Glass bottle arranging machine

By introducing a straightening unit and a flipping plate into the glass bottle stacking machine, the problem of bottle tipping is solved by utilizing centrifugal force and the blocking effect of the flipping plate. This achieves automatic straightening and flipping of glass bottles, improving the stability and stacking efficiency of the equipment.

CN223547082UActive Publication Date: 2025-11-14GUANGZHOU HONGBINJIE GLASS PROD CO LTD
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Patent Information

Application Number
CN202422722419.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-11-14
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Existing glass bottle sorting machines lack a righting mechanism when bottles collide, resulting in tipped bottles not being automatically righted, and also lack a flipping mechanism, thus limiting their functionality.

Method used

A glass bottle sorting machine was designed, which uses a rotating disk to drive the glass bottles to move. Centrifugal force is used to move the bottles along the guide plate. A straightening part and a flipping plate are set to automatically straighten and flip the bottles. The automatic straightening and flipping of the bottles are achieved through the cooperation of the straightening part and the flipping plate.

Benefits of technology

This technology enables glass bottles to automatically straighten and flip over during the mutual compression process, improving the stability and efficiency of bottle arrangement, preventing bottles from tipping over, and enhancing the stability of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of bottle arranging machines, and discloses a glass bottle arranging machine which comprises a machine frame, a motor is fixedly installed in the machine frame, and a rotating disc is fixedly installed at the end of an output shaft of the motor. The connecting rod is fixedly installed at the upper end of the rack, a protective plate is fixedly installed at the upper end of the connecting rod, a guide plate is fixedly installed on the side, away from the connecting column, of the splitter plate, a conveying groove is formed between the guide plate and the protective plate, and a righting part is arranged on the side, close to the splitter plate, of the guide plate and is of an inclined face structure; according to the glass bottle arranging machine provided by the utility model, glass bottles are mutually extruded to enter the outer wall of the guide plate, and the glass bottles move along the outer wall of the guide plate under the influence of centrifugal force to enter the conveying groove, so that the glass bottles are arranged; the toppled glass bottle is conveyed to the righting part on one side of the guide plate, and the opening of the glass bottle moves obliquely upwards along the righting part, so that the glass bottle is automatically righting.
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Description

Technical Field

[0001] This utility model belongs to the technical field of bottle sorting machines, specifically a glass bottle sorting machine. Background Technology

[0002] Despite the influx of various packaging materials into the market, glass containers still hold an important position in beverage packaging. This is inseparable from their unique packaging characteristics that other packaging materials cannot replace. In the glass bottle processing process, they are usually arranged by a bottle sorting machine.

[0003] For example, an improved bottle unscrambler with publication number CN206307693U has no righting mechanism when bottles collide and tip over during use, nor does it have a flipping mechanism for the tipped bottles, making its function quite limited. In order to solve the above problems, a glass bottle unscrambler is proposed. Utility Model Content

[0004] The purpose of this utility model is to solve the above problems by providing a glass bottle decanting machine, comprising:

[0005] A frame, in which a motor is fixedly installed, and a rotating disk is fixedly installed at the end of the output shaft of the motor;

[0006] A connecting rod is fixedly installed on the upper end of the frame. A guard plate is fixedly installed on the upper end of the connecting rod. A crossbeam is fixedly installed in the middle of the guard plate. A connecting column is fixedly installed in the middle of the crossbeam. A diverter plate is fixedly installed on one side of the connecting column. A guide plate is fixedly installed on the side of the diverter plate away from the connecting column. A conveying groove is formed between the guide plate and the guard plate. A straightening part is provided on the side of the guide plate near the diverter plate. The straightening part has an inclined structure.

[0007] The above technical solution involves placing glass bottles on the upper surface of a rotating frame. The rotating frame is driven by a motor to rotate, causing the glass bottles to follow its trajectory. At this time, some glass bottles come into contact with the diverting plate and enter the conveying trough, while other glass bottles are squeezed together and enter the outer wall of the guide plate. Under the influence of centrifugal force, the glass bottles move along the outer wall of the guide plate and enter the conveying trough, thus performing a bottle discharge operation. When the glass bottles tip over during the mutual squeezing process, the tipped glass bottles are conveyed to the straightening part on one side of the guide plate, and the bottle mouths move obliquely upward along the straightening part, thus automatically straightening the glass bottles.

[0008] In a preferred embodiment, a flip plate is fixedly installed on the lower wall of the crossbeam on the side away from the straightening part.

[0009] With the above technical solution, when the bottom of the glass bottle moves toward the guide plate during the mutual compression process, when the glass bottle moves to the lower end of the flip plate, the glass bottle will naturally flip due to the obstruction of the flip plate. The bottle mouth is relatively narrow, so it can pass through the lower end of the flip plate without resistance, thus causing it to automatically flip.

[0010] In a preferred embodiment, a feeding platform is fixedly installed on one side of the outer wall of the protective plate.

[0011] The above technical solution connects the feeding equipment to the bottle discharge machine via a feeding platform.

[0012] In a preferred embodiment, foot cups are fixedly installed at all four corners of the bottom of the frame.

[0013] The above technical solutions improve the stability of the equipment.

[0014] In a preferred embodiment, the lower wall of the flip plate has an arc-shaped structure.

[0015] In a preferred embodiment, there is a 20mm gap between the guide plate and the rotating disk.

[0016] In summary, due to the adoption of the above technical solutions, the beneficial effects of this utility model are: this utility model proposes a glass bottle stacking machine.

[0017] 1. Glass bottles are squeezed together and enter the outer wall of the guide plate. Under the influence of centrifugal force, the glass bottles move along the outer wall of the guide plate and enter the conveying trough, thus performing the bottle discharge operation. When the glass bottles tip over during the mutual squeezing process, the tipped glass bottles are conveyed to the straightening part on one side of the guide plate. The bottle mouth moves obliquely upward along the straightening part, thus automatically straightening the glass bottles.

[0018] 2. When the bottom of the glass bottle moves toward the guide plate during the mutual compression process, when the glass bottle moves to the lower end of the flip plate, the glass bottle will naturally flip due to the obstruction of the flip plate. The bottle mouth is relatively narrow, so it can pass through the lower end of the flip plate without resistance, thus causing it to automatically flip. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of this utility model;

[0020] Figure 2 This is a top view of the present invention;

[0021] Figure 3 This is a side view of the present invention.

[0022] The markings in the diagram are: 1-frame; 2-connecting rod; 3-guard plate; 4-crossbeam; 5-connecting column; 6-diverter plate; 7-guide plate; 8-straightening part; 9-tilting plate; 10-conveyor trough; 11-rotating disc; 12-motor; 13-feeding platform. Detailed Implementation

[0023] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below in conjunction with the embodiments of this utility model. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0024] The following will combine Figure 1-3 The thin lens car lamp mold of this utility model embodiment will be described in detail.

[0025] Example:

[0026] A glass bottle decanter, comprising:

[0027] The frame 1 has a motor 12 fixedly installed inside it. A rotating disk 11 is fixedly installed at the end of the output shaft of the motor 12. Foot cups are fixedly installed at the four corners of the bottom of the frame 1 to improve the stability of the equipment. When the glass bottle is placed on the upper surface of the rotating frame 11, the rotating frame 11 is rotated by the working belt of the motor 12, and the rotating frame 11 drives the glass bottle to follow its trajectory.

[0028] Connecting rod 2 is fixedly installed on the upper end of frame 1. A protective plate 3 is fixedly installed on the upper end of connecting rod 2. A feeding platform 13 is fixedly installed on one outer wall of the protective plate 3, through which the feeding equipment is connected to the bottle discharger. A crossbeam 4 is fixedly installed in the middle of the protective plate 3. A connecting column 5 is fixedly installed in the middle of the crossbeam 4. A diverter plate 6 is fixedly installed on one side of the connecting column 5. A guide plate 7 is fixedly installed on the side of the diverter plate 6 away from the connecting column 5. There is a 20mm gap between the guide plate 7 and the rotating disk 11. A conveying trough 10 is formed between the guide plate 7 and the protective plate 3. A straightening section 8 is provided near the side of the diverter plate 6. The straightening section 8 has an inclined structure. Some glass bottles come into contact with the diverter plate 6 and enter the conveying trough 10. Other glass bottles are squeezed into the outer wall of the guide plate 7. Under the influence of centrifugal force, the glass bottles move along the outer wall of the guide plate 7 and enter the conveying trough 10, thereby performing a bottle discharge operation. When the glass bottles tip over during the mutual squeezing process, the tipped glass bottles are conveyed to the straightening section 8 on the side of the guide plate 7. The bottle mouth moves obliquely upward along the straightening section 8, thereby automatically straightening the glass bottles.

[0029] A flip plate 9 is fixedly installed on the lower wall of the side of the crossbeam 4 away from the straightening part 8. The lower wall of the flip plate 9 has an arc-shaped structure. When the bottom of the glass bottle moves toward the guide plate 7 during the mutual compression process, when the glass bottle moves to the lower end of the flip plate 9, the glass bottle will naturally flip due to the obstruction of the flip plate 9. The mouth of the glass bottle is relatively narrow, so it can pass through the lower end of the flip plate 9 without resistance, thereby causing it to automatically flip.

[0030] Working principle:

[0031] The glass bottle is placed on the upper surface of the rotating frame 11. The rotating frame 11 is rotated by the working belt of the motor 12. The rotating frame 11 drives the glass bottle to follow its trajectory. At this time, some glass bottles come into contact with the diverting plate 6 and enter the conveying trough 10. Other glass bottles are squeezed into the outer wall of the guide plate 7. Affected by centrifugal force, the glass bottles move along the outer wall of the guide plate 7 and enter the conveying trough 10, thus performing the bottle discharge operation. When the glass bottles tip over during the mutual squeezing process, the tipped glass bottles are conveyed to the straightening part 8 on one side of the guide plate 7. The bottle mouth moves obliquely upward along the straightening part 8, thus automatically straightening the glass bottle.

[0032] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A glass bottle decanting machine, characterized in that: include: A frame (1) is fixedly installed inside a motor (12), and a rotating disk (11) is fixedly installed at the end of the output shaft of the motor (12); A connecting rod (2) is fixedly installed on the upper end of the frame (1). A guard plate (3) is fixedly installed on the upper end of the connecting rod (2). A crossbeam (4) is fixedly installed in the middle of the guard plate (3). A connecting column (5) is fixedly installed in the middle of the crossbeam (4). A diversion plate (6) is fixedly installed on one side of the connecting column (5). A guide plate (7) is fixedly installed on the side of the diversion plate (6) away from the connecting column (5). A conveying groove (10) is formed between the guide plate (7) and the guard plate (3). A straightening part (8) is provided on the side of the guide plate (7) near the diversion plate (6). The straightening part (8) is a sloping structure.

2. The glass bottle decanter as described in claim 1, characterized in that: A flip plate (9) is fixedly installed on the lower wall of the side of the crossbeam (4) away from the straightening part (8).

3. The glass bottle decanter as described in claim 1, characterized in that: A loading platform (13) is fixedly installed on one side of the outer wall of the guard plate (3).

4. A glass bottle decanter as described in claim 1, characterized in that: The frame (1) has feet fixedly installed at the four corners of its bottom.

5. A glass bottle decanter as described in claim 2, characterized in that: The lower wall of the flip plate (9) has an arc-shaped structure.

6. A glass bottle decanter as described in claim 1, characterized in that: There is a 20mm gap between the guide plate (7) and the rotating disk (11).

Citation Information

Patent Citations

  • Improvement reason bottle machine

    CN206307693U