Bottle row continuous production system

By setting up an external printing mechanism and a pushing mechanism in the bottle row continuous production system, combined with lifting drive parts and support parts, the problem of low efficiency in changing the molding mold is solved, efficient and convenient replacement of batch numbers and dates is achieved, and production efficiency and positioning accuracy are improved.

CN223314436UActive Publication Date: 2025-09-09TRUKING TECH LTD
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Patent Information

Application Number
CN202422537269.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-09-09
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

In existing bottle-row continuous production systems, changing batch numbers and dates with molding molds is inefficient, inconvenient, and prone to errors. This is especially true in multi-mode continuous blow-fill-seal machines and single-mode continuous blow-fill-seal machines, where low efficiency and inconvenient operation are common.

Method used

A continuous production system for bottle rows is designed, including a continuous blowing, filling and sealing machine, a continuous bottle row conveying mechanism, a printing mechanism and a slitting mechanism. The printing mechanism is located outside and pushes the bottle row to move through a pushing mechanism. Two sets of printing mechanisms are used to print on the upper and lower sides of the bottle row respectively. A detachable printing component and a lifting drive are used for precise positioning and hot stamping. Support parts protect the bottle body to avoid damage.

Benefits of technology

It achieves efficient batch number and date replacement, reduces the difficulty of disassembly and assembly of the molding mold, avoids repeated positioning, improves production efficiency and operational convenience, and ensures accurate positioning of the bottle row and hot stamping quality.

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Abstract

The utility model discloses a bottle row continuous production system, which relates to the technical field of pharmaceutical equipment and packaging equipment and comprises a continuous blowing, filling and sealing all-in-one machine, a bottle row continuous conveying mechanism, a printing mechanism and a slitting mechanism. The material pushing mechanism 36 is arranged at the front end of the slitting mechanism, the first supporting piece 4 is used for bearing waste edges of the bottle rows, the second supporting piece 5 is used for bearing bottle bodies of the bottle rows, and the material pushing mechanism 36 is used for abutting against the upper surfaces of the waste edges of the bottle rows and pushing the bottle rows to move on the first supporting piece 4 and the second supporting piece 5. And the pushing mechanism 36 pushes the bottle rows to move to the printing mechanism and the slitting mechanism. The bottle row continuous production system has the advantages of being convenient to operate and reasonable in layout.
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Description

Technical Field

[0001] The utility model belongs to the technical field of pharmaceutical and packaging equipment, and in particular relates to a bottle row continuous production system. Background Art

[0002] The Chinese patent application with publication number CN220661686U discloses a continuous blow-fill-seal device, such as Figure 8 As shown, the existing bottle row continuous production conveying and slitting mechanism only includes a continuous blow-fill-seal machine 100, a bottle row continuous conveying mechanism 200, and a slitting mechanism 300, which are connected in sequence. Chinese patent application No. CN217894251U discloses a bottle row positioning and guiding device for blow-fill-seal equipment.

[0003] Bottles formed by a BFS machine require engraving of production batch numbers and dates. This is typically accomplished by replacing the markings on the machine's forming molds. Multi-mode continuous BFS machines typically have 20 sets of forming molds. Replacing the batch number and date markings on each mold daily is inefficient and prone to errors. Single-mode continuous BFS machines typically have fixtures located beneath the forming molds, which are located high, making marking changes inconvenient and inefficient. Utility Model Content

[0004] The technical problem to be solved by the utility model is to overcome the deficiencies of the prior art and provide a bottle row continuous production system which is easy to operate and has a reasonable layout.

[0005] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0006] A continuous production system for bottle rows includes a continuous blowing, filling and sealing machine, a continuous bottle row conveying mechanism, a printing mechanism and a slitting mechanism that are connected in sequence, and also includes a pushing mechanism 36 arranged at the front end of the slitting mechanism, a first support member 4 for supporting the waste edge of the bottle row and a second support member 5 for supporting the bottle body of the bottle row. The pushing mechanism 36 is used to abut against the upper surface of the waste edge of the bottle row and push the bottle row to move on the first support member 4 and the second support member 5. The pushing mechanism 36 pushes the bottle row to move to the printing mechanism and the slitting mechanism.

[0007] As a further improvement of the above technical solution:

[0008] There are two groups of printing mechanisms and they are arranged in sequence along the bottle conveying path. The positioning parts 3 of the first group of printing mechanisms are set above the printing assembly 2, and the positioning parts 3 of the second group of printing mechanisms are set below the printing assembly 2 to achieve printing on the upper and lower sides of the bottle row.

[0009] The printing mechanism includes a first mounting seat 1, a printing assembly 2, a positioning member 3, a first lifting drive member 7, a hot stamping block 8 and a second lifting drive member 9. The first mounting seat 1 is provided with a first support member 4 and a second support member 5. The first mounting seat 1 is provided with an avoidance hole 6. The positioning member 3 is connected to the first lifting drive member 7, and the hot stamping block 8 is connected to the second lifting drive member 9. The printing assembly 2 is detachably mounted on the hot stamping block 8. The positioning member 3 and the printing assembly 2 are arranged opposite to each other on both sides of the avoidance hole 6, and the positioning is precise, so as to realize hot stamping of the bottle row.

[0010] The second support member 5 includes a top portion 10 and arc portions 11 provided on both sides of the top portion 10 . The arc portions 11 are used to match and support the side walls of the bottle body, position the bottle body, and avoid damaging the bottle body.

[0011] The printing assembly 2 is provided with letter grains 12, and the positioning member 3 is provided with a protrusion 13 for docking with the letter grains 12, so that the positioning is accurate and the hot stamping of the bottle row is achieved.

[0012] The printing assembly 2 includes a second mounting seat 14, a base 18 and a pressure plate 19. The base 18 is detachably mounted on the second mounting seat 14. A first protrusion 17 is provided on the side of the base 18. The first protrusion 17 slides with 16 of the base 18. A second protrusion 20 is provided on the upper surface of the base 18. A mounting groove 21 for mounting the type grain 12 is provided on the second protrusion 20. The type grain 12 is provided with a third protrusion 23. The pressure plate 19 and the base 18 are detachably connected by a first locking member 15 for easy disassembly and assembly.

[0013] The mounting slots 21 are arranged in two rows side by side, so as to realize the printing of two rows of fonts.

[0014] A positioning portion 24 is provided on the base 18 , and a positioning groove 25 matching the positioning portion 24 is provided on the bottom of the pressing plate 19 , so that the positioning is accurate and the assembly is convenient.

[0015] A second slide 26 is provided on both sides of the ironing block 8. The printing assembly 2 also includes a bending plate 27, which is fixed to both sides of the second mounting seat 14 through a second locking member 22. The bending portion 28 of the bending plate 27 is docked with the second slide 26 for easy docking and installation.

[0016] It also includes a bracket 29, the first mounting seat 1 is fixed on the bracket 29, the bracket 29 is connected to the first mounting plate 30, the first mounting plate 30 is connected to the second mounting plate 32 through the column 31, the column 31 is provided with a sliding sleeve 33, the sliding sleeve 33 is connected to the first lifting seat 34 and the second lifting seat 35, the first lifting drive member 7 is fixed on the first mounting plate 30, the second lifting drive member 9 is fixed on the second mounting plate 32, the first lifting seat 34 is connected to the driving rod and positioning member 3 of the first lifting drive member 7, the second lifting seat 35 is connected to the driving rod and printing assembly 2 of the second lifting drive member 9, so as to realize the positioning and hot stamping of the bottle row.

[0017] Compared with the prior art, the advantages of the present invention are:

[0018] The utility model discloses a continuous production system for bottle rows, wherein the printing mechanism is located outside the continuous blowing, filling and sealing machine, which is convenient for operation of the printing mechanism and reduces the difficulty of disassembly and assembly. When the production batch number and date on the bottle row need to be replaced, there is no need to disassemble and assemble the forming mold of the continuous blowing, filling and sealing machine, and only the printing mechanism needs to be replaced. The weight of the forming mold does not require frequent manual disassembly and assembly, and the heavier forming mold is conducive to ensuring the container molding effect; the printing mechanism is located between the bottle row continuous conveying mechanism and the slitting mechanism, and the connected bottle rows are printed with fonts before being cut. The layout is reasonable, and compared with cutting first and then printing fonts, multiple repeated positioning of the bottle row is avoided, and the speed matching of the printing mechanism and the slitting mechanism is facilitated; the bottle row continuous conveying mechanism is used to cache the bottle row, so that the printing mechanism and the slitting mechanism can match the speed of the continuous blowing, filling and sealing machine, thereby achieving high-efficiency production; the bottle row is pushed to move by the pushing mechanism 36 to ensure that the bottle row conveying process does not interfere with the printing mechanism and the slitting mechanism, and the bottle row is supported by the first support member 3 and the second support member 5 to avoid damage to the bottle row during bottle row conveying. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 This is a structural diagram of a bottle conveyor according to the utility model.

[0020] Figure 2 This is a schematic structural diagram of a printing mechanism of the present invention when the first supporting member is located at the bottom;

[0021] Figure 3 This is a schematic structural diagram of a printing mechanism of the present invention when the first supporting member is located at the top;

[0022] Figure 4 This is a schematic diagram of a first positioning member of the present invention;

[0023] Figure 5 This is a structural diagram of a printing assembly of the present invention;

[0024] Figure 6 This is a structural diagram of a printing assembly of the present invention when replacing type particles;

[0025] Figure 7 This is a structural schematic diagram of a pressing plate of the present invention after being disassembled from a base;

[0026] Figure 8 The figure is a schematic diagram of the structure of an existing bottle row continuous production conveying and cutting system.

[0027] Description of the reference numerals in the figures of the present invention: 1. first mounting seat; 2. printing assembly; 3. positioning member; 4. first supporting member; 5. second supporting member; 6. avoidance hole; 7. first lifting drive member; 8. ironing block; 9. second lifting drive member; 10. top; 11. arc portion; 12. letter; 13. protrusion; 14. second mounting seat; 15. first locking member; 16. first slide; 17. first protrusion; 18. base; 19. pressing plate; 20. second protrusion; 21. mounting groove; 2 2. Second locking member; 23. Third protrusion; 24. Positioning portion; 25. Positioning groove; 26. Second slide groove; 27. Bending plate; 28. Bending portion; 29. ​​Bracket; 30. First mounting plate; 31. Post; 32. Second mounting plate; 33. Sliding sleeve; 34. First lifting seat; 35. Second lifting seat; 36. Pushing mechanism; 37. Bottle waste edge; 38. Bottle body; 39. Stopper; 100. Multi-mode continuous blowing, filling and sealing machine; 200. Bottle continuous conveying mechanism; 300. Cutting mechanism. DETAILED DESCRIPTION

[0028] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.

[0029] like Figures 1 to 7 As shown, a continuous production system for bottle rows includes a continuous blowing, filling and sealing machine (not shown in the figure), a bottle row continuous conveying mechanism (not shown in the figure), a printing mechanism and a slitting mechanism (not shown in the figure) that are connected in sequence, and also includes a pushing mechanism 36 arranged at the front end of the slitting mechanism, a first support member 4 for carrying the waste edge 37 of the bottle row and a second support member 5 for carrying the bottle body 38 of the bottle row. The pushing mechanism 36 is used to abut against the upper surface of the waste edge of the bottle row and push the bottle row to move on the first support member 4 and the second support member 5. A convex point is provided on the waste edge of the bottle row. The pushing mechanism 36 abuts against one side of the convex point and moves the bottle row by pushing the convex point. The pushing mechanism 36 pushes the bottle row to the printing mechanism and the slitting mechanism.

[0030] The printing mechanism is located outside the continuous blowing, filling and sealing machine, which is convenient for operation and reduces the difficulty of disassembly and assembly. When the production batch number and date on the bottle row need to be replaced, there is no need to disassemble the forming mold of the continuous blowing, filling and sealing machine. The weight of the forming mold does not require frequent manual disassembly and assembly. The heavier forming mold is conducive to ensuring the container molding effect; the printing mechanism is located between the bottle row continuous conveying mechanism and the slitting mechanism. The connected bottle rows are printed with fonts and then cut. The layout is reasonable. Compared with cutting first and then printing fonts, it avoids repeated positioning of the bottle row and facilitates speed matching of the printing mechanism and the slitting mechanism; the bottle row continuous conveying mechanism is used to cache the bottle row, so that the printing mechanism and the slitting mechanism can match the speed of the continuous blowing, filling and sealing machine to achieve high-efficiency production; the bottle row is pushed to move by the pushing mechanism 36 to ensure that the bottle row conveying process does not interfere with the printing mechanism and the slitting mechanism, and the bottle row is supported by the first support member 3 and the second support member 5 to avoid damage to the bottle row during bottle row conveyance.

[0031] The printing mechanism can be a bottle row hot stamping mechanism, a coding mechanism, or a laser printing mechanism. Since the printing mechanism is arranged outside the continuous blowing, filling and sealing machine and in front of the slitting mechanism, it is convenient to replace the characters required for hot stamping on the printing mechanism, debug the laser printing, or replace the materials of the coding mechanism. It has stronger manual operability and can perform continuous operations on multiple rows of bottles connected together to achieve high-efficiency production.

[0032] There are two groups of printing mechanisms and they are arranged in sequence along the bottle conveying path. The positioning parts 3 of the first group of printing mechanisms are set above the printing assembly 2, and the positioning parts 3 of the second group of printing mechanisms are set below the printing assembly 2 to achieve printing on the upper and lower sides of the bottle row.

[0033] The printing mechanism includes a first mounting seat 1, a printing assembly 2, a positioning member 3, a first lifting drive member 7, a hot plate 8 and a second lifting drive member 9. The first mounting seat 1 is provided with a first support member 4 and a second support member 5. The first mounting seat 1 is provided with an avoidance hole 6. The positioning member 3 is connected to the first lifting drive member 7, and the hot plate 8 is connected to the second lifting drive member 9. The printing assembly 2 can be detachably mounted on the hot plate 8, and the positioning member 3 and the printing assembly 2 are arranged opposite to each other on both sides of the avoidance hole 6.

[0034] The positioning member 3 and the printing assembly 2 are used to clamp the bottle row on both sides of the avoidance hole 6 to position and realize hot stamping of the bottle row. The printing assembly 2 can be disassembled and assembled from the hot stamping block 8 to complete the replacement of the printing assembly 2 and realize the replacement of the production batch number and date on the bottle row. During hot stamping, the waste edges on both sides of the bottle row are supported by the first support member 4, and the bottle bodies in front and behind the bottle row are supported by the second support member 5. At this time, the pushing mechanism 36 does not move and abuts against the upper surface of the waste edge of the bottle row, avoiding the movement of the bottle row during hot stamping, ensuring accurate positioning and beautiful hot stamping fonts.

[0035] The second support member 5 includes a top 10 and arc portions 11 on either side of the top 10. The arc portions 11 are used to align with and support the side walls of the bottles, positioning the bottles and preventing damage. The printing assembly 2 is provided with lettering 12, and the positioning member 3 is provided with bumps 13 for docking with the lettering 12, ensuring precise positioning and achieving hot stamping on the bottles.

[0036] The printing assembly 2 includes a second mounting base 14, a base 18, and a pressure plate 19. The base 18 is detachably mounted on the second mounting base 14. A first protrusion 17 is provided on the side of the base 18, which slides with the 16 of the base 18. A second protrusion 20 is provided on the upper surface of the base 18, and a mounting groove 21 for mounting the type grain 12 is provided on the second protrusion 20. The type grain 12 is provided with a third protrusion 23. The pressure plate 19 and the base 18 are detachably connected by a first locking member 15, which facilitates assembly and disassembly. By loosening the first locking member 15, the pressure plate 19 is removed from the base 18, and then the type grain 12 is removed from the mounting groove 21 for replacement. The pressure plate 19 is then assembled and the first locking member 15 is tightened to complete the type grain replacement. A stopper 39 is provided at one end of the second mounting base 14 to block the base 18 after it is inserted into place.

[0037] The mounting grooves 21 are arranged in two rows side by side to realize the printing of two columns of fonts. A positioning portion 24 is provided on the base 18, and a positioning groove 25 matching the positioning portion 24 is provided at the bottom of the pressing plate 19. The positioning is precise and easy to assemble. A second slide groove 26 is provided on both sides of the ironing block 8. The printing assembly 2 also includes a bending plate 27. The bending plate 27 is fixed to both sides of the second mounting seat 14 through a second locking member 22. The bending portion 28 of the bending plate 27 is docked with the second slide groove 26 for easy docking and installation.

[0038] It also includes a bracket 29, the first mounting seat 1 is fixed on the bracket 29, the bracket 29 is connected to the first mounting plate 30, the first mounting plate 30 is connected to the second mounting plate 32 through the column 31, the column 31 is provided with a sliding sleeve 33, the sliding sleeve 33 is connected to the first lifting seat 34 and the second lifting seat 35, the first lifting drive member 7 is fixed on the first mounting plate 30, the second lifting drive member 9 is fixed on the second mounting plate 32, the first lifting seat 34 is connected to the driving rod and positioning member 3 of the first lifting drive member 7, the second lifting seat 35 is connected to the driving rod and printing assembly 2 of the second lifting drive member 9, so as to realize the positioning and hot stamping of the bottle row.

[0039] Although the present invention has been disclosed above with reference to preferred embodiments, this is not intended to limit the present invention. Any person skilled in the art can, without departing from the scope of the present invention, utilize the technical content disclosed above to make many possible changes and modifications to the present invention, or modify it into equivalent embodiments with equivalent variations. Therefore, any simple modifications, equivalent variations, and modifications made to the above embodiments based on the technical essence of the present invention, without departing from the content of the present invention, should fall within the scope of protection of the present invention.

Claims

1. A bottle row continuous production system, characterized in that: The invention comprises a continuous blowing, filling and sealing integrated machine, a bottle row continuous conveying mechanism, a printing mechanism and a slitting mechanism which are connected in sequence, and also comprises a pushing mechanism (36) arranged at the front end of the slitting mechanism, a first support member (4) for carrying the waste edge of the bottle row and a second support member (5) for carrying the bottle body of the bottle row, wherein the pushing mechanism (36) is used to abut against the upper surface of the waste edge of the bottle row and push the bottle row to move on the first support member (4) and the second support member (5), and the pushing mechanism (36) pushes the bottle row to move to the printing mechanism and the slitting mechanism.

2. A bottle row continuous production system as claimed in claim 1, characterized in that: The printing mechanisms are divided into two groups and are arranged in sequence along the bottle conveying path. The positioning members (3) of the first group of printing mechanisms are arranged above the printing assembly (2), and the positioning members (3) of the second group of printing mechanisms are arranged below the printing assembly (2).

3. A bottle row continuous production system as claimed in claim 1, characterized in that: The printing mechanism comprises a first mounting seat (1), a printing assembly (2), a positioning member (3), a first lifting drive member (7), a hot plate (8) and a second lifting drive member (9); the first mounting seat (1) is provided with a first supporting member (4) and a second supporting member (5); a avoidance hole (6) is provided in the first mounting seat (1); the positioning member (3) is connected to the first lifting drive member (7); the hot plate (8) is connected to the second lifting drive member (9); the printing assembly (2) is detachably mounted on the hot plate (8); the positioning member (3) and the printing assembly (2) are arranged opposite to each other on both sides of the avoidance hole (6).

4. A bottle row continuous production system as claimed in claim 3, characterized in that: The second support member (5) comprises a top portion (10) and arc portions (11) arranged on both sides of the top portion (10), and the arc portions (11) are used to match and support the side walls of the bottle body.

5. The bottle row continuous production system according to claim 3, characterized in that: The printing assembly (2) is provided with character particles (12), and the positioning member (3) is provided with a protrusion (13) for docking with the character particles (12).

6. A bottle row continuous production system as claimed in claim 3, characterized in that: The printing assembly (2) comprises a second mounting seat (14), a base (18) and a pressing plate (19); the base (18) is detachably mounted on the second mounting seat (14); a first protrusion (17) is provided on the side of the base (18); the first protrusion (17) is slidably matched with the (16) of the base (18); a second protrusion (20) is provided on the upper surface of the base (18); a mounting groove (21) for mounting a character particle (12) is provided on the second protrusion (20); the character particle (12) is provided with a third protrusion (23); the pressing plate (19) and the base (18) are detachably connected via a first locking member (15).

7. A bottle row continuous production system as claimed in claim 6, characterized in that: The installation grooves (21) are arranged in two rows side by side.

8. The bottle row continuous production system according to claim 6, characterized in that: A positioning portion (24) is provided on the base (18), and a positioning groove (25) matching the positioning portion (24) is provided on the bottom of the pressing plate (19).

9. The bottle row continuous production system according to claim 6, characterized in that: The ironing block (8) is provided with a second slide groove (26) on both sides. The printing assembly (2) further comprises a bending plate (27). The bending plate (27) is fixed to both sides of the second mounting seat (14) through a second locking member (22). The bending portion (28) of the bending plate (27) is docked with the second slide groove (26).

10. The bottle row continuous production system according to claim 3, characterized in that: The invention also includes a bracket (29), wherein the first mounting seat (1) is fixed on the bracket (29), the bracket (29) is connected to the first mounting plate (30), the first mounting plate (30) is connected to the second mounting plate (32) through the column (31), the column (31) is provided with a sliding sleeve (33), the sliding sleeve (33) is connected to the first lifting seat (34) and the second lifting seat (35), the first lifting drive member (7) is fixed on the first mounting plate (30), the second lifting drive member (9) is fixed on the second mounting plate (32), the first lifting seat (34) is connected to the driving rod and the positioning member (3) of the first lifting drive member (7), and the second lifting seat (35) is connected to the driving rod and the printing assembly (2) of the second lifting drive member (9).

Citation Information

Patent Citations

  • Bottle row positioning and guiding device for blowing, filling and sealing equipment

    CN217894251U

  • Continuous blowing, filling and sealing equipment

    CN220661686U