Static separation apparatus for 107 glue

By installing a vibration box and vibration tube inside the vessel and using a vibration generating mechanism to generate vibration, the problem of low separation efficiency in existing equipment is solved, and a more efficient separation effect is achieved.

CN224307868UActive Publication Date: 2026-06-02HENAN CHENYUE CHEMICAL CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HENAN CHENYUE CHEMICAL CO LTD
Filing Date
2025-07-14
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

The existing static separation equipment for 107 glue is slow and inefficient.

Method used

Multiple vibration boxes and vibration tubes are installed inside the vessel, and vibration is generated by a vibration generating mechanism. The vibration is transmitted through the vibration tube between the vibration box and the bottom wall of the vessel to improve the separation efficiency.

Benefits of technology

Vibration improved the separation and stratification efficiency of 107 adhesive and shortened the separation time.

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Abstract

The utility model relates to the technical field of glue solution separation, and disclose a kind of static separation equipment for 107 glue, including kettle body, vibration box and multiple vibration generating mechanism, and gear set and central shaft, kettle body top is provided with mechanism box, multiple vibration boxes are arranged in kettle body inner top wall, vibration tube is arranged between vibration box and kettle body inner bottom wall, the static separation equipment for 107 glue, by multiple vibration boxes being provided in kettle body inner top wall, vibration tube is arranged between vibration box and kettle body inner bottom wall, and vibration generating mechanism is arranged in mechanism box and vibration box and vibration tube, in the separation process, vibration is generated by vibration generating mechanism, vibration is dispersed to glue solution in kettle body by vibration tube, to improve separation stratification efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of adhesive separation technology, specifically a static separation device for 107 adhesive. Background Technology

[0002] 107 glue, scientifically known as polyvinyl alcohol formaldehyde adhesive, is an adhesive formed from a solution or emulsion with water as the medium. It is characterized by being non-flammable, inexpensive, and easy to use, and is widely used in construction projects. It can be used as a base material for building adhesives and various interior and exterior wall coatings and floor coatings. The static separation of 107 glue is generally carried out in a reaction vessel, and the solution in the reaction vessel will show multiple layers.

[0003] Currently, some static separation devices for 107 glue on the market include: For example, the utility model patent with authorization announcement number CN221470998U discloses a static separation device for low viscosity 107 glue. This device is relatively traditional. By setting up a vessel, the glue solution is introduced into the vessel and then the static method is used to separate and stratify the solutions of different components. The entire separation process is quite slow and the efficiency is low.

[0004] Therefore, we propose a static separation device for 107 glue to solve the problems mentioned above. Utility Model Content

[0005] The purpose of this invention is to solve the problem of some existing static separation equipment for 107 glue, which is relatively traditional. It separates different components by setting up a vessel, introducing the glue solution into the vessel and then using a static method. The entire separation process is quite slow and inefficient.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a static separation device for 107 adhesive, comprising: a vessel body, wherein a mechanism box is provided on the top of the vessel body;

[0007] Multiple vibration boxes are installed on the top wall of the vessel body, and a vibration tube is provided between the vibration boxes and the bottom wall of the vessel body;

[0008] Multiple vibration generating mechanisms are installed inside the mechanism box, vibration box, and vibration tube;

[0009] The gear set and the central shaft are housed inside the mechanism box. The gear set is linked to the vibration generating mechanism, and the central shaft is provided with a first gear that meshes with the gear set.

[0010] Furthermore, the vibration generating mechanism includes a rotating shaft disposed within the mechanism box and the vibration chamber, an eccentric block disposed on the rotating shaft, the eccentric block disposed within the vibration chamber, and a flexible shaft disposed at the bottom end of the rotating shaft, the flexible shaft disposed within the vibration tube.

[0011] Furthermore, the side of the vessel body is provided with multiple discharge mechanisms, each including a discharge pipe disposed on the side of the vessel body. One end of the discharge pipe inside the vessel body is connected to a baffle. A limit post is disposed on the side of the baffle. One end of the limit post outside the vessel body is connected to a limit plate. A spring is sleeved on the limit post. One end of the spring contacts the outer surface of the vessel body, and the other end of the spring contacts the limit plate. A discharge hole is opened on the surface of the discharge pipe near the baffle, and one end of the discharge pipe is provided with an external thread.

[0012] Furthermore, the gear set includes a plurality of second gears, which are sleeved on the rotating shaft, and all of the plurality of second gears mesh with the first gear.

[0013] Furthermore, a drive device connected to the central shaft is provided on the top of the mechanism box.

[0014] Furthermore, the plurality of the vibration boxes and vibration tubes are arranged in a circumferential array.

[0015] Furthermore, a feed inlet is provided on the side of the vessel near the top, and a discharge pipe is provided at the bottom of the vessel, with a control valve installed on the discharge pipe.

[0016] The beneficial effects of this utility model are as follows: By setting multiple vibration boxes on the top wall of the vessel body, setting a vibration tube between the vibration boxes and the bottom wall of the vessel body, and setting a vibration generating mechanism in the mechanism box, vibration boxes, and vibration tube, vibration is generated by the vibration generating mechanism during the separation process, and the vibration is dispersed into the adhesive liquid in the vessel body through the vibration tube, thereby improving the separation and stratification efficiency. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the static separation device for 107 adhesive according to this utility model;

[0018] Figure 2 This is a cross-sectional structural schematic diagram of the static separation device for 107 adhesive according to this utility model;

[0019] Figure 3 This is a utility model Figure 2 A magnified schematic diagram of the local structure A;

[0020] Figure 4 This is a schematic diagram of the vibration generating mechanism of the static separation device for 107 glue according to this utility model.

[0021] The names corresponding to each mark in the diagram:

[0022] 1. Kettle body; 2. Mechanism box; 3. Vibration box; 4. Vibration tube; 5. Central shaft; 6. First gear; 7. Rotating shaft; 8. Eccentric block; 9. Flexible shaft; 10. Discharge mechanism; 101. Discharge tube; 102. Baffle; 103. Limiting post; 104. Limiting plate; 105. Spring; 106. Discharge hole; 107. External thread; 11. Bearing; 12. Inlet; 13. Outlet tube; 14. Control valve; 15. Second gear. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model are within the protection scope of the present utility model.

[0024] Embodiments of this utility model:

[0025] like Figures 1-4 As shown, this utility model provides a static separation device for 107 adhesive, including a vessel body 1, a vibrating box 3, multiple vibration generating mechanisms, a gear set, and a central shaft 5. A mechanism box 2 is provided on the top of the vessel body 1. Multiple vibrating boxes 3 are disposed on the inner top wall of the vessel body 1, and a vibrating tube 4 is disposed between the vibrating boxes 3 and the inner bottom wall of the vessel body 1. The multiple vibrating boxes 3 and vibrating tubes 4 are arranged in a circumferential array. Multiple vibration generating mechanisms are disposed within the mechanism box 2, the vibrating boxes 3, and the vibrating tubes 4. Each vibration generating mechanism includes a rotating shaft 7 disposed within the mechanism box 2 and the vibrating boxes 3, and an eccentric block is disposed on the rotating shaft 7. 8. An eccentric block 8 is set inside the vibration box 3. A flexible shaft 9 is set at the bottom of the rotating shaft 7. The flexible shaft 9 is set inside the vibration tube 4. The vessel body 1, the mechanism box 2, and the vibration box 3 are all equipped with bearings 11 that are compatible with the rotating shaft 7. The rotating shaft 7 drives the eccentric block 8 and the flexible shaft 9 to rotate. The rotating eccentric block 8 generates centrifugal force, which causes vibration. The vibration is transmitted from the vibration box 3 to the vibration tube 4. The rotating flexible shaft 9 continuously contacts the inner wall of the vibration tube 4 during the rotation process, thereby generating vibration. The vibration is then dispersed into the adhesive liquid inside the vessel body 1 through the vibration tube 4.

[0026] like Figures 1-4As shown, the gear set and the central shaft 5 are installed inside the mechanism housing 2. The gear set is linked with the vibration generating mechanism. The central shaft 5 is provided with a first gear 6 that meshes with the gear set. The gear set includes multiple second gears 15, which are sleeved on the rotating shaft 7. All of the multiple second gears 15 mesh with the first gear 6. The top of the mechanism housing 2 is provided with a drive device connected to the central shaft 5. The drive device is a drive motor. With this arrangement, the drive device drives the central shaft 5 and the first gear 6 to rotate. Through the meshing transmission of the first gear 6 and the second gear 15, the vibration generating mechanism is made to work.

[0027] like Figures 1-4 As shown, multiple discharge mechanisms 10 are provided on the side of the reactor body 1. Each discharge mechanism 10 includes a discharge pipe 101 disposed on the side of the reactor body 1. One end of the discharge pipe 101 located inside the reactor body 1 is connected to a baffle 102. A limiting post 103 is provided on the side of the baffle 102. One end of the limiting post 103 located outside the reactor body 1 is connected to a limiting plate 104. A spring 105 is sleeved on the limiting post 103. One end of the spring 105 is in contact with the outer surface of the reactor body 1, and the other end of the spring 105 is in contact with the limiting plate 104. A discharge hole 106 is opened on the surface of the discharge pipe 101 near the baffle 102, and one end of the discharge pipe 101 is provided with an external thread 107. With this arrangement, it is convenient to discharge solutions at different levels in the reactor through multiple discharge mechanisms 10.

[0028] like Figures 1-4 As shown, a feed inlet 12 is provided on the side of the vessel body 1 near the top, and a discharge pipe 13 is provided at the bottom of the vessel body 1. A control valve 14 is provided on the discharge pipe. With this configuration, the solution that cannot be discharged by the discharge mechanism 10 can be discharged.

Claims

1. A static separation device for 107 adhesive, characterized in that, include: The vessel body (1) has a mechanism box (2) on its top. Multiple vibration boxes (3) are set on the inner top wall of the vessel body (1), and a vibration tube (4) is provided between the vibration box (3) and the inner bottom wall of the vessel body (1); Multiple vibration generating mechanisms are installed in the mechanism box (2), the vibration box (3), and the vibration tube (4); The gear set and the central shaft (5) are set inside the mechanism box (2). The gear set is linked with the vibration generating mechanism. The central shaft (5) is provided with a first gear (6) that meshes with the gear set.

2. The static separation device for 107 adhesive according to claim 1, characterized in that: The vibration generating mechanism includes a rotating shaft (7) disposed in the mechanism box (2) and the vibration box (3), an eccentric block (8) is disposed on the rotating shaft (7), the eccentric block (8) is disposed in the vibration box (3), and a flexible shaft (9) is disposed at the bottom end of the rotating shaft (7), the flexible shaft (9) is disposed in the vibration tube (4).

3. The static separation device for 107 adhesive according to claim 1, characterized in that: The side of the vessel body (1) is provided with a plurality of discharge mechanisms (10). Each discharge mechanism (10) includes a discharge pipe (101) provided on the side of the vessel body (1). One end of the discharge pipe (101) located inside the vessel body (1) is connected to a baffle (102). A limit post (103) is provided on the side of the baffle (102). One end of the limit post (103) located outside the vessel body (1) is connected to a limit plate (104). A spring (105) is sleeved on the limit post (103). One end of the spring (105) is in contact with the outer surface of the vessel body (1), and the other end of the spring (105) is in contact with the limit plate (104). A discharge hole (106) is opened on the surface of the discharge pipe (101) near the baffle (102), and one end of the discharge pipe (101) is provided with an external thread (107).

4. The static separation device for 107 adhesive according to claim 2, characterized in that: The gear set includes a plurality of second gears (15), which are sleeved on the rotating shaft (7), and all of the plurality of second gears (15) mesh with the first gear (6).

5. The static separation device for 107 adhesive according to claim 1, characterized in that: The top of the mechanism box (2) is equipped with a drive device connected to the central shaft (5).

6. The static separation device for 107 adhesive according to claim 1, characterized in that: Multiple vibration boxes (3) and vibration tubes (4) are arranged in a circular array.

7. The static separation device for 107 adhesive according to claim 1, characterized in that: The vessel body (1) has a feed inlet (12) located near the top on its side, and a discharge pipe (13) is located at the bottom of the vessel body (1), with a control valve (14) installed on the discharge pipe.