Glass bottle glazing device

By using a rotating motor-driven locking structure and roller design, the problem of obstruction caused by the existing glass bottle glazing fixing method is solved, achieving efficient glazing and reducing material contamination.

CN223752650UActive Publication Date: 2026-01-02SHANDONG YUNCHENG YUANDA GLASS CO LTD
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Patent Information

Application Number
CN202422606274.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2026-01-02
Estimated Expiration
2034-10-28

AI Technical Summary

Technical Problem

When existing glass bottle glazing devices are fixed by suction cups, some parts of the glass bottle wall are not glazed, requiring manual adjustment, which increases the workload of workers and reduces efficiency.

Method used

The locking structure, driven by a rotary motor, includes a spring-loaded post, a housing, a pressure plate, and an abutment block. It secures the glass bottle through elastic connections and sliding components, preventing obstruction of the glazed area and using rollers to block the bottle opening to prevent pigment from entering.

Benefits of technology

It enables the glass bottle to be fixed without obstructing the glazed area, reducing the need for manual adjustments, improving work efficiency, reducing the probability of material contamination, and making it easier to remove the glass bottle.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass glazing molds, and discloses a glass bottle glazing device which comprises a rotating motor, a locking structure is arranged at the top of the rotating motor, the locking structure comprises a springback column, a shell, a pressing plate and an abutting block, the springback column is fixedly connected to the top of the rotating motor, the shell is in a hollow rectangular shape, and the pressing plate is arranged in the shell. The shell is fixedly connected to the top of the rebound column, the pressing plate is movably connected into a cavity of the shell, the abutting block is movably connected with the pressing plate, and the pressing plate can drive the abutting block to make contact with the wall face of the glass bottle. According to the scheme, the working pressure of workers can be reduced, the working efficiency is improved, and the probability that materials are polluted by pigments when the glass bottles are loaded with the materials is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to glass glaze mould technical field, specifically, relate to a glass bottle glaze device. BACKGROUND

[0002] Prior art (application number: CN202220426995.8) discloses a kind of glass bottle glaze mould positioning device, comprising: bottom plate, sliding plate and cleaning cloth roller, the bottom top four corners are equipped with support frame, the support frame top is equipped with top plate, the top plate top one side is equipped with fixed plate, the fixed plate one side is equipped with electric hydraulic rod, the electric hydraulic rod one end is equipped with sliding plate.

[0003] This prior art can be fixed in the device and glaze to the glass bottle needed to glaze, but this prior art is by the suction cup in the device to the outer wall surface of glass bottle is adsorbed to achieve the fixation of glass bottle, and this kind of mode can fix glass bottle although, but when glazing glass bottle, the glass bottle wall surface that is adsorbed will not be glazed due to the obstruction of suction cup, need to adjust the wall surface of glass bottle that has completed glazing to be adsorbed by suction cup to glaze the glass bottle wall surface that is not glazed, and this process will lead to the increase of the work pressure of worker and reduce work efficiency.

[0004] Therefore, the utility model is provided. UTILITY MODEL CONTENT

[0005] To solve the above technical problem, the basic idea of the technical scheme of the utility model is:

[0006] A kind of glass bottle glaze device, including rotating motor, the top of rotating motor is provided with locking structure, locking structure includes rebound column, shell, pressing plate and abutment block, rebound column is fixedly connected at the top of rotating motor, shell is hollow rectangular, shell is fixedly connected at the top of rebound column, pressing plate is movably connected in the cavity of shell, abutment block and pressing plate are movably connected, and pressing plate can drive abutment block to contact the wall surface of glass bottle.

[0007] As a preferred embodiment of the utility model, the locking structure further includes elastic block and anti-drop groove, the elastic block is elastically connected with the rebound column, the anti-drop groove is formed in the cavity of the shell, a rectangular groove adapted to the elastic block is formed in the top of the rebound column, the elastic block is elastically connected with the rebound column in the rectangular groove, and the rectangular groove of the rebound column can also adapt to the width of the pressing plate.

[0008] As a preferred embodiment of the utility model, the locking structure further comprises an auxiliary plate, a linkage block, a first linkage groove, a first linkage block, a linkage column, a second linkage block, a second linkage groove, a resisting plate and an anti-dropping block, the auxiliary plate is fixedly connected with the pressing plate, the linkage block is slidingly connected in the cavity of the shell, the pressing plate is fixedly connected at the bottom of the linkage block, the first linkage groove is arranged on the wall surface of the linkage block, the first linkage block is rotatably connected with the wall surface of the linkage block, the linkage column is fixedly connected with the wall surface of the shell, the second linkage block is fixedly connected with the first linkage block, the resisting plate is rotatably connected with the second linkage block, the second linkage groove is arranged on the wall surface of the resisting plate, and the anti-dropping block is fixedly connected on both sides of the resisting plate.

[0009] As a preferred embodiment of the utility model, the wall surface of the linkage block is fixedly connected with a sliding block, the anti-dropping groove can be matched with the sliding block, the sliding block slides in the anti-dropping groove, one end of the first linkage block is rotatably connected with the linkage block in the first linkage groove, the wall surface of the first linkage block is provided with a capsule-shaped groove, a cylinder which can slide in the capsule-shaped groove of the first linkage block is fixedly connected in the first linkage groove, the other end of the first linkage block is fixedly connected with the second linkage block, the connecting part of the second linkage block and the first linkage block is further rotatably connected with the linkage column, the second linkage block is rotatably connected with the resisting plate in the second linkage groove, the wall surface of the second linkage block is provided with an elliptical groove, the resisting plate in the second linkage groove is fixedly connected with a cylinder, the cylinder can slide in the elliptical groove of the wall surface of the second linkage block, and the cavity of the shell is further provided with a movable groove, and the anti-dropping block slides in the movable groove.

[0010] As a preferred embodiment of the utility model, one end of the resisting plate is connected with the second linkage block, and the other end of the resisting plate is fixedly connected with the resisting block.

[0011] As a preferred embodiment of the utility model, the cavity of the shell is symmetrically provided with the anti-dropping groove, the auxiliary plate, the first linkage groove, the first linkage block, the linkage column, the second linkage block, the second linkage groove, the resisting plate, the anti-dropping block, the resisting block and the roller, and the elastic block can contact the bottom of the pressing plate.

[0012] As a preferred embodiment of the utility model, the wall surface of the resisting block is rotatably connected with the roller, and the roller is in a cylindrical shape.

[0013] Compared with the prior art, the utility model has the following beneficial effects:

[0014] 1. Through the setting of the locking structure, the glass bottle can be fixed on the device to cooperate with the glass bottle glazing device to glaze the glass bottle, and the prior art can fix the glass bottle on the device, but the fixed glass bottle wall surface will be blocked by the structure when the glass bottle is glazed, so manual adjustment and re-glazing are required, and the outer wall of the glass bottle can be glazed without blocking the outer wall of the glass bottle to be glazed, and the glass bottle mouth can be blocked when the glass bottle is glazed, so as to prevent the pigment from entering the inner wall of the glass bottle, thereby reducing the probability of material pollution by the pigment when the glass bottle loads the material, so compared with the prior art, the present scheme can reduce the working pressure of workers and improve the working efficiency and reduce the probability of material pollution by the pigment when the glass bottle loads the material.

[0015] 2. Through the setting of the locking structure, the worker can conveniently take out the glass bottle that has been glazed from the device, thereby reducing the working pressure of the worker and preventing the glass bottle mouth from being stuck on the device.

[0016] The specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0017] In the drawings:

[0018] Figure 1 is a perspective view of the present application;

[0019] Figure 2 is a side view of the present application;

[0020] Figure 3 is a bottom view of the present application;

[0021] Figure 4 is a sectional view of the present application;

[0022] Figure 5 is an enlarged view of A of the present application.

[0023] In the drawings: 20, rotating motor; 21, rebound column; 22, elastic block; 23, shell; 24, anti-dropping groove; 30, pressing plate; 31, auxiliary plate; 32, linkage block; 33, first linkage groove; 34, first linkage block; 35, linkage column; 36, second linkage block; 37, second linkage groove; 38, abutting plate; 39, anti-dropping block; 40, abutting block; 41, roller. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical scheme and advantages of the embodiments of the present application more clear, the technical scheme in the embodiments will be described clearly and completely below with reference to the drawings in the embodiments of the present application, and the following embodiments are used to illustrate the present application.

[0025] As shown in Figure 1 , Figure 2 and Figure 3 , a glass bottle glazing device comprises a rotating motor 20, the rotating motor 20 is electrically connected with a power supply, which is prior art and will not be described here.

[0026] As shown in Figure 1 , Figure 2 , Figure 3 , the top of the rotating motor 20 is provided with a locking structure, the locking structure comprises a rebound column 21, a shell 23, a pressing plate 30 and a contact block 40, the rebound column 21 is fixedly connected at the top of the rotating motor 20, the shell 23 is in a hollow rectangular shape, the shell 23 is fixedly connected at the top of the rebound column 21, the pressing plate 30 is movably connected in the cavity of the shell 23, the contact block 40 is movably connected with the pressing plate 30, the pressing plate 30 can drive the contact block 40 to extend out of the cavity of the shell 23 and contact the wall surface of the glass bottle so as to fix the glass bottle on the device.

[0027] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the locking structure further comprises a spring block 22 and a anti-escape groove 24, the spring block 22 and the rebounding column 21 are elastically connected, the anti-escape groove 24 is opened in the cavity of the shell 23, the top of the rebounding column 21 is provided with a rectangular groove matched with the spring block 22, the spring block 22 is elastically connected with the rebounding column 21 in the rectangular groove, the rectangular groove of the rebounding column 21 can also match the width of the pressing plate 30, the locking structure further comprises an auxiliary plate 31, a linkage block 32, a first linkage groove 33, a first linkage block 34, a linkage column 35, a second linkage block 36, a second linkage groove 37, a contact plate 38 and an anti-escape block 39, the auxiliary plate 31 is fixedly connected with the pressing plate 30, the linkage block 32 is slidingly connected in the cavity of the shell 23, the pressing plate 30 is fixedly connected at the bottom of the linkage block 32, the first linkage groove 33 is opened in the wall surface of the linkage block 32, the first linkage block 34 is rotatably connected with the wall surface of the linkage block 32, the linkage column 35 is fixedly connected with the wall surface of the shell 23, the second linkage block 36 is fixedly connected with the first linkage block 34, the contact plate 38 is rotatably connected with the second linkage block 36, the second linkage groove 37 is opened in the wall surface of the contact plate 38, the anti-escape block 39 is fixedly connected on both sides of the contact plate 38, the wall surface of the linkage block 32 is fixedly connected with a sliding block, the anti-escape groove 24 can match the sliding block, the sliding block slides in the anti-escape groove 24, one end of the first linkage block 34 is rotatably connected with the linkage block 32 in the first linkage groove 33, the wall surface of the first linkage block 34 is provided with a capsule-shaped groove, a cylinder which can slide in the capsule-shaped groove of the first linkage block 34 is fixedly connected in the first linkage groove 33, the other end of the first linkage block 34 is fixedly connected with the second linkage block 36, the connection between the second linkage block 36 and the first linkage block 34 is also rotatably connected with the linkage column 35, the second linkage block 36 is rotatably connected with the contact plate 38 in the second linkage groove 37, the wall surface of the second linkage block 36 is provided with an elliptical groove, the contact plate 38 in the second linkage groove 37 is fixedly connected with a cylinder, the cylinder can slide in the elliptical groove of the wall surface of the second linkage block 36, the cavity of the shell 23 is also provided with a movable groove, the anti-escape block 39 slides in the movable groove, one end of the contact plate 38 is connected with the second linkage block 36, the other end of the contact plate 38 is fixedly connected with a contact block 40, the wall surface of the contact block 40 is rotatably connected with a roller 41, the roller 41 is in a cylindrical shape;

[0028] In specific use, when the power is turned on, rotating the motor 20 can drive the rebounding column 21 to rotate. The rebounding column 21 and the elastic block 22 are connected through a spring. The glass bottle to be glazed is inverted, and the shell 23 is inserted into the bottle opening. At this time, the glass bottle opening will contact the auxiliary plate 31 and the pressing plate 30, and the auxiliary plate 31 and the pressing plate 30 will move towards the vertical bottom due to gravity. When the pressing plate 30 moves, the pressing plate 30 will drive the linkage block 32 and the slider on the wall surface of the linkage block 32 to move simultaneously. When the slider moves, it will slide along the anti-disengagement groove 24. When the linkage block 32 moves, the linkage block 32 will drive the first linkage block 34 to rotate around the linkage column 35 through the cylinder in the first linkage groove 33. When the first linkage block 34 moves, it will drive the second linkage block 36 to rotate around the linkage column 35. At this time, the second linkage block 36 will drive the abutting plate 38 to move, and the abutting plate 38 will drive the anti-disengagement block 39 to move. The anti-disengagement block 39 will slide along the movable groove on the wall surface of the shell 23. When the abutting plate 38 moves, the abutting plate 38 will also drive the abutting block 40 and the roller 41 to move, so that the wall surface of the abutting block 40 and the roller 41 contacts the wall surface in the glass bottle opening, thereby fixing the glass bottle on the device. When the rebounding column 21 rotates, it drives the glass bottle to rotate simultaneously.

[0029] In summary, by setting the locking structure, the glass bottle can be fixed on the device to cooperate with the glass bottle glazing device to glaze the glass bottle. Although the prior art can fix the glass bottle on the device, the fixed glass bottle wall surface will be blocked by the structure when the glass bottle is glazed, so manual adjustment and re-glazing are required. However, the present scheme can glaze the outer wall of the glass bottle without blocking the outer wall of the glass bottle to be glazed, and can block the bottle opening of the glass bottle when glazing the glass bottle to prevent the pigment from entering the inner wall of the glass bottle, thereby preventing the material from being contaminated when the glass bottle is loaded with material, thereby reducing the cost. Therefore, compared with the prior art, the present scheme can reduce the work pressure of workers and improve the work efficiency, and reduce the probability of material contamination by pigment when the glass bottle is loaded with material.

[0030] As shown in Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5 , the anti-disengagement groove 24, the auxiliary plate 31, the first linkage groove 33, the first linkage block 34, the linkage column 35, the second linkage block 36, the second linkage groove 37, the abutting plate 38, the anti-disengagement block 39, the abutting block 40 and the roller 41 are symmetrically arranged in the cavity of the shell 23. The elastic block 22 can contact the bottom of the pressing plate 30.

[0031] In specific use, when the roller 41 contacts the inner wall of the glass bottle opening, the roller 41 will rotate around its center.

[0032] In summary, the rotatable roller 41 in the locking structure can facilitate workers to take out the glazed glass bottle from the device, thereby reducing the working pressure of the workers and preventing the glass bottle mouth from being stuck in the device.

[0033] Working principle: when the power is turned on, the rotating motor 20 can drive the rebound column 21 to rotate, the rebound column 21 and the elastic block 22 are connected through the spring, the glass bottle to be glazed is inverted, and the shell 23 is inserted into the bottle mouth, at this time the glass bottle mouth will contact the auxiliary plate 31 and the pressing plate 30 and move in the direction of the vertical bottom due to the gravity, when the pressing plate 30 moves, the pressing plate 30 will drive the linkage block 32 and the slider on the wall surface of the linkage block 32 to move simultaneously, the slider will slide along the anti-dropping groove 24 when moving, when the linkage block 32 moves, the linkage block 32 will drive the first linkage block 34 to move, the first linkage block 34 will drive the second linkage block 36 to rotate around the linkage column 35 when moving, at this time the second linkage block 36 will drive the abutting plate 38 to move, the abutting plate 38 will drive the anti-dropping block 39 to move, the anti-dropping block 39 will slide along the movable groove on the wall surface of the shell 23, when the abutting plate 38 moves, the abutting plate 38 will also drive the abutting block 40 and the roller 41 to move, so that the wall surface of the abutting block 40 and the roller 41 contacts the wall surface in the bottle mouth of the glass bottle, thereby fixing the glass bottle on the device, when the rebound column 21 rotates, the glass bottle is driven to rotate simultaneously.

[0034] It can be understood that the utility model is described through some embodiments, and the person skilled in the art knows that various changes or equivalent replacements can be made to these features and embodiments without departing from the spirit and scope of the utility model. In addition, under the guidance of the utility model, these features and embodiments can be modified to adapt to specific conditions and materials without departing from the spirit and scope of the utility model. Therefore, the utility model is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application belong to the scope protected by the utility model.

Claims

1. A glass bottle glazing apparatus comprising a rotating motor (20), characterized in that, The top of the rotating motor (20) is provided with a locking structure, the locking structure comprises a rebound column (21), a shell (23), a pressing plate (30) and a resisting block (40), the rebound column (21) is fixedly connected at the top of the rotating motor (20), the shell (23) is in a hollow rectangular shape, the shell (23) is fixedly connected at the top of the rebound column (21), the pressing plate (30) is movably connected in the cavity of the shell (23), the resisting block (40) is movably connected with the pressing plate (30), and the pressing plate (30) can drive the resisting block (40) to contact the wall surface of the glass bottle.

2. The glass bottle enamelling apparatus according to claim 1, wherein The locking structure further comprises a spring block (22) and an anti-disengagement groove (24), the spring block (22) is elastically connected with the rebound column (21), the anti-disengagement groove (24) is arranged in the cavity of the shell (23), a rectangular groove adapted to the spring block (22) is arranged at the top of the rebound column (21), the spring block (22) is elastically connected with the rebound column (21) in the rectangular groove, and the rectangular groove of the rebound column (21) can also adapt to the width of the pressing plate (30).

3. The glass bottle enamelling apparatus according to claim 2, wherein The locking structure further comprises an auxiliary plate (31), a linkage block (32), a first linkage groove (33), a first linkage block (34), a linkage column (35), a second linkage block (36), a second linkage groove (37), a resisting plate (38) and an anti-disengagement block (39), the auxiliary plate (31) is fixedly connected with the pressing plate (30), the linkage block (32) is slidably connected in the cavity of the shell (23), the pressing plate (30) is fixedly connected at the bottom of the linkage block (32), the first linkage groove (33) is arranged in the wall surface of the linkage block (32), the first linkage block (34) is rotatably connected with the wall surface of the linkage block (32), the linkage column (35) is fixedly connected with the wall surface of the shell (23), the second linkage block (36) is fixedly connected with the first linkage block (34), the resisting plate (38) is rotatably connected with the second linkage block (36), the second linkage groove (37) is arranged in the wall surface of the resisting plate (38), and the anti-disengagement block (39) is fixedly connected on both sides of the resisting plate (38).

4. The glass bottle enamelling apparatus according to claim 3, wherein The wall surface of the linkage block (32) is fixedly connected with a sliding block, the anti-disengagement groove (24) can adapt to the sliding block, the sliding block slides in the anti-disengagement groove (24), one end of the first linkage block (34) is rotatably connected with the linkage block (32) in the first linkage groove (33), the wall surface of the first linkage block (34) is provided with a capsule-shaped groove, a cylinder capable of sliding in the capsule-shaped groove of the first linkage block (34) is fixedly connected in the first linkage groove (33), the other end of the first linkage block (34) is fixedly connected with the second linkage block (36), the connection between the second linkage block (36) and the first linkage block (34) is also rotatably connected with the linkage column (35), the second linkage block (36) is rotatably connected with the resisting plate (38) in the second linkage groove (37), the wall surface of the second linkage block (36) is provided with an elliptical groove, the resisting plate (38) in the second linkage groove (37) is fixedly connected with a cylinder, the cylinder can slide in the elliptical groove of the wall surface of the second linkage block (36), and a movable groove is further arranged in the cavity of the shell (23), and the anti-disengagement block (39) slides in the movable groove.

5. The glass bottle enamelling apparatus according to claim 3, wherein The end of the abutting plate (38) is connected with the second connecting block (36), and the other end of the abutting plate (38) is fixedly connected with the abutting block (40).

6. The glass bottle enamelling apparatus according to claim 5, wherein The cavity of the shell (23) is symmetrically provided with the anti-disengagement groove (24), the auxiliary plate (31), the first connecting groove (33), the first connecting block (34), the connecting column (35), the second connecting block (36), the second connecting groove (37), the abutting plate (38), the anti-disengagement block (39), the abutting block (40) and the roller (41), and the elastic block (22) can contact the bottom of the pressing plate (30).

7. The glass bottle enamelling apparatus according to claim 6, wherein The wall surface of the abutting block (40) is rotationally connected with the roller (41), and the roller (41) is in a cylindrical shape.

Citation Information

Patent Citations

  • Glass bottle glazing mold positioning device

    CN216738096U