Multi-bin card sender
By designing a multi-silo card issuer in the card issuer, using an inclined feeding inclined surface and a vertical card issuer silo, combined with a split card conveyor belt and an upper and lower card issuer conveyor belt, the problem of low efficiency of the existing card issuer is solved, and efficient and stable card output is achieved.
Patent Information
- Application Number
- CN202421500593.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-27
AI Technical Summary
The card issuing efficiency of existing card issuing machines is low, and the card issuing efficiency is low.
A multi-silo card issuing machine is designed, using an inclined feeding inclined surface and a vertically arranged card issuing silo. Through the cooperation of the split-card conveyor belt mechanism and the upper and lower card issuing conveyor belt mechanism, the card is stable output and efficient card issuing.
It realizes online supply of cards without shutting down, improves card issuance efficiency, ensures the stability of card supply and card issuance, and facilitates operators to replenish supplies.
Smart Images

Figure CN222877212U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of card issuing machines, in particular to a multi-bin card issuing machine. Background Art
[0002] A card issuing machine is a device that automatically pages and counts stacked instructions, cards, packaging bags, labels, paper sheets and other products. Among the existing patents, the Chinese patent document with application number 201811058135.8 discloses a card issuing mechanism and a card issuing machine, including: a card storage box for holding cards, a plurality of card storage boxes are arranged at intervals along a first direction, and the first direction is perpendicular to the vertical direction; a card issuing assembly, which is used to push the card located at the bottom of the card storage box out of the card storage box; a first guide rail extending along the first direction, and the card issuing assembly is slidably mounted on the first guide rail; a first driving device, which is transmission-connected to the card issuing assembly and can drive the card issuing assembly to slide along the first guide rail. When the cards in a card storage box are issued, the first driving device can drive the card issuing assembly to slide along the first guide rail, switch the card issuing assembly to the next card storage box, and issue the cards in the card storage box through the card issuing assembly; the card issuing assembly includes: a card issuing channel, which is slidably arranged on the first guide rail and is transmission-connected to the first driving device; a second guide rail, which is installed on the card issuing channel and extends along a second direction, and the second direction is perpendicular to the first direction; a card pushing block, which is slidably connected to the second guide rail, and the card pushing block can push the card located at the bottom of the card storage box from the card storage box into the card issuing channel; a second driving device, which is transmission-connected to the card pushing block, can drive the card pushing block to slide along the second guide rail. The card issuing assembly of the patent document realizes the card ejection by reciprocating the card pushing block, and the card issuing efficiency is low. Therefore, the defects are very obvious, and a solution is urgently needed. Utility Model Content
[0003] In order to solve the above technical problems, the purpose of the utility model is to provide a multi-bin card issuing machine.
[0004] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0005] A multi-bin card issuing machine comprises a machine platform, a feeding slope inclinedly arranged on the machine platform, a card issuing bin installed on the machine platform and erected above the feeding slope, a supporting frame installed on the machine platform and inclinedly arranged, a card distributing conveyor belt mechanism embedded in the feeding slope, a lower card issuing conveyor belt mechanism arranged at the output end of the card distributing conveyor belt mechanism, an upper card issuing conveyor belt mechanism installed on the machine platform and relatively arranged above the lower card issuing conveyor belt mechanism, a storage frame installed on the machine platform and located above the card issuing bin, a moving plate slidably connected to the storage frame, and a translation drive installed on the machine platform and used to drive the moving plate to translate. The movable mechanism and multiple partitions installed on the movable plate, the movable plate and two adjacent partitions are arranged to form a storage bin, a feeding port connected with the card issuing bin is opened at the bottom of the storage frame, the supporting frame faces the card issuing bin, the card issuing bin and the feeding slope are arranged vertically, the feeding end of the lower card issuing conveyor belt mechanism is used to connect with the discharging end of the card issuing conveyor belt mechanism, a card issuing gap is formed between the upper card issuing conveyor belt mechanism and the lower card issuing conveyor belt mechanism, and the card issuing gap is parallel to the feeding slope; when the discharging port of one of the storage bins is connected with the card issuing bin via the feeding port, the bottom of the storage frame blocks the discharging ports of the remaining storage bins.
[0006] Furthermore, the card issuing silo includes a gantry installed on the machine, a card issuing adjuster installed on the gantry and two silo plates respectively arranged on both sides of the card issuing adjuster, the card issuing adjuster is arranged correspondingly to the card separating conveyor belt mechanism, and the supporting rack is arranged correspondingly to the card issuing adjuster.
[0007] Furthermore, the card issuing silo also includes a spacing adjustment mechanism installed on the gantry and used to adjust the spacing between two silo plates, and the silo plates are slidingly connected to the gantry; the movable plate is provided with an adjustment groove, and the adjustment groove is used to adjust the distance between two adjacent partitions.
[0008] Furthermore, scale lines are arranged on the movable plate, and the scale lines are arranged along the extension direction of the adjustment slot.
[0009] Furthermore, a guide plate is installed at the bottom of the silo plate, and the guide plate extends to one side of the card issuing gap.
[0010] Furthermore, the machine is equipped with a cover plate, which is located above the upper card issuing conveyor belt mechanism.
[0011] The beneficial effects of the utility model are as follows: in practical applications, each storage bin stores a stack of cards stacked together, one of the storage bins is connected to the card issuing bin via the feed port, and the stacked cards in the storage bin fall into the card issuing bin under the action of gravity, and the bracket supports the penultimate card of the card issuing bin to a certain extent, so that the card separation conveyor belt mechanism can output the cards one by one, and the output cards enter the card issuing gap, and the upper card issuing conveyor belt mechanism and the lower card issuing conveyor belt mechanism cooperate to convey the cards along the card issuing gap to achieve card issuing. When the current storage bin has finished feeding the card issuing bin, the translation drive mechanism drives the moving plate to translate the position of one storage bin, so that the empty storage bin moves away from the feed port, and the fully loaded storage bin moves to the feed port, so as to realize the online non-stop supply of cards to the card issuing bin, and the operator can replenish the cards to the empty storage bin in time. Since an inclined feeding slope is provided, and the card issuing material bin is arranged perpendicularly to the feeding slope, the stacked cards can be aligned sideways under the action of gravity, which is conducive to neatly stacking the cards and also to separating two adjacent cards, so that the cards can be issued one by one stably. The utility model can realize online non-stop card supply, which is convenient for operators to replenish materials, and output the bottom layer of cards through the card separation conveyor belt mechanism, thereby improving the efficiency of card issuing, and the stability of card supply and card issuing is good. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a three-dimensional structural schematic diagram of the utility model.
[0013] Figure 2 It is a three-dimensional structural schematic diagram of another viewing angle of the utility model.
[0014] Figure 3 It is a three-dimensional structural schematic diagram of the movable plate and the partition of the utility model.
[0015] Figure 4 for Figure 1 Enlarged view of point A in the middle.
[0016] Description of reference numerals:
[0017] 1. Machine platform; 2. Feeding ramp; 3. Card issuing silo; 4. Supporting rack; 5. Card issuing conveyor belt mechanism; 6. Lower card issuing conveyor belt mechanism; 7. Upper card issuing conveyor belt mechanism; 8. Storage frame; 9. Moving plate; 10. Translation drive mechanism; 11. Partition plate; 12. Storage silo; 13. Feeding port; 14. Gantry; 15. Card issuing adjuster; 16. Silo plate; 17. Spacing adjustment mechanism; 18. Adjustment slot; 19. Scale line; 20. Guide plate; 21. Cover plate. DETAILED DESCRIPTION
[0018] In order to facilitate the understanding of those skilled in the art, the present invention is further described below in conjunction with embodiments and drawings. The contents mentioned in the implementation modes are not intended to limit the present invention.
[0019] like Figures 1 to 4 As shown, the utility model provides a multi-bin card issuing machine, which includes a machine platform 1, a feeding slope 2 inclined on the machine platform 1, a card issuing bin 3 installed on the machine platform 1 and erected above the feeding slope 2, a supporting frame 4 installed on the machine platform 1 and inclined, a card separating conveyor belt mechanism 5 embedded in the feeding slope 2, a lower card issuing conveyor belt mechanism 6 arranged at the output end of the card separating conveyor belt mechanism 5, an upper card issuing conveyor belt mechanism 7 installed on the machine platform 1 and relatively arranged above the lower card issuing conveyor belt mechanism 6, a storage frame 8 installed on the machine platform 1 and located above the card issuing bin 3, a movable plate 9 slidably connected to the storage frame 8, and a translation mechanism installed on the machine platform 1 and used to drive the movable plate 9 to translate. A driving mechanism 10 and a plurality of partitions 11 mounted on the movable plate 9, the movable plate 9 and the two adjacent partitions 11 are arranged to form a storage bin 12, a feeding port 13 connected to the card issuing bin 3 is provided at the bottom of the storage frame 8, the supporting rack 4 faces the card issuing bin 3, the card issuing bin 3 is vertically arranged to the feeding slope 2, the feeding end of the lower card issuing conveyor belt mechanism 6 is used to connect to the discharging end of the card issuing conveyor belt mechanism 5, a card issuing gap is formed between the upper card issuing conveyor belt mechanism 7 and the lower card issuing conveyor belt mechanism 6, and the card issuing gap is parallel to the feeding slope 2; when the discharging port of one of the storage bins 12 is connected to the card issuing bin 3 via the feeding port 13, the bottom of the storage frame 8 blocks the discharging ports of the remaining storage bins 12.
[0020] In actual application, each storage bin 12 stores a stack of cards stacked together, and one storage bin 12 is connected to the card issuing bin 3 via the feed port 13. The stacked cards in the storage bin 12 fall into the card issuing bin 3 under the action of gravity, and the bracket 4 supports the penultimate card of the card issuing bin 3 to a certain extent, so that the card separation conveyor belt mechanism 5 can output the cards one by one, and the output cards enter the card issuing gap, and the upper card issuing conveyor belt mechanism 7 and the lower card issuing conveyor belt mechanism 6 cooperate to convey the cards along the card issuing gap to achieve card issuing. When the current storage bin 12 has finished feeding the card issuing bin 3, the translation drive mechanism 10 drives the moving plate 9 to translate the position of a storage bin 12, so that the empty storage bin 12 moves away from the feed port 13, and the fully loaded storage bin 12 moves to the feed port 13, so as to realize the online non-stop supply of cards to the card issuing bin 3, and the operator can replenish the cards in the empty storage bin 12 in time. Since an inclined feeding slope 2 is provided, and the card issuing material bin 3 is arranged perpendicularly to the feeding slope 2, the stacked cards can be aligned sideways under the action of gravity, which is conducive to neatly stacking the cards and also to separating two adjacent cards, so that the cards can be issued one by one stably. The utility model can realize online non-stop card supply, which is convenient for operators to replenish materials, and output the bottom layer of cards through the card separation conveyor belt mechanism 5, thereby improving the efficiency of card issuing, and the stability of card supply and card issuing is good.
[0021] In this embodiment, the card issuing silo 3 includes a gantry 14 installed on the machine 1, a card issuing adjuster 15 installed on the gantry 14 and two silo plates 16 respectively arranged on both sides of the card issuing adjuster 15, the card issuing adjuster 15 is arranged corresponding to the card dispensing conveyor belt mechanism 5, and the supporting rack 4 is arranged corresponding to the card issuing adjuster 15.
[0022] In actual application, one of the storage bins 12 is connected to the card issuing bin 3 via the feed port 13, and the stacked cards in the storage bin 12 fall into the card issuing bin 3 under the action of gravity, so that the stacked cards fall between the card issuing adjuster 15, the support rack 4 and the two bin plates 16, and the conveyor belt of the card separating conveyor belt mechanism 5 rotates to output the cards at the bottom layer of the card issuing bin 3, so as to realize the conveyance of single-piece cards into the card issuing gap.
[0023] In this embodiment, the card issuing silo 3 further includes a spacing adjustment mechanism 17 installed on the gantry 14 and used to adjust the spacing between the two silo plates 16, and the silo plates 16 are slidably connected to the gantry 14; the movable plate 9 is provided with an adjustment slot 18, and the adjustment slot 18 is used to adjust the distance between two adjacent partitions 11; specifically, the partition 11 is locked on the movable plate 9 via a bolt assembly, and the bolt assembly passes through the adjustment slot 18; the spacing adjustment mechanism 17 can adopt a bidirectional screw module, and the two silo plates 16 are driven to move closer or farther from each other through the bidirectional screw module to adjust the width of the card issuing silo 3. In actual application, according to the width of the card, the spacing adjustment mechanism 17 adjusts the spacing between the two silo plates 16 to adjust the width of the card issuing silo 3, and correspondingly, the partition 11 moves along the adjustment slot 18 to adjust the horizontal position of the partition 11 on the movable plate 9, thereby adjusting the spacing between the two partitions 11, and then adjusting the width of the storage bin 12.
[0024] In this embodiment, the movable plate 9 is provided with scale lines 19, which are arranged along the extension direction of the adjustment slot 18. The scale lines 19 are provided for the operator to observe so that the operator can accurately adjust the width of the storage bin 12.
[0025] In this embodiment, a guide plate 20 is installed at the bottom of the hopper plate 16, and the guide plate 20 extends to one side of the card issuing gap. When the upper card issuing conveyor belt mechanism 7 cooperates with the lower card issuing conveyor belt mechanism 6 to convey the card, the card moves along the card issuing gap, and the two guide plates 20 respectively position and guide the two sides of the card, thereby improving the position accuracy and stability of the card movement.
[0026] In this embodiment, the machine 1 is equipped with a cover plate 21, which is located above the upper card issuing conveyor belt mechanism 7. This structural design, on the one hand, has a beautiful appearance, and on the other hand, it plays a protective role on the upper card issuing conveyor belt mechanism 7, thereby improving the safety performance of use.
[0027] Specifically, the card issuing regulator 15 belongs to the prior art and will not be described in detail here.
[0028] All technical features in this embodiment can be freely combined according to actual needs.
[0029] The above embodiments are preferred implementation schemes of the present invention. In addition, the present invention can also be implemented in other ways. Any obvious replacement without departing from the concept of the present technical solution is within the protection scope of the present invention.
Claims
1. A multi-bin card issuing machine, characterized in that: The invention comprises a machine (1), a feeding inclined surface (2) inclinedly arranged on the machine (1), a card issuing material bin (3) installed on the machine (1) and erected above the feeding inclined surface (2), a material support frame (4) installed on the machine (1) and inclinedly arranged, a card distributing conveyor belt mechanism (5) embedded in the feeding inclined surface (2), a lower card distributing conveyor belt mechanism (6) arranged at the output end of the card distributing conveyor belt mechanism (5), an upper card distributing conveyor belt mechanism (7) installed on the machine (1) and relatively arranged above the lower card distributing conveyor belt mechanism (6), a material storage frame (8) installed on the machine (1) and located above the card issuing material bin (3), a moving plate (9) slidably connected to the material storage frame (8), a translation driving mechanism (10) installed on the machine (1) and used for driving the moving plate (9) to translate, and a mounting device. A plurality of partitions (11) are arranged on a movable plate (9), the movable plate (9) and two adjacent partitions (11) are arranged to form a material storage bin (12), a material storage frame (8) is provided with a material supply port (13) connected to a card issuing bin (3) at the bottom, a material support frame (4) faces the card issuing bin (3), the card issuing bin (3) and the material supply slope (2) are arranged vertically, a material supply end of a lower card issuing conveyor belt mechanism (6) is used to connect with a material supply end of a card issuing conveyor belt mechanism (5), a card issuing gap is formed between an upper card issuing conveyor belt mechanism (7) and a lower card issuing conveyor belt mechanism (6), and the card issuing gap is parallel to the material supply slope (2); when the material supply port of one of the material storage bins (12) is connected to the card issuing bin (3) via the material supply port (13), the bottom of the material storage frame (8) blocks the material supply ports of the remaining material storage bins (12).
2. A multi-bin card issuing machine according to claim 1, characterized in that: The card issuing silo (3) comprises a gantry (14) mounted on the machine platform (1), a card issuing regulator (15) mounted on the gantry (14), and two silo plates (16) respectively arranged on both sides of the card issuing regulator (15); the card issuing regulator (15) is arranged correspondingly to the card dispensing conveyor belt mechanism (5); and the supporting frame (4) is arranged correspondingly to the card issuing regulator (15).
3. A multi-bin card issuing machine according to claim 2, characterized in that: The card issuing silo (3) further comprises a spacing adjustment mechanism (17) installed on the gantry (14) and used for adjusting the spacing between two silo plates (16), wherein the silo plates (16) are slidably connected to the gantry (14); the movable plate (9) is provided with an adjustment groove (18), and the adjustment groove (18) is used for adjusting the distance between two adjacent partition plates (11).
4. A multi-bin card issuing machine according to claim 3, characterized in that: The movable plate (9) is provided with scale lines (19), and the scale lines (19) are arranged along the extension direction of the adjustment groove (18).
5. The multi-bin card issuing machine according to claim 2, characterized in that: A guide plate (20) is arranged at the bottom of the material bin plate (16), and the guide plate (20) extends to one side of the card-issuing gap.
6. A multi-bin card issuing machine according to claim 1, characterized in that: The machine platform (1) is provided with a cover plate (21), and the cover plate (21) is located above the upper card issuing conveyor belt mechanism (7).
Citation Information
Patent Citations
A card issuing mechanism and a card issuing machine
CN109190723A