Moisture-proof control cabinet of climbing frame control system
By introducing components such as an electric heating plate, a humidity sensor and a stirring rack into the moisture-proof control cabinet, the problem of frequent replacement of desiccant in the moisture-proof control cabinet in the prior art is solved, and the reuse of the desiccant and the improvement of heating efficiency are achieved.
Patent Information
- Application Number
- CN202422718315.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-08
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-08
AI Technical Summary
The moisture-proof control cabinet of the existing climbing frame control system requires frequent replacement of desiccant, which is inconvenient to operate.
A moisture-proof box with a built-in electric heating plate and humidity sensor is used, combined with a sealed cover and an elastic water-absorbing layer. The electric heating plate regularly heats the desiccant and the humidity is monitored using a humidity sensor to achieve the reuse of the desiccant. The water collection structure collects water vapor, the sealed cover reduces heat loss, and the stirring rack turns the desiccant to improve heating efficiency.
The desiccant can be reused, the replacement frequency is reduced, the heating efficiency and heat utilization rate are improved, and the maintenance cost is reduced.
Smart Images

Figure CN223402677U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of control cabinets, in particular to a moisture-proof control cabinet for a climbing frame control system. Background Art
[0002] Climbing scaffolds, also known as lifting scaffolds, are categorized by their power source, including hydraulic, electric, and manual. With the development and application of information technology, traditional scaffolding is evolving into intelligent climbing scaffolds. These avoid the drawbacks of traditional scaffolding, including the hassle of erection and low safety factors, and can automatically rise and fall according to building height, offering greater convenience and safety. Existing climbing frame control systems are mostly composed of discrete electrical components and are uniformly controlled by a controller. For example, patent publication number CN113534707B provides an intelligent climbing frame control system, which includes a control device, a terminal, a communication device, a weight sensor and a motor drive device. The terminal is connected to the control device through the communication device, and the control device is respectively connected to the weight sensor and the motor drive device. The weight sensor is connected to the motor drive device. The terminal is used to receive control instructions input by the user and send them to the control device through the communication device; the weight sensor is used to sense the weight of the climbing frame load and convert the weight signal into a voltage signal output; the control device is used to obtain the ascending and crawling time; the effective control instruction is obtained according to the correspondence between the control instruction and the preset control instruction-effective control instruction; the voltage signal is collected, and the climbing frame load weight is obtained according to the voltage signal conversion, and the motor drive device is controlled to drive the climbing frame to ascend, descend or stop according to the effective control instruction, the climbing frame load weight and the ascending and crawling time.
[0003] In order to ensure the stability of the controller, various protective structures are usually set on the control cabinet, and the moisture-proof structure is a more critical protective structure. For example, a moisture-proof control cabinet provided by patent publication number CN117613694B includes support legs, a control cabinet body and a drying device. The drying device is provided at the bottom of the control cabinet body. By arranging a moisture absorption component and a stirring component on the control cabinet body, the desiccant can fully absorb water.
[0004] Based on the above search and in combination with existing technologies, it was found that, although moisture-proof control cabinets similar to those disclosed above can fully utilize the desiccant, they still require regular replacement of the desiccant, which is quite troublesome. Therefore, a moisture-proof control cabinet for a climbing frame control system is proposed to improve the above problem. Utility Model Content
[0005] The purpose of this application is to provide a moisture-proof control cabinet for a climbing frame control system to solve the problems raised in the above-mentioned background technology.
[0006] To achieve the above-mentioned objectives, the present application provides the following technical solution: a moisture-proof control cabinet for a climbing frame control system, comprising a cabinet body with a built-in climbing frame control device, a cabinet door hinged to the front end of the cabinet body, and a moisture-proof mechanism provided at the bottom end of the cabinet body:
[0007] The moisture-proof mechanism includes a moisture-proof box, a cover plate with holes and an electric heating plate;
[0008] The inner side of the moisture-proof box is filled with desiccant, the electric heating plate is installed at the inner bottom end of the moisture-proof box, and the cover plate with holes is detachably installed at the upper open end of the moisture-proof box;
[0009] A water collecting structure is provided on the upper side of the moisture-proof box, and the water vapor generated by the electric heating plate heating the desiccant is collected in the water collecting structure.
[0010] As a further supplement to this solution, the water collection structure includes an elastic water absorbing layer and a sealing cover plate rotatably mounted on the top end of the moisture-proof box. A first driving motor for driving the sealing cover plate to rotate is mounted on the outer wall of the moisture-proof box.
[0011] When the sealing cover plate is rotated to fit together with the cover plate with holes, the sealing cover plate completely covers the small holes on the cover plate with holes, the elastic water-absorbing layer is fixed to the end face of the sealing cover plate away from the cover plate with holes, the side end of the moisture-proof box is provided with an extrusion groove for embedding the sealing cover plate, and the side bottom end of the moisture-proof box is provided with a drainage channel connecting the extrusion groove with the outside world.
[0012] As a further supplement to this solution, a water storage box is installed on the outer wall of the moisture-proof box, and the upper end of the water storage box is connected to the drainage channel.
[0013] As a further supplement to this solution, the water storage box is a transparent box, and a drain pipe is installed at the bottom end of the water storage box.
[0014] As a further supplement to this solution, a plurality of heat conducting rods are installed on the upper end of the electric heating plate, and the heat conducting rods are evenly distributed and vertically installed on the electric heating plate.
[0015] As a further supplement to this solution, a stirring rack is rotatably mounted on the inner side of the moisture-proof box, and a second driving motor for driving the stirring rack to rotate is mounted on the outer wall of the moisture-proof box.
[0016] In summary, the technical effects and advantages of the utility model are:
[0017] 1. In the present invention, an electric heating plate is provided at the bottom of the moisture-proof box. The electric heating plate can be preset to heat the desiccant at a predetermined time. A humidity sensor can also be built into the cabinet to monitor the humidity inside the cabinet in real time. When the humidity exceeds a preset threshold, the relevant controller controls the electric heating plate to heat the desiccant to remove moisture from the desiccant, so that the desiccant can be reused without frequent replacement.
[0018] 2. In the present invention, through the coordinated arrangement of the sealing cover plate and the elastic water-absorbing layer, when the first driving motor drives the sealing cover plate to rotate to fit with the perforated cover plate, the sealing cover plate completely covers the small holes on the perforated cover plate, so that a relatively sealed space is formed inside the moisture-proof box, which reduces heat loss when heating the desiccant and has higher heating efficiency. In addition, the water vapor generated during the heating process rises and immerses in the elastic water-absorbing layer for temporary storage. After the heating is completed, the first driving motor drives the sealing cover plate to rotate with the elastic water-absorbing layer into the extrusion groove, and the water in the elastic water-absorbing layer is squeezed out and discharged from the drainage channel. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.
[0020] Figure 1 Schematic diagram of the overall three-dimensional structure of this embodiment;
[0021] Figure 2 Schematic diagram of the disassembled structure of the moisture-proof box in this embodiment;
[0022] Figure 3 Schematic diagram of the internal structure of the moisture-proof box in this embodiment;
[0023] Figure 4 This is a structural diagram of the moisture-proof mechanism in this embodiment with the sealing cover plate opened;
[0024] Figure 5 This is a structural diagram of the moisture-proof mechanism in this embodiment with the sealing cover closed.
[0025] In the figure: 1. Cabinet body; 2. Cabinet door; 3. Moisture-proof mechanism; 31. Moisture-proof box; 3101. Extrusion groove; 3102. Drainage channel; 32. Cover plate with holes; 33. Electric heating plate; 34. Sealing cover plate; 35. Elastic water-absorbing layer; 36. Water storage box; 37. Drain pipe; 38. Heat-conducting rod; 39. Stirring frame; 310. Second drive motor; 311. First drive motor. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0027] Example: Reference Figure 1-5 The moisture-proof control cabinet of a climbing frame control system shown includes a cabinet body 1 with a built-in climbing frame control device, a cabinet door 2 hinged to the front end of the cabinet body 1, and a moisture-proof mechanism 3 arranged at the bottom end of the cabinet body 1.
[0028] The moisture-proof mechanism 3 includes a moisture-proof box 31, a perforated cover 32 and an electric heating plate 33. The inner side of the moisture-proof box 31 is filled with desiccant, the electric heating plate 33 is installed at the inner bottom end of the moisture-proof box 31, and the perforated cover 32 is detachably installed at the upper open end of the moisture-proof box 31.
[0029] In specific applications, the electric heating plate 33 can be preset to heat the desiccant at a fixed time. Alternatively, a humidity sensor can be built into the cabinet 1 to monitor the humidity inside the cabinet 1 in real time. When the humidity exceeds a preset threshold, a controller controls the electric heating plate 33 to heat the desiccant, removing moisture from the desiccant. This allows the desiccant to be reused without frequent replacement. It should be further noted that the desiccant in this embodiment is preferably silica gel desiccant granules, which ensures safe and stable drying and reuse performance.
[0030] A water collecting structure is provided on the upper side of the moisture-proof box 31, and the water vapor generated by the electric heating plate 33 heating the desiccant is collected in the water collecting structure. Specifically, the water collecting structure includes an elastic water-absorbing layer 35 and a sealing cover plate 34 rotatably installed on the top end of the moisture-proof box 31. A first driving motor 311 for driving the sealing cover plate 34 to rotate is installed on the outer wall of the moisture-proof box 31. When the sealing cover plate 34 rotates to fit with the perforated cover plate 32, the sealing cover plate 34 completely covers the small holes on the perforated cover plate 32, and the elastic water-absorbing layer 35 is fixed to the end face of the sealing cover plate 34 away from the perforated cover plate 32. The side end of the moisture-proof box 31 is provided with an extrusion groove 3101 for the sealing cover plate 34 to be embedded, and the side bottom end of the moisture-proof box 31 is provided with a drainage channel 3102 connecting the extrusion groove 3101 with the outside world.
[0031] When the first driving motor 311 drives the sealing cover plate 34 to rotate until it fits with the perforated cover plate 32, the sealing cover plate 34 completely covers the small holes on the perforated cover plate 32, so that a relatively sealed space is formed inside the moisture-proof box 31, which reduces heat loss when heating the desiccant and has higher heating efficiency. The water vapor generated during the heating process rises and is temporarily stored in the elastic water-absorbing layer 35. After the heating is completed, the first driving motor 311 drives the sealing cover plate 34 to rotate with the elastic water-absorbing layer 35 into the extrusion groove 3101, and the water in the elastic water-absorbing layer 35 is squeezed out and discharged from the drainage channel 3102.
[0032] In addition, in order to prevent the heat generated by the electric heating plate 33 during the heating of the desiccant from causing the local temperature inside the cabinet 1 to be too high, a cooling fan (not shown in the figure) can be provided at the moisture-proof mechanism 3. In addition, the moisture-proof box 31, the perforated cover 32 and the sealing cover 34 are all made of insulating materials to reduce heat loss.
[0033] Among them, a water storage box 36 is installed on the outer wall of the moisture-proof box 31. The upper end of the water storage box 36 is connected to the drainage channel 3102 for collecting water. The water storage box 36 is a transparent box, which is convenient for staff to check the internal water storage situation of the water storage box 36. A drain pipe 37 is installed at the bottom end of the water storage box 36 to facilitate the discharge of water inside the water storage box 36.
[0034] In order to further improve the heating efficiency, a plurality of heat conducting rods 38 are installed on the upper end of the electric heating plate 33. The heat conducting rods 38 are evenly distributed and vertically installed on the electric heating plate 33, so that the desiccant is heated more evenly.
[0035] Among them, a stirring frame 39 is rotatably installed on the inner side of the moisture-proof box 31, and a second drive motor 310 for driving the stirring frame 39 to rotate is installed on the outer wall of the moisture-proof box 31. During the moisture absorption and dehumidification process of the desiccant, the second drive motor 310 can be used to drive the stirring frame 39 to rotate and turn the desiccant so that the desiccant can fully absorb moisture. At the same time, during the heating process of the desiccant, the second drive motor 310 can also be used to drive the stirring frame 39 to rotate to turn the desiccant so that the desiccant can be evenly heated.
[0036] The working principle of the utility model is as follows: during the desiccant moisture absorption and dehumidification process, the second drive motor 310 can be used to drive the stirring frame 39 to rotate and turn the desiccant so that the desiccant can fully absorb moisture, and during the desiccant moisture absorption and dehumidification process, the second drive motor 310 can be used to drive the stirring frame 39 to rotate and turn the desiccant so that the desiccant can fully absorb moisture; the electric heating plate 33 can be preset to heat the desiccant regularly, and a humidity sensor can also be built into the cabinet 1 to monitor the humidity inside the cabinet 1 in real time. When the humidity exceeds the manually preset threshold, the relevant controller is used to control the electric heating plate 33 to heat the desiccant to remove the moisture inside the desiccant, so that the desiccant can be reused, and when heating, the first drive motor 3 11 drives the sealing cover plate 34 to rotate until it completely covers the small holes on the perforated cover plate 32, so that a relatively sealed space is formed inside the moisture-proof box 31, which reduces heat loss when heating the desiccant and improves the heating efficiency. The water vapor generated during the heating process rises and is immersed in the elastic water-absorbing layer 35 for temporary storage. In the process of heating the desiccant, the second driving motor 310 is used to drive the stirring frame 39 to rotate to turn the desiccant so that the desiccant is evenly heated. After heating is completed, the first driving motor 311 drives the sealing cover plate 34 to rotate with the elastic water-absorbing layer 35 into the extrusion groove 3101, and the water in the elastic water-absorbing layer 35 is squeezed out and discharged through the drainage channel 3102 to be collected in the water storage box 36.
[0037] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A moisture-proof control cabinet for a climbing frame control system, comprising a cabinet body (1) with a built-in climbing frame control device, a cabinet door (2) hinged to the front end of the cabinet body (1), and a moisture-proof mechanism (3) arranged at the bottom end of the cabinet body (1), characterized in that: The moisture-proof mechanism (3) comprises a moisture-proof box (31), a cover plate with holes (32) and an electric heating plate (33); The inner side of the moisture-proof box (31) is filled with a desiccant, the electric heating plate (33) is installed at the inner bottom end of the moisture-proof box (31), and the perforated cover plate (32) is detachably installed at the upper open end of the moisture-proof box (31); A water collecting structure is provided on the upper side of the moisture-proof box (31), and water vapor generated by the electric heating plate (33) heating the desiccant is collected in the water collecting structure.
2. The moisture-proof control cabinet of the climbing frame control system according to claim 1 is characterized in that: The water collection structure comprises an elastic water-absorbing layer (35) and a sealing cover plate (34) rotatably mounted on the top end of the moisture-proof box (31); a first driving motor (311) for driving the sealing cover plate (34) to rotate is mounted on the outer wall of the moisture-proof box (31); When the sealing cover plate (34) is rotated to fit with the perforated cover plate (32), the sealing cover plate (34) completely covers the small holes on the perforated cover plate (32), the elastic water-absorbing layer (35) is fixed to the end surface of the sealing cover plate (34) away from the perforated cover plate (32), the side end of the moisture-proof box (31) is provided with an extrusion groove (3101) for the sealing cover plate (34) to be embedded, and the side bottom end of the moisture-proof box (31) is provided with a drainage channel (3102) connecting the extrusion groove (3101) with the outside world.
3. The moisture-proof control cabinet of the climbing frame control system according to claim 2, characterized in that: A water storage box (36) is installed on the outer wall of the moisture-proof box (31), and the upper end of the water storage box (36) is connected to the drainage channel (3102).
4. The moisture-proof control cabinet of the climbing frame control system according to claim 3 is characterized in that: The water storage box (36) is a transparent box, and a drainage pipe (37) is installed at the bottom end of the water storage box (36).
5. The moisture-proof control cabinet of the climbing frame control system according to claim 1 is characterized in that: A plurality of heat-conducting rods (38) are installed on the upper end of the electric heating plate (33), and the heat-conducting rods (38) are distributed at equal intervals and are vertically installed on the electric heating plate (33).
6. The moisture-proof control cabinet of the climbing frame control system according to claim 1 is characterized in that: A stirring rack (39) is rotatably mounted on the inner side of the moisture-proof box (31), and a second driving motor (310) for driving the stirring rack (39) to rotate is mounted on the outer wall of the moisture-proof box (31).
Citation Information
Patent Citations
A smart climbing scaffold control system
CN113534707B
A moisture-proof control cabinet
CN117613694B