A moisture-proof marine communication cabinet and moisture-proof method
By designing limit sliders and slide rail structures, sealed inserts, monitoring components and energy storage components in the marine communication cabinet, the problem of poor moisture resistance of the marine communication cabinet is solved, real-time monitoring and remote control of the communication cabinet is realized, and service life and maintenance convenience are improved, and energy-saving and environmentally friendly characteristics are also provided.
Patent Information
- Application Number
- CN202111315353.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-11-08
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2041-11-08
AI Technical Summary
The existing marine communication cabinet has poor moisture resistance in environments with high humidity, which affects its service life.
A moisture-proof marine communication cabinet is designed, including a load base, inner frame, drying component, monitoring component and energy storage component. The sliding of the outer frame is achieved through the limit slider and slide rail structure, combining sealed plugs and slots to ensure tightness, and monitoring components are equipped for environmental monitoring and remote data transmission. The drying component is used to control humidity and temperature, and an open structure is used to facilitate maintenance, and energy consumption is reduced through the energy storage component.
Real-time monitoring and remote control of the internal environment of the communication cabinet is realized, avoiding moisture, improving the service life and maintenance convenience of the communication cabinet, and having energy-saving and environmentally friendly characteristics.
Smart Images

Figure CN114040611B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of marine communication cabinets, and in particular to a marine communication cabinet with good moisture-proof properties and a moisture-proof method. Background Art
[0002] The power communication network came into being to ensure the safe and stable operation of the power system. It, together with the power system's relay protection and safety and stability control system, and the dispatching automation system, are collectively known as the three pillars of the safe and stable operation of the power system. At present, it is the basis for grid dispatching automation, network operation marketization and management modernization; it is an important means to ensure the safe, stable and economical operation of the power grid; it is an important infrastructure of the power system. Since the power communication network has very strict requirements on the reliability of communication, the speed and accuracy of protection and control information transmission, and the power sector has special resource advantages in developing communications, therefore, power companies in most countries in the world have established dedicated communication networks for power systems mainly through self-construction. Marine communication cabinets are one of the important equipment for marine power communications.
[0003] The marine communication cabinets on the market have poor moisture-proof effects. Marine communication cabinets are prone to internal moisture when they are in a high humidity environment for a long time, which directly affects the actual service life of the marine communication cabinets. Summary of the Invention
[0004] The object of the present invention is to provide a moisture-proof marine communication cabinet and a moisture-proof method to solve the problems raised in the above background technology.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a moisture-proof marine communication cabinet and a moisture-proof method with good moisture resistance, comprising a bearing base and an inspection component, wherein the upper middle portion of the bearing base is provided with an inner frame, and the inner side of the inner frame is provided with a placement component for installing electrical components, the rear end of the inner frame is provided with a drying component for drying the cabinet, the inspection component for cabinet inspection is connected to the outer side of the inner frame, and the inspection component comprises a limit rail, a limit slider, an outer frame, a fastening knob, a sealing plug, a sealing slot, a rubber layer, a limit column and a limiting cylinder, the outer side of the limiting slide rail is connected to the limiting slider, and the outer side of the limiting slider is connected to the outer frame, the outer side of the outer frame is penetrated by a fastening knob, and the bottom of the outer frame is provided with a sealing plug, the outer side of the sealing plug is connected to a sealing slot, and the inner wall of the sealing slot is provided with a rubber layer, limiting columns are provided at the four corners of the inner top of the outer frame, and the outer side of the limiting column is connected to the limiting cylinder, a monitoring component for cabinet monitoring is provided in the middle of the inner top of the outer frame, and an energy storage component for electric energy storage is provided at the outer top of the outer frame.
[0006] Preferably, the placement assembly includes a placement frame, an adjustment slot, an adjustment block, a positioning bolt and a placement cross plate, and adjustment slots are opened on both sides of the placement frame, the inner side of the adjustment slot is connected to the adjustment block, and a positioning bolt is passed through the middle of the adjustment block, and one side of the adjustment block is connected to the placement cross plate.
[0007] Preferably, the adjustment block and the placement transverse plate are distributed perpendicularly, and five placement transverse plates are provided. At the same time, the placement transverse plates are distributed in parallel, and the positioning bolts pass through the inner side of the adjustment block.
[0008] Preferably, the drying component includes a vent, a dustproof net, a fan, a hot air blower and a negative ion generator, and a dustproof net is provided on the outside of the vent, a fan is provided in the middle of the inner side of the vent, and hot air blowers are provided at the upper and lower ends of the inner side of the vent, and negative ion generators are placed on the left and right sides of the inner side of the vent.
[0009] Preferably, the vertical center axis of the hot air blower coincides with the vertical center axis of the vent, and two negative ion generators are symmetrically arranged about the center position of the vent.
[0010] Preferably, the outer frame is slidably connected to the limiting slide rail through the limiting slider, and the sealing plug is vertically distributed to the outer frame. At the same time, the outer size of the sealing plug matches the inner size of the sealing slot, and the limiting columns are equidistantly distributed at the four corners of the inner top of the outer frame.
[0011] Preferably, the monitoring component includes a monitoring module, a temperature sensor, a humidity sensor, an air pressure sensor and a transmission antenna, and the lower end of the monitoring module is provided with a temperature sensor, a humidity sensor and an air pressure sensor in sequence from left to right, and the two sides of the monitoring module are connected to the transmission antenna, and the temperature sensor, humidity sensor and air pressure sensor are equidistantly distributed.
[0012] Preferably, the energy storage assembly includes a mounting slide, a mounting slider, a positioning knob, a first movable clamp, a photovoltaic panel and a second movable clamp, and the mounting sliders are connected on both sides of the upper end of the mounting slide, a positioning knob is provided on one side of the upper end of the mounting slider, and the first movable clamp is connected to the right side of the upper end of the mounting slider, the inner side of the first movable clamp is connected to the photovoltaic panel, and the other end of the photovoltaic panel is connected to the second movable clamp.
[0013] Preferably, the mounting slide has a T-shaped structure, and the first movable clamp is slidably connected to the mounting slide via the mounting slider and the positioning knob, and the shape structure of the second movable clamp is consistent with that of the first movable clamp.
[0014] Preferably, the moisture-proof method for a marine communication cabinet having good moisture-proof properties comprises the following specific steps:
[0015] S1. Install and close
[0016] The limiting slider provided inside the outer frame cooperates with the limiting slide rail provided outside the inner frame, so that the outer frame can slide up and down outside the inner frame. The sealing plug provided at the bottom of the outer frame cooperates with the sealing slot provided at the upper end of the supporting base near the edge, which can ensure the tightness of the outer frame after closing and prevent the inner frame from getting wet.
[0017] S2. Environmental Monitoring
[0018] The monitoring component installed on the top of the inner side of the outer frame can accurately monitor the environment inside the inner frame to prevent excessive humidity inside the inner frame from affecting the actual working conditions of the electrical components.
[0019] S3, Remote Moisture Protection
[0020] The transmission antennas installed on both sides of the monitoring module can remotely transmit the detected data, and can remotely view the actual working status of the marine communication cabinet, which is convenient for controlling the temperature and humidity inside the inner frame by the drying component.
[0021] The present invention provides a moisture-proof marine communication cabinet and a moisture-proof method, which have the following beneficial effects: the moisture-proof marine communication cabinet and the moisture-proof method can monitor the environment inside the communication cabinet in real time through the mutual cooperation between multiple components, remotely view the monitoring data through wireless transmission, and control the communication cabinet according to the monitoring data to prevent the interior of the communication cabinet from getting damp. At the same time, a transparent structure is adopted to facilitate maintenance of the interior of the communication cabinet, avoiding the situation where the internal space is too small to affect the maintenance work of the communication cabinet during maintenance, and is convenient for practical use. At the same time, it is equipped with an energy collection function to convert solar energy into electrical energy, making the use of the communication cabinet more energy-saving and environmentally friendly.
[0022] 1. The present invention facilitates adjustment of the position between the placement cross plates by setting adjustment blocks at both ends of the placement cross plates in conjunction with adjustment slots on both sides of the placement frame, and tightening and loosening positioning bolts through threaded threads. The placement cross plates are distributed in parallel, which can ensure the accuracy of the position between them, so that electrical components of different specifications and sizes can be installed on the upper end of the placement frame, thereby improving the actual use range of the marine communication cabinet. The open structure of the inner frame facilitates the maintenance of electrical components, ensuring the continuity and effectiveness of the operation of the marine communication cabinet.
[0023] 2. The present invention can control the humidity and temperature inside the inner frame by setting a drying component in the middle of the rear end of the inner frame in cooperation with the monitoring component, so that the inner frame achieves a constant temperature and humidity effect, thereby ensuring the continuity and effectiveness of the operation of the electrical components inside the inner frame. The hot air blower can control the temperature inside the inner frame in cooperation with the fan, and can release negative ions into the inner frame while dissipating heat and ventilation in cooperation with the negative ion generators set on both sides of the vent, thereby avoiding the situation where static electricity is generated by long-term heat dissipation inside the inner frame, which causes interference to the electrical components inside the inner frame.
[0024] 3. The present invention enables the outer frame to slide up and down on the outside of the inner frame by means of a limit slider provided inside the outer frame and a limit slide rail provided outside the inner frame. In combination with the inner frame having an open frame structure, it is convenient to inspect and repair the electrical components inside the inner frame. The sealing plug provided at the bottom of the outer frame and the sealing slot provided at the upper end of the supporting base near the edge can ensure the tightness of the outer frame after closing and prevent the inner frame from getting damp. At the same time, the limit columns provided at the four corners of the bottom inner side of the outer frame and the limit cylinders provided at the four corners of the upper outer side of the inner frame can ensure the accuracy of the closed position between the outer frame and the inner frame, while preventing the outer frame from moving down and closing too quickly to cause damage to the monitoring component.
[0025] 4. The present invention can accurately monitor the environment inside the inner frame by setting a monitoring component on the top inner side of the outer frame, so as to avoid the situation where the humidity inside the inner frame is too high and affects the actual working state of the electrical components. In conjunction with the transmission antennas set on both sides of the monitoring module, the detected data can be remotely transmitted, and the actual working state of the marine communication cabinet can be remotely checked, which is convenient for controlling the drying component to control the temperature and humidity inside the inner frame, so as to ensure the continuity and effectiveness of the operation of the marine communication cabinet, and facilitate practical use.
[0026] 5. The present invention converts solar energy into electrical energy for use in the marine communication cabinet by setting an energy storage component on the top of the outer side of the outer frame, thereby reducing energy consumption and making the marine communication cabinet more energy-saving and environmentally friendly. By installing a slider and a positioning knob, the position of the first movable clamp and the second movable clamp can be adjusted, so that photovoltaic panels of different specifications and sizes can be installed on both sides of the upper end of the installation slide, and it is convenient to install and disassemble the photovoltaic panels, and to perform daily maintenance on the photovoltaic panels to ensure the continuity and effectiveness of the energy storage component. BRIEF DESCRIPTION OF THE DRAWINGS
[0027] Figure 1 This is a schematic diagram of the internal structure of a moisture-proof marine communication cabinet and a moisture-proof method according to the present invention;
[0028] Figure 2This is a schematic diagram of the external structure of a moisture-proof marine communication cabinet and a moisture-proof method according to the present invention;
[0029] Figure 3 This is a schematic diagram of the internal structure of an inner frame of a moisture-proof marine communication cabinet and a moisture-proof method according to the present invention;
[0030] Figure 4 This is a schematic diagram of the three-dimensional structure of the inner frame of a moisture-proof marine communication cabinet and a moisture-proof method according to the present invention;
[0031] Figure 5 This is a schematic diagram of a top view of a sealed slot of a moisture-proof marine communication cabinet and a moisture-proof method according to the present invention;
[0032] Figure 6 The present invention provides a moisture-proof marine communication cabinet and moisture-proof method Figure 1 Enlarged structural diagram at point A in the middle.
[0033] In the figure: 1. Bearing base; 2. Inner frame; 3. Mounting assembly; 301. Mounting frame; 302. Adjustment slot; 303. Adjustment block; 304. Positioning bolt; 305. Mounting cross plate; 4. Drying assembly; 401. Ventilation port; 402. Dust screen; 403. Fan; 404. Hot air blower; 405. Negative ion generator; 5. Inspection assembly; 501. Limiting rail; 502. Limiting slider; 503. Outer frame; 504. Fastening knob; 50 5. Sealing plug; 506. Sealing slot; 507. Rubber layer; 508. Limiting column; 509. Limiting cylinder; 6. Monitoring component; 601. Monitoring module; 602. Temperature sensor; 603. Humidity sensor; 604. Air pressure sensor; 605. Transmission antenna; 7. Energy storage component; 701. Mounting slide; 702. Mounting slider; 703. Positioning knob; 704. First movable clamp; 705. Photovoltaic panel; 706. Second movable clamp. DETAILED DESCRIPTION
[0034] See also Figure 1-6The present invention provides a technical solution: a moisture-proof marine communication cabinet and a moisture-proof method, comprising a bearing base 1 and an inspection component 5, wherein an inner frame 2 is provided at the middle of the upper end of the bearing base 1, and a placement component 3 for installing electrical components is provided on the inner side of the inner frame 2, a drying component 4 for drying the cabinet is provided at the rear end of the inner frame 2, and the inspection component 5 for cabinet inspection is connected to the outer side of the inner frame 2, and the inspection component 5 comprises a limiting slide rail 501, a limiting slider 502, an outer frame 503, a fastening knob 504, a sealing plug 505, a sealing slot 506, a rubber layer 507, a limiting column 508 and a limiting cylinder 509, and the limiting slide rail 50 1 is connected to a limit slider 502 on the outside, and the limit slider 502 is connected to the outer side of the outer frame 503, a fastening knob 504 is provided on the outer side of the outer frame 503, and a sealing plug 505 is provided at the bottom of the outer frame 503, the outer side of the sealing plug 505 is connected to a sealing slot 506, and the inner wall of the sealing slot 506 is provided with a rubber layer 507, and limit posts 508 are provided at the four corners of the inner top of the outer frame 503, and the outer side of the limit posts 508 is connected to a limit cylinder 509, a monitoring component 6 for cabinet monitoring is provided in the middle of the inner top of the outer frame 503, and an energy storage component 7 for storing electric energy is provided on the outer top of the outer frame 503;
[0035] The specific operation is as follows: the limiting slider 502 arranged inside the outer frame 503 cooperates with the limiting slide rail 501 arranged on the outside of the inner frame 2, so that the outer frame 503 can slide up and down on the outside of the inner frame 2, and cooperates with the inner frame 2 with an open frame structure, which is convenient for repairing the electrical components inside the inner frame 2. The sealing plug 505 arranged at the bottom of the outer frame 503 cooperates with the sealing slot 506 provided at the upper end of the supporting base 1 near the edge, which can ensure the tightness of the outer frame 503 after closing and prevent the inner frame 2 from getting wet. At the same time, the limiting columns 508 arranged at the four corners of the bottom inner side of the outer frame 503 cooperate with the limiting cylinders 509 arranged at the four corners of the upper outer side of the inner frame 2 to ensure the accuracy of the closed position between the outer frame 503 and the inner frame 2, while preventing the outer frame 503 from moving down and closing too quickly, causing damage to the monitoring component 6;
[0036] See also Figure 1 and Figure 6, the placement assembly 3 includes a placement frame 301, an adjustment slot 302, an adjustment block 303, a positioning bolt 304 and a placement cross plate 305, and the placement frame 301 is provided with an adjustment slot 302 on both sides, the inner side of the adjustment slot 302 is connected to the adjustment block 303, and the middle part of the adjustment block 303 is penetrated by a positioning bolt 304, and one side of the adjustment block 303 is connected to the placement cross plate 305, the adjustment block 303 and the placement cross plate 305 are distributed perpendicularly, and there are five placement cross plates 305, and the placement cross plates 305 are distributed in parallel, and the positioning bolts 304 pass through the inner side of the adjustment block 303;
[0037] The specific operation is as follows: the adjustment blocks 303 provided at both ends of the placement cross plates 305 cooperate with the adjustment slots 302 provided on both sides of the placement frame 301, and the threaded positioning bolts 304 are tightened and loosened to facilitate the adjustment of the position between the placement cross plates 305. The parallel distribution of the placement cross plates 305 can ensure the accuracy of the position between them, so that electrical components of different specifications and sizes can be installed on the upper end of the placement frame 301, thereby expanding the practical use range of the marine communication cabinet. The open structure of the inner frame 2 facilitates the maintenance of electrical components, ensuring the continuity and effectiveness of the operation of the marine communication cabinet.
[0038] See also Figure 1 、 Figure 2 、 Figure 5 and Figure 6 The drying component 4 includes a vent 401, a dustproof net 402, a fan 403, a hot air blower 404 and a negative ion generator 405. The dustproof net 402 is provided on the outside of the vent 401, the fan 403 is provided in the middle of the inner side of the vent 401, and the hot air blower 404 is provided at the upper and lower ends of the inner side of the vent 401. The negative ion generator 405 is placed on the left and right sides of the inner side of the vent 401. The vertical center axis of the hot air blower 404 is aligned with the vertical axis of the vent 401. 1 coincides with the vertical central axis of the vent 401, and two negative ion generators 405 are symmetrically arranged about the center of the vent 401. The outer frame 503 is slidably connected to the limiting slide rail 501 through the limiting slider 502, and the sealing plug 505 is vertically distributed with the outer frame 503. At the same time, the outer size of the sealing plug 505 coincides with the inner size of the sealing slot 506, and the limiting posts 508 are equidistantly distributed at the four corners of the inner top of the outer frame 503.
[0039] The specific operation is as follows: the drying component 4 provided in the middle of the rear end of the inner frame 2, in conjunction with the monitoring component 6, can control the humidity and temperature inside the inner frame 2, so that the inner frame 2 achieves a constant temperature and humidity effect, thereby ensuring the continuity and effectiveness of the operation of the electrical components inside the inner frame 2; the hot air blower 404 cooperates with the fan 403 to control the temperature inside the inner frame 2, and cooperates with the negative ion generator 405 provided on both sides of the vent 401 to release negative ions into the inner frame 2 while dissipating heat and ventilation, thereby avoiding the situation where static electricity is generated by long-term heat dissipation inside the inner frame 2, which interferes with the electrical components inside the inner frame 2;
[0040] See also Figure 1 、 Figure 3 and Figure 6 The monitoring component 6 includes a monitoring module 601, a temperature sensor 602, a humidity sensor 603, an air pressure sensor 604, and a transmission antenna 605. The temperature sensor 602, the humidity sensor 603, and the air pressure sensor 604 are sequentially arranged at the lower end of the monitoring module 601 from left to right. The transmission antenna 605 is connected to both sides of the monitoring module 601, and the temperature sensor 602, the humidity sensor 603, and the air pressure sensor 604 are equidistantly distributed;
[0041] The specific operation is as follows: the monitoring component 6 provided at the top inner side of the outer frame 503 can accurately monitor the environment inside the inner frame 2 to prevent the situation where the humidity inside the inner frame 2 is too high and affects the actual working state of the electrical components. In conjunction with the transmission antennas 605 provided on both sides of the monitoring module 601, the detected data can be remotely transmitted, and the actual working state of the marine communication cabinet can be remotely checked, which facilitates the control of the drying component 4 to control the temperature and humidity inside the inner frame 2, so as to ensure the continuity and effectiveness of the operation of the marine communication cabinet, and facilitates practical use;
[0042] See also Figure 1 、 Figure 2 and Figure 6 , the energy storage component 7 includes a mounting slide 701, a mounting slider 702, a positioning knob 703, a first movable clamp 704, a photovoltaic panel 705 and a second movable clamp 706, and the mounting slide 701 is connected to both sides of the upper end of the mounting slide 702, a positioning knob 703 is provided on one side of the upper end of the mounting slide 702, and the first movable clamp 704 is connected to the right side of the upper end of the mounting slide 702, the inner side of the first movable clamp 704 is connected to the photovoltaic panel 705, and the other end of the photovoltaic panel 705 is connected to the second movable clamp 706, the mounting slide 701 is T-shaped, and the first movable clamp 704 is slidably connected to the mounting slide 701 through the mounting slider 702 and the positioning knob 703, and the shape and structure of the second movable clamp 706 are consistent with the shape and structure of the first movable clamp 704;
[0043] The specific operation is as follows: the energy storage component 7 arranged on the top outside of the outer frame 503 can convert solar energy into electrical energy for use in the marine communication cabinet, reducing energy consumption and making the marine communication cabinet more energy-saving and environmentally friendly. By installing the slider 702 and the positioning knob 703, the positions of the first movable clamp 704 and the second movable clamp 706 can be adjusted, so that photovoltaic panels 705 of different specifications and sizes can be installed on both sides of the upper end of the installation slide 701. At the same time, it is convenient to install and remove the photovoltaic panels 705, and to perform daily maintenance on the photovoltaic panels 705 to ensure the continuity and effectiveness of the operation of the energy storage component 7;
[0044] The moisture-proof method for a marine communication cabinet with good moisture-proof properties comprises the following specific steps:
[0045] S1. Install and close
[0046] The limiting slider 502 provided inside the outer frame 503 cooperates with the limiting slide rail 501 provided outside the inner frame 2, so that the outer frame 503 can slide up and down outside the inner frame 2. The sealing plug 505 provided at the bottom of the outer frame 503 cooperates with the sealing slot 506 provided near the edge of the upper end of the supporting base 1 to ensure the tightness of the outer frame 503 after closing and prevent the inner frame 2 from getting wet.
[0047] S2. Environmental Monitoring
[0048] The monitoring component 6 provided on the top inner side of the outer frame 503 can accurately monitor the environment inside the inner frame 2 to prevent excessive humidity inside the inner frame 2 from affecting the actual working condition of the electrical components.
[0049] S3, Remote Moisture Protection
[0050] The transmission antennas 605 arranged on both sides of the monitoring module 601 can remotely transmit the detected data, and can remotely view the actual working status of the marine communication cabinet, so as to facilitate the control of the drying component 4 to control the temperature and humidity inside the inner frame 2.
[0051] In summary, the present invention has a good moisture-proof marine communication cabinet and moisture-proof method. When in use, the electrical components are first installed by placing the assembly 3. The adjustment blocks 303 arranged at both ends of the placement horizontal plate 305 cooperate with the adjustment slots 302 arranged on both sides of the placement frame 301. The positioning bolts 304 are tightened and loosened to facilitate the adjustment of the position between the placement horizontal plates 305. The parallel placement horizontal plates 305 can ensure the accuracy of the position between them, so that electrical components of different specifications and sizes can be installed on the upper end of the placement frame 301. Then, the limiting slider 502 arranged inside the outer frame 503 is used to cooperate with the setting. The limiting slide rail 501 on the outside of the inner frame 2 allows the outer frame 503 to slide up and down on the outside of the inner frame 2, and cooperates with the inner frame 2 with an open frame structure to facilitate the maintenance of the electrical components inside the inner frame 2. The sealing plug 505 set at the bottom of the outer frame 503 cooperates with the sealing slot 506 set at the upper end of the supporting base 1 near the edge to ensure the tightness of the outer frame 503 after closing and prevent the inner frame 2 from getting wet. At the same time, the limiting columns 508 set at the four corners of the bottom inner side of the outer frame 503 cooperate with the limiting cylinders 509 set at the four corners of the upper outer side of the inner frame 2. While ensuring the accuracy of the closed position between the outer frame 503 and the inner frame 2, it is also possible to avoid the outer frame 503 from moving down and closing too quickly, which may cause damage to the monitoring component 6. The monitoring component 6 arranged on the top inner side of the outer frame 503 can accurately monitor the environment inside the inner frame 2, and avoid the situation where the humidity inside the inner frame 2 is too high and affects the actual working state of the electrical components. In conjunction with the transmission antennas 605 arranged on both sides of the monitoring module 601, the detected data can be remotely transmitted, and the actual working state of the marine communication cabinet can be remotely viewed, which is convenient for controlling the drying component 4 on the inner frame The temperature and humidity inside the inner frame 2 are controlled. The hot air blower 404 cooperates with the fan 403 to control the temperature inside the inner frame 2. In conjunction with the negative ion generator 405 arranged on both sides of the vent 401, negative ions can be released into the inner frame 2 while dissipating heat and ventilation, avoiding static electricity generated by long-term heat dissipation inside the inner frame 2, which interferes with the electrical components inside the inner frame 2. The energy storage component 7 arranged on the top outside the outer frame 503 can convert solar energy into electrical energy for use in the marine communication cabinet, reducing energy consumption and making the marine communication cabinet more energy-saving and environmentally friendly.
Claims
1. A moisture-proof marine communication cabinet, characterized in that: The invention comprises a bearing base (1) and an inspection component (5), wherein an inner frame (2) is provided at the middle of the upper end of the bearing base (1), and a placement component (3) for installing electrical components is provided on the inner side of the inner frame (2), a drying component (4) for drying the cabinet is provided at the rear end of the inner frame (2), and the inspection component (5) for inspecting the cabinet is connected to the outer side of the inner frame (2), and the inspection component (5) comprises a limiting slide rail (501), a limiting slider (502), an outer frame (503), a fastening knob (504), a sealing plug (505), a sealing slot (506), a rubber layer (507), a limiting column (508) and a limiting cylinder (509), and the outer side of the limiting slide rail (501) is connected to the limiting slider (502). 2), and the outer side of the limiting slider (502) is connected to the outer frame (503), the outer side of the outer frame (503) is penetrated by a fastening knob (504), and the bottom of the outer frame (503) is provided with a sealing plug (505), the outer side of the sealing plug (505) is connected to a sealing slot (506), and the inner wall of the sealing slot (506) is provided with a rubber layer (507), the four corners of the inner top of the outer frame (503) are provided with limiting columns (508), and the outer side of the limiting columns (508) is connected to a limiting cylinder (509), a monitoring component (6) for cabinet monitoring is provided in the middle of the inner top of the outer frame (503), and an energy storage component (7) for electric energy storage is provided on the outer top of the outer frame (503); The drying component (4) comprises a vent (401), a dustproof net (402), a fan (403), a hot air blower (404) and a negative ion generator (405), wherein the dustproof net (402) is provided on the outside of the vent (401), the fan (403) is provided in the middle of the inner side of the vent (401), and the hot air blower (404) is provided at the upper and lower ends of the inner side of the vent (401), and the negative ion generator (405) is arranged on the left and right sides of the inner side of the vent (401); the vertical center axis of the hot air blower (404) coincides with the vertical center axis of the vent (401), and two negative ion generators (405) are symmetrically provided about the center position of the vent (401); The monitoring component (6) includes a monitoring module (601), a temperature sensor (602), a humidity sensor (603), an air pressure sensor (604) and a transmission antenna (605), and the lower end of the monitoring module (601) is provided with the temperature sensor (602), the humidity sensor (603) and the air pressure sensor (604) in sequence from left to right, the two sides of the monitoring module (601) are connected with the transmission antenna (605), and the temperature sensor (602), the humidity sensor (603) and the air pressure sensor (604) are equidistantly distributed; the energy storage component (7) includes a mounting slide (701), an installation slider (702), a positioning knob (703), a first movable clamp (704), a photovoltaic panel (705) and a second movable clamp (706), and the installation slider (702) is connected to both sides of the upper end of the installation slider (701), a positioning knob (703) is provided on one side of the upper end of the installation slider (702), and the first movable clamp (704) is connected to the right side of the upper end of the installation slider (702), the inner side of the first movable clamp (704) is connected to the photovoltaic panel (705), and the other end of the photovoltaic panel (705) is connected to the second movable clamp (706).
2. The moisture-proof marine communication cabinet according to claim 1, characterized in that: The placement assembly (3) comprises a placement frame (301), an adjustment slot (302), an adjustment block (303), a positioning bolt (304) and a placement transverse plate (305), wherein the placement frame (301) is provided with adjustment slots (302) on both sides, the inner side of the adjustment slot (302) is connected to the adjustment block (303), and the middle part of the adjustment block (303) is penetrated by a positioning bolt (304), and one side of the adjustment block (303) is connected to the placement transverse plate (305).
3. The moisture-proof marine communication cabinet according to claim 2, characterized in that: The adjusting block (303) and the placement transverse plate (305) are arranged in a vertical shape, and there are five placement transverse plates (305). The placement transverse plates (305) are arranged in parallel, and the positioning bolts (304) pass through the inner side of the adjusting block (303).
4. The moisture-proof marine communication cabinet according to claim 1, characterized in that: The outer frame (503) is slidably connected to the limiting slide block (502) and the limiting slide rail (501), and the sealing plug (505) is vertically distributed with the outer frame (503). At the same time, the outer size of the sealing plug (505) is consistent with the inner size of the sealing slot (506), and the limiting columns (508) are equidistantly distributed at the four corners of the inner top of the outer frame (503).
5. The moisture-proof marine communication cabinet according to claim 1, characterized in that: The mounting slide (701) is in a T-shaped structure, and the first movable clamp (704) is slidably connected to the mounting slide (701) via the mounting slider (702) and the positioning knob (703), and the shape structure of the second movable clamp (706) is consistent with the shape structure of the first movable clamp (704).
6. A moisture-proof method for a marine communication cabinet having good moisture-proof properties according to any one of claims 1 to 5, characterized in that: The following specific steps are included: S1. Install and close The limiting slider (502) arranged inside the outer frame (503) cooperates with the limiting slide rail (501) arranged outside the inner frame (2), so that the outer frame (503) can slide up and down outside the inner frame (2); the sealing plug (505) arranged at the bottom of the outer frame (503) cooperates with the sealing slot (506) arranged near the edge of the upper end of the supporting base (1), which can ensure the tightness of the outer frame (503) after closing and prevent the inner frame (2) from being affected by moisture; S2. Environmental Monitoring The monitoring component (6) arranged on the top inner side of the outer frame (503) can accurately monitor the environment inside the inner frame (2) to prevent excessive humidity inside the inner frame (2) from affecting the actual working conditions of the electrical components; S3, Remote Moisture Protection The transmission antennas (605) arranged on both sides of the monitoring module (601) can remotely transmit the detected data, and can remotely check the actual working status of the marine communication cabinet, so as to facilitate the control of the drying component (4) to control the temperature and humidity inside the inner frame (2).
Citation Information
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