Processing equipment for pouring sealant production
By introducing a combination design of support rods, base plates, and casters into the potting compound production equipment, and using threaded rods and limiting devices to achieve stable support for the tank, the problem of easy tilting of the tank is solved, and the ease of operation and stability are improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG XINQIU TECH CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-01
AI Technical Summary
Existing potting compound production equipment is prone to tilting during use, requiring staff to manually maintain stability continuously, which is cumbersome and results in a poor user experience.
The design incorporates support rods, a base plate, casters, and support components. Through the cooperation of threaded rods and limiting devices, the tank can be stably supported and moved, reducing the need for manual intervention.
It improves the stability of the tank, simplifies the operating procedures for staff, and enhances the user experience.
Smart Images

Figure CN224180727U_ABST
Abstract
Description
A processing equipment for potting compound production Technical Field
[0001] This utility model relates to the field of potting compound production technology, and in particular to a processing equipment for potting compound production. Background Technology
[0002] Potting compounds are used for bonding, sealing, potting, and coating protection of electronic components. Before curing, potting compounds are liquid and fluid; their viscosity varies depending on the material, performance, and manufacturing process. They only realize their value after complete curing, providing waterproofing, moisture resistance, dustproofing, insulation, thermal conductivity, security, temperature resistance, and shock absorption. There are many types of electronic potting compounds. Classified by material type, the three most commonly used are epoxy resin potting compounds, silicone resin potting compounds, and polyurethane potting compounds. During production and processing, potting compounds easily adhere to the inner wall of the mixing tank. If not cleaned promptly, this can lead to difficult-to-remove residue.
[0003] Chinese utility model patent CN217042291U discloses a processing device for producing potting compound, relating to the field of potting compound production technology. Specifically, the device includes a tank, a drive motor fixedly mounted on the top of the tank, a stirring shaft fixedly connected to the bottom of the drive motor, a scraper fixedly connected to the side of the stirring shaft, a spray pipe fixedly sleeved on the top of the tank, a spray head movably sleeved on the bottom of the spray pipe, and a water outlet on the side of the spray head. This processing device for producing potting compound utilizes a scraper installed inside the tank. The drive motor drives the stirring shaft to rotate, which in turn drives the scraper to rotate, causing the scraper to continuously scrape away the potting compound adhering to the inner wall of the tank, preventing the potting compound from sticking to the inner wall of the tank.
[0004] Regarding the aforementioned technologies, the inventors believe the following drawbacks exist: The device supports the tank using multiple support legs, thus keeping the multiple casters in place. In actual use, operators must sequentially rotate multiple handwheels to move the corresponding support legs. Because the tank is prone to tilting when the support leg height changes, operators must continuously manually maintain the tank's stability during use, resulting in cumbersome operation and a poor user experience. Summary of the Invention
[0005] To address the aforementioned problems, this invention provides a processing equipment for the production of potting compound.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a processing equipment for producing potting compound, comprising a tank, multiple support rods disposed on the bottom surface of the tank, a base plate jointly mounted on the bottom surface of the multiple support rods, and casters disposed on the bottom surface of the base plate. A drive motor is disposed on the upper surface of the tank, a stirring shaft is connected to the output shaft of the drive motor, a scraper is connected to the end of the stirring shaft, a water inlet pipe is connected to the upper surface of the tank, a water outlet pipe is connected to the end of the water inlet pipe, and a support assembly for supporting the base plate is disposed on the base plate.
[0007] By adopting the above technical solution, the potting compound production process involves multiple stages, with mixing being one of them. When mixing is required, workers sequentially inject epoxy resin, curing agent, filler, and additives into the tank and start the drive motor. This causes the output shaft of the drive motor to rotate, resulting in the mixing shaft and scraper rotating along with the output shaft, gradually mixing the various raw materials under the action of the mixing shaft. After mixing is complete, workers simply open the discharge pipe at the bottom of the tank to move the raw materials out of the tank. During this process, to improve the stability of the tank, workers rotate the threaded rod, causing the four sliding rods to move downwards simultaneously and support the tank. This improves the stability of the tank and reduces the difficulty of supporting the bottom plate, thus enhancing the user experience.
[0008] Furthermore, the support assembly includes four fixed rods arranged in a circumferential array on the upper surface of the base plate, and a cross rod mounted on the four fixed rods. The bottom surface of the base plate has four sliding grooves extending into the four fixed rods respectively. Each of the four sliding grooves has a sliding groove on its inner wall. The upper surface of the cross rod has a threaded groove that communicates with the four sliding grooves. The support assembly also includes four sliding rods that are slidably disposed in the four sliding grooves respectively, and a limiting device disposed on the base plate for limiting the sliding rods.
[0009] Furthermore, each of the four sliding rods has a compression spring fixed to its upper surface, and the other end of each of the four compression springs is fixed to the inner top wall of the corresponding slide groove.
[0010] By adopting the above technical solution, when workers need to support the base plate, they need to close the limiting device, which allows the four sliding rods to move downwards sequentially under the action of the four compression springs and press against the ground. Furthermore, workers need to reopen the limiting device, which allows the four sliding rods to continue moving downwards under the action of the limiting device and eventually remain stable, thus keeping the casters suspended and improving the stability of the tank.
[0011] Furthermore, the limiting device includes four limiting rods that are slidably disposed in four sliding grooves and a threaded rod that is threadedly connected in the threaded groove. A first inclined surface is provided on the edge where the upper surface of the four limiting rods intersects with the side wall near the axis of the threaded rod. A placement groove is provided on the side wall near the axis of the threaded rod of the four sliding rods. A second inclined surface is provided on the inner bottom wall of the four placement grooves.
[0012] By adopting the above technical solution, when workers need to support the base plate, they need to rotate the threaded rod, which gradually reduces the force between the sliding rod and the end of the limiting rod. This causes the four sliding rods to move downwards and press against the ground under the action of the four compression springs, thus aligning the second inclined surface with the limiting rod. At this point, workers need to rotate the threaded rod in the opposite direction, which causes the threaded rod to press against the first inclined surface. This causes the four limiting rods to move away from the axis of the threaded rod, thus pressing against the four second inclined surfaces respectively. This allows the four sliding rods to move downwards and remain stable under the action of the four limiting rods, thereby gradually raising the casters and keeping them suspended in the air.
[0013] Furthermore, magnet blocks are fixed to the upper surfaces of the four sliding rods, and iron rods are fixed to the inner top walls of the four sliding grooves.
[0014] By adopting the above technical solution, when the operator needs to move the tank, they need to rotate the threaded rod to separate it from the first inclined surface. This allows the four sliding rods to gradually return to their original position under gravity, and the casters to re-engage with the ground (at this point, the second inclined surface returns to its position opposite the limiting rod). Then, the operator needs to slide the sliding rod upwards to press the magnet against the iron rod, thus initially stabilizing the sliding rod under the action of the magnet. Furthermore, the operator only needs to rotate the threaded rod in the opposite direction to press the limiting rod against the side wall of the sliding rod, keeping the sliding rod suspended in the air and reducing the probability of the sliding rod interfering with the movement of the casters.
[0015] Furthermore, limit blocks are slidably provided on the inner walls of the four slide grooves, and the four limit blocks are respectively fixed to the adjacent slide rods.
[0016] By adopting the above technical solution, the limiting block improves the stability of the sliding rod and reduces the probability of the sliding rod separating from the groove, thereby improving the user experience for staff.
[0017] Furthermore, each of the four sliding rods has a grip fixed to the lower end of its side wall to reduce the difficulty for workers to move the sliding rod.
[0018] Furthermore, the bottom surface of each of the four sliding rods is provided with a rubber sheet.
[0019] In summary, this utility model has the following beneficial effects:
[0020] 1. In this application, the potting compound production process involves multiple steps, with mixing being one of them. When workers need to perform the mixing process, they sequentially inject epoxy resin, curing agent, filler, and additives into the tank and start the drive motor. This causes the output shaft of the drive motor to rotate, thereby causing the stirring shaft and scraper to rotate along with the output shaft, gradually mixing the various raw materials under the action of the stirring shaft. Subsequently, after mixing is complete, workers only need to open the discharge pipe at the bottom of the tank to allow the raw materials to move out of the tank through the discharge pipe. During this process, to improve the stability of the tank, workers need to rotate the threaded rod, which causes the four sliding rods to move downwards simultaneously and support the tank, thereby improving the stability of the tank and reducing the difficulty for workers to support the bottom plate, thus improving the user experience.
[0021] 2. In this application, when workers need to support the base plate, they need to close the limiting device, which allows the four sliding rods to move downwards sequentially under the action of the four compression springs and press against the ground. Furthermore, workers need to reopen the limiting device, which allows the four sliding rods to continue moving downwards under the action of the limiting device and eventually remain stable, thus keeping the casters suspended and improving the stability of the tank.
[0022] 3. In this application, when the worker needs to support the base plate, the worker needs to rotate the threaded rod, which gradually reduces the force between the sliding rod and the end of the limiting rod. This causes the four sliding rods to move downwards and press against the ground under the action of the four compression springs, thus aligning the second inclined surface with the limiting rod. At this time, the worker needs to rotate the threaded rod in the opposite direction, which causes the threaded rod to press against the first inclined surface. This causes the four limiting rods to move away from the axis of the threaded rod, thus pressing against the four second inclined surfaces respectively. This causes the four sliding rods to move downwards and remain stable under the action of the four limiting rods, thereby gradually raising the caster wheel and keeping it suspended. Attached Figure Description
[0023] Figure 1 is a schematic diagram of the overall structure of an embodiment of the present utility model;
[0024] Figure 2 is a schematic diagram of the scraper and its connection structure according to an embodiment of the present utility model;
[0025] Figure 3 is a schematic diagram of the support component and its connection structure according to an embodiment of the present utility model;
[0026] Figure 4 is a schematic diagram of the sliding groove and its connection structure according to an embodiment of the present utility model;
[0027] Figure 5 is a schematic diagram of the limiting device and its connection structure according to an embodiment of the present invention.
[0028] In the diagram: 1. Tank body; 11. Support rod; 2. Base plate; 21. Caster wheel; 3. Drive motor; 31. Stirring shaft; 4. Scraper; 41. Inlet pipe; 5. Outlet pipe; 6. Support assembly; 61. Fixing rod; 62. Cross rod; 621. Slide groove; 622. Sliding groove; 623. Threaded groove; 63. Sliding rod; 7. Limiting device; 71. Limiting rod; 72. Threaded rod; 73. First inclined surface; 74. Placement groove; 75. Second inclined surface; 8. Compression spring; 81. Magnet block; 82. Iron rod; 83. Limiting block; 84. Handle; 9. Rubber sheet. Detailed Implementation
[0029] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.
[0030] As shown in Figures 1-5, this application discloses a processing equipment for potting compound production, including a tank 1, support rods 11, a base plate 2, casters 21, a drive motor 3, a stirring shaft 31, a scraper 4, a water inlet pipe 41, a water outlet pipe 5, a support assembly 6, a compression spring 8, a magnet block 81, an iron rod 82, a limiting block 83, and a gripping rod 84. The support rods 11 are rod-shaped structures, and multiple support rods 11 are arranged sequentially on the bottom surface of the tank 1. The base plate 2 is an annular plate structure, and the base plate 2 is mounted on the bottom surface of multiple support rods 11. The casters 21 are located on the bottom surface of the base plate 2, and the drive motor 3 is located on the upper surface of the tank 1. The stirring shaft 31 is connected to the output shaft of the drive motor 3, and the scraper 4 is connected to the end of the stirring shaft 31. The water inlet pipe 41 is a circular tube structure and is connected to the upper surface of the tank 1. The outlet pipe 5 is a circular pipe structure, and the ends of the outlet pipe 5 and the inlet pipe 41 are connected to each other.
[0031] A support assembly 6 is mounted on the base plate 2 to support it. The support assembly 6 includes fixed rods 61, cross rods 62, sliding rods 63, and a limiting device 7. The fixed rods 61 are rectangular rod-shaped structures, and four fixed rods 61 are arranged in a circumferential array on the upper surface of the base plate 2. The cross rods 62 are cross-shaped rod-shaped structures, and the cross rods 62 are mounted on the four fixed rods 61. The bottom surface of the base plate 2 has four grooves 621 extending into the four fixed rods 61. Each of the four grooves 621 has a sliding groove 622 on its inner wall, and the upper surface of the cross rods 62 has a threaded groove 623 communicating with each of the four sliding grooves 622. The sliding rods 63 are rectangular rod-shaped structures, and four sliding rods 63 are slidably mounted within the four grooves 621.
[0032] There are four compression springs 8, and one end of each compression spring 8 is fixed to the upper surface of the four sliding rods 63, and the other end of each compression spring 8 is fixed to the inner top wall of the corresponding slide groove 621.
[0033] When workers need to support the base plate 2, they need to close the limiting device 7, which allows the four sliding rods 63 to move downwards in sequence under the action of the four compression springs 8 and press against the ground. Furthermore, workers need to reopen the limiting device 7, which allows the four sliding rods 63 to continue moving downwards under the action of the limiting device 7 and eventually remain stable, thus keeping the casters 21 suspended and improving the stability of the tank 1.
[0034] A limiting device 7 is mounted on the base plate 2 to limit the sliding rod 63. The limiting device 7 includes a limiting rod 71 and a threaded rod 72. The limiting rod 71 is a rectangular rod-shaped structure, and four limiting rods 71 are provided and slidably disposed in four sliding grooves 622. The threaded rod 72 is threadedly connected in the threaded groove 623. A first inclined surface 73 is provided on the edge where the upper surface of the four limiting rods 71 intersects with the side wall near the axis of the threaded rod 72. A mounting groove 74 is provided on the side wall near the axis of the threaded rod 72 of the four sliding rods 63, and a second inclined surface 75 is provided on the inner bottom wall of the four mounting grooves 74.
[0035] When the worker needs to support the base plate 2, they need to rotate the threaded rod 72, which gradually reduces the force between the sliding rod 63 and the end of the limiting rod 71. This causes the four sliding rods 63 to move downwards and press against the ground under the action of the four compression springs 8, thus aligning the second inclined surface 75 with the limiting rod 71. At this time, the worker needs to rotate the threaded rod 72 in the opposite direction, which causes the threaded rod 72 to press against the first inclined surface 73. This causes the four limiting rods 71 to move away from the axis of the threaded rod 72, thus pressing against the four second inclined surfaces 75 respectively. This causes the four sliding rods 63 to move downwards and remain stable under the action of the four limiting rods 71, thus gradually raising the caster wheel 21 and keeping it suspended.
[0036] The magnet block 81 is a circular block structure, and four magnet blocks 81 are provided and fixed sequentially on the upper surface of the four sliding rods 63. The iron rod 82 is a circular rod structure, and four iron rods 82 are provided and fixed sequentially on the inner top wall of the four sliding grooves 621.
[0037] When the operator needs to move tank 1, they need to rotate the threaded rod 72 to separate it from the first inclined surface 73. This allows the four sliding rods 63 to gradually return to their original position under gravity, and the caster wheel 21 to re-engage with the ground (at this time, the second inclined surface 75 returns to its position opposite the limiting rod 71). Then, the operator needs to slide the sliding rod 63 upwards to press the magnet 81 against the iron rod 82, thus initially stabilizing the sliding rod 63 under the action of the magnet 81. Furthermore, the operator only needs to rotate the threaded rod 72 in the opposite direction to press the limiting rod 71 against the side wall of the sliding rod 63, keeping the sliding rod 63 suspended and reducing the probability of it interfering with the movement of the caster wheel 21.
[0038] The limiting block 83 is a rectangular block structure. Four limiting blocks 83 are provided and are slidably disposed on the inner walls of the four sliding grooves 621. The four limiting blocks 83 are respectively fixed to the adjacent sliding rods 63. The limiting blocks 83 improve the stability of the sliding rods 63 and reduce the probability of the sliding rods 63 separating from the sliding grooves 621, thereby improving the user experience for the staff.
[0039] To reduce the difficulty for staff to move the sliding rods 63, grips 84 are fixed to the lower side walls of all four sliding rods 63.
[0040] To improve the stability of the tank 1, rubber sheets 9 are provided on the bottom surfaces of the four sliding rods 63.
[0041] The operating principle of the processing equipment for potting compound production in this embodiment is as follows: The potting compound production process involves multiple steps, and the mixing process is one of them. When the worker needs to perform the mixing process, he / she needs to inject epoxy resin, curing agent, filler, and additives into the tank 1 in sequence, and start the drive motor 3. This causes the output shaft of the drive motor 3 to rotate, thereby causing the stirring shaft 31 and scraper 4 to rotate with the output shaft of the drive motor 3, so that the various raw materials are gradually mixed under the action of the stirring shaft 31. After the mixing is completed, the worker only needs to open the discharge pipe at the bottom of the tank 1 to allow the raw materials to move out of the tank 1 through the discharge pipe. During this process, in order to improve the stability of the tank 1, the worker needs to rotate the threaded rod 72, which causes the four sliding rods 63 to move downwards simultaneously and support the tank 1, thereby improving the stability of the tank 1 and reducing the difficulty for the worker to support the bottom plate 2, thus improving the worker's user experience.
[0042] The above description is merely a preferred embodiment of this utility model. The protection scope of this utility model is not limited to the above embodiments. All technical solutions falling within the scope of this utility model's concept are protected. It should be noted that for those skilled in the art, any improvements and modifications made without departing from the principle of this utility model should also be considered within the protection scope of this utility model.
Claims
1. A processing equipment for producing potting compound, comprising a tank (1), a plurality of support rods (11) disposed on the bottom surface of the tank (1), a base plate (2) jointly mounted on the bottom surface of the plurality of support rods (11), and casters (21) disposed on the bottom surface of the base plate (2), characterized in that: A drive motor (3) is provided on the upper surface of the tank (1). A stirring shaft (31) is connected to the output shaft of the drive motor (3). A scraper (4) is connected to the end of the stirring shaft (31). A water inlet pipe (41) is connected to the upper surface of the tank (1). A water outlet pipe (5) is connected to the end of the water inlet pipe (41). A support assembly (6) for supporting the bottom plate (2) is provided on the bottom plate (2).
2. The processing equipment for producing potting compound according to claim 1, characterized in that: The support assembly (6) includes four fixed rods (61) arranged in a circumferential array on the upper surface of the base plate (2) and a cross rod (62) mounted on the four fixed rods (61). The bottom surface of the base plate (2) has four sliding grooves (621) extending into the four fixed rods (61). The inner walls of the four sliding grooves (621) are provided with sliding grooves (622). The upper surface of the cross rod (62) is provided with threaded grooves (623) that communicate with the four sliding grooves (622). The support assembly (6) also includes four sliding rods (63) that are slidably disposed in the four sliding grooves (621) and a limiting device (7) disposed on the base plate (2) for limiting the sliding rods (63).
3. The processing equipment for producing potting compound according to claim 2, characterized in that: The limiting device (7) includes four limiting rods (71) that are slidably disposed in four sliding grooves (622) and a threaded rod (72) that is threadedly connected in a threaded groove (623). The upper surfaces of the four limiting rods (71) are provided with a first inclined surface (73) on the edge where they intersect with the side wall near the axis of the threaded rod (72). The side walls of the four sliding rods (63) near the axis of the threaded rod (72) are provided with a mounting groove (74). The inner bottom walls of the four mounting grooves (74) are provided with a second inclined surface (75).
4. The processing equipment for producing potting compound according to claim 3, characterized in that: The upper surfaces of the four sliding rods (63) are each fixed with a compression spring (8), and the other ends of the four compression springs (8) are respectively fixed on the inner top wall of the corresponding slide groove (621).
5. The processing equipment for producing potting compound according to claim 4, characterized in that: Magnet blocks (81) are fixed on the upper surface of each of the four sliding rods (63), and iron rods (82) are fixed on the inner top wall of each of the four sliding grooves (621).
6. The processing equipment for producing potting compound according to claim 5, characterized in that: Limiting blocks (83) are slidably provided on the inner walls of the four sliding grooves (621), and the four limiting blocks (83) are respectively fixed to the adjacent sliding rods (63).
7. The processing equipment for producing potting compound according to claim 6, characterized in that: Each of the four sliding rods (63) has a grip (84) fixed to the lower end of its side wall to reduce the difficulty for workers to move the sliding rods (63).
8. The processing equipment for producing potting compound according to claim 7, characterized in that: The bottom surface of each of the four sliding rods (63) is provided with a rubber sheet (9).
Citation Information
Patent Citations
Processing equipment for pouring sealant production
CN217042291U