A control box for a carbon infrared moisture barrier system

CN224775167UActive Publication Date: 2026-09-18SHENYANG GUOJIAN XINTEC TECH DEV
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Patent Information

Application Number
CN202522281967.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-29
Publication Date
2026-09-18
Estimated Expiration
2035-10-29

AI Technical Summary

Technical Problem

[0003]针对现有技术的不足,本实用新型提供了一种用于碳红外防潮系统的控制箱,解决了现有装置为保证密封性多采用螺钉紧固控制箱本体以及箱盖,检修时拆装十分麻烦,并且为防止潮湿空气大量流入控制箱内,传统的碳红外防潮系统的控制箱采用一体成型式外壳,透气性较差,导致箱内器件散热较慢的技术问题

Benefits of technology

通过导引槽底部开设的倾角,使滑块插入导引槽时,由于限位销将箱盖向下移动的趋势限制,向下的力被分解成一部分向后的力,实现箱盖紧贴控制箱本体,配合密封圈来保证控制箱本体与箱盖之间的密封性,实现在保证密封性的条件下快速开合箱盖,解决了传统的碳红外防潮系统的控制箱为保证密封性多采用螺钉紧固控制箱本体以及箱盖,检修时拆装十分麻烦的问题;

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Abstract

The utility model discloses a control box for carbon infrared moistureproof system relates to carbon infrared moistureproof system control box technical field, including control box body and box cover, the both sides fixed mounting of control box body have T type rotating pin and two limit pins, the both sides fixed mounting of box cover have slide arm, be equipped with with T type rotating pin sliding cooperation and hinged ladder groove on the slide arm, the utility model discloses the inclination that the guide groove bottom sets up, when the sliding block inserts guide groove, because limit pin will the trend of box cover downward movement limit, the force of downward is decomposed into a part rearward force, realize the box cover close control box body, cooperate sealing washer to guarantee the sealing between control box body and box cover, realize under the condition of guaranteeing the sealing quick open and close box cover, solved the control box for carbon infrared moistureproof system of traditional carbon infrared moistureproof system to guarantee the sealing and adopt screw fastening control box body and box cover, the problem that when overhauling, dismounting is very troublesome.
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Description

Technical Field

[0001] This utility model relates to the technical field of control boxes for carbon infrared moisture-proof systems, specifically a control box for a carbon infrared moisture-proof system. Background Technology

[0002] Underground structures are unique spaces, constantly exposed to moisture due to the soil's water retention capacity. Conventional waterproofing methods, influenced by construction, materials, and maintenance, cannot completely block moisture, leading to widespread dampness in basements, which is difficult to eradicate and causes economic losses. Carbon infrared moisture-proofing systems, through continuous low-temperature far-infrared irradiation, fully evaporate moisture from the walls, keeping the wall structure dry and reducing overall indoor humidity. This reduced humidity inhibits mold growth, significantly decreasing the likelihood of mold in basements. To ensure airtightness, traditional carbon infrared moisture-proof systems often use screws to fasten the control box body and cover, making disassembly and assembly during maintenance very troublesome. In addition, to prevent a large amount of humid air from flowing into the control box, traditional carbon infrared moisture-proof systems use a one-piece molded shell, which has poor air permeability and results in slow heat dissipation of the internal components. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a control box for a carbon infrared moisture-proof system. It solves the problems of existing devices that use screws to fasten the control box body and cover to ensure sealing, which makes disassembly and assembly during maintenance very troublesome. In addition, to prevent a large amount of humid air from flowing into the control box, the traditional carbon infrared moisture-proof system control box uses a one-piece molded shell, which has poor air permeability and results in slow heat dissipation of the internal components.

[0004] To achieve the above objectives, this utility model provides the following technical solution: A control box for a carbon infrared moisture-proof system includes a control box body and a box cover. T-shaped rotating pins and two limiting pins are fixedly installed on both sides of the control box body. Sliding arms are fixedly installed on both sides of the box cover. Each sliding arm has a stepped groove that slides and hinges with the T-shaped rotating pin. An insertion hole for engaging with the limiting pin is provided in the stepped groove. Guide plates are fixedly installed on both sides of the box cover. Guide grooves are provided in the guide plates. Electric telescopic rods are fixedly installed on both sides of the control box body. A slider that slides with the guide groove is fixedly installed at the telescopic end of the electric telescopic rod.

[0005] Preferably, ventilation slots are provided on both sides of the control box body, and a connecting frame is detachably connected to the ventilation slot. A one-way breathable membrane is fixedly installed in the connecting frame, and the two one-way breathable membranes have the same air permeation direction in the corresponding ventilation slot.

[0006] Preferably, the outer wall of the connecting frame is provided with a pressure groove, and guide rods are fixedly installed on both sides of the control box body. A pressure plate that can slide and rotate along the guide rod is fitted on the outer wall of the guide rod. A ball bearing connecting sleeve is fixedly installed on the pressure plate. A limiting ball bearing is rotatably connected inside the ball bearing connecting sleeve. A tension spring is fitted on the guide rod to keep the limiting ball bearing pressed against the pressure groove. One end of the tension spring is connected to the side wall of the control box body, and the other end is connected to the pressure plate.

[0007] Preferably, the control box body has a flow guide plate fixedly installed on both sides below the connecting frame, and the control box body has a flow guide groove communicating with the flow guide plate on both sides.

[0008] Preferably, the connecting end of the slider is rotatably mounted with a pulley, and the two sides of the control box body are provided with sliding grooves, in which the slider is slidably connected.

[0009] Preferably, a sealing ring is fixedly installed at the edge of the rear wall of the box cover.

[0010] Preferably, the T-shaped rotating pin is perpendicular to the axes of the two limiting pins.

[0011] Beneficial effects This utility model provides a control box for a carbon infrared moisture-proof system, which has the following beneficial effects: By using the angled opening at the bottom of the guide groove, when the slider is inserted into the guide groove, the downward force is decomposed into a part of the backward force due to the limiting pin restricting the downward movement of the box cover. This ensures that the box cover fits tightly against the control box body. In conjunction with the sealing ring, the sealing between the control box body and the box cover is guaranteed. This allows for quick opening and closing of the box cover while ensuring a tight seal. This solves the problem that traditional carbon infrared moisture-proof systems often use screws to fasten the control box body and box cover to ensure a tight seal, making disassembly and assembly during maintenance very troublesome. The ventilation channels provide a ventilation passage for the control box, and the one-way breathable membrane allows internal air to escape, facilitating heat dissipation and sealing within the box while preventing external moisture from entering, meeting the requirements of a moisture-proof system. The detachable connecting frame design makes it easy to clean or replace the one-way breathable membrane, ensuring the moisture-proof and ventilation effect. This solves the problem of traditional carbon infrared moisture-proof systems using a one-piece molded shell with poor breathability to prevent large amounts of humid air from flowing into the control box, resulting in slow heat dissipation of internal components. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the control box body structure of this utility model; Figure 3This is a schematic diagram of the box cover structure of this utility model; Figure 4 This is a schematic diagram of the slider structure of this utility model; Figure 5 This is a schematic diagram of the pressure plate structure of this utility model.

[0013] In the diagram: 1. Control box body; 2. Box cover; 3. T-shaped rotating pin; 4. Limit pin; 5. Sliding arm; 6. Stepped groove; 7. Plug-in hole; 8. Guide plate; 9. Guide groove; 10. Electric telescopic rod; 11. Sliding block; 12. Ventilation groove; 13. Connecting frame; 14. One-way breathable membrane; 15. Pressure groove; 16. Guide rod; 17. Pressure plate; 18. Rotary ball connecting sleeve; 19. Limiting rotating ball; 20. Tension spring; 21. Drain plate; 22. Guide groove; 23. Pulley; 24. Sliding groove; 25. Sealing ring. Detailed Implementation

[0014] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0015] Please see Figures 1-5 A control box for a carbon infrared moisture-proof system includes a control box body 1 and a box cover 2. T-shaped rotating pins 3 and two limiting pins 4 are fixedly installed on both sides of the control box body 1. Sliding arms 5 are fixedly installed on both sides of the box cover 2. The sliding arms 5 have stepped grooves 6 that slide and hinge with the T-shaped rotating pins 3. Insertion holes 7 for insertion with the limiting pins 4 are provided in the stepped grooves 6. Guide plates 8 are fixedly installed on both sides of the box cover 2. Guide grooves 9 are provided in the guide plates 8. Electric telescopic rods 1 are fixedly installed on both sides of the control box body 1. 0. The telescopic end of the electric telescopic rod 10 is fixedly installed with a slider 11 that slides in conjunction with the guide groove 9. In use, the control box body 1 provides a base for the installation and protection of internal electrical components. The box cover 2 is hinged and slidably engaged with the stepped groove 6 of the sliding arm 5 and the T-shaped rotating pin 3, allowing for flexible opening and closing. The electric telescopic rod 10 drives the slider 11 to move along the guide groove 9, thereby automatically opening and closing the box cover 2 and improving the ease of operation. The engagement of the limit pin 4 with the insertion hole 7 can fix the box cover 2 in the closed state, preventing accidental opening and ensuring the safety of internal components.

[0016] Please see Figure 1Ventilation slots 12 are provided on both sides of the control box body 1. A connecting frame 13 is detachably connected to the ventilation slot 12. A one-way breathable membrane 14 is fixedly installed in the connecting frame 13. The two one-way breathable membranes 14 have the same air permeation direction in the corresponding ventilation slots 12. In use, the ventilation slots 12 provide ventilation channels for the inside of the control box. Outside air can enter the control box body 1 through the one-way breathable membrane 14 on one side, blocking the entry of external moisture, which meets the usage requirements of the moisture-proof system. At the same time, the air inside the control box body 1 can be discharged outward through the one-way breathable membrane 14 on the other side, which facilitates heat dissipation and sealing inside the box. The connecting frame 13 is detachable, which facilitates the subsequent cleaning or replacement of the one-way breathable membrane 14, ensuring the moisture-proof and ventilation effect.

[0017] Please see Figure 1 and Figure 5 The outer wall of the connecting frame 13 is provided with a pressure groove 15. Guide rods 16 are fixedly installed on both sides of the control box body 1. A pressure plate 17 that can slide and rotate along the guide rod 16 is fitted on the outer wall of the guide rod 16. A ball bearing connecting sleeve 18 is fixedly installed on the pressure plate 17. A limiting ball bearing 19 is rotatably connected inside the ball bearing connecting sleeve 18. A tension spring 20 is fitted on the guide rod 16 to keep the limiting ball bearing 19 pressed against the pressure groove 15. One end of the tension spring 20 is connected to the side wall of the control box body 1, and the other end is connected to the pressure plate 17. In use, the tension spring 20 drives the limiting ball bearing 19 to press against the pressure groove 15 of the connecting frame 13 through the pressure plate 17, realizing the quick fixation of the connecting frame 13 without the need for complicated bolt tightening. The fixation can be released by rotating and sliding the pressure plate 17, which is convenient for disassembly. At the same time, the ball bearing design reduces the friction between the limiting ball bearing 19 and the pressure groove 15, avoiding wear on the connecting frame 13.

[0018] Please see Figure 3 The control box body 1 has a flow guide plate 21 fixedly installed on both sides below the connecting frame 13. The control box body 1 has a flow guide groove 22 on both sides that communicates with the flow guide plate 21. In use, the flow guide plate 21 can catch condensate or a small amount of liquid that accidentally seeps in, preventing liquid from accumulating at the venting groove 12 or the connecting frame 13 and affecting the performance of the one-way breathable membrane 14. The flow guide groove 22 can guide the liquid on the flow guide plate 21 to the designated discharge position, preventing liquid from entering the control box body 1 and damaging the electrical components.

[0019] Please see Figure 4 The connecting end of the slider 11 is rotatably mounted with a pulley 23. The two sides of the control box body 1 are provided with sliding grooves 24, and the slider 11 is slidably connected in the sliding grooves 24. In use, the pulley 23 converts the sliding friction between the slider 11 and the guide groove 9 into rolling friction, reducing the resistance when the electric telescopic rod 10 is driven, and making the box cover 2 open and close more smoothly. The sliding groove 24 restricts the movement trajectory of the slider 11, avoids the slider 11 from deviating and causing the box cover 2 to jam, and ensures the stability of the automatic opening and closing mechanism.

[0020] Please see Figure 3 A sealing ring 25 is fixedly installed at the edge of the rear wall of the box cover 2. When in use, the sealing ring 25 fills the gap between the control box body 1 and the box cover 2 when the box cover 2 is closed, enhances the sealing performance, further prevents external moisture, dust and other impurities from entering the box, improves the protection effect on the internal electrical components, and meets the usage scenario requirements of the moisture-proof system.

[0021] Please see Figure 2 The T-shaped rotating pin 3 and the axes of the two limiting pins 4 are perpendicular to each other. In use, the two vertically distributed limiting pins 4 realize the limiting function when the cover 2 is opened and closed, so as to avoid the control box body 1 being affected by the cover 2 during maintenance.

[0022] In Example 1, by means of the angle at the bottom of the guide groove 9, when the slider 11 is inserted into the guide groove 9, the downward force is decomposed into a part of the backward force due to the downward movement of the box cover 2 by the limiting pin 4, so that the box cover 2 is tightly attached to the control box body 1. The sealing ring 25 is used to ensure the sealing between the control box body 1 and the box cover 2, so as to achieve rapid opening and closing of the box cover 2 under the condition of ensuring sealing.

[0023] Specifically, when the operator opens the cover 2, first control the electric telescopic rod 10 to retract, and the slider 11 to move upward. Then, hold both sides of the cover 2 with both hands and pull it outward. At the same time, the upper limit pin 4 disengages from the insertion hole 7 until the T-shaped rotating pin is stuck in the other end of the stepped groove 6 (the rotating part of the T-shaped rotating pin converts sliding friction into rolling friction, reducing friction). At this time, the slider 11 has completely disengaged from the guide groove 9. The operator rotates the cover 2 clockwise by 90 degrees around the T-shaped rotating pin 3 and inserts the insertion hole 7 into the lower limit pin 4 (the axes of the T-shaped rotating pin 3 and the two limit pins 4 are perpendicular to each other). At this time, the internal components of the control box body 1 can be inspected.

[0024] In Example 2, the ventilation channel 12 provides ventilation for the inside of the control box, and the one-way breathable membrane 14 allows the internal air to be discharged to the outside, which facilitates the sealing and heat dissipation inside the box, while blocking the entry of external moisture, which meets the usage requirements of the moisture-proof system; the connecting frame 13 is designed to be detachable, which facilitates the subsequent cleaning or replacement of the one-way breathable membrane 14, ensuring the moisture-proof and ventilation effect.

[0025] Specifically, when replacing the one-way breathable membrane 14, rotate the pressure plate 17 outward around the guide rod 16 along the pressure groove 15. The pressure plate 17 drives the limiting ball 19 to disengage from the pressure groove 15 area through the ball connecting sleeve 18. At this time, the operator can take out the one-way breathable membrane 14 along the ventilation groove 12 with the connecting frame 13. After replacing the one-way breathable membrane 14, the pressure plate 17 can be reset in the above manner. During this process, the tension spring 20 drives the limiting ball 19 to press against the pressure groove 15 of the connecting frame 13 through the pressure plate 17, ensuring the sealing while realizing the quick fixation of the connecting frame 13 without the need for complicated bolt tightening. At the same time, the ball design reduces the friction between the limiting ball 19 and the pressure groove 15, avoiding wear on the connecting frame 13.

[0026] 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 control box for a carbon infrared moisture-proof system, characterized in that, The control box includes a control box body (1) and a box cover (2). T-shaped rotating pins (3) and two limiting pins (4) are fixedly installed on both sides of the control box body (1). Sliding arms (5) are fixedly installed on both sides of the box cover (2). A stepped groove (6) is provided on the sliding arm (5) to slide and hinge with the T-shaped rotating pin (3). An insertion hole (7) for inserting and engaging with the limiting pin (4) is provided in the stepped groove (6). A guide plate (8) is fixedly installed on both sides of the box cover (2). A guide groove (9) is provided in the guide plate (8). An electric telescopic rod (10) is fixedly installed on both sides of the control box body (1). A slider (11) that slides and engages with the guide groove (9) is fixedly installed at the telescopic end of the electric telescopic rod (10).

2. The control box for a carbon infrared moisture-proof system according to claim 1, characterized in that, The control box body (1) has ventilation slots (12) on both sides. A connecting frame (13) is detachably connected in the ventilation slot (12). A one-way breathable membrane (14) is fixedly installed in the connecting frame (13). The two one-way breathable membranes (14) have the same breathable direction in the corresponding ventilation slots (12).

3. A control box for a carbon infrared moisture-proof system according to claim 2, characterized in that, The outer wall of the connecting frame (13) is provided with a pressure groove (15). Guide rods (16) are fixedly installed on both sides of the control box body (1). A pressure plate (17) that can slide and rotate along the guide rod (16) is fitted on the outer wall of the guide rod (16). A ball bearing connecting sleeve (18) is fixedly installed on the pressure plate (17). A limiting ball bearing (19) is rotatably connected inside the ball bearing connecting sleeve (18). A tension spring (20) for keeping the limiting ball bearing (19) pressed against the pressure groove (15) is fitted on the guide rod (16). One end of the tension spring (20) is connected to the side wall of the control box body (1), and the other end is connected to the pressure plate (17).

4. A control box for a carbon infrared moisture-proof system according to claim 2, characterized in that, The control box body (1) has a flow guide plate (21) fixedly installed on both sides below the connecting frame (13), and the control box body (1) has a flow guide groove (22) communicating with the flow guide plate (21) on both sides.

5. A control box for a carbon infrared moisture-proof system according to claim 1, characterized in that, The connecting end of the slider (11) is rotatably mounted with a pulley (23), and the two sides of the control box body (1) are provided with sliding grooves (24), and the slider (11) is slidably connected in the sliding grooves (24).

6. A control box for a carbon infrared moisture-proof system according to claim 1, characterized in that, A sealing ring (25) is fixedly installed at the edge of the rear wall of the box cover (2).

7. A control box for a carbon infrared moisture-proof system according to claim 1, characterized in that, The T-shaped rotating pin (3) is perpendicular to the axes of the two limiting pins (4).