiment, it is not intended to limit the present invention. Any person skilled in the art, without departing from the scope of the technical solution of the present invention, when making some changes or modifications using the above-disclosed technical content into equivalent embodiments of equivalent changes, but as long as it does not depart from the content of the technical solution of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical means of the present invention shall fall within the scope of the technical solution of the present invention.
Claims
1. A device for stacking, pasting, pressing, conveying and stacking multiple cards, comprising a conveying device arranged along a predetermined direction, a first card issuing machine for providing a first card to the conveying device, a glue dispenser for dripping glue on the first card, and a second card issuing machine for providing a second card to the conveying device, which is arranged in sequence along the conveying device, characterized in that: The conveying device comprises: A machine platform, on which a conveying channel extending in a predetermined direction for accommodating the first card and the second card is provided, and a moving groove is provided on the bottom surface of the channel; A conveying mechanism, the conveying mechanism is arranged on the machine, and the conveying mechanism is used to move the first card and the second card to flow along the conveying channel, and the conveying mechanism includes The transmission assembly is arranged in a predetermined direction and performs a cyclic motion, and also includes a A toggle unit, which is arranged opposite to the moving groove, includes a plurality of toggle units which are rotatably arranged on the transmission component at equal intervals, and the toggle unit moves along the moving groove and pushes the first card and the second card to move under the drive of the transmission component, and the toggle unit includes a toggle part rotatably connected to the transmission component, and the toggle part has a toggle state and a drooping state under the drive of the transmission component, wherein when the toggle part is in the toggle state, the end of the toggle part enters the conveying channel under the drive of the transmission component to push the first card and the second card to move along the conveying channel, and when the toggle part is in the drooping state, the toggle part naturally droops under the action of gravity.
2. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 1, characterized in that: The transmission assembly comprises: A sprocket, wherein the sprocket includes two sprockets rotatably mounted at both ends of the machine, and one of the sprockets is drivingly connected to the driving device; A transmission chain is sleeved on the sprocket and performs a circular motion under the sprocket, and the toggle unit is rotationally connected to the transmission chain.
3. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 2, characterized in that: The toggle unit includes a transmission shaft rotatably connected to the transmission chain; The toggle portion includes A toggle lever, one end of which is fixedly connected to the end of the transmission shaft on one side of the transmission chain, and further comprising A toggle block, wherein the toggle block is formed at an end of the toggle rod away from the transmission shaft, and the width of the toggle block is greater than the width of the moving groove; The toggle unit also includes a linkage rod, one end of which is fixedly connected to the end of the transmission shaft on the other side of the transmission chain, and the axes of the linkage rod and the toggle rod intersect to form a right angle, and the free end of the linkage rod extends away from the conveying direction.
4. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 3, characterized in that: The machine is also provided with a supporting plate, which is arranged under the table top of the machine and defines an escape space between the supporting plate and the machine for the conveying chain and the linkage rod to be placed therein; when the toggle unit rotates around the sprocket wheel and moves to the end position of the supporting plate under the drive of the transmission chain, the end of the supporting plate toggles the free end of the linkage rod, so that the linkage rod gradually swings to a horizontal state and moves in a predetermined direction in the escape space, so that the toggle part enters a toggle state; the linkage rod is driven by the conveying component and the supporting plate, so that the toggle part naturally droops under the action of gravity and enters a drooping state.
5. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 4, characterized in that: When the toggle portion is in the toggle state, the end of the toggle rod is located above the bottom surface of the conveying channel, so that a clamping space for accommodating one side edge of the first card is defined between the lower side surface of the toggle block and the bottom surface of the conveying channel.
6. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 5, characterized in that: A damping unit is also provided on the machine platform at the downstream side of the first point card issuing machine, for pushing the first card into the clamping space, and the damping unit includes: A damping beam, wherein the damping beam is suspended above the conveying channel; The damping member includes two damping members respectively located on both sides of the movable groove, and the damping member includes an elastic arm, one end of the elastic arm is fixedly mounted on the damping beam, and the other end extends toward the conveying channel and is inclined along the conveying direction. The damping member also includes a damping end portion, and the damping end portion is arranged at one end of the elastic arm away from the damping beam to apply elastic resistance to the first card.
7. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 1, characterized in that: A guide assembly is also provided at a position above the conveying channel corresponding to the second point card issuing machine, and the guide assembly includes two guide plates respectively located on both sides of the movable groove and symmetrical to each other, and the guide plates are gradually inclined downward from one end facing the first point card issuing machine toward the second point card issuing machine, and the distance between the two guide plates gradually increases from one end facing the first point card issuing machine toward the second point card issuing machine, so that the second card can fall downward onto the first card.
8. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 7, characterized in that: The machine is located at the downstream side of the second point card issuing machine and is also provided with a pressing unit for pressing the first card and the second card stacked on each other. The pressing unit includes: A pressing beam, the pressing beam being suspended above the conveying passage; The pressing member includes two pressing members respectively located on both sides of the moving groove, and each of the pressing members includes A clamping arm, one end of which is fixedly mounted on the clamping beam, and the clamping arm has elastic deformation that bends in the up-down direction, and also includes A pressing wheel is rotatably connected to the other end of the pressing arm, and a circumferential surface of the pressing wheel abuts against a surface of the conveying channel.
9. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 1, characterized in that: A palletizing device is provided at the downstream side of the conveying device along the conveying direction, and the palletizing device comprises: A conveyor belt, wherein the conveyor belt is arranged along the conveying direction of the conveying device, and the inlet end of the conveyor belt is butted with the outlet end of the conveying device, and a stabilizing wheel is arranged at the inlet end of the conveyor belt, and the stabilizing wheel includes a rotating shaft suspended above the conveyor belt and a wheel body rotatably connected to the rotating shaft; A receiving platform is arranged at the downstream side of the conveyor belt, and the receiving platform surface is arranged at the lower side of the conveyor belt surface, so as to receive the cards dropped from the conveyor belt and stack a plurality of cards on each other.
10. The device for stacking, pasting, pressing, conveying and stacking multiple cards according to claim 1, characterized in that: Along the conveying direction of the conveying device, a drying tunnel is also provided on the machine platform between the dispensing machine and the second card counting machine. The drying tunnel spans the conveying channel and is used for drying the cards in the conveying channel.
Citation Information
Patent Citations
Card counting and issuing machine
CN210295180U
Neat paper pile up neatly system of permutation of count output unit
CN205687261U
Card labeller
CN207809997U
Automatic pasting device for paperboards
CN216376885U
Carton board adhesion pressing device
CN222610589U