Novel food packaging code spraying device

By using worm motors and angle motors in food packaging injection device, automatic adjustment of inkjet direction and angle is achieved, which solves the limitations of existing devices that need to manually adjust the material direction when inkjet multi-angle injection, and improves the adaptability and stability of the equipment.

CN222973019UActive Publication Date: 2025-06-13MARKET SUPERVISION & ADMINISTRATION BUREAU OF RANGHULU DISTRICT PEOPLES GOVERNMENT OF DAQING CITY
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Patent Information

Application Number
CN202422092453.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-06-13
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The existing food packaging injection device needs to manually adjust the material direction when inkjetting multi-angle, which has certain limitations and cannot flexibly adapt to food packaging of different shapes.

Method used

The worm gear is driven by the worm motor on the side of the positioning seat to rotate, so that the inkjet inside the inkjet bracket can be adjusted in the direction, and the angle motor on the side of the angle frame can be used to drive the inkjet at the lower part of the angle table to adjust the angle, so as to automatically adjust the inkjet position according to the shape of the food packaging.

Benefits of technology

The adaptability of the equipment is increased, allowing it to flexibly adapt to different shapes of food packaging, and improves the flexibility and stability of injection coding.

✦ Generated by Eureka AI based on patent content.

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Abstract

A novel food packaging code spraying device comprises a conveying belt support, a cross beam, a guide frame, a guide rod, a clamping table wheel, a clamping table wheel motor, a worm frame, a worm and a positioning table, a driving wheel shaft groove is formed in the side portion of the conveying belt support and matched with a driving wheel, the driving wheel shaft groove is connected with the driving wheel, and the driving wheel rotates in the driving wheel shaft groove. The side portion of the driving wheel shaft groove is connected with the driving motor, the interior of the driving motor is connected with the driving wheel, the side portion of the conveying belt support is connected with the suspension wheel support, a suspension wheel shaft rod is arranged in the suspension wheel, the suspension wheel support adapts to the suspension wheel shaft rod, the suspension wheel support is connected with the suspension wheel shaft rod, and the suspension wheel shaft rod rotates in the suspension wheel support. The two driving wheels are connected through the conveying belt, the hanging wheel rotates in the conveying belt, and the side of the beam is connected with the beam support.
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Description

Technical Field

[0001] The utility model relates to the field of food packaging, in particular to a new food packaging inkjet coding device. Background Art

[0002] The existing patent (publication number: CN218054550U) proposes a new food packaging inkjet coding device. It includes a main body of the inkjet coding device, on the upper outer surface of which there is a frame. On both sides of the frame, there are adjusting components, and on one outer surface of the frame, there is an installation component. Inside the frame, there is a conveyor belt. The two threaded push rods are located on the outer surfaces of both sides of the adjusting component, and the two clamping plates are located on the outer surfaces of one ends of the two threaded push rods. However, in this device, "there are adjusting components on both sides of the frame", and the inkjet printer at the lower part of the adjusting component is used to code the materials. When the materials need to be coded at multiple angles, the operator needs to manually adjust the direction of the materials, which has certain limitations. Summary of the Invention

[0003] Aiming at the above deficiencies of the existing technology, the utility model provides a new food packaging inkjet coding device. The worm motor on the side of the positioning seat drives the worm wheel to rotate, so that the worm wheel drives the inkjet printer inside the inkjet printer bracket to adjust the direction, and cooperates with the angle motor on the side of the angle bracket to drive the inkjet printer under the angle table to adjust the angle, so that the device can adjust the inkjet position according to the shape of the food packaging, thereby increasing the adaptability of the device.

[0004] The purpose of the utility model is realized through the following technical solutions:

[0005] A new food packaging inkjet coding device includes a conveyor belt bracket, a cross beam, a guiding frame, a guiding rod, a clamping wheel, a clamping wheel motor, a worm bracket, a worm, and a positioning table. On the side of the conveyor belt bracket, there is a driving wheel shaft groove, which is adapted to the driving wheel. The driving wheel shaft groove is connected to the driving wheel, and the driving wheel rotates inside the driving wheel shaft groove. The side of the driving wheel shaft groove is connected to the driving motor, and the inside of the driving motor is connected to the driving wheel. The side of the conveyor belt bracket is connected to the hanging wheel bracket. Inside the hanging wheel, there is a hanging wheel shaft rod, and the hanging wheel bracket is adapted to the hanging wheel shaft rod. The hanging wheel bracket is connected to the hanging wheel shaft rod, and the hanging wheel shaft rod rotates inside the hanging wheel bracket. The two driving wheels are connected by a conveyor belt, and the hanging wheel rotates inside the conveyor belt. The side of the cross beam is connected to the cross beam bracket, and the cross beam bracket is connected to the side of the conveyor belt bracket. Inside the cross beam, there is a double-shaft motor, and inside the double-shaft motor, there is a threaded rod. On the side of the threaded rod, there is a central shaft groove, and the cross beam bracket is adapted to the central shaft groove. The cross beam bracket is connected to the central shaft groove, and the central shaft groove rotates inside the cross beam bracket. The upper part of the conveyor belt bracket is connected to the positioning seat, and both the cross beam bracket and the side of the positioning seat have guiding grooves.

[0006] The front part of the guide frame is connected to the guide rod. The guide groove is adapted to the guide rod. The guide groove is connected to the guide rod, and the guide rod slides inside the guide groove. The lower part of the guide rod is connected to the sleeve positioning frame. The sleeve positioning frame has a threaded cylinder inside. The threaded cylinder is threadedly connected to the side of the threaded rod. The upper part of the guide rod is connected to the clamping table. Two groups of clamping tables are corresponding in position. The side of the clamping table has a clamping wheel bracket. The clamping wheel bracket is adapted to the clamping wheel. The clamping wheel bracket is connected to the clamping wheel, and the clamping wheel rotates inside the clamping wheel bracket. The upper part of the clamping table is connected to the clamping wheel motor.

[0007] Inside the clamping wheel motor is connected to the clamping wheel. The upper part of the positioning seat has the clamping wheel motor. The clamping wheel motor is adapted to the support shaft. The clamping wheel motor is connected to the support shaft, and the support shaft rotates inside the clamping wheel motor. The side of the support shaft is connected to the worm gear. The upper part of the positioning seat is connected to the worm gear bracket. The worm gear bracket is adapted to the worm gear. The worm gear bracket is connected to the worm gear, and the worm gear rotates inside the worm gear bracket. The side of the positioning seat is connected to the worm shaft bracket. The worm shaft bracket is adapted to the worm shaft. Beneficial effects

[0008] 1. During the use of the food packaging inkjet coding device of the present utility model, the worm gear is driven to rotate by the worm gear motor on the side of the positioning seat, so that the worm gear drives the inkjet printer inside the inkjet printer bracket to adjust the direction, and cooperates with the angle motor on the side of the angle bracket to drive the inkjet printer under the angle table to adjust the angle, so that the device can adjust the inkjet position according to the shape of the food packaging, thereby increasing the adaptability of the device.

[0009] 2. During the use of the food packaging inkjet coding device of the present utility model, the threaded rod is driven to rotate by the double-shaft motor inside the cross beam, so that the threaded rod drives two groups of clamping wheels to clamp the food packaging, and cooperates with the clamping wheel motor on the upper part of the clamping table to drive the clamping wheel to rotate, so that the clamping wheel can adjust the direction of the food packaging according to actual needs, thereby further increasing the adaptability of the device.

[0010] 3. During the use of the food packaging inkjet coding device of the present utility model, the worm shaft inside is driven to rotate by the worm gear motor, and due to the transmission principle of the worm shaft and the worm gear having a self-locking function, the adjusted angle is maintained, thereby strengthening the stability of the device. Description of the drawings

[0011] Figure 1 It is a schematic structural diagram of the new food packaging inkjet coding device described in the present utility model.

[0012] Figure 2 It is a three-dimensional assembly schematic diagram of the conveyor belt bracket of the new food packaging inkjet coding device described in the present utility model.

[0013] Figure 3 It is a three-dimensional assembly schematic diagram of the hanging wheel bracket of the new food packaging inkjet coding device described in the present utility model.

[0014] Figure 4 This is a three-dimensional assembly schematic diagram of the crossbeam structure of the new food packaging inkjet coding device described in the present utility model.

[0015] Figure 5 This is a three-dimensional assembly schematic diagram of the guide rod structure of the new food packaging inkjet coding device described in the present utility model.

[0016] Figure 6 This is a three-dimensional assembly schematic diagram of the inkjet printer bracket structure of the new food packaging inkjet coding device described in the present utility model.

[0017] Figure 7 This is a three-dimensional assembly schematic diagram of the angle bracket structure of the new food packaging inkjet coding device described in the present utility model. Detailed implementation manners

[0018] The present utility model will be further described in detail below with reference to the drawings and embodiments:

[0019] Embodiment 1:

[0020] A new type of food packaging inkjet coding device, including a conveyor belt bracket 01, a cross beam 09, a guide frame 16, a guide rod 17, a clamping wheel 22, a clamping wheel motor 23, a worm bracket 27, a worm 28, and a positioning table 34. The side of the conveyor belt bracket 01 has a driving wheel shaft groove 02, which is adapted to the driving wheel 03. The driving wheel shaft groove 02 is connected to the driving wheel 03, and the driving wheel 03 rotates inside the driving wheel shaft groove 02. The side of the driving wheel shaft groove 02 is connected to the driving motor 04, and the inside of the driving motor 04 is connected to the driving wheel 03. The side of the conveyor belt bracket 01 is connected to the suspension wheel bracket 05. The inside of the suspension wheel 06 has a suspension wheel shaft rod 07, and the suspension wheel bracket 05 is adapted to the suspension wheel shaft rod 07. The suspension wheel bracket 05 is connected to the suspension wheel shaft rod 07, and the suspension wheel shaft rod 07 rotates inside the suspension wheel bracket 05. Two groups of driving wheels 03 are connected by a conveyor belt 08, and the suspension wheel 06 rotates inside the conveyor belt 08. The side of the cross beam 09 is connected to the cross beam bracket 10, and the cross beam bracket 10 is connected to the side of the conveyor belt bracket 01. The inside of the cross beam 09 is connected to the dual-axis motor 11, and the inside of the dual-axis motor 11 is connected to the threaded rod 12. During the use of the food packaging inkjet coding device, the threaded rod 12 is driven to rotate by the dual-axis motor 11 inside the cross beam 09, so that the threaded rod 12 drives two groups of clamping wheels 22 to clamp the food packaging, and cooperates with the clamping wheel motor 23 on the upper part of the clamping table 20 to drive the clamping wheel 22 to rotate, so that the clamping wheel 22 can adjust the direction of the food packaging according to actual needs, thereby further increasing the adaptability of the device. The side of the threaded rod 12 has a central shaft groove 13, and the cross beam bracket 10 is adapted to the central shaft groove 13. The cross beam bracket 10 is connected to the central shaft groove 13, and the central shaft groove 13 rotates inside the cross beam bracket 10. The upper part of the conveyor belt bracket 01 is connected to the positioning seat 14. During the use of the food packaging inkjet coding device, the worm gear 25 is driven to rotate by the worm motor 29 on the side of the positioning seat 14, so that the worm gear 25 drives the inkjet printer 39 inside the inkjet printer bracket 30 to adjust the direction, and cooperates with the angle motor 38 on the side of the angle bracket 36 to drive the inkjet printer 39 under the angle table 37 to adjust the angle, so that the device can adjust the inkjet position according to the shape of the food packaging, thereby increasing the adaptability of the device. Both the cross beam bracket 10 and the side of the positioning seat 14 have guide grooves 15.

[0021] Embodiment 2:

[0022] In the present utility model, the front part of the guide frame 16 is connected to the guide rod 17. The guide groove 15 is adapted to the guide rod 17. The guide groove 15 is connected to the guide rod 17, and the guide rod 17 slides inside the guide groove 15. The lower part of the guide rod 17 is connected to the sleeve positioning frame 18. The inside of the sleeve positioning frame 18 has a threaded cylinder 19, and the threaded cylinder 19 is threadedly connected to the side of the threaded rod 12. The upper part of the guide rod 17 is connected to the clamping table 20. The two groups of clamping tables 20 are in corresponding positions. The side of the clamping table 20 has a clamping wheel support 21. The clamping wheel support 21 is adapted to the clamping wheel 22. The clamping wheel support 21 is connected to the clamping wheel 22, and the clamping wheel 22 rotates inside the clamping wheel support 21. The upper part of the clamping table 20 is connected to the clamping wheel motor 23.

[0023] Embodiment 3:

[0024] In the present utility model, the inside of the clamping wheel motor 23 is connected to the clamping wheel 22. The upper part of the positioning seat 14 has the clamping wheel motor 23. The clamping wheel motor 23 is adapted to the support shaft 24. The clamping wheel motor 23 is connected to the support shaft 24, and the support shaft 24 rotates inside the clamping wheel motor 23. The side of the support shaft 24 is connected to the worm gear 25. The upper part of the positioning seat 14 is connected to the worm gear frame 26. The worm gear frame 26 is adapted to the worm gear 25. The worm gear frame 26 is connected to the worm gear 25, and the worm gear 25 rotates inside the worm gear frame 26. The side of the positioning seat 14 is connected to the worm shaft frame 27. The worm shaft frame 27 is adapted to the worm shaft 28.

[0025] Embodiment 4:

[0026] In the present utility model, the worm shaft frame 27 is connected to the worm shaft 28, and the worm shaft 28 rotates inside the worm shaft frame 27. The side of the worm shaft frame 27 is connected to the worm shaft motor 29. During the use of the food packaging inkjet coding device, the worm shaft 28 inside is driven by the worm shaft motor 29 to drive the worm gear 25 to rotate. Due to the transmission principle of the worm shaft 28 and the worm gear 25 having a self-locking function, the adjusted angle is maintained, thereby enhancing the stability of the device. The inside of the worm shaft motor 29 is connected to the worm shaft 28. The worm shaft 28 meshes below the worm gear 25. The upper part of the support shaft 24 is connected to the inkjet coding device support 30. The inside of the inkjet coding device support 30 is connected to the lead screw frame 31. The lead screw 32 is rotationally connected inside the lead screw frame 31. The front part of the lead screw frame 31 is connected to the lead screw motor 33. The inside of the lead screw motor 33 is connected to the lead screw 32.

[0027] Embodiment 5:

[0028] In the present utility model, the positioning table 34 is slidably connected inside the lead screw frame 31. The positioning table 34 is threadedly connected inside the lead screw 32. The lower part of the positioning table 34 is connected to the air cylinder 35. The lower part of the air cylinder 35 is connected to the angle frame 36. The angle table 37 is rotationally connected inside the angle frame 36. The side of the angle frame 36 is connected to the angle motor 38. The inside of the angle motor 38 is connected to the angle table 37. The lower part of the angle table 37 is connected to the inkjet coding device 39.

[0029] Embodiment 6:

[0030] Installation steps of the utility model: Rotate the driving wheel 03 inside the driving wheel shaft groove 02, fixedly connect the side of the driving wheel shaft groove 02 with the driving motor 04, fixedly connect the inside of the driving motor 04 with the driving wheel 03, fixedly connect the side of the transmission belt bracket 01 with the suspension wheel bracket 05, rotate the suspension wheel shaft rod 07 inside the suspension wheel bracket 05, connect the two driving wheels 03 through the transmission belt 08, rotate the suspension wheel 06 inside the transmission belt 08, fixedly connect the side of the cross beam 09 with the cross beam bracket 10, fixedly connect the cross beam bracket 10 to the side of the transmission belt bracket 01, fixedly connect the inside of the cross beam 09 with the dual-axis motor 11, fixedly connect the inside of the dual-axis motor 11 with the threaded rod 12, rotate the central shaft groove 13 inside the cross beam bracket 10, fixedly connect the upper part of the transmission belt bracket 01 with the positioning seat 14, fixedly connect the front part of the guide frame 16 with the guide rod 17, slide the guide rod 17 inside the guide groove 15, fixedly connect the lower part of the guide rod 17 with the sleeve positioning frame 18, threadedly connect the threaded cylinder 19 to the side of the threaded rod 12, fixedly connect the upper part of the guide rod 17 with the clamping table 20, align the positions of the two clamping tables 20, rotate the clamping table wheel 22 inside the clamping table wheel bracket 21, fixedly connect the upper part of the clamping table 20 with the clamping table wheel motor 23, fixedly connect the inside of the clamping table wheel motor 23 with the clamping table wheel 22, rotate the support shaft 24 inside the clamping table wheel motor 23, fixedly connect the side of the support shaft 24 with the worm gear 25, fixedly connect the upper part of the positioning seat 14 with the worm gear frame 26, rotate the worm gear 25 inside the worm gear frame 26, fixedly connect the side of the positioning seat 14 with the worm shaft frame 27, rotate the worm shaft 28 inside the worm shaft frame 27, fixedly connect the side of the worm shaft frame 27 with the worm shaft motor 29, fixedly connect the inside of the worm shaft motor 29 with the worm shaft 28, engage the worm shaft 28 below the worm gear 25, fixedly connect the upper part of the support shaft 24 with the inkjet printer bracket 30, fixedly connect the inside of the inkjet printer bracket 30 with the lead screw frame 31, rotationally connect the lead screw 32 inside the lead screw frame 31, fixedly connect the front part of the lead screw frame 31 with the lead screw motor 33, fixedly connect the inside of the lead screw motor 33 with the lead screw 32, slidably connect the positioning table 34 inside the lead screw frame 31, threadedly connect the positioning table 34 to the inside of the lead screw 32, fixedly connect the lower part of the positioning table 34 with the air cylinder 35, fixedly connect the lower part of the air cylinder 35 with the angle bracket 36, rotationally connect the angle table 37 inside the angle bracket 36, fixedly connect the side of the angle bracket 36 with the angle motor 38, fixedly connect the inside of the angle motor 38 with the angle table 37, and fixedly connect the lower part of the angle table 37 with the inkjet printer 39.

[0031] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A new type of food packaging coding device, characterized by : It comprises a conveyor belt support (01), a crossbeam (09), a guide frame (16), a guide rod (17), a clamping wheel (22), a clamping wheel motor (23), a worm frame (27), a worm (28), and a positioning platform (34). The conveyor belt support (01) has a driving wheel axle groove (02) on the side, the driving wheel axle groove (02) is adapted to the driving wheel (03), the driving wheel axle groove (02) is connected to the driving wheel (03), the driving wheel (03) rotates inside the driving wheel axle groove (02), the driving wheel axle groove (02) is connected to the driving motor (04), the driving motor (04) is connected to the driving wheel (03), the conveyor belt support (01) is connected to the suspension wheel support (05), the suspension wheel (06) has a suspension wheel axle rod (07) inside, the suspension wheel support (05) is adapted to the suspension wheel axle rod (07), the suspension wheel support (05) is connected to the suspension wheel support (05), and the suspension wheel support (05) is connected to the suspension wheel support (05). The wheel axle rod (07) is a suspension wheel axle rod (07) that rotates inside the suspension wheel bracket (05). The two sets of driving wheels (03) are connected via a transmission belt (08). The suspension wheel (06) rotates inside the transmission belt (08). The side of the crossbeam (09) is connected to the crossbeam bracket (10). The crossbeam bracket (10) is connected to the side of the transmission belt bracket (01). The inside of the crossbeam (09) is connected to the dual-axis motor (11). The inside of the dual-axis motor (11) is connected to the threaded rod (12). The side of the threaded rod (12) has a central shaft groove (13). The crossbeam bracket (10) is adapted to the central shaft groove (13). The crossbeam bracket (10) is connected to the central shaft groove (13). The central shaft groove (13) rotates inside the crossbeam bracket (10). The upper part of the transmission belt bracket (01) is connected to the positioning seat (14). The sides of the crossbeam bracket (10) and the positioning seat (14) are both provided with guide grooves (15).

2. The novel food packaging coding device according to claim 1 is characterized in that The front part of the guide frame (16) is connected to the guide rod (17), the guide groove (15) is adapted to the guide rod (17), the guide groove (15) is connected to the guide rod (17), the guide rod (17) slides inside the guide groove (15), the lower part of the guide rod (17) is connected to the sleeve positioning frame (18), the sleeve positioning frame (18) has a threaded tube (19) inside, the threaded tube (19) is threadedly connected to the side of the threaded rod (12), the upper part of the guide rod (17) is connected to the clamping platform (20), the two groups of clamping platforms (20) are located in corresponding positions, the side of the clamping platform (20) has a clamping platform wheel bracket (21), the clamping platform wheel bracket (21) is adapted to the clamping platform wheel (22), the clamping platform wheel bracket (21) is connected to the clamping platform wheel (22), the clamping platform wheel (22) rotates inside the clamping platform wheel bracket (21), and the upper part of the clamping platform (20) is connected to the clamping platform wheel motor (23).

3. The novel food packaging coding device according to claim 2 is characterized in that The clamping wheel motor (23) is connected to the clamping wheel (22) inside, the positioning seat (14) has a clamping wheel motor (23) on the upper part, the clamping wheel motor (23) is adapted to the support shaft (24), the clamping wheel motor (23) is connected to the support shaft (24), the support shaft (24) rotates inside the clamping wheel motor (23), the side of the support shaft (24) is connected to the worm gear (25), the upper part of the positioning seat (14) is connected to the worm gear frame (26), the worm gear frame (26) is adapted to the worm gear (25), the worm gear frame (26) is connected to the worm gear (25), the worm gear (25) rotates inside the worm gear frame (26), the side of the positioning seat (14) is connected to the worm gear frame (27), the worm gear frame (27) is adapted to the worm (28).

4. The novel food packaging coding device according to claim 3 is characterized in that The worm frame (27) is connected to the worm (28), the worm (28) rotates inside the worm frame (27), the side of the worm frame (27) is connected to the worm motor (29), the worm motor (29) is connected to the worm (28), the worm (28) is meshed at the bottom of the worm wheel (25), the upper part of the bracket shaft (24) is connected to the inkjet printer bracket (30), the inkjet printer bracket (30) is connected to the lead screw frame (31), the lead screw (32) is rotatably connected inside the lead screw frame (31), the front part of the lead screw frame (31) is connected to the lead screw motor (33), and the lead screw motor (33) is connected to the lead screw (32) inside.

5. The novel food packaging coding device according to claim 4 is characterized in that The positioning platform (34) is slidably connected inside the screw frame (31), the positioning platform (34) is threadedly connected inside the screw (32), the lower part of the positioning platform (34) is connected to the cylinder (35), the lower part of the cylinder (35) is connected to the angle frame (36), the angle platform (37) is rotatably connected inside the angle frame (36), the side of the angle frame (36) is connected to the angle motor (38), the inside of the angle motor (38) is connected to the angle platform (37), and the lower part of the angle platform (37) is connected to the inkjet printer (39).

Citation Information

Patent Citations

  • Code spraying device for food processing

    CN218054550U