Anti-splashing structure for composite adhesive production stirring device

By introducing an anti-splash structure and a scraping mechanism into the composite adhesive mixing device, the problem of material splashing during the mixing process is solved, achieving anti-splashing and cleaning effects, and reducing adhesive waste and clogging.

CN224009708UActive Publication Date: 2026-03-20SHANGHAI DUNPU COMMERCE & TRADE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

In existing technologies, it is difficult to prevent splashing of materials during the mixing process of composite adhesives, resulting in waste of adhesive.

Method used

An anti-splash structure was designed, including a motor, a chain, a splash guard, and a scraping mechanism. The motor drives the chain to move the push rod to push the splash guard to lock the feed inlet, and the scraping mechanism scrapes off the composite adhesive on the inner wall of the mixing tank and the outer surface of the discharge hole to prevent splashing and adhesion.

Benefits of technology

It effectively prevents the composite adhesive from splashing during the mixing process, reduces adhesive waste, and ensures the cleanliness of the inner wall of the mixing tank and the discharge port, avoiding material accumulation and blockage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of composite adhesive production, and provides an anti-splashing structure for a composite adhesive production stirring device, which comprises a stirring barrel, the circumferential surface of the stirring barrel is fixedly connected with a bracket, the top of the stirring barrel is provided with a feeding hole, and an anti-splashing mechanism is arranged in the stirring barrel. According to the utility model, through mutual cooperation among components such as the motor, the chain and the splash-proof plate of the splash-proof mechanism, when the composite adhesive needs to be stirred, after a worker pours a material into the stirring barrel through the feeding hole, the motor is started, so that a push rod pushes a stress column, and the stress column drives the splash-proof plate to close the feeding hole; when the stress column moves to the top of the locking hole, the stress column slides into the locking hole by compressing the spring to lock the splash-proof plate, and at the moment, the stress column is not located on the displacement track of the push rod, and by means of the technical scheme, the problem that in the prior art, materials cannot be prevented from splashing in the stirring process is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to composite glue production technical field, specifically, relate to a kind of anti-splashing structure for composite glue production stirring device. BACKGROUND

[0002] Composite adhesive is a kind of adhesive mixed by multiple raw materials or chemical components, commonly used for the bonding of different materials. Composite adhesive can provide excellent bonding performance and has a wide range of applications, especially in high-demand industrial fields.

[0003] In the prior art, during the process of using the stirring barrel to stir the composite adhesive, it is difficult to solve the anti-splashing function of the feeding port of the stirring barrel, which causes the stirring material to splash during high-speed rotation, resulting in waste of glue. Therefore, we propose an anti-splashing structure for composite glue production stirring device. SUMMARY

[0004] The utility model provides an anti-splashing structure for composite glue production stirring device, which solves the problem of not being able to prevent the material from splashing during stirring in related technology.

[0005] The technical solution of the utility model is as follows:

[0006] The utility model relates to an anti-splashing structure for composite glue production stirring device, which comprises a stirring barrel, a support fixedly connected to the circumference of the stirring barrel, a feeding port provided at the top of the stirring barrel, and an anti-splashing mechanism provided inside the stirring barrel.

[0007] The anti-splashing mechanism comprises a support plate and a motor, the side surface of the support plate is fixedly connected to the circumference of the stirring barrel, the top of the support plate is fixedly connected to the bottom of the motor, the output end of the motor is fixedly connected to a rotating shaft, the circumference of the rotating shaft is provided with a chain, the inside of the stirring barrel is fixedly connected to a fixed plate, the top of the fixed plate penetrates a support shaft, and the circumference of the support shaft is rotatably connected to the support shaft, the circumference of the rotating shaft is drivingly connected to the chain and the circumference of the support shaft, the top of the support shaft is fixedly connected to a push rod, the inside of the feeding port is fixedly connected to a cover plate, the inside of the cover plate is slidingly connected to a splash-proof plate, and the top of the splash-proof plate is fixedly connected to a stress column.

[0008] Optionally, the top of the fixed plate is provided with a locking hole, and the circumference of the support shaft is fixedly connected to a stirring blade. The locking hole functions to lock the splash-proof plate, and the stirring blade functions to stir the material inside the stirring barrel by the stirring blade.

[0009] Optionally, the bottom of the splash plate is fixedly connected with a compression spring, one end of the compression spring away from the bottom of the splash plate is fixedly connected with the circumferential surface of the force receiving column, and the compression spring is used to enter the locking hole when the force receiving column is not blocked by the fixed plate.

[0010] Optionally, one end of the force receiving column is located on the displacement track of the push rod, which ensures that the movement of the push rod can push the force receiving column.

[0011] Optionally, the inside of the stirring barrel is provided with a scraping mechanism, the scraping mechanism comprises a driving gear, the side surface of the driving gear is fixedly penetrated on the circumferential surface of the rotating shaft, the top of the supporting plate is penetrated with a control shaft, and the circumferential surface of the control shaft is rotationally connected with the control shaft, the circumferential surface of the control shaft is fixedly penetrated with a driven gear, the circumferential surface of the control shaft is fixedly connected with a rotating disc, the bottom of the rotating disc is fixedly connected with an outer scraper, the bottom of the stirring barrel is provided with a discharging hole, and the side surface of the support is fixedly connected with a collecting box, and the scraping mechanism is used to prevent the composite adhesive from adhering to the outlet of the stirring barrel and causing blockage.

[0012] Optionally, the circumferential surface of the supporting shaft is fixedly connected with a connecting rod, one end of the connecting rod away from the circumferential surface of the supporting shaft is fixedly connected with an inner scraper, and the inner scraper is used to scrape the composite adhesive on the inner wall of the stirring barrel.

[0013] Optionally, one end of the supporting shaft is fixedly connected with a threaded rod, the circumferential surface of the threaded rod is threadedly connected with a threaded sleeve, the side surface of the threaded sleeve is fixedly connected with a turning plate, and the circumferential surface of the threaded rod is fixedly penetrated with a limiting plate, which is used to turn the composite adhesive at the bottom of the stirring barrel and prevent the material from being accumulated to block the discharging hole.

[0014] Optionally, the circumferential surface of the driving gear is meshed with the circumferential surface of the driven gear, the top of the outer scraper is in contact with the outside of the discharging hole, and the circumferential surface of the driving gear is meshed with the circumferential surface of the driven gear, which ensures that the rotation of the driving gear can drive the driven gear to rotate, and the top of the outer scraper is in contact with the outside of the discharging hole, which ensures that the rotation of the outer scraper can scrape the composite adhesive on the outer surface of the discharging hole.

[0015] The working principle and beneficial effects of the utility model are as follows:

[0016] 1. In this utility model, through the cooperation of components such as the motor, chain, and splash guard of the anti-splash mechanism, when it is necessary to stir the composite adhesive, the operator pours the material into the mixing tank through the feed inlet, starts the motor, and causes the push rod to push the force column. The force column drives the splash guard to close the feed inlet. When the force column moves to the top of the locking hole, the compression spring causes the force column to slide into the locking hole to lock the splash guard. At this time, the force column is not on the displacement trajectory of the push rod. This design achieves the effect of preventing splashing of the composite adhesive during stirring, effectively preventing the stirred material from splashing out of the mixing tank during high-speed rotation.

[0017] 2. In this utility model, through the cooperation of components such as the drive gear, outer scraper, and inner scraper of the scraping mechanism, the rotation of the support shaft simultaneously drives the inner scraper to rotate via the connecting rod, scraping off the composite adhesive splashed onto the inner wall of the mixing tank. This also causes the threaded sleeve to reciprocate up and down due to the characteristics of the threaded rod. The movement of the threaded sleeve, through the flipping plate, tumbles and extrudes the well-mixed composite adhesive at the bottom. Simultaneously, the meshing of the drive gear and driven gear causes the outer scraper to rotate and scrape the outer surface of the discharge hole. This design achieves the effect of scraping both the inside and outside of the mixing tank, effectively preventing the composite adhesive from adhering to the mixing tank and causing some material to be unable to be fully collected. Attached Figure Description

[0018] The preferred embodiments will be described below in a clear and easy-to-understand manner, in conjunction with the accompanying drawings, to further explain the above-mentioned characteristics, technical features, advantages and implementation methods of this utility model.

[0019] Fig. 1 This is a structural schematic diagram of the three-dimensional appearance of the present invention from a first-person perspective;

[0020] Fig. 2 This is a first-person three-dimensional cross-sectional structural schematic diagram of the present invention;

[0021] Fig. 3 This is a schematic diagram of the structure of the present invention from a second-view three-dimensional cross-section;

[0022] Fig. 4 This is a schematic diagram of the structure of the present invention from a third-person three-dimensional cross-section.

[0023] Fig. 5 This utility model Fig. 3 A three-dimensional magnified structural diagram of A.

[0024] In the figure: 1, stirring barrel; 2, support; 3, feeding port; 4, splash-proof mechanism; 41, support plate; 42, motor; 43, rotating shaft; 44, chain; 45, fixed plate; 46, support shaft; 47, push rod; 48, cover plate; 49, splash plate; 410, stress column; 411, locking hole; 412, stirring blade; 413, compression spring; 5, scraping mechanism; 51, driving gear; 52, control shaft; 53, driven gear; 54, rotating disc; 55, outer scraper; 56, discharging hole; 57, collecting box; 58, connecting rod; 59, inner scraper; 510, threaded rod; 511, threaded sleeve; 512, turnover plate; 513, limiting plate. DETAILED DESCRIPTION

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, specific embodiments of the present application will be described below with reference to the drawings. Obviously, the drawings described below are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without creative labor, and other embodiments can also be obtained.

[0026] In order to make the drawing simple, only the parts related to the present application are shown in each drawing, which does not represent the actual structure of the product. In addition, in order to make the drawing simple and easy to understand, in some drawings, only one of the components with the same structure or function is shown, or only one of them is marked. In this paper, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".

[0027] In this paper, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connection" and "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0028] In addition, in the description of the present application, the terms "first", "second" and the like are only used for differentiation and description, and cannot be understood as indicating or implying relative importance.

[0029] Example 1

[0030] Reference Figs. 1-5For the first embodiment of the utility model, propose a kind of anti-splashing structure for composite glue production stirring device, including stirring barrel 1, the circumferential surface of stirring barrel 1 is fixedly connected with support 2, the top of stirring barrel 1 is equipped with inlet 3, the inside of stirring barrel 1 is provided with anti-splashing mechanism 4;

[0031] Anti-splashing mechanism 4 includes support plate 41 and motor 42, the side of support plate 41 is fixedly connected in the circumferential surface of stirring barrel 1, the top of support plate 41 is fixedly connected with the bottom of motor 42, the output end of motor 42 is fixedly connected with rotating shaft 43, the circumferential surface of rotating shaft 43 is provided with chain 44, the inside of stirring barrel 1 is fixedly connected with fixed plate 45, the top of fixed plate 45 is penetrated with support shaft 46, and is rotationally connected with the circumferential surface of support shaft 46, the circumferential surface of rotating shaft 43 is transmissionally connected with the circumferential surface of chain 44 and support shaft 46, the top of support shaft 46 is fixedly connected with push rod 47, the inside of inlet 3 is fixedly connected with cover plate 48, the inside of cover plate 48 is slidably connected with splash plate 49, the top of splash plate 49 is fixedly connected with stress column 410.

[0032] The top of fixed plate 45 is equipped with locking hole 411, the circumferential surface of support shaft 46 is fixedly connected with stirring vane 412, the effect of locking hole 411 is to lock splash plate 49, the effect of stirring vane 412 is to stir the material in the inside of stirring barrel 1 by stirring vane 412.

[0033] The bottom of splash plate 49 is fixedly connected with compression spring 413, one end of compression spring 413 away from the bottom of splash plate 49 is fixedly connected with the circumferential surface of stress column 410, the effect of compression spring 413 is when stress column 410 is not blocked by fixed plate 45, by compression spring 413 into the inside of locking hole 411.

[0034] One end of stress column 410 is located on the displacement locus of push rod 47, and the purpose is to ensure that push rod 47 moves can push stress column 410.

[0035] When the composite glue needs to be stirred in the embodiment, the staff pours the material into the inside of the stirring barrel 1 through the feeding opening 3, starts the motor 42, the output end of the motor 42 rotates counterclockwise, the output end of the motor 42 drives the rotating shaft 43 to rotate, the rotating shaft 43 drives the supporting shaft 46 to rotate through the chain 44, the supporting shaft 46 drives the push rod 47 to rotate, the push rod 47 drives the stress column 410 to move during the rotation of the push rod 47, the stress column 410 drives the splash-proof plate 49 to move, the splash-proof plate 49 moves to close the feeding opening 3, when the stress column 410 moves to the top of the locking hole 411, the stress column 410 is locked in the inside of the locking hole 411 through the compression spring 413 to lock the splash-proof plate 49, at this time, the stress column 410 is not in the displacement track of the push rod 47, and the supporting shaft 46 drives the stirring blade 412 to uniformly stir the composite glue, so that the composite glue is prevented from being accumulated.

[0036] Embodiment 2

[0037] With reference to Figs. 1-5 For the second embodiment of the utility model, the difference between the embodiment and the first embodiment is that the inside of the stirring barrel 1 is provided with a scraping mechanism 5, the scraping mechanism 5 comprises a driving gear 51, the side surface of the driving gear 51 is fixedly penetrated on the circumferential surface of the rotating shaft 43, the top of the supporting plate 41 is penetrated with a control shaft 52, and the circumferential surface of the control shaft 52 is rotationally connected, the circumferential surface of the control shaft 52 is fixedly penetrated with a driven gear 53, the circumferential surface of the control shaft 52 is fixedly connected with a rotating disc 54, the bottom of the rotating disc 54 is fixedly connected with an outer scraping plate 55, the bottom of the stirring barrel 1 is provided with a discharging hole 56, the side surface of the support 2 is fixedly connected with a collecting box 57, and the scraping mechanism 5 prevents the composite glue from adhering to the outlet of the stirring barrel 1, so that the outlet is not blocked.

[0038] The circumferential surface of the supporting shaft 46 is fixedly connected with a connecting rod 58, one end of the connecting rod 58 away from the circumferential surface of the supporting shaft 46 is fixedly connected with an inner scraping plate 59, and the inner scraping plate 59 is used for scraping the composite glue on the inner wall of the stirring barrel 1.

[0039] One end of the supporting shaft 46 is fixedly connected with a threaded rod 510, the circumferential surface of the threaded rod 510 is screwedly connected with a threaded sleeve 511, the side surface of the threaded sleeve 511 is fixedly connected with a turnover plate 512, and the circumferential surface of the threaded rod 510 is fixedly penetrated with a limiting plate 513, and the purpose is to turn over the composite glue at the bottom of the stirring barrel 1, so that the discharging hole 56 is prevented from being blocked due to material accumulation.

[0040] The circumferential surface of the driving gear 51 is engaged with the circumferential surface of the driven gear 53, and the top of the outer scraper 55 is in contact with the outer part of the discharge hole 56. The engagement of the circumferential surface of the driving gear 51 with the circumferential surface of the driven gear 53 ensures that the rotation of the driving gear 51 can drive the rotation of the driven gear 53. The contact of the top of the outer scraper 55 with the outer part of the discharge hole 56 ensures that the rotation of the outer scraper 55 can scrape the composite glue on the outer surface of the discharge hole 56.

[0041] Further, compared with the embodiment 1, the support shaft 46 rotates and drives the inner scraper 59 to rotate through the connecting rod 58, thereby scraping the composite glue splashed on the inner wall of the stirring barrel 1. The rotation of the support shaft 46 drives the threaded rod 510 to rotate, so that the threaded sleeve 511 reciprocates up and down through the characteristics of the threaded rod 510. The movement of the threaded sleeve 511 drives the turnover plate 512 to turn and extrude the composite glue at the bottom. The extruded composite glue falls into the collecting box 57 through the discharge hole 56. The rotation of the rotating shaft 43 drives the driving gear 51 to rotate. The engagement of the driving gear 51 with the driven gear 53 drives the driven gear 53 to rotate clockwise. The rotation of the driven gear 53 drives the turntable 54 to rotate through the control shaft 52. The rotation of the turntable 54 drives the outer scraper 55 to scrape the outer surface of the discharge hole 56.

[0042] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application. They should be covered in the scope of the claims of the present application.

Claims

1. A splash-proof structure for a mixing device in the production of composite adhesives, characterized in that, Includes a mixing tank (1), a bracket (2) is fixedly connected to the circumferential surface of the mixing tank (1), a feed inlet (3) is opened on the top of the mixing tank (1), and an anti-splash mechanism (4) is provided inside the mixing tank (1); The anti-splash mechanism (4) includes a support plate (41) and a motor (42). The side of the support plate (41) is fixedly connected to the circumferential surface of the mixing tank (1). The top of the support plate (41) is fixedly connected to the bottom of the motor (42). A rotating shaft (43) is fixedly connected to the output end of the motor (42). A chain (44) is provided on the circumferential surface of the rotating shaft (43). A fixing plate (45) is fixedly connected inside the mixing tank (1). The top of the fixing plate (45) is... A support shaft (46) is passed through the part and is rotatably connected to the circumferential surface of the support shaft (46). The circumferential surface of the rotating shaft (43) is connected to the chain (44) and the circumferential surface of the support shaft (46) for transmission. A push rod (47) is fixedly connected to the top of the support shaft (46). A cover plate (48) is fixedly connected inside the feed port (3). A splash guard (49) is slidably connected inside the cover plate (48). A force-bearing column (410) is fixedly connected to the top of the splash guard (49).

2. The anti-splash structure for a mixing device in composite adhesive production according to claim 1, characterized in that, The top of the fixed plate (45) is provided with a locking hole (411), and the circumferential surface of the support shaft (46) is fixedly connected with a stirring blade (412).

3. The anti-splash structure for a mixing device in composite adhesive production according to claim 2, characterized in that, A compression spring (413) is fixedly connected to the bottom of the splash guard (49), and one end of the compression spring (413) away from the bottom of the splash guard (49) is fixedly connected to the circumferential surface of the force-bearing column (410).

4. The anti-splash structure for a mixing device in composite adhesive production according to claim 3, characterized in that, One end of the force-bearing column (410) is located on the displacement trajectory of the push rod (47).

5. The anti-splash structure for a composite adhesive production mixing device according to claim 4, characterized in that, The mixing tank (1) is equipped with a scraping mechanism (5), which includes a drive gear (51). The side of the drive gear (51) is fixedly connected to the circumferential surface of the rotating shaft (43). The top of the support plate (41) is connected to a control shaft (52) and is rotatably connected to the circumferential surface of the control shaft (52). The circumferential surface of the control shaft (52) is fixedly connected to a driven gear (53). The circumferential surface of the control shaft (52) is fixedly connected to a turntable (54). The bottom of the turntable (54) is fixedly connected to an outer scraper (55). The bottom of the mixing tank (1) is provided with a discharge hole (56). The side of the bracket (2) is fixedly connected to a collection box (57).

6. The anti-splash structure for a mixing device in composite adhesive production according to claim 5, characterized in that, A connecting rod (58) is fixedly connected to the circumferential surface of the support shaft (46), and an inner scraper (59) is fixedly connected to one end of the connecting rod (58) away from the circumferential surface of the support shaft (46).

7. The anti-splash structure for a composite adhesive production mixing device according to claim 6, characterized in that, One end of the support shaft (46) is fixedly connected to a threaded rod (510), the circumferential surface of the threaded rod (510) is threadedly connected to a threaded sleeve (511), the side of the threaded sleeve (511) is fixedly connected to a flipping plate (512), and the circumferential surface of the threaded rod (510) is fixedly penetrated by a limiting plate (513).

8. The anti-splash structure for a mixing device in composite adhesive production according to claim 7, characterized in that, The circumferential surface of the driving gear (51) meshes with the circumferential surface of the driven gear (53), and the top of the outer scraper (55) contacts the outside of the discharge hole (56).