Automatic discharging mechanism for glass bottle production

By designing a glass bottle production automatic cutting mechanism with multiple sets of limiting plates and cutting components, the problems of poor limiting effect and insufficient adaptability during the pre-art glass bottle cutting process are solved, and the function of stabilizing the cutting of the glass bottle and adapting to different diameters is realized, and the operation stability of the equipment is improved.

CN222989159UActive Publication Date: 2025-06-17SHANXI JIAJIAZHUANG TENGFEI GLASS PRODUCTS CO LTD
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Patent Information

Application Number
CN202420955668.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-06
Publication Date
2025-06-17
Estimated Expiration
2034-05-06

AI Technical Summary

Technical Problem

The existing automatic feeding mechanism for glass bottle production has shortcomings in limiting effect and adapting to glass bottles with different diameters, resulting in glass bottles being easily dropped during the feeding process and poor equipment operation stability.

Method used

An automatic discharge mechanism including multiple sets of limiting plates, fixing frames, discharge components and conveying components is designed. The movement of the push plate and the intercepting plate is driven by the cylinder, and combined with the use of the adjustment motor and the transmission screw, the function of stably discharge the glass bottle and adapting to different diameters is achieved.

Benefits of technology

It improves the stable discharge effect of glass bottles, enhances the limit accuracy and adaptability of the equipment, and improves the overall operating stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic discharging mechanism for glass bottle production. The automatic discharging mechanism comprises a plurality of sets of limiting plates, a fixing frame, a discharging assembly and a conveying assembly. According to the glass bottle feeding device, the discharging assembly is arranged, a pushing plate is driven by an air cylinder to move so that glass bottles can be pushed to the position above a connecting plate, under the arrangement of balls on the surface of the connecting plate, friction between the glass bottles and the connecting plate can be reduced, discharging of the glass bottles is facilitated, and a first conveying rod and a second conveying rod are driven by a second motor to rotate; the glass bottles can be transferred to the second conveying belt, automatic discharging of the glass bottles is completed, stable automatic discharging of the glass bottles is improved, a first motor is used for driving a transmission lead screw to rotate, the transmission lead screw rotates to drive two sets of lead screw nuts to be close to or away from each other, and the lead screw nuts move to drive a first conveying rod and a second conveying rod to move; and the distance between the first conveying rod and the second conveying rod can be adjusted, automatic discharging of glass bottles with different calibers is facilitated, and the practicability of the equipment is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field related to the production of glass bottles, and specifically relates to an automatic blanking mechanism for the production of glass bottles. Background Art

[0002] In daily life, when packaging beverages, alcohol, etc. that people can see everywhere, most of them use glass bottles. Glass bottles can be reused repeatedly, have good corrosion resistance and acid corrosion resistance, and are suitable for packaging acidic substances. When manufacturing glass bottles, in order to improve the production efficiency of glass bottle belts, an automatic blanking mechanism for the production of glass bottles is required to assist in quickly and conveniently blanking glass bottles.

[0003] The prior art has the following deficiencies: In the "automatic blanking mechanism for the production of glass bottles" with the publication number of CN217707914U in the prior art, "by setting structures such as a conveying component, side plates, a driving motor, a first rotating shaft, a roller, a fixing frame, a second rotating shaft, a material receiving seat, a push rod motor, a first bevel gear, a second bevel gear, and a transmission component, etc., where the driving motor can drive the roller and the fixing frame to rotate, the fixing frame drives the material receiving seat to rotate, and the bottle mouth clamping groove on the material receiving seat is convenient for clamping the bottle mouth of the glass bottle, so that the glass bottle can be conveyed, and it is convenient to lower the glass bottle from a high place to the conveying component, and the push rod motor can drive the second bevel gear to switch meshing with the transmission component, so that it is convenient for the conveying component to rotate intermittently, thereby facilitating the equidistant placement and conveying of glass bottles";

[0004] However, when the above device is used, the glass bottle is clamped by the bottle mouth clamping groove, and the limiting effect on the glass bottle is poor, and the glass bottle is easily dropped during the blanking process of the glass bottle. Moreover, the size of the bottle mouth clamping groove is fixed, which is not convenient for automatically blanking glass bottles with different diameters, and the practicability is poor. In addition, when placing the glass bottle, it is necessary to stop the conveying component, but the conveying component rotates with a certain inertia, which is not convenient for the subsequent meshing of the bevel gear and the transmission component, and the overall operation stability of the device is poor. Summary of the Utility Model

[0005] The purpose of the utility model is to provide an automatic blanking mechanism for the production of glass bottles to solve the problems raised in the above background art.

[0006] To achieve the above purpose, the utility model provides the following technical solution: An automatic blanking mechanism for the production of glass bottles includes multiple groups of limiting plates, a fixing frame, a blanking component, and a conveying component. The fixing frame is installed on the side wall of the limiting plate through bolts. The blanking component is installed between the limiting plates. The conveying component is installed between the limiting plates and is located on one side of the blanking component;

[0007] The blanking assembly includes a cylinder, a pushing plate, an intercepting plate, a limiting frame, a connecting plate and an adjusting part. The cylinder is installed on the inner wall of the fixed frame by bolts. The pushing plate is installed at the output end of the cylinder. The intercepting plate is installed at the top of the limiting plate by bolts. The limiting frame is installed on the side wall of the intercepting plate by bolts. The connecting plate is installed between the limiting plates by bolts. The adjusting part is installed below the limiting frame.

[0008] As a further preference of this technical solution, the adjusting part includes a first motor, a transmission lead screw, two lead screw nuts, a connecting rod, a second motor, a first feeding rod and a second feeding rod. The first motor is installed on the side wall of the limiting frame by bolts. The transmission lead screw is installed at the output end of the first motor. The two lead screw nuts are symmetrically sleeved and installed outside the transmission lead screw. The connecting rod is installed at the bottom end of the lead screw nut by bolts. The second motor is installed at the bottom end of the connecting rod by bolts. The first feeding rod is installed at the output end of the second motor. The second feeding rod is installed at the output end of the second motor and is located on one side of the first feeding rod.

[0009] As a further preference of this technical solution, the pushing plate is slidably connected to the intercepting plate. The pushing plate is in a U-shaped structure. Multiple groups of balls are provided on the top surface of the connecting plate. The bottom of the limiting frame is open.

[0010] As a further preference of this technical solution, the transmission lead screw penetrates through the limiting frame and extends into the interior. Two groups of external threads are provided on the surface of the transmission lead screw. The two groups of external threads are arranged in opposite directions. The lead screw nut is slidably connected to the inner top of the limiting frame. The overall length of the first feeding rod is longer than that of the second feeding rod. Both the first feeding rod and the second feeding rod are in a spiral structure.

[0011] As a further preference of this technical solution, multiple groups of support legs are installed at the bottom end of the limiting plate by bolts. The fixed frame is in an L-shaped structure. Multiple groups of limiting plates are symmetrically arranged.

[0012] As a further preference of this technical solution, the conveying assembly includes multiple groups of third motors, multiple groups of transmission rollers, a first conveyor belt and a second conveyor belt. The multiple groups of third motors are installed on the side wall of the limiting plate by bolts. The multiple groups of transmission rollers are installed at the output end of the third motors. The first conveyor belt is sleeved and installed outside the transmission rollers. The second conveyor belt is sleeved and installed outside the transmission rollers and is located on one side of the first conveyor belt.

[0013] As a further preference of this technical solution, the transmission rollers are rotatably connected to the limiting plate. Anti-slip particles are provided on the surfaces of the first conveyor belt and the second conveyor belt.

[0014] The utility model provides an automatic blanking mechanism for glass bottle production, which has the following beneficial effects:

[0015] (1) The utility model is provided with a conveying assembly. By driving the driving roller to rotate with the third motor, the rotation of the driving roller drives the first conveyor belt and the second conveyor belt to rotate, so as to convey the glass bottles, which is convenient for the subsequent production and processing of the glass bottles.

[0016] (2) The utility model is provided with a blanking assembly. The glass bottles sent by the first conveyor belt are attached to the intercepting plate. By driving the pushing plate to move with the air cylinder, the movement of the pushing plate can push the glass bottles above the connecting plate. With the arrangement of the balls on the surface of the connecting plate, the friction between the glass bottles and the connecting plate can be reduced, which is beneficial to the blanking of the glass bottles. By driving the first feeding rod and the second feeding rod to rotate with the second motor, the glass bottles can be transferred to the second conveyor belt, completing the automatic blanking of the glass bottles, improving the stable automatic blanking of the glass bottles. By driving the transmission screw rod to rotate with the first motor, the rotation of the transmission screw rod drives the two screw nuts to approach or move away from each other. The movement of the screw nuts drives the connecting rod to move, and the movement of the connecting rod drives the first feeding rod and the second feeding rod to move, so as to adjust the distance between the first feeding rod and the second feeding rod, which is convenient for the automatic blanking of glass bottles with different calibers, and improves the practicability of the equipment. Description of the Drawings

[0017] Figure 1 is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 is a schematic diagram of the structure of the blanking assembly of the utility model;

[0019] Figure 3 is a schematic diagram of the structure of the adjusting part of the utility model;

[0020] Figure 4 is a schematic diagram of a partial structure of the blanking assembly of the utility model.

[0021] In the figure: 1, limit plate; 2, fixed frame; 3, blanking assembly; 4, conveying assembly; 5, air cylinder; 6, pushing plate; 7, intercepting plate; 8, limit frame; 9, connecting plate; 10, adjusting part; 11, first motor; 12, transmission screw rod; 13, screw nut; 14, connecting rod; 15, second motor; 16, first feeding rod; 17, second feeding rod; 18, support leg; 19, third motor; 20, driving roller; 21, first conveyor belt; 22, second conveyor belt. Detailed Embodiment

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.

[0023] The present utility model provides a technical solution: as Figure 2 and Figure 3As shown in the figure, in this embodiment, an automatic blanking mechanism for glass bottle production includes multiple groups of limit plates 1, a fixed frame 2, a blanking component 3, and a conveying component 4. The fixed frame 2 is installed on the side wall of the limit plate 1 through bolts. The blanking component 3 is installed between the limit plates 1. The conveying component 4 is installed between the limit plates 1 and on one side of the blanking component 3. The blanking component 3 includes a cylinder 5, a pushing plate 6, an intercepting plate 7, a limit frame 8, a connecting plate 9, and an adjusting part 10. The cylinder 5 is installed on the inner wall of the fixed frame 2 through bolts. The pushing plate 6 is installed at the output end of the cylinder 5. The intercepting plate 7 is installed on the top end of the limit plate 1 through bolts. The limit frame 8 is installed on the side wall of the intercepting plate 7 through bolts. The connecting plate 9 is installed between the limit plates 1 through bolts. The adjusting part 10 is installed below the limit frame 8. The adjusting part 10 includes a first motor 11, a transmission lead screw 12, two lead screw nuts 13, a connecting rod 14, a second motor 15, a first feeding rod 16, and a second feeding rod 17. The first motor 11 is installed on the side wall of the limit frame 8 through bolts. The transmission lead screw 12 is installed at the output end of the first motor 11. The two lead screw nuts 13 are symmetrically sleeved and installed outside the transmission lead screw 12. The connecting rod 14 is installed at the bottom end of the lead screw nut 13 through bolts. The second motor 15 is installed at the bottom end of the connecting rod 14 through bolts. The first feeding rod 16 is installed at the output end of the second motor 15. The second feeding rod 17 is installed at the output end of the second motor 15 and on one side of the first feeding rod 16. The pushing plate 6 is slidably connected to the intercepting plate 7. The pushing plate 6 is in a U-shaped structure. Multiple balls are provided on the top surface of the connecting plate 9. The bottom of the limit frame 8 is open. The transmission lead screw 12 penetrates through the limit frame 8 and extends into the interior. Two external threads are provided on the surface of the transmission lead screw 12. The two external threads are arranged in opposite directions. The lead screw nut 13 is slidably connected to the inner top of the limit frame 8. The overall length of the first feeding rod 16 is longer than that of the second feeding rod 17. Both the first feeding rod 16 and the second feeding rod 17 are in a spiral structure. The glass bottles sent by the first conveyor belt 21 are in contact with the limit plate 1. The cylinder 5 is used to drive the pushing plate 6 to move. The movement of the pushing plate 6 can push the glass bottles above the connecting plate 9. With the balls provided on the surface of the connecting plate 9, the friction between the glass bottles and the connecting plate 9 can be reduced. The second motor 15 is used to drive the first feeding rod 16 and the second feeding rod 17 to rotate, so as to transfer the glass bottles to the second conveyor belt 22, completing the automatic blanking of the glass bottles. The first motor 11 is used to drive the transmission lead screw 12 to rotate. The rotation of the transmission lead screw 12 drives the two lead screw nuts 13 to approach or move away from each other. The movement of the lead screw nut 13 drives the connecting rod 14 to move. The movement of the connecting rod 14 drives the first feeding rod 16 and the second feeding rod 17 to move, and the distance between the first feeding rod 16 and the second feeding rod 17 can be adjusted.

[0024] As Figure 1 and Figure 4As shown in the figure, the conveying assembly 4 includes multiple groups of No. 3 motors 19, multiple groups of transmission rollers 20, a first conveyor belt 21, and a second conveyor belt 22. Multiple groups of the No. 3 motors 19 are installed on the side wall of the limiting plate 1 by bolts. Multiple groups of the transmission rollers 20 are installed at the output ends of the No. 3 motors 19. The first conveyor belt 21 is sleeved and installed outside the transmission rollers 20. The second conveyor belt 22 is sleeved and installed outside the transmission rollers 20 and is located on one side of the first conveyor belt 21. The transmission rollers 20 are rotatably connected to the limiting plate 1. Anti-slip particles are provided on the surfaces of the first conveyor belt 21 and the second conveyor belt 22. By driving the transmission rollers 20 to rotate with the No. 3 motors 19, the rotation of the transmission rollers 20 drives the first conveyor belt 21 and the second conveyor belt 22 to rotate, and the glass bottles can be conveyed.

[0025] The present utility model provides an automatic blanking mechanism for glass bottle production, and the specific working principle is as follows:

[0026] When using the automatic blanking mechanism for glass bottle production, by providing the conveying assembly 4, the rotation of the transmission rollers 20 is driven by the No. 3 motors 19, and the rotation of the transmission rollers 20 drives the first conveyor belt 21 and the second conveyor belt 22 to rotate, so that the glass bottles can be conveyed, which is convenient for subsequent production and processing of the glass bottles. By providing the blanking assembly 3, the glass bottles sent by the first conveyor belt 21 are attached to the intercepting plate 7. The pushing plate 6 is driven to move by the air cylinder 5, and the movement of the pushing plate 6 can push the glass bottles above the connecting plate 9. With the arrangement of the balls on the surface of the connecting plate 9, the friction between the glass bottles and the connecting plate 9 can be reduced, which is beneficial to the blanking of the glass bottles. The rotation of the first feeding rod 16 and the second feeding rod 17 is driven by the No. 2 motor 15, and the glass bottles can be transferred to the second conveyor belt 22, completing the automatic blanking of the glass bottles, improving the stable automatic blanking of the glass bottles. The rotation of the driving screw rod 12 is driven by the No. 1 motor 11, and the rotation of the driving screw rod 12 drives the two screw nuts 13 to approach or move away from each other. The movement of the screw nuts 13 drives the connecting rod 14 to move, and the movement of the connecting rod 14 drives the first feeding rod 16 and the second feeding rod 17 to move, so that the distance between the first feeding rod 16 and the second feeding rod 17 can be adjusted, which is convenient for the automatic blanking of glass bottles with different diameters and improves the practicability of the equipment.

[0027] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. An automatic unloading mechanism for glass bottle production, characterized in that: It includes multiple groups of limit plates (1), a fixing frame (2), a blanking assembly (3), and a conveying assembly (4). The fixing frame (2) is installed on the side wall of the limit plate (1) through bolts. The blanking assembly (3) is installed between the limit plates (1). The conveying assembly (4) is installed between the limit plates (1) and on one side of the blanking assembly (3). The blanking assembly (3) includes a cylinder (5), a pushing plate (6), a blocking plate (7), a limit frame (8), a connecting plate (9), and an adjusting part (10). The cylinder (5) is installed on the inner wall of the fixing frame (2) through bolts. The pushing plate (6) is installed at the output end of the cylinder (5). The blocking plate (7) is installed on the top end of the limit plate (1) through bolts. The limit frame (8) is installed on the side wall of the blocking plate (7) through bolts. The connecting plate (9) is installed between the limit plates (1) through bolts. The adjusting part (10) is installed below the limit frame (8).

2. The automatic unloading mechanism for glass bottle production according to claim 1, characterized in that: The adjusting part (10) includes a first motor (11), a transmission lead screw (12), two lead screw nuts (13), a connecting rod (14), a second motor (15), a first feeding rod (16), and a second feeding rod (17). The first motor (11) is installed on the side wall of the limit frame (8) through bolts. The transmission lead screw (12) is installed at the output end of the first motor (11). The two lead screw nuts (13) are symmetrically sleeved and installed outside the transmission lead screw (12). The connecting rod (14) is installed at the bottom end of the lead screw nut (13) through bolts. The second motor (15) is installed at the bottom end of the connecting rod (14) through bolts. The first feeding rod (16) is installed at the output end of the second motor (15). The second feeding rod (17) is installed at the output end of the second motor (15) and on one side of the first feeding rod (16).

3. The automatic unloading mechanism for glass bottle production according to claim 1, characterized in that: The pushing plate (6) is slidably connected to the blocking plate (7). The pushing plate (6) has a U-shaped structure. Multiple groups of balls are provided on the top surface of the connecting plate (9). The bottom of the limit frame (8) is open.

4. The automatic unloading mechanism for glass bottle production according to claim 2, characterized in that: The transmission lead screw (12) penetrates through the limit frame (8) and extends into the interior. Two groups of external threads are provided on the surface of the transmission lead screw (12), and the two groups of external threads are arranged in opposite directions. The lead screw nut (13) is slidably connected to the inner top of the limit frame (8). The overall length of the first feeding rod (16) is longer than that of the second feeding rod (17). Both the first feeding rod (16) and the second feeding rod (17) have a spiral structure.

5. The automatic unloading mechanism for glass bottle production according to claim 1, characterized in that: Multiple groups of support legs (18) are installed at the bottom end of the limit plate (1) through bolts. The fixing frame (2) has an L-shaped structure. Multiple groups of limit plates (1) are symmetrically arranged.

6. The automatic unloading mechanism for glass bottle production according to claim 1, characterized in that: The conveying assembly (4) comprises a plurality of sets of No. 3 motors (19), a plurality of sets of transmission rollers (20), a first conveyor belt (21) and a second conveyor belt (22); the plurality of sets of No. 3 motors (19) are mounted on the side wall of the limiting plate (1) by means of bolts; the plurality of sets of transmission rollers (20) are mounted on the output end of the No. 3 motor (19); the first conveyor belt (21) is sleeved and mounted on the outside of the transmission roller (20); and the second conveyor belt (22) is sleeved and mounted on the outside of the transmission roller (20) and is located on one side of the first conveyor belt (21).

7. The automatic unloading mechanism for glass bottle production according to claim 6, characterized in that: The driving roller (20) is rotatably connected to the limiting plate (1), and the surfaces of the first conveyor belt (21) and the second conveyor belt (22) are provided with anti-slip particles.

Citation Information

Patent Citations

  • Automatic discharging mechanism for glass bottle production

    CN217707914U