Glass bottle transfer printing placing tool

By designing a glass bottle transfer placement fixture with a base, electric telescopic rod, and supporting components, the problem of fixed and unadjustable specifications of existing fixtures has been solved, enabling stable placement of glass bottles of different sizes and expanding the scope of application.

CN224240634UActive Publication Date: 2026-05-15CHONGQING ZHANYIN PACKAGING PRINTING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
CHONGQING ZHANYIN PACKAGING PRINTING CO LTD
Filing Date
2025-05-19
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing glass bottle placement fixtures have fixed dimensions and cannot be adjusted according to the outer diameter of the glass bottle, which limits their application range and reduces their versatility.

Method used

A glass bottle transfer and placement fixture was designed, comprising a base, an electric telescopic rod, a support component, and a lifting plate. Through the cooperation of a linear motor and an electric telescopic rod, stable placement of glass bottles of different sizes can be achieved, and the support component can be adjusted according to the outer diameter of the glass bottle.

Benefits of technology

It enables stable placement of glass bottles of different sizes, expands the scope of application, improves the versatility of tooling, and meets the transfer needs of glass bottles of various specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass bottle transfer printing placing tool which comprises a base, the four corners of the top of the base are connected with first electric telescopic rods, the tops of the four first electric telescopic rods are jointly connected with a lifting plate, adjusting grooves are formed in the two ends of the top of the lifting plate, and first supporting parts are installed in the two adjusting grooves. One end of the lifting plate is connected with a second supporting component. When the outer diameter of the glass bottle is large, the two first linear motors are controlled in advance to move away from each other so as to drive the supporting rollers to move away from each other, then the second linear motor moves downwards outside the lifting rod so as to drive the connecting plate to move downwards and finally enable the bearing column to move downwards along with the connecting plate, and follow-up placement of the glass bottle with the large outer diameter is facilitated. During glass bottle transfer printing, a worker picks up the glass bottle, inserts the bottle opening end outside the bearing column and pushes the glass bottle backwards to enable the whole glass bottle to be arranged on the bearing column in a sleeving mode, and then the telescopic ends of the second electric telescopic rod and the third electric telescopic rod stretch out.
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Description

Technical Field

[0001] This utility model relates to the field of glass bottle processing technology, specifically to a glass bottle transfer placement fixture. Background Technology

[0002] Glass bottles are traditional beverage packaging containers, and glass is also a packaging material with a long history. Despite the influx of many other packaging materials into the market, glass containers still hold an important position in beverage packaging, which is inseparable from their unique packaging characteristics that other materials cannot replace.

[0003] In the glass bottle production process, a placement fixture is needed to place the transferred glass bottles. Existing placement fixtures have fixed dimensions and cannot be adjusted according to the outer diameter of the glass bottles, thus limiting their applicability and reducing their versatility. To solve these technical problems, we have designed a new glass bottle transfer placement fixture. Utility Model Content

[0004] The purpose of this utility model is to provide a glass bottle transfer placement fixture, which has the advantage of stably placing glass bottles of different sizes. It solves the problem that the existing placement fixtures have a constant size and cannot be adjusted according to the outer diameter of the glass bottle, which limits their application range and reduces their versatility.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a glass bottle transfer placement fixture, including a base, with electric telescopic rods connected to the four corners of the top of the base, and a lifting plate connected to the top of the four electric telescopic rods. Adjustment grooves are provided at both ends of the top of the lifting plate, and support components are installed inside the two adjustment grooves. One end of the lifting plate is connected to a support component.

[0006] Preferably, positioning and mounting holes are provided at the four corners of the top of the base and on the outer side of the four electric telescopic rods. The support component includes an adjusting rod, and the two sides of the adjusting rod are respectively connected to the two sides of the inner wall of the adjusting groove.

[0007] Preferably, a linear motor is fitted on both sides of the outer side of the adjusting rod. An adjusting plate is connected to the top of the linear motor. A supporting inclined plate is connected to the top of the adjusting plate by a positioning bolt. A rotation notch is opened on the top of the supporting inclined plate, and a supporting roller is installed on the inner wall of the rotation notch.

[0008] Preferably, the second support component includes two positioning columns, one end of each positioning column is connected to both sides of the center of one end of the lifting plate, and the end of the positioning column away from the lifting plate is connected to a vertical plate. A lifting groove is formed through the vertical plate, and a lifting rod is connected to the inner wall of the lifting groove.

[0009] Preferably, a second linear motor is sleeved on the outside of the lifting rod. One end of the second linear motor is connected to a connecting plate. The end of the connecting plate near the second linear motor is in sliding contact with the vertical plate, and the end of the connecting plate away from the second linear motor has a connecting screw hole.

[0010] Preferably, the inner wall of the connecting screw hole is threaded with a connecting stud, and the end of the connecting stud away from the connecting screw hole is connected to a bearing post. Several storage holes are opened on both sides of the outer side of the bearing post. The inner wall of the storage holes is connected to an electric telescopic rod II, and the telescopic end of the electric telescopic rod II is connected to an inner arc-shaped support plate.

[0011] Preferably, both sides of the connecting plate are connected to L-shaped plates, and an electric telescopic rod three is installed through the L-shaped plates. The telescopic end of the electric telescopic rod three is threaded with an outer arc-shaped support plate.

[0012] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0013] This invention, through the coordinated use of a base, an electric telescopic rod (Part 1), a support component (Part 1), a lifting plate, a support component (Part 2), and an adjusting groove, offers the advantage of stably placing glass bottles of different sizes. When the outer diameter of the glass bottle is large, two linear motors (Part 1) are pre-controlled to move away from each other, thereby causing the support rollers to move away from each other. Then, linear motor (Part 2) moves downward outside the lifting rod, thereby causing the connecting plate to move downward, ultimately causing the support column to move downward as well, which is beneficial for the subsequent placement of large-diameter glass bottles. During the glass bottle transfer process, the worker picks up the glass bottle, inserts the bottle mouth end into the outside of the support column, and pushes it backward so that the entire glass bottle fits onto the support column. Then, the telescopic ends of electric telescopic rods (Part 2 and Part 3) extend, using the inner arc-shaped support plate to support the inner wall of the glass bottle and the outer arc-shaped support plate to support one end of the glass bottle, before proceeding with the subsequent transfer. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of this utility model;

[0015] Figure 2 This is a schematic diagram of the structure of a support component of this utility model;

[0016] Figure 3 This is a schematic diagram of the second supporting component of this utility model;

[0017] Figure 4 This utility model Figure 3 Top view.

[0018] In the diagram: 1. Base; 2. Electric telescopic rod one; 3. Support component one; 31. Adjusting rod; 32. Adjusting plate; 33. Linear motor one; 34. Supporting inclined plate; 35. Support roller; 36. Rotation notch; 4. Lifting plate; 5. Support component two; 51. Positioning column; 52. Vertical plate; 53. Lifting rod; 54. Electric telescopic rod three; 55. Outer arc-shaped support plate; 56. Connecting plate; 57. L-shaped plate; 58. Connecting screw hole; 59. Connecting stud; 510. Bearing column; 511. Inner arc-shaped support plate; 512. Storage hole; 513. Electric telescopic rod two; 514. Lifting groove; 515. Linear motor two; 6. Adjusting groove. Detailed Implementation

[0019] Please see Figures 1-4 A glass bottle transfer placement fixture includes a base 1, with electric telescopic rods 2 connected to the four corners of the top of the base 1. The tops of the four electric telescopic rods 2 are connected to a lifting plate 4. Adjustment grooves 6 are provided at both ends of the top of the lifting plate 4. Supporting components 3 are installed inside the two adjustment grooves 6. One end of the lifting plate 4 is connected to a supporting component 5. The electric telescopic rods 2 serve to support the lifting plate 4.

[0020] The four corners of the top of the base 1 and the outer sides of the four electric telescopic rods 2 are provided with positioning and mounting holes. The support component 3 includes an adjusting rod 31, and the two sides of the adjusting rod 31 are respectively connected to the two sides of the inner wall of the adjusting groove 6. The positioning and mounting holes make it easy to use bolts to position and install the base 1 on the glass bottle transfer device.

[0021] Linear motors 33 are fitted on both sides of the adjusting rod 31. An adjusting plate 32 is connected to the top of each linear motor 33. A supporting inclined plate 34 is connected to the top of the adjusting plate 32 via positioning bolts. A rotation notch 36 is provided on the top of the supporting inclined plate 34, and a supporting roller 35 is installed on the inner wall of the rotation notch 36. The supporting inclined plate 34 can be disassembled by the adjustment plate 32 and the positioning bolts, allowing for the replacement of both the supporting inclined plate 34 and the supporting roller 35.

[0022] Support component 2 5 includes two positioning posts 51. One end of each positioning post 51 is connected to both sides of the center of one end of the lifting plate 4. The end of the positioning post 51 away from the lifting plate 4 is connected to a vertical plate 52. A lifting groove 514 is formed through the vertical plate 52, and a lifting rod 53 is connected to the inner wall of the lifting groove 514. The lifting plate 4 and the vertical plate 52 can be connected through the positioning posts 51.

[0023] A linear motor 515 is fitted onto the outside of the lifting rod 53. One end of the linear motor 515 is connected to a connecting plate 56. The end of the connecting plate 56 near the linear motor 515 slides in contact with the vertical plate 52, while the end of the connecting plate 56 away from the linear motor 515 has a connecting screw hole 58. Through the cooperation of the connecting screw hole 58 and the connecting stud 59, the support column 510 can be disassembled and replaced to meet the usage requirements of glass bottles with different inner diameters. Furthermore, the support column 510 has several different models, each corresponding to a glass bottle with a different inner diameter.

[0024] A connecting stud 59 is threaded onto the inner wall of the connecting screw hole 58. A bearing post 510 is connected to the end of the connecting stud 59 furthest from the connecting screw hole 58. Several storage holes 512 are provided on both sides of the bearing post 510. An electric telescopic rod 513 is connected to the inner wall of each storage hole 512. An inner arc-shaped support plate 511 is connected to the telescopic end of the electric telescopic rod 513. The electric telescopic rod 513 can be hidden and stored through the storage holes 512.

[0025] Both sides of the connecting plate 56 are connected to L-shaped plates 57, and an electric telescopic rod 54 is installed through the L-shaped plate 57. The telescopic end of the electric telescopic rod 54 is threaded with an outer arc-shaped support plate 55. The outer arc-shaped support plate 55 can be replaced according to the outer diameter of the glass bottle.

[0026] In use, select the corresponding model of the support column 510 according to the type of glass bottle that needs to be transferred. Install the support column 510 on the connecting plate 56 by matching the connecting stud 59 with the connecting screw hole 58. Then, thread the corresponding model of the outer arc support plate 55 onto the telescopic end of the electric telescopic rod 34. If the support roller 35 wears out after long-term use, it can be replaced by disassembling and replacing the support inclined plate 34.

[0027] Since this placement fixture is part of the glass bottle transfer device, all electrical components of the fixture are controlled by the control center of the glass bottle transfer device, and the operating sequence and time interval of each electrical component can be preset in advance. Furthermore, when the outer diameter of the glass bottle is large, the two linear motors 33 are pre-controlled to move away from each other, thereby driving the support rollers 35 away from each other. Then, the second linear motor 515 moves downward outside the lifting rod 53, thereby driving the connecting plate 56 downward, ultimately causing the supporting column 510 to follow suit, which is beneficial for the subsequent placement of large-diameter glass bottles. During the glass bottle transfer process, the worker picks up the glass bottle, inserts the bottle neck end into the outside of the support column 510, and pushes it backward so that the entire glass bottle fits onto the support column 510. Then, the telescopic ends of the electric telescopic rods 513 and 54 extend, using the inner arc-shaped support plate 511 to support the inner wall of the glass bottle and the outer arc-shaped support plate 55 to support one end of the glass bottle. Subsequently, the glass bottle transfer device begins to transfer the glass bottle to the outside. After the transfer is completed, the telescopic ends of the electric telescopic rods 513 and 54 retract, the existing glass bottle is removed and replaced with a new glass bottle, and this process is repeated.

[0028] In summary, this glass bottle transfer placement fixture, through the coordinated use of base 1, electric telescopic rod 1, support component 1 3, lifting plate 4, support component 2 5, and adjustment groove 6, solves the problem that existing placement fixtures have a fixed size and cannot be adjusted according to the outer diameter of the glass bottle, which limits their application range and reduces their versatility.

Claims

1. A glass bottle transfer placement fixture, comprising a base (1), characterized in that: The four corners of the top of the base (1) are connected to electric telescopic rods (2), and the tops of the four electric telescopic rods (2) are connected to a lifting plate (4). The two ends of the top of the lifting plate (4) are provided with adjustment slots (6), and the two adjustment slots (6) are each equipped with a support component (3). One end of the lifting plate (4) is connected to a support component (5).

2. The glass bottle transfer placement fixture according to claim 1, characterized in that: The base (1) has four positioning and mounting holes at the top corners and on the outside of the four electric telescopic rods (2). The support component (3) includes an adjusting rod (31), and the two sides of the adjusting rod (31) are respectively connected to the two sides of the inner wall of the adjusting groove (6).

3. The glass bottle transfer placement fixture according to claim 2, characterized in that: Linear motors (33) are fitted on both sides of the outside of the adjusting rod (31). An adjusting plate (32) is connected to the top of the linear motor (33). A supporting inclined plate (34) is connected to the top of the adjusting plate (32) by a positioning bolt. A rotation notch (36) is opened on the top of the supporting inclined plate (34). A supporting roller (35) is installed on the inner wall of the rotation notch (36).

4. The glass bottle transfer placement fixture according to claim 1, characterized in that: The second support component (5) includes two positioning columns (51). One end of each positioning column (51) is connected to the two sides of the center of one end of the lifting plate (4). The end of the positioning column (51) away from the lifting plate (4) is connected to a vertical plate (52). A lifting groove (514) is provided through the vertical plate (52). A lifting rod (53) is connected to the inner wall of the lifting groove (514).

5. The glass bottle transfer placement fixture according to claim 4, characterized in that: The lifting rod (53) is fitted with a linear motor (515) on its outside. One end of the linear motor (515) is connected to a connecting plate (56). The end of the connecting plate (56) close to the linear motor (515) is in sliding contact with the vertical plate (52). The end of the connecting plate (56) away from the linear motor (515) is provided with a connecting screw hole (58).

6. The glass bottle transfer placement fixture according to claim 5, characterized in that: The inner wall of the connecting screw hole (58) is threaded with a connecting stud (59). The end of the connecting stud (59) away from the connecting screw hole (58) is connected to a bearing post (510). Several storage holes (512) are opened on both sides of the outer side of the bearing post (510). The inner wall of the storage hole (512) is connected to an electric telescopic rod (513). The telescopic end of the electric telescopic rod (513) is connected to an inner arc-shaped support plate (511).

7. The glass bottle transfer placement fixture according to claim 5, characterized in that: Both sides of the connecting plate (56) are connected to L-shaped plates (57), and an electric telescopic rod three (54) is installed through the L-shaped plate (57). The telescopic end of the electric telescopic rod three (54) is threaded with an outer arc-shaped support plate (55).