Rubber tube adhesive shaking device

By designing a rubber tube adhesive mixing device, which uses a motor to drive the rotating frame and adhesive bucket to rotate, the problem of manual mixing being physically demanding is solved, thus improving production efficiency.

CN224194553UActive Publication Date: 2026-05-05SHANDONG WANAO AUTO ACCESSORIES TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG WANAO AUTO ACCESSORIES TECH CO LTD
Filing Date
2025-04-27
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Manually shaking the adhesive in large barrels of rubber hoses is physically demanding and labor-intensive, which affects production efficiency.

Method used

Design a rubber tube adhesive mixing device, including a fixed frame, a rotating frame and a motor. The rotating frame and the adhesive bucket are driven to rotate together by a chain to achieve automatic mixing.

Benefits of technology

It reduces the amount of manual shaking required and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a rubber tube adhesive shaking device which comprises a fixing frame, a rotating frame rotationally connected to the fixing frame and a motor driving the rotating frame to rotate, the rotating frame comprises a rectangular frame, and a first rotating shaft and a second rotating shaft which are coaxial with each other are fixedly connected to the middles of the two long edges of the rectangular frame respectively. The first rotating shaft and the second rotating shaft are rotationally connected with the fixing frame through bearings respectively, the first rotating shaft is connected with a rotating shaft of the motor through a chain, and the adhesive barrel is detachably fixed in the rectangular frame. The rotating frame and the adhesive barrel are driven by the chain to rotate together, so that the rubber tube adhesive is shaken up, the manual shaking-up operation is omitted, the labor amount of personnel is reduced, the production efficiency is improved, high-frequency shaking-up can be realized, the shaking-up effect is good, and the using effect of the rubber tube adhesive is improved.
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Description

Technical Field

[0001] This utility model relates to the field of rubber processing technology, specifically to a rubber tube adhesive mixing device. Background Technology

[0002] When assembling automotive rubber hoses, branch pipes need to be coated with adhesive and inserted into the main pipe. Therefore, rubber processing workshops use a large amount of rubber hose adhesive, usually purchasing large drums for use. The packaging drums for rubber hose adhesive are similar to paint buckets, being cylindrical metal drums. Rubber hose adhesive needs to be shaken well before use to thoroughly mix the internal sediment. Since a drum of rubber hose adhesive used in the workshop typically weighs 8-15 kg, shaking it manually is very physically demanding, and the usage is large. Multiple packaging drums need to be shaken every day, resulting in a huge workload for workers. Utility Model Content

[0003] This invention addresses the shortcomings of existing technologies by providing a device for shaking rubber tube adhesives.

[0004] This utility model is achieved through the following technical solution: a rubber tube adhesive mixing device is provided, including a fixed frame, a rotating frame rotatably connected to the fixed frame, and a motor for driving the rotating frame to rotate. The rotating frame includes a rectangular frame, and a first rotating shaft and a second rotating shaft, which are coaxial with each other, are fixedly connected to the middle of the two long sides of the rectangular frame. The first rotating shaft and the second rotating shaft are rotatably connected to the fixed frame through bearings. The adhesive bucket is detachably fixed inside the rectangular frame.

[0005] As an optimization, a first connecting plate and a second connecting plate are fixedly connected to the two short sides of the rectangular frame, respectively. One end of the first connecting plate is fixedly connected to one end of the second connecting plate through a bottom connecting rod. The other end of the first connecting plate is hinged to a top connecting plate. The other ends of the top connecting plate and the second connecting plate are detachably connected. The adhesive bucket is fixed between the top connecting plate and the bottom connecting rod.

[0006] As an optimization, a bottom support plate is provided between the bottom connecting rod and the adhesive bucket, and at least two guide shafts passing through the bottom connecting rod are fixed on the bottom support plate. A spring is installed between the bottom support plate and the bottom connecting rod.

[0007] As an optimization, the top connecting plate and the second connecting plate are detachably connected by a plug shaft assembly. The plug shaft assembly includes a plug shaft guide sleeve fixed to the top connecting plate and a plug shaft slidably connected in the plug shaft guide sleeve. The second connecting plate has a plug hole adapted to the plug shaft.

[0008] As an optimization, two side bars are connected between the two long sides of the rectangular frame, and the adhesive bucket is located between the two side bars.

[0009] As an optimization, both ends of the side stop are connected to the rectangular frame by bolts.

[0010] As an optimization, the long side of the rectangular frame has multiple connection holes for connecting the side stops.

[0011] The beneficial effects of this utility model are as follows: When using the rubber tube adhesive shaking device of this utility model, the adhesive bucket is first fixed on the rotating frame, and then the motor is started. The rotating frame and the adhesive bucket are rotated together through the chain, thereby realizing the shaking of the rubber tube adhesive. This eliminates the manual shaking operation, reduces the workload of personnel, and improves production efficiency. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model;

[0013] Figure 2 This is a front view of the present invention;

[0014] Figure 3 This is a top view of the present invention;

[0015] Figure 4 This is a schematic diagram of the structure of the rotating frame of this utility model;

[0016] Figure 5 This utility model Figure 4 Enlarged view of section A in the middle;

[0017] Figure 6 This is a structural schematic diagram of the rotating frame of this utility model from another angle;

[0018] Figure 7 This is a front view of the rotating frame of this utility model;

[0019] Figure 8 This is a top view of the rotating frame of this utility model;

[0020] As shown in the figure:

[0021] 1. Fixed frame, 2. Rotating frame, 3. Adhesive bucket, 4. Motor, 5. Drive sprocket, 6. Driven sprocket, 21. Rectangular frame, 22. First rotating shaft, 23. Second rotating shaft, 24. First connecting plate, 25. Second connecting plate, 26. Bottom connecting rod, 27. Guide shaft, 28. Bottom support plate, 29. Spring, 210. Side stop bar, 211. Top connecting plate, 212. Insert shaft guide sleeve, 213. Insert shaft, 214. Insertion hole. Detailed Implementation

[0022] To clearly illustrate the technical features of this solution, the following detailed implementation method will be used to describe the solution.

[0023] like Figures 1-8 As shown, the present invention provides a rubber tube adhesive mixing device, which includes a fixed frame 1, a rotating frame 2 rotatably connected to the fixed frame 1, and a motor 4 for driving the rotating frame 2 to rotate. The fixed frame 1 is welded from rectangular tubes, and the upper end face is a frame structure of four rectangular tubes welded together. The four corners of the frame structure are supported by columns. The rotating frame 2 is set inside the frame structure and performs rotation operation inside.

[0024] A mounting plate is welded to the upper end of the frame structure made of four rectangular tubes. The motor 4 is fixed to the mounting plate with bolts. The motor 4 has a drive sprocket 5 on its shaft. The rotating frame 2 has a driven sprocket 6 fixed to the center of its shaft. The drive sprocket 5 drives the driven sprocket 6 to rotate through a chain, thus realizing the rotation drive of the rotating frame 2.

[0025] The rotating frame 2 includes a rectangular frame 21, which is formed by welding four round or square rods end to end. The middle of the two long sides of the rectangular frame 21 are respectively fixed with a first rotating shaft 22 and a second rotating shaft 23 that are coaxial with each other. The first rotating shaft 22 and the second rotating shaft 23 are respectively rotatably connected to the fixed frame 1 through bearings, thereby realizing the rotatable connection between the rotating frame 2 and the fixed frame 1. The passive sprocket 6 is fixed to the end of the first rotating shaft 22.

[0026] The adhesive bucket 3 is detachably fixed inside the rectangular frame 21, with its center located at the center of the first rotating shaft 22 and the second rotating shaft 23, thereby preventing eccentricity during rotation. Two side stops 210 are connected between the two long sides of the rectangular frame 21, and the adhesive bucket 3 is located between the two side stops 210. The two side stops 210 limit the side of the adhesive bucket 3 to prevent shaking.

[0027] Both ends of the side stop bar 210 are connected to the rectangular frame 21 by bolts. Multiple connection holes for connecting the side stop bars 210 are provided on the long side of the rectangular frame 21, allowing the spacing between the two side stop bars 210 to be adjusted according to the diameter of the adhesive container 3.

[0028] A first connecting plate 24 and a second connecting plate 25 are fixedly connected to the two short sides of the rectangular frame 21, respectively. The length directions of the first connecting plate 24 and the second connecting plate 25 are both perpendicular to the plane of the rectangular frame 21. One end of the first connecting plate 24 is fixedly connected to one end of the second connecting plate 25 through a bottom connecting rod 26. A bottom support plate 28 is provided between the bottom connecting rod 26 and the adhesive bucket 3. At least two guide shafts 27 passing through the bottom connecting rod 26 are fixedly connected to the bottom support plate 28. A spring 29 is installed between the bottom support plate 28 and the bottom connecting rod 26. The spring 29 is sleeved on the guide shaft 27. After the adhesive bucket 3 is installed, the elastic force of the spring 29 achieves elastic compression.

[0029] The other end of the first connecting plate 24 is hinged to a top connecting plate 211. One end of the top connecting plate 211 is hinged to the other end of the first connecting plate 24 via a hinge. The other ends of the top connecting plate 211 and the second connecting plate 25 are detachably connected. In this embodiment, the top connecting plate 211 and the second connecting plate 25 are detachably connected via a pin assembly. Figure 5 As shown, the insert shaft assembly includes an insert shaft guide sleeve 212 fixed to the top connecting plate 211 and an insert shaft 213 slidably connected within the insert shaft guide sleeve 212. The second connecting plate 25 has an insertion hole 214 adapted to the insert shaft 213. The adhesive bucket 3 is fixed between the top connecting plate 211 and the bottom connecting rod 26.

[0030] How to use this utility model:

[0031] In use, first pull the insert shaft 213 out of the insertion hole 214, lift the top connecting plate 211, place one end of the adhesive bucket 3 on the bottom support plate 28, then press the top connecting plate 211 against the other end of the adhesive bucket 3 and compress the spring to make the adhesive bucket 3 elastically pressed. When the insert shaft 213 and the insertion hole 214 are aligned, insert the insert shaft 213 into the insertion hole 214. Through the elastic force of the spring, the insert shaft 213 is not easy to come out of the insertion hole 214, thus locking it. Then start the motor 4, and drive the rotating frame 2 and the adhesive bucket 3 to rotate together through the chain, thereby shaking the adhesive in the rubber tube evenly.

[0032] Of course, the above description is not limited to the examples above. Technical features of this utility model not described can be implemented by or using existing technology, and will not be repeated here. The above embodiments and drawings are only used to illustrate the technical solution of this utility model and are not intended to limit this utility model. This utility model has been described in detail with reference to preferred embodiments. Those skilled in the art should understand that any changes, modifications, additions or substitutions made by those skilled in the art within the scope of this utility model do not depart from the spirit of this utility model and should also fall within the protection scope of the claims of this utility model.

Claims

1. A device for mixing rubber tube adhesive, characterized in that: The device includes a fixed frame (1), a rotating frame (2) rotatably connected to the fixed frame (1), and a motor (4) for driving the rotating frame (2) to rotate. The rotating frame (2) includes a rectangular frame (21). The middle of the two long sides of the rectangular frame (21) are respectively fixed with a first rotating shaft (22) and a second rotating shaft (23) that are coaxial with each other. The first rotating shaft (22) and the second rotating shaft (23) are respectively rotatably connected to the fixed frame (1) through bearings. The adhesive bucket (3) is detachably fixed inside the rectangular frame (21).

2. The rubber tube adhesive mixing device according to claim 1, characterized in that: A first connecting plate (24) and a second connecting plate (25) are fixedly connected to the two short sides of the rectangular frame (21), respectively. One end of the first connecting plate (24) is fixedly connected to one end of the second connecting plate (25) through a bottom connecting rod (26). The other end of the first connecting plate (24) is hinged to a top connecting plate (211). The other ends of the top connecting plate (211) and the second connecting plate (25) are detachably connected. The adhesive bucket (3) is fixed between the top connecting plate (211) and the bottom connecting rod (26).

3. The rubber tube adhesive mixing device according to claim 2, characterized in that: A bottom support plate (28) is provided between the bottom connecting rod (26) and the adhesive bucket (3). At least two guide shafts (27) passing through the bottom connecting rod (26) are fixed on the bottom support plate (28). A spring (29) is installed between the bottom support plate (28) and the bottom connecting rod (26).

4. The rubber tube adhesive mixing device according to claim 2, characterized in that: The top connecting plate (211) and the second connecting plate (25) are detachably connected by a plug shaft assembly. The plug shaft assembly includes a plug shaft guide sleeve (212) fixed on the top connecting plate (211) and a plug shaft (213) slidably in the plug shaft guide sleeve (212). The second connecting plate (25) has a plug hole (214) adapted to the plug shaft (213).

5. The rubber tube adhesive mixing device according to claim 2, characterized in that: Two side bars (210) are connected between the two long sides of the rectangular frame (21), and the adhesive bucket (3) is located between the two side bars (210).

6. The rubber tube adhesive mixing device according to claim 5, characterized in that: The two ends of the side stop (210) are connected to the rectangular frame (21) by bolts.

7. The rubber tube adhesive mixing device according to claim 6, characterized in that: The long side of the rectangular frame (21) has multiple connection holes for connecting the side stop (210).