Medical silica gel material production disinfection equipment convenient to maintain

CN224655692UActive Publication Date: 2026-08-21JIANGSU TAISHENGKANG MEDICAL TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522052510.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-24
Publication Date
2026-08-21
Estimated Expiration
2035-09-24

AI Technical Summary

Technical Problem

[0005]本实用新型的目的在于提供一种便于维护的医用硅胶材料生产用消杀设备,以解决上述背景技术中提出的消杀设备内部的消杀组件通常采用固定安装方式,因长时间使用需要清洗、更换滤材时,操作人员需深入设备内部进行拆卸作业,不仅操作空间狭小,拆卸安装步骤繁琐,耗费大量时间,还可能对设备内部其他结构造成意外损坏的问题

Benefits of technology

[0017]采用上述技术方案,通过通风风机驱动气流,利用螺纹连接的过滤芯净化空气,防护网罩提供防护,实现消杀箱内湿气与有害物质的排出,且过滤芯拆装便捷,便于维护更换以保证净化效果‌。

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Abstract

The utility model discloses a kind of disinfecting equipment for medical silica gel material production convenient to maintain, including disinfecting box and box door, the outside of disinfecting box is hinged to be connected with box door, the outer surface of disinfecting box is bonded with sealing strip, the inner end surface of box door is equipped with the sealing groove compatible with sealing strip. The T-shaped groove structure of the disinfecting equipment for medical silica gel material production convenient to maintain slide rail and the T-shaped long strip structure of slider accurate cooperation, so that pull frame can be along slide rail stable sliding, operator can conveniently pull out or push into pull frame by handle, ultraviolet disinfection lamp group, electric heating disinfection plate can be overhauled, replaced without going into disinfecting box inside, maintenance difficulty and operation risk are greatly reduced, maintenance time is saved, simultaneously T-shaped structure cooperation can effectively avoid pull frame sliding when deviation, fall off, guarantee equipment operating stability and service life, improve medical silica gel material production disinfecting efficiency and security.
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Description

Technical Field

[0001] This utility model relates to the technical field of auxiliary equipment for the production of medical silicone, specifically a disinfection device for the production of medical silicone materials that is easy to maintain. Background Technology

[0002] In the production process of medical silicone materials, in order to ensure that the products meet medical hygiene standards, the silicone materials after production need to undergo strict disinfection treatment, so specialized disinfection equipment is used. However, existing disinfection equipment still has some problems in use: The disinfection components inside existing disinfection equipment are usually fixedly installed. When cleaning or replacing the filter media is required after long-term use, operators need to go deep into the equipment to disassemble it. This not only results in a small operating space and complicated disassembly and installation steps, but also consumes a lot of time and may cause accidental damage to other internal structures of the equipment.

[0003] In view of this, in-depth research was conducted on the above issues, which led to the creation of this case.

[0004] To address the aforementioned issues, innovative designs were developed based on existing disinfection equipment. Utility Model Content

[0005] The purpose of this utility model is to provide a disinfection device for the production of medical silicone materials that is easy to maintain, in order to solve the problem mentioned in the background art that the disinfection components inside the disinfection device are usually fixedly installed. When cleaning or replacing the filter material is required after long-term use, the operator needs to go deep into the equipment to disassemble it. This not only results in a small operating space, but also complicated disassembly and installation steps, which consume a lot of time and may cause accidental damage to other internal structures of the equipment.

[0006] To achieve the above objectives, this utility model provides the following technical solution: A disinfection device for the production of medical silicone materials that is easy to maintain includes a disinfection box and a door. The door is rotatably connected to the outside of the disinfection box via a hinge. A sealing strip is adhered to the outer surface of the disinfection box. A sealing groove adapted to the sealing strip is opened on the inner end face of the door. A shelf is welded to the inner wall of the disinfection box. Two sets of slide rails are symmetrically welded to the inner side wall of the disinfection box. Two sets of pull-out frames are symmetrically installed inside the disinfection box. Handles are fixed to the outer end faces of the two sets of pull-out frames. An ultraviolet disinfection lamp group and an electrically heated disinfection plate are installed inside the pull-out frames. A slider that is slidably connected to the slide rail is fixed on one side of the pull-out frame. An installation groove is opened at the bottom of the disinfection box, and a filter mechanism is embedded inside the installation groove.

[0007] The above technical solution achieves sealing by matching the sealing groove of the door with the sealing strip of the disinfection box. The pull-out frame can be pulled out by the cooperation of the slide rail and the slider. At the same time, the ultraviolet disinfection lamp group and the electric heating disinfection plate are used for disinfection, ensuring the airtightness of the disinfection environment. It is convenient to pull out and maintain the disinfection components, and achieves effective disinfection of medical silicone materials and convenient equipment maintenance.

[0008] Preferably, the middle part of the slide rail has a T-shaped groove structure, and the slider has a T-shaped strip structure.

[0009] By adopting the above technical solution, the sliding rail with T-shaped groove structure and the slider with T-shaped strip structure are adapted to each other to achieve stable sliding of the pull-out frame, ensuring that the pull-out frame does not shift or fall off during pull-out maintenance or use, and ensuring stable operation of the disinfection component and smooth maintenance operation.

[0010] Preferably, the filtration mechanism includes a filter frame embedded in the mounting groove, two sets of handles are symmetrically installed on the upper end of the filter frame, and three layers of sliding grooves are opened on the inner wall of the filter frame, with three layers of filter screens slidably connected inside the three layers of sliding grooves.

[0011] The above technical solution uses a filter frame embedded in the mounting groove for positioning, and three layers of filter screens are slidably assembled by relying on three-layer sliding grooves. The entire filter screen can be picked up and put down with the handle. It can efficiently filter impurities and pollutants generated during the disinfection process, and it is easy to disassemble and install the filter screen individually or as a whole, reducing maintenance difficulty.

[0012] Preferably, the bottom of the disinfection box is provided with a drain outlet that communicates with the mounting groove. The outer end of the drain outlet is provided with an external threaded sleeve. The middle part of the drain outlet and the external threaded sleeve is filled with a sealing plug, and the sealing plug is threadedly fastened to the external threaded sleeve.

[0013] By adopting the above technical solution, the drain outlet is sealed by the threaded connection between the external threaded sleeve and the sealing plug. The sealing plug is removable so that the drain outlet can be connected to the installation groove. This not only ensures the sealing of the disinfection box, but also allows for the convenient discharge of dirt filtered by the filter mechanism, making cleaning and maintenance easier.

[0014] Preferably, the top of the disinfection box has a through hole, and a purification shell is installed inside the through hole. A flange is fixed to the outer surface of the purification shell, and the purification shell is threadedly fastened to the disinfection box through the flange.

[0015] By adopting the above technical solution, the purification shell is embedded in the through hole at the top of the disinfection box, and the flange is fastened to the disinfection box by threads to achieve a detachable connection. The purification shell is stably installed to ensure the air purification function inside the disinfection box, while also facilitating the disassembly of the purification shell for internal maintenance, thus improving the ease of use of the equipment.

[0016] Preferably, a ventilation fan is installed inside the purification housing, a protective mesh cover is bolted to the top of the purification housing, an internal thread groove is opened inside the purification housing, a filter element is provided in the middle of the purification housing, and the filter element is fastened to the internal thread groove through an external threaded coil.

[0017] The above technical solution uses a ventilation fan to drive airflow, a threaded filter element to purify the air, and a protective mesh cover to provide protection. This allows for the discharge of moisture and harmful substances from the disinfection box. The filter element is easy to install and remove, facilitating maintenance and replacement to ensure the purification effect.

[0018] Compared with the prior art, the beneficial effects of this utility model are: this easy-to-maintain disinfection equipment for the production of medical silicone materials... 1. The sealing strip on the outer surface of the disinfection box is compatible with the sealing groove on the inner end face of the box door, which can form a good sealed environment when the equipment is running. This not only avoids the decrease in disinfection efficiency caused by ultraviolet leakage and high temperature loss during the disinfection process, but also prevents external pollutants from entering and contaminating the medical silicone material to be disinfected, thus ensuring the quality of disinfection. 2. The T-shaped groove structure of the slide rail and the T-shaped strip structure of the slider are precisely matched, allowing the pull-out frame to slide stably along the slide rail. Operators can easily pull out or push in the pull-out frame 7 by pulling the handle. The ultraviolet disinfection lamp group and the electric heating disinfection plate can be inspected and replaced without going deep into the disinfection box 1, which greatly reduces the difficulty of maintenance and operation risk, and saves maintenance time. At the same time, the T-shaped structure can effectively prevent the pull-out frame 7 from deviating or falling off when sliding, ensuring the stability of equipment operation and service life, and improving the efficiency and safety of medical silicone material production and disinfection. 3. The filter frame embedded in the bottom mounting groove of the disinfection box, through the three-layer filter screen adapted by the three-layer sliding groove on the inner wall, can effectively filter impurities and pollutants generated during the disinfection process, effectively preventing these harmful substances from being retained or causing secondary pollution to the medical silicone material on the shelf, ensuring that the cleanliness of the material after disinfection meets medical standards. 4. The two sets of handles at the top of the filter frame make it easy for operators to quickly remove the entire filter mechanism from the installation slot, and the three-layer filter screen can be pulled out separately along the slide. Whether it is overall cleaning or individual filter screen replacement, it is extremely convenient, which greatly reduces the maintenance cost and operation difficulty of the filter components. 5. The drain port at the bottom of the disinfection box, which connects to the mounting groove, can promptly discharge filtered waste. The threaded connection between the external threaded sleeve and the sealing plug ensures the sealing performance of the drain port during the disinfection process, preventing leakage of disinfection gas or entry of external impurities. It also allows for quick drainage by tightening the sealing plug, balancing the equipment's sealing performance with convenient drainage. This further enhances the stability and efficiency of disinfection in the production of medical silicone materials. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the external structure of the main body of this utility model; Figure 2 This is a schematic diagram of the pull-out frame structure of this utility model; Figure 3 This is a schematic diagram of the filter frame structure of this utility model; Figure 4 This is a schematic diagram of the sewage discharge structure of this utility model; Figure 5 This is a schematic diagram of the air circulation structure of this utility model.

[0020] In the diagram: 1. Disinfection box; 2. Box door; 3. Sealing strip; 4. Sealing groove; 5. Shelf; 6. Slide rail; 7. Pull-out frame; 8. Handle; 9. Ultraviolet disinfection lamp assembly; 10. Electric heating disinfection plate; 11. Slider; 12. Mounting groove; 13. Filter frame; 14. Handle; 15. Slide groove; 16. Filter screen; 17. Drain outlet; 18. External threaded sleeve; 19. Sealing plug; 20. Through hole; 21. Purification shell; 22. Flange; 23. Ventilation fan; 24. Protective mesh cover; 25. Internal threaded groove; 26. Filter element. Detailed Implementation

[0021] 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.

[0022] Example 1 Please see Figure 1 , Figure 2 This utility model provides a technical solution: A disinfection device for the production of medical silicone materials that is easy to maintain includes a disinfection box 1 and a door 2. The door 2 is rotatably connected to the outside of the disinfection box 1 via a hinge. A sealing strip 3 is adhered to the outer surface of the disinfection box 1. A sealing groove 4 adapted to the sealing strip 3 is opened on the inner end face of the door 2. A shelf 5 is welded to the inner wall of the disinfection box 1. Two sets of slide rails 6 are symmetrically welded to the inner side wall of the disinfection box 1. Two sets of pull-out frames 7 are symmetrically installed inside the disinfection box 1. Handles 8 are fixed to the outer end faces of the two sets of pull-out frames 7. An ultraviolet disinfection lamp group 9 and an electrically heated disinfection plate 10 are installed inside the pull-out frames 7. A slider 11 that is slidably connected to the slide rail 6 is fixed to one side of the pull-out frame 7. The middle part of the slide rail 6 has a T-shaped groove structure, and the slider 11 has a T-shaped strip structure.

[0023] This easy-to-maintain disinfection equipment for the production of medical silicone materials features a sealing system. The sealing strip 3, bonded to the outer surface of the disinfection box 1, matches the sealing groove 4 on the inner end face of the box door 2. When the box door 2 is closed, the sealing strip 3 embeds into the sealing groove 4, effectively blocking airflow between the inside of the disinfection box 1 and the outside, providing a sealed environment for the disinfection of medical silicone materials and preventing leakage of harmful substances or entry of external pollutants during the disinfection process. Regarding the installation and maintenance of the core disinfection components, two sets of slide rails 6 are symmetrically welded to the inner wall of the disinfection box 1. The middle section has a T-shaped groove structure, while the slider 11 fixed to one side of the pull-out frame 7 has a T-shaped elongated structure. The T-shaped slider 11 cooperates with the slide rails 6, allowing the pull-out frame 7 to slide stably along the slide rails 6. Operators can easily pull the pull-out frame 7 out of or into the disinfection box 1 using the handle 8 fixed to the outer end face of the pull-out frame 7. The ultraviolet disinfection lamp group 9 installed inside the pull-out frame 7 can use ultraviolet light for sterilization and disinfection, and the electric heating disinfection plate 10 can achieve deep disinfection through high temperature. The two work together to thoroughly disinfect the medical silicone material placed on the shelf 5 welded to the inner wall of the disinfection box 1. At the same time, the cooperation between the T-shaped groove and the T-shaped strip structure can prevent the pull-out frame 7 from shifting or falling off during the sliding process, ensuring the stable operation of the ultraviolet disinfection lamp group 9 and the electric heating disinfection plate 10 during the disinfection process. It also makes the subsequent inspection, replacement and other maintenance operations of these disinfection components smoother, greatly improving the convenience of equipment maintenance.

[0024] Example 2 Please see Figure 3 , Figure 4 This utility model provides a technical solution: The disinfection box 1 has an installation groove 12 at its bottom, and a filter mechanism is embedded inside the installation groove 12. The filter mechanism includes a filter frame 13 embedded inside the installation groove 12. Two sets of handles 14 are symmetrically installed on the upper end of the filter frame 13. The inner wall of the filter frame 13 has three layers of sliding grooves 15, and three layers of filter screens 16 are correspondingly slidably connected inside the three layers of sliding grooves 15. The bottom of the disinfection box 1 has a drain port 17 that communicates with the installation groove 12. The outer end of the drain port 17 is provided with an external threaded sleeve 18. The middle of the drain port 17 and the external threaded sleeve 18 is filled with a sealing plug 19, and the sealing plug 19 is threadedly fastened to the external threaded sleeve 18.

[0025] This easy-to-maintain disinfection equipment for the production of medical silicone materials features a mounting groove 12 at the bottom of the disinfection box 1, providing positioning and installation space for the filter mechanism. The filter mechanism is fixed by embedding the filter frame 13 into the mounting groove 12. Three sliding grooves 15 on the inner wall of the filter frame 13 allow the three layers of filter screens 16 to slide and assemble accordingly, enabling layered filtration of impurities and contaminants generated during the disinfection process. Two sets of handles 14 on the upper surface of the filter frame 13 facilitate the operator to remove the entire filter frame 13 from the mounting groove 12, making it convenient to clean or replace the three layers of filter screens 16. The three layers of filter screens 16 are arranged from top to bottom as follows: The primary filter layer, activated carbon filter layer, and high-efficiency filter layer effectively filter the gas. At the same time, the drain port 17, which is connected to the mounting groove 12 at the bottom of the disinfection box 1, can discharge the dirt filtered by the filter mechanism. The external threaded sleeve 18 at the outer end of the drain port 17 and the sealing plug 19 are connected by threads to achieve a seal of the drain port 17, preventing gas leakage inside the disinfection box 1 or the entry of external impurities during the disinfection process. This not only ensures the effective filtration of pollutants during the disinfection process and prevents secondary contamination of the medical silicone material, but also improves the convenience of equipment maintenance and the airtightness of the disinfection environment through convenient disassembly and assembly design and reliable sealing structure.

[0026] Example 3 Please see Figure 5 This utility model provides a technical solution: The top of the disinfection box 1 has a through hole 20, and a purification shell 21 is installed inside the through hole 20. A flange 22 is fixed to the outer surface of the purification shell 21, and the purification shell 21 is threadedly fastened to the disinfection box 1 through the flange 22. A ventilation fan 23 is installed inside the purification shell 21, and a protective mesh cover 24 is bolted to the top of the purification shell 21. An internal thread groove 25 is opened inside the purification shell 21, and a filter element 26 is installed in the middle of the purification shell 21. The filter element 26 is fastened to the internal thread groove 25 through an external threaded coil.

[0027] This easy-to-maintain disinfection equipment for the production of medical silicone materials features a through-hole 20 at the top of the disinfection box 1, providing an installation channel for the purification shell 21. The purification shell 21 is threadedly fastened to the disinfection box 1 via a flange 22 fixed to its outer surface, achieving stable installation and facilitating subsequent disassembly and maintenance. The ventilation fan 23 installed inside the purification shell 21 drives the air circulation within the disinfection box 1. The circulating air is filtered and purified by the filter element 26 in the middle of the purification shell 21. The filter element 26 is securely connected to the internal thread groove 25 inside the purification shell 21 via an external threaded coil, ensuring both stable installation of the filter element 26 and easy individual disassembly and replacement to maintain the purification effect. At the same time, the protective mesh cover 24 bolted to the top of the purification shell 21 prevents foreign objects from entering the purification shell 21 and damaging the ventilation fan 23 or clogging the filter element 26. This effectively purifies the air inside the disinfection box 1, preventing harmful gases or impurities from accumulating during the disinfection process and affecting the disinfection quality of the medical silicone materials. Furthermore, the convenient disassembly and assembly design of each component significantly reduces maintenance difficulty and ensures long-term stable operation of the equipment.

[0028] Working principle: In use, the outer door 2 of the disinfection box 1 is first opened via the hinge. The medical silicone material to be disinfected is placed on the shelf 5 welded to the inner wall of the disinfection box 1. The door 2 is then closed so that the sealing strip 3 on the outer surface of the disinfection box 1 is embedded in the sealing groove 4 on the inner end face of the door 2, forming a sealed disinfection environment. Subsequently, the equipment is started. Inside the pull-out frame 7, which is installed in cooperation with the slide rail 6 on the inner side wall of the disinfection box 1 and the T-shaped long strip slider 11 on one side of the pull-out frame 7, the ultraviolet disinfection lamp group 9 releases ultraviolet rays, and the electric heating disinfection plate 10 generates high temperature to disinfect the medical silicone material on the shelf 5. During the disinfection process, the filter frame 13 embedded in the mounting groove 12 at the bottom of the disinfection box 1 filters the impurities and pollutants generated during disinfection through the three-layer filter screen 16 in the three-layer slide groove 15 on its inner wall. If it is necessary to discharge the filtered waste, the sealing plug on the external threaded sleeve 18 at the outer end of the drain port 17 can be unscrewed. 19. The wastewater is discharged through the drain outlet 17. At the same time, the purification shell 21, which is threadedly fastened to the disinfection box 1 through the flange 22 in the top through hole 20 of the disinfection box 1, is driven by the ventilation fan 23 inside the box to circulate the air. The air is purified by the filter element 26, which is fastened to the external threaded coil and the internal threaded groove 25 in the purification shell 21, and then discharged. The protective net cover 24, which is bolted to the top of the purification shell 21, prevents foreign objects from entering. After the disinfection is completed, the box door 2 can be opened to take out the materials. During the later maintenance, the pull frame 7 can be pulled out along the slide rail 6 by the handle 8 on the outer end of the pull frame 7 to facilitate the maintenance of the ultraviolet disinfection lamp group 9 and the electric heating disinfection plate 10. The filter frame 13 can be taken out by the handle 14 at the top of the filter frame 13, or the three-layer filter screen 16 can be pulled out along the three-layer slide groove 15 for cleaning and replacement. Alternatively, the flange 22 can be removed to take out the purification shell 21, or the protective net cover 24 can be unscrewed and the filter element 26 can be unscrewed for maintenance.

[0029] The contents not described in detail in this specification are existing technologies known to those skilled in the art.

[0030] 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 disinfection device for the production of medical silicone materials that is easy to maintain, comprising a disinfection box (1) and a box door (2), characterized in that: The disinfection box (1) is connected to a door (2) by a hinge on the outside. A sealing strip (3) is glued to the outer surface of the disinfection box (1). A sealing groove (4) that matches the sealing strip (3) is opened on the inner end face of the door (2). A shelf (5) is welded to the inner wall of the disinfection box (1). Two sets of slide rails (6) are symmetrically welded to the inner side wall of the disinfection box (1). Two sets of pull-out frames (7) are symmetrically installed inside the disinfection box (1). Handles (8) are fixed to the outer end face of the two sets of pull-out frames (7). An ultraviolet disinfection lamp group (9) and an electric heating disinfection plate (10) are installed inside the pull-out frame (7). A slider (11) that is slidably connected to the slide rail (6) is fixed on one side of the pull-out frame (7). An installation groove (12) is opened at the bottom of the disinfection box (1). A filter mechanism is embedded inside the installation groove (12).

2. The disinfection equipment for the production of medical silicone materials that is easy to maintain, as described in claim 1, is characterized in that: The middle part of the slide rail (6) has a T-shaped groove structure, and the slider (11) has a T-shaped strip structure.

3. The disinfection equipment for the production of medical silicone materials that is easy to maintain, as described in claim 1, is characterized in that: The filtering mechanism includes a filter frame (13) embedded in the mounting groove (12). Two sets of handles (14) are symmetrically installed on the upper end of the filter frame (13). Three layers of sliding grooves (15) are opened on the inner wall of the filter frame (13). Three layers of filter screens (16) are slidably connected inside the three layers of sliding grooves (15).

4. The disinfection equipment for the production of medical silicone materials that is easy to maintain, as described in claim 1, is characterized in that: The bottom of the disinfection box (1) is provided with a drain port (17) that communicates with the installation groove (12). The outer end of the drain port (17) is provided with an external threaded sleeve (18). The middle part of the drain port (17) and the external threaded sleeve (18) is filled with a sealing plug (19), and the sealing plug (19) and the external threaded sleeve (18) are threadedly fastened together.

5. The disinfection equipment for the production of medical silicone materials that is easy to maintain, as described in claim 1, is characterized in that: The top of the disinfection box (1) is provided with a through hole (20), and a purification shell (21) is provided inside the through hole (20). A flange (22) is fixed on the outer surface of the purification shell (21), and the purification shell (21) is threadedly fastened to the disinfection box (1) through the flange (22).

6. The disinfection equipment for the production of medical silicone materials that is easy to maintain, as described in claim 5, is characterized in that: The purification housing (21) is equipped with a ventilation fan (23), and a protective mesh cover (24) is bolted to the top of the purification housing (21). The purification housing (21) has an internal thread groove (25) inside, and a filter element (26) is provided in the middle of the purification housing (21). The filter element (26) is fastened to the internal thread groove (25) through an external threaded coil.