Efficient stirring device for runway water-based adhesive
By designing a tray and receiving trough, and combining the scraping functions of the handle and scraper, the problem of difficult-to-pour out the adhesive raw materials from the inner wall of the paint bucket is solved, thereby improving mixing efficiency and saving costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-14
AI Technical Summary
When using existing mixing devices to mix water-based adhesives for runways, it is difficult to completely pour out the adhesive raw materials from the inner wall of the paint bucket, resulting in increased workload and reduced mixing efficiency.
The design incorporates a tray and a receiving trough. The tray holds the paint bucket, allowing the adhesive raw material from the inner wall to flow into the receiving trough. Combined with the scraping function of the handle and scraper, it ensures that the raw material completely enters the mixing tank. The limiting ball and lifting cap prevent the adhesive raw material from curing and sticking together.
It effectively saves costs, improves mixing efficiency, ensures that raw materials are completely incorporated into the mixing tank, and avoids adhesion problems caused by solidification.
Smart Images

Figure CN224113860U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of mixing technology, specifically relating to a high-efficiency mixing device for water-based adhesives for runways. Background Technology
[0002] High-efficiency mixing equipment for water-based runway adhesives is crucial for the uniform mixing of these adhesives, especially in runway construction, as it can effectively improve the quality and efficiency of the adhesives.
[0003] Problems with existing technology:
[0004] Due to geographical constraints during runway construction, workers often use simple mixing devices to facilitate transportation, save costs, and improve efficiency. They manually mix and feed materials, using simple mixers to stir the raw materials. The existing raw materials are generally stored in woven bags for solids and paint buckets for liquids. Water-based adhesives contain a large amount of adhesive raw materials. When pouring the adhesive raw materials from the paint bucket into the mixer, it is often necessary to wait for a period of time for the adhesive raw materials adhering to the inner wall of the paint bucket to flow out. However, this not only increases the workload of the workers, but also results in incomplete discharge of raw materials and affects the feeding efficiency, thereby reducing the mixing efficiency. Utility Model Content
[0005] The purpose of this invention is to provide a high-efficiency mixing device for water-based adhesives used in runways. The design of the trailer and receiving trough allows for the placement of the paint bucket containing the poured raw materials, enabling the flow and collection of the adhesive raw materials adhering to its inner wall, thereby saving costs and increasing mixing efficiency. The handle design allows the adhesive raw materials in the receiving trough to be scraped out and fed into the mixing tank through the inlet for mixing. The limiting ball and lifting cap allow the handle to rotate, preventing it from sticking to the inside of the receiving trough due to the solidification of the adhesive raw materials.
[0006] The specific technical solution adopted by this utility model is as follows:
[0007] A high-efficiency mixing device for water-based adhesives for runways includes: a carrier vehicle, a mixing tank fixedly installed on the top of the carrier vehicle, an outer connecting ring fixedly installed on the top of the mixing tank, a trailer provided on the outer side of the outer connecting ring, a raw material coating tank sleeved on the outer side of the trailer, a receiving groove fixedly installed on the mixing tank at the lower position corresponding to the raw material coating tank, multiple inlets opened on the mixing tank corresponding to the receiving groove, and a discharge port provided at the bottom of one side of the mixing tank.
[0008] A flow-stop ring is fixedly installed on the outer side of the trailer near the outer connecting ring. An H-shaped slider is fixedly connected to the end of the trailer. An H-shaped groove is opened on the outer connecting ring corresponding to the position of the H-shaped slider. The H-shaped slider is slidably installed with the H-shaped groove.
[0009] A handle is provided on the outside of the receiving trough, and a scraper is slidably installed inside the receiving trough corresponding to the position of the handle. Sliding grooves are opened on both sides of the receiving trough corresponding to the scraper. The end of the handle extends into the two sliding grooves and is fixedly connected to the scraper. The handle is slidably installed with the two sliding grooves.
[0010] Hollow columns are fixedly installed at both ends of the receiving trough. A lifting spring is fixedly connected inside the hollow column. A lifting cap is fixedly connected to the end of the lifting spring. The end of the lifting cap extends into the interior of the receiving trough. The lifting cap is slidably connected to the receiving trough.
[0011] A limiting hole is formed inside a sliding groove near the handle of the receiving groove. A limiting ball is vertically slidably arranged inside the limiting hole. A limiting spring is arranged between the limiting ball and the inner wall of the limiting hole. The two ends of the limiting spring are fixedly connected to the limiting ball and the inner wall of the limiting hole, respectively.
[0012] The number of the carriages is multiple, and they are arranged in a ring array along the outer ring.
[0013] The technical effects achieved by this utility model are as follows:
[0014] This invention, through the design of a tray and a receiving trough, can place a paint bucket from which raw materials have been poured out, allowing the adhesive raw materials adhering to its inner wall to flow out and be collected, thereby saving costs while increasing mixing efficiency.
[0015] This utility model, through the design of the handle, can scrape out the adhesive raw material in the receiving groove and enter the mixing tank through the feed port for mixing. The setting of the limiting ball and the lifting cap can rotate the handle to prevent it from sticking to the inside of the receiving groove due to the solidification of the adhesive raw material. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the appearance structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the structure of the mixing tank in this utility model;
[0018] Figure 3 This is a schematic diagram of the material receiving trough in this utility model;
[0019] Figure 4 This is a utility model Figure 3 A schematic diagram of the structure at point A in the diagram;
[0020] Figure 5 This is a schematic diagram of the grip structure in this utility model;
[0021] Figure 6 This is a structural cross-sectional view of the hollow column in this utility model;
[0022] Figure 7 This is a schematic diagram of the limiting ball in this utility model.
[0023] The attached diagram lists the components represented by each number as follows:
[0024] 1. Carrier; 2. Mixing tank; 3. Raw material coating tank; 4. Receiving trough; 5. External connecting ring; 6. Discharge port; 7. Trailer; 8. Feed port; 401. Handle; 402. Scraper; 403. Sliding groove; 404. Hollow column; 405. Lifting spring; 406. Lifting cap; 407. Limiting ball; 408. Limiting spring; 701. Flow-stopping ring; 702. H-shaped slider. Detailed Implementation
[0025] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0026] like Figure 1 - Figure 2 As shown, a high-efficiency mixing device for water-based adhesives for runways includes: a carrier vehicle 1, a mixing tank 2 fixedly installed on the top of the carrier vehicle 1, an outer connecting ring 5 fixedly installed on the top of the mixing tank 2, a bracket 7 provided on the outer side of the outer connecting ring 5, a raw material coating tank 3 sleeved on the outer side of the bracket 7, a receiving groove 4 fixedly installed on the mixing tank 2 corresponding to the lower position of the raw material coating tank 3, multiple inlets 8 opened on the mixing tank 2 corresponding to the receiving groove 4, and a discharge port 6 provided on one side of the bottom end of the mixing tank 2; the number of brackets 7 is multiple, and they are arranged in a circular array along the outer connecting ring 5.
[0027] When mixing water-based adhesives, the raw materials are first poured into the mixing tank 2 according to the proportion. The adhesive raw materials are poured in first, and then the empty paint bucket is placed on the outside of the bracket 7 according to the size of the paint bucket containing the raw materials. Then other raw materials are poured in. The remaining raw materials on the inner wall of the paint bucket will flow into the receiving trough 4 under the action of gravity. The bracket 7 is detachable and can be replaced with different sizes to adapt to different specifications of paint buckets. The bottom surface of the receiving trough 4 is an inclined surface that slopes towards the mixing tank 2, so that the adhesive raw materials can flow into the mixing tank 2 along the feed inlet 8.
[0028] See attached document Figure 2 - Figure 5A flow-stop ring 701 is fixedly installed on the outer side of the trailer 7 near the outer ring 5. An H-shaped slider 702 is fixedly connected to the end of the trailer 7. An H-shaped groove is opened on the outer ring 5 corresponding to the position of the H-shaped slider 702. The H-shaped slider 702 is slidably installed with the H-shaped groove. A handle 401 is provided on the outer side of the receiving groove 4. A scraper 402 is slidably installed inside the receiving groove 4 corresponding to the position of the handle 401. Sliding grooves 403 are opened on both sides of the receiving groove 4 corresponding to the scraper 402. The end of the handle 401 extends into the two sliding grooves 403 and is fixedly connected to the scraper 402. The handle 401 is slidably installed with the two sliding grooves 403.
[0029] According to the above structure, when replacing the carriage 7, it is only necessary to slide the H-shaped slider 702 upward to separate it from the H-shaped groove for replacement. The design of the H-shaped groove and the H-shaped slider 702 can make the carriage 7 stable to use. The design of the flow-stopping ring 701 is used to prevent the rubber raw material from flowing down along the carriage 7 and entering the H-shaped groove. When the rubber raw material flows to the flow-stopping ring 701, it can no longer move. When it accumulates a certain volume, it will fall into the receiving groove 4.
[0030] The scraper 402 is used to scrape off the residual adhesive raw materials inside the receiving trough 4. The receiving trough 4 has inlets 8 at both ends. By holding the handle 401 and raising it vertically, the scraper 402 can be slid from one end of the receiving trough 4 to the other. During this process, the adhesive raw materials adhering to the inside of the receiving trough 4 can be pushed to the inlets 8 for discharge.
[0031] See attached document Figure 5 - Figure 7 Hollow columns 404 are fixedly installed at both ends of the receiving groove 4. A lifting spring 405 is fixedly connected inside the hollow column 404. A lifting cap 406 is fixedly connected to the end of the lifting spring 405. The end of the lifting cap 406 extends into the interior of the receiving groove 4. The lifting cap 406 is slidably connected to the receiving groove 4. A limiting hole is opened inside a sliding groove 403 near the handle 401 of the receiving groove 4. A limiting ball 407 is vertically slidably arranged inside the limiting hole. A limiting spring 408 is arranged between the limiting ball 407 and the inner wall of the limiting hole. The two ends of the limiting spring 408 are fixedly connected to the limiting ball 407 and the inner wall of the limiting hole, respectively.
[0032] According to the above structure, when the handle 401 passes the limiting ball 407, under the action of external force, the limiting ball 407 will press the limiting spring 408 upward, and then reach the end of the sliding groove 403 and push the lifting cap 406 to press the lifting spring 405. At this time, the handle 401 is limited by the limiting ball 407 and cannot move. At this time, the lifting cap 406 is reset under the elastic force of the lifting spring 405 and pushes the lifting cap 406 to lift the scraper 402. Since the handle 401 is limited by the limiting ball 407 and cannot move, the scraper 402 rotates under the push of the lifting cap 406, so that its bottom is separated from the inner wall of the receiving groove 4, preventing the residual adhesive raw material from solidifying and sticking the two together. The bottom shape of the scraper 402 is the same as the bottom shape inside the receiving groove 4, both of which are inclined, and there is a certain distance between the scraper 402 and the inside of the receiving groove 4 near the handle 401.
[0033] The working principle of this utility model is as follows: When it is necessary to stir water-based adhesives, the raw materials are first poured into the inside of the mixing tank 2 according to the proportion. First, the adhesive raw materials are poured in. Then, according to the size of the paint bucket containing the raw materials, the empty paint bucket is placed on the outside of the bracket 7. Then, other raw materials are poured in. The remaining raw materials on the inner wall of the paint bucket will flow into the receiving trough 4 under the action of gravity. The bracket 7 is a detachable design that can be replaced with different sizes to adapt to different specifications of paint buckets. The bottom surface of the receiving trough 4 is an inclined surface that slopes towards the mixing tank 2, so that the adhesive raw materials can flow into the mixing tank 2 along the feed inlet 8.
[0034] During mixing, the raw materials inside the receiving trough 4 can also be scraped into the mixing tank 2 by sliding the handle 401.
[0035] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. A high-efficiency mixing device for water-based adhesives used in running tracks, characterized in that, include: A carrier (1) is equipped with a mixing tank (2) fixedly mounted on the top of the carrier (1). An outer ring (5) is fixedly mounted on the top of the mixing tank (2). A trailer (7) is provided on the outside of the outer ring (5). A raw material coating tank (3) is sleeved on the outside of the trailer (7). A receiving groove (4) is fixedly mounted on the mixing tank (2) at the lower position corresponding to the raw material coating tank (3). Multiple feed inlets (8) are opened on the mixing tank (2) at the position corresponding to the receiving groove (4). A discharge port (6) is provided on the bottom side of the mixing tank (2). A flow-stop ring (701) is fixedly installed on the outer side of the bracket (7) near the outer ring (5). An H-shaped slider (702) is fixedly connected to the end of the bracket (7). An H-shaped groove is opened on the outer ring (5) corresponding to the position of the H-shaped slider (702). The H-shaped slider (702) is slidably installed with the H-shaped groove.
2. The high-efficiency mixing device for water-based adhesives for runways according to claim 1, characterized in that: A handle (401) is provided on the outside of the receiving groove (4). A scraper (402) is slidably installed inside the receiving groove (4) corresponding to the position of the handle (401). Sliding grooves (403) are provided on both sides of the receiving groove (4) corresponding to the scraper (402). The end of the handle (401) extends into the two sliding grooves (403) and is fixedly connected to the scraper (402). The handle (401) is slidably installed with the two sliding grooves (403).
3. The high-efficiency mixing device for water-based adhesives for runways according to claim 1, characterized in that: Hollow columns (404) are fixedly installed at both ends of the receiving groove (4). A lifting spring (405) is fixedly connected inside the hollow column (404). A lifting cap (406) is fixedly connected to the end of the lifting spring (405). The end of the lifting cap (406) extends into the inside of the receiving groove (4). The lifting cap (406) is slidably connected to the receiving groove (4).
4. The high-efficiency mixing device for water-based adhesives for runways according to claim 1, characterized in that: The receiving groove (4) has a limiting hole inside a sliding groove (403) near the handle (401). A limiting ball (407) is vertically slidably arranged inside the limiting hole. A limiting spring (408) is arranged between the limiting ball (407) and the inner wall of the limiting hole. The two ends of the limiting spring (408) are fixedly connected to the limiting ball (407) and the inner wall of the limiting hole, respectively.
5. The high-efficiency mixing device for water-based adhesives for runways according to claim 1, characterized in that: The number of the carriages (7) is multiple, and they are arranged in a ring array along the outer ring (5).