Efficient medical rubber sealing element mold
By improving the medical rubber seal mold, the system utilizes adjusting columns and elastic components to achieve rapid assembly and disassembly. Combined with electric valves and temperature sensors to optimize cooling, it solves the problems of complex assembly and low cooling efficiency of traditional molds, thereby improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2026-03-20
AI Technical Summary
Traditional medical rubber seal molds are complex to assemble, time-consuming to maintain, and have low cooling efficiency, which affects production efficiency and product quality.
A mold comprising an upper mold, a lower mold, a mounting box, a positioning groove, a cooling box, and a fastening mechanism was designed. It enables rapid assembly and disassembly through adjusting columns and elastic components, and optimizes the cooling process by combining electric valves and temperature sensors.
It simplifies the mold assembly process, shortens maintenance time, improves cooling efficiency, enhances production efficiency, and ensures product quality and production continuity.
Smart Images

Figure CN224012791U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical sealing component production mold technology, specifically a high-efficiency medical rubber sealing component mold. Background Technology
[0002] As is well known, in the manufacturing process of medical rubber seals, the performance of the mold directly affects the product quality and production efficiency. Traditional molds require precise alignment of various components during assembly, often necessitating additional tools for fixation. This process is not only time-consuming but also prone to misalignment due to improper operation, thus affecting product accuracy. Due to the complex structure of the mold, traditional molds often require significant time for disassembly and reassembly when maintenance or cleaning is needed. In particular, cleaning the cooling system, if not performed regularly, can lead to decreased cooling efficiency and affect production quality. After the rubber seals are molded, rapid cooling is essential to ensure dimensional stability and physical properties. However, the cooling process in traditional methods is often slow and cannot meet the demands of high-efficiency production. Whether it's mold assembly or maintenance, prolonged downtime directly impacts the continuity of the production line and overall production efficiency. Therefore, it is necessary to propose solutions to this technical problem. Utility Model Content
[0003] (a) Technical problems to be solved
[0004] To address the shortcomings of existing technologies, this utility model provides a high-efficiency medical rubber sealing mold.
[0005] (II) Technical Solution
[0006] To achieve the above objectives, this utility model provides the following technical solution: a high-efficiency medical rubber sealing mold, comprising an upper mold and a lower mold, wherein the lower mold is provided with an installation box, the installation box is provided with an assembly mechanism, a positioning groove is formed at the top of the installation box, the lower mold abuts against the positioning groove, a positioning mechanism is provided between the positioning groove and the lower mold, a docking groove is formed at one end of the installation box, a cooling box is provided on the docking groove, an external component is provided on the cooling box, a fastening box is provided on one side of the installation box, a first retaining groove is formed on one side of the lower mold, and a fastening box is formed on one side of the cooling box. The fastening box has a second slot and a fastening groove inside. A fastening hole is provided between the fastening groove and the mating groove. An adjustment hole is provided between the fastening groove and one side of the fastening box. An adjustment post is provided on the adjustment hole. A fastening plate is provided between one end of the adjustment post and the fastening groove. A first locking post is provided between the fastening plate and the first slot. A second locking post is provided between the fastening plate and the second slot. An elastic component is provided to connect the fastening plate and one side of the fastening groove. An inclined groove is provided on the top of the first locking post and one side of the second locking post.
[0007] Furthermore, the present invention is improved in that the positioning mechanism includes a positioning hole and a positioning post. The positioning hole is opened at the bottom end of the lower mold, the positioning post is installed on the positioning groove, and the positioning post abuts against the positioning hole.
[0008] Furthermore, the present invention is improved in that the external component includes an external pipe, which is installed at one end of the cooling box, and the external pipe is provided with a valve, and there are two external pipes.
[0009] Furthermore, the present invention is improved in that the positioning mechanism is provided in multiple and arranged in an array.
[0010] Furthermore, the present invention is improved in that the elastic component is provided with multiple components.
[0011] Furthermore, the present invention is improved in that the assembly mechanism includes an assembly block, which is installed around the mounting box, and the assembly block has assembly holes.
[0012] Furthermore, an improvement of this utility model is that the valve is an electric valve.
[0013] Furthermore, an improvement of this invention is that a temperature sensor is provided inside the cooling box.
[0014] (III) Beneficial Effects
[0015] Compared with the prior art, this utility model provides a high-efficiency medical rubber sealing mold, which has the following beneficial effects:
[0016] This high-efficiency medical rubber seal mold allows for rapid adjustment of the fastening plate position via the pulling of an adjusting column. This aligns the first and second locking pins with the first locking groove of the lower mold and the second locking groove of the cooling box, respectively, significantly simplifying the assembly process, reducing manual adjustment time, and making mold installation more convenient and efficient. The elasticity of the components automatically completes the fastening action without additional manual intervention, further improving assembly speed and efficiency. When cleaning the cooling box or replacing the lower mold, simply pulling the adjusting column disengages the locking pins from their corresponding grooves for easy disassembly. This design also simplifies mold maintenance, greatly reducing downtime. The flow of the cooling medium in the cooling box quickly removes heat from the lower mold, accelerating the cooling process of the rubber seal. Increased cooling efficiency means a shorter time from molding to removal, thus accelerating the entire production cycle. Rapid assembly, maintenance, and efficient cooling work together to shorten the time of each production stage, enabling the production of more medical rubber seals per unit time and improving efficiency. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the present utility model. Figure 1 ;
[0018] Figure 2 This is a schematic diagram of the structure of the present utility model. Figure 2 ;
[0019] Figure 3 This utility model Figure 1 Enlarged top half-section view of the central fastening box;
[0020] Figure 4 This utility model Figure 1 Enlarged front half-sectional view of the central fastening box.
[0021] In the diagram: 1. Upper mold; 2. Lower mold; 3. Mounting box; 4. Cooling box; 5. Fastening box; 6. Adjusting column; 7. Fastening plate; 8. First locking column; 9. Second locking column; 10. Elastic component; 11. Positioning column; 12. External pipe; 13. Valve; 14. Assembly block. Detailed Implementation
[0022] 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. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figure 1-4This utility model relates to a high-efficiency medical rubber sealing mold, comprising an upper mold 1 and a lower mold 2. The lower mold 2 is provided with an mounting box 3, which has an assembly mechanism. A positioning groove is formed at the top of the mounting box 3, and the lower mold 2 abuts against the positioning groove. A positioning mechanism is provided between the positioning groove and the lower mold 2. A docking groove is formed at one end of the mounting box 3, and a cooling box 4 is provided on the docking groove. An external component is provided on the cooling box 4. A fastening box 5 is provided on one side of the mounting box 3. A first retaining groove is formed on one side of the lower mold 2, and a second retaining groove is formed on one side of the cooling box 4. A fastening groove is formed inside the fastening box 5. A fastening hole is provided between the mating grooves. An adjustment hole is provided between the fastening groove and one side of the fastening box 5. An adjustment post 6 is provided on the adjustment hole. A fastening plate 7 is provided between one end of the adjustment post 6 and the fastening groove. A first locking post 8 is provided between the fastening plate 7 and the first locking groove. A second locking post 9 is provided between the fastening plate 7 and the second locking groove. An elastic component 10 is provided between the fastening plate 7 and one side of the fastening groove. An inclined groove is provided on the top of the first locking post 8 and one side of the second locking post 9. In this embodiment, the upper mold 1 is assembled on the medical rubber seal production equipment. Pulling the adjustment post 6 causes the fastening plate 7 to move. The movement causes the elastic component 10 in the fastening groove to be compressed and deformed. The fastening plate 7 drives the first locking pin 8 and the second locking pin 9 to move. These are then installed on the medical rubber seal production equipment via the assembly mechanism. The lower mold 2 is positioned against the positioning groove by the positioning mechanism, and then the cooling box 4 is placed against the docking groove. At this time, the first locking pin 8 is aligned with the first locking groove of the lower mold 2, and the second locking pin 9 is aligned with the second locking groove of the cooling box 4. By releasing the adjusting pin 6, the elastic component 10 elastically supports the fastening plate 7 in the fastening groove, causing the first locking pin 8 to abut against the first locking groove and the second locking pin 9 to abut against the second locking groove. This allows the lower mold 2 to be quickly assembled into the positioning groove, and the cooling box 4 to be quickly assembled into the docking groove. When the cooling box 4 needs to be cleaned after long-term use, simply pull the adjusting column 6 to disengage the second locking column 9 from the second locking slot, and the cooling box 4 can be removed, making it easy to clean the dirt and impurities inside the cooling box 4. When replacing the lower mold 2, pull the adjusting column 6 to disengage the first locking column 8 from the first locking slot, making it easy to remove the lower mold 2. This reduces downtime for maintenance and improves the efficiency of producing medical rubber seals. The cooling medium in the cooling box 4 can cool the lower mold 2, thereby cooling the medical rubber seals formed on the lower mold 2 in a very short time, making them easy to remove, thus improving the production efficiency of medical rubber seals and achieving high-efficiency production of medical rubber seals.
[0024] In this solution, the positioning mechanism includes a positioning hole and a positioning post 11. The positioning hole is opened at the bottom end of the lower mold 2, and the positioning post 11 is installed on the positioning groove. The positioning post 11 abuts against the positioning hole. Through the positioning post 11 on the positioning groove, the positioning hole of the lower mold 2 is abutted against the positioning post 11, thereby facilitating the positioning of the lower mold 2 against the positioning groove.
[0025] In this solution, the external component includes an external pipe 12, which is installed at one end of the cooling box. The external pipe 12 is equipped with a valve 13. There are two external pipes 12. By connecting the external pipe 12 to the pipeline of the equipment supplying the cooling medium, and then opening the valve 13, the cooling medium is supplied into the interior of the cooling box 4, which facilitates the cooling and temperature reduction of the lower mold 2. The two external pipes 12 facilitate the discharge or recycling of the cooling medium.
[0026] In this solution, the positioning mechanism is provided in multiple arrays, which facilitates the positioning and placement of the lower mold 2.
[0027] In this solution, multiple elastic components 10 are provided. Through multiple elastic components 10, the fastening plate 7 can be better supported elastically, and a more stable elastic support force can be applied to the first locking post 8 and the second locking post 9.
[0028] In this solution, the assembly mechanism includes an assembly block 14, which is installed around the mounting box 3. The assembly block 14 has assembly holes. Through the assembly holes of the assembly block 14 installed around the mounting box 3, the mounting box 3 can be easily installed on the equipment for manufacturing medical rubber seals. The mounting box 3 can be assembled and fixed by using bolts and other parts.
[0029] In this solution, valve 13 is an electric valve, which allows for easy switching and control of valve 13, making it convenient to use.
[0030] In this design, a temperature sensor is installed inside the cooling box 4 to facilitate the detection of the temperature of the cooling medium inside the cooling box 4.
[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A high-efficiency medical rubber seal mold, comprising an upper mold (1) and a lower mold (2), wherein the lower mold (2) is provided with a mounting box (3), and the mounting box (3) is provided with an assembly mechanism, characterized in that, The top of the mounting box (3) is provided with a positioning groove, the lower mold (2) abuts against the positioning groove, and a positioning mechanism is provided between the positioning groove and the lower mold (2). One end of the mounting box (3) is provided with a docking groove, and a cooling box (4) is provided on the docking groove. An external component is provided on the cooling box (4). A fastening box (5) is provided on one side of the mounting box (3). A first slot is provided on one side of the lower mold (2), and a second slot is provided on one side of the cooling box (4). A fastening groove is provided inside the fastening box (5), and a gap is formed between the fastening groove and the docking groove. A fastening hole is provided, and an adjustment hole is provided between the fastening groove and one side of the fastening box (5). An adjustment post (6) is provided on the adjustment hole. A fastening plate (7) is provided between one end of the adjustment post (6) and the fastening groove. A first locking post (8) is provided between the fastening plate (7) and the first locking groove. A second locking post (9) is provided between the fastening plate (7) and the second locking groove. An elastic member (10) is provided between the fastening plate (7) and one side of the fastening groove. Inclined grooves are provided on the top of the first locking post (8) and one side of the second locking post (9).
2. The high-efficiency medical rubber sealing mold according to claim 1, characterized in that, The positioning mechanism includes a positioning hole and a positioning post (11). The positioning hole is opened at the bottom end of the lower mold (2), and the positioning post (11) is installed on the positioning groove and abuts against the positioning hole.
3. The high-efficiency medical rubber sealing mold according to claim 2, characterized in that, The external component includes an external pipe (12), which is installed at one end of the cooling box. The external pipe (12) is provided with a valve (13), and there are two external pipes (12).
4. The high-efficiency medical rubber sealing mold according to claim 3, characterized in that, The positioning mechanism is provided in multiple units and arranged in an array.
5. The high-efficiency medical rubber sealing mold according to claim 4, characterized in that, The elastic component (10) is provided in multiple forms.
6. The high-efficiency medical rubber sealing mold according to claim 5, characterized in that, The assembly mechanism includes an assembly block (14), which is installed around the mounting box (3) and has assembly holes.
7. The high-efficiency medical rubber sealing mold according to claim 6, characterized in that, The valve (13) is an electric valve.
8. The high-efficiency medical rubber sealing mold according to claim 7, characterized in that, The cooling box (4) is equipped with a temperature sensor inside.