LED lamp suitable for high-humidity environment

The electric slider cleans up water vapor, sponge block adsorption and exhaust fan to store water vapor, and combines the isolation components to protect the power connector, which solves the short circuit and pollution problems of LED lamps in high humidity environments, ensuring safety and clean room air quality.

CN120292483APending Publication Date: 2025-07-11BERMAN TECH (GUANGDONG) CO LTD
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Patent Information

Application Number
CN202510434804.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-08
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

LED lamps are prone to moisture adhesion in high humidity environments, resulting in impact on lighting conditions, internal short circuits or contamination of clean room environments, which are difficult to effectively solve in the existing technology.

Method used

The electric slider is used to drive the roller to clean the gap water vapor, the sponge block absorbs water vapor, the exhaust fan sucks and stores liquefied water vapor, isolates the components and protects the power connector, ensures air circulation and prevents pollution.

Benefits of technology

Effectively prevent water vapor from entering the gap and causing short circuits, reduce pollution, and ensure the safety of LED lamps in high humidity environments and the air quality of the clean room.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of illumination, in particular to an LED lamp adapting to a high-humidity environment, which comprises a mounting plate, a mounting frame, a protective shell, an LED lamp panel, a first power supply connector, a second power supply connector and the like, a mounting frame is mounted on the mounting plate; a protective shell is mounted on the mounting frame, and a through hole is formed in the protective shell; a plurality of LED lamp panels are mounted on the mounting frame; each LED lamp panel is fixedly connected with a plurality of first power supply connectors; a plurality of second power supply connectors are mounted on the mounting plate; and each second power supply connector is connected with the corresponding first power supply connector. The rollers are driven by the electric sliding blocks to move, namely water vapor at the joint of the mounting plate and the mounting frame is cleaned through rotation of the rollers, and the safety problem of short circuit caused by the fact that the water vapor enters a gap at the joint of the mounting plate and the mounting frame is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of lighting, and particularly to an LED lamp adapted to a high-humidity environment. Background Art

[0002] LED lamps have the characteristics of high luminous efficiency and low power consumption. Compared with traditional lamps such as tubular energy-saving lamps, they are more power-saving, easier to control, do not contain toxic substances such as mercury, and the waste treatment is relatively simple. Moreover, there is no ultraviolet radiation and light pollution during use, which is harmless to the human body and the environment, and is widely used in various scenarios;

[0003] However, in some environments with high humidity (such as bathrooms and places near water), water vapor often adheres to the lamps. If not cleaned in time, after the water vapor adheres to the surface, it will affect the lighting state of the lamps, and as the water vapor enters the lamp interior, problems such as the sealing glue between the lamp cover and the lamp body aging, breaking, or short-circuit damage may occur;

[0004] Moreover, in environments with high humidity such as bathrooms, the internal wiring and other components of the lamps are usually also set within the indoor range. When the indoor water vapor is too large and erodes the plugs and circuits inside the lamps, it will also cause the lamps to short-circuit. Especially when the bathroom lamp is turned on while the user is taking a bath, if the lamp short-circuits and explodes at this time, the user has no clothes to cover while taking a bath and will be more seriously injured than in the normal state;

[0005] At the same time, for some places with high environmental requirements (such as clean rooms, which refer to enclosed spaces with good airtightness where parameters such as air cleanliness, temperature, humidity, pressure, and noise are controlled as needed), LED lamps are usually also used for lighting work. However, during use, if the water vapor adhering to the lamps is not cleaned in time, after the water vapor adhering to the surface converges and drips into the clean room, it will pollute the environment in the clean room. Summary of the Invention

[0006] In order to overcome the drawback that water vapor often adheres to the existing LED lamps, and if not cleaned in time, it will affect the lighting state of the lamps, and as the water vapor enters the lamp interior, for example, the sealing glue between the lamp cover and the lamp body ages, breaks, or is damaged by short circuit, the present invention provides an LED lamp adapted to a high-humidity environment.

[0007] The technical solution is as follows: An LED lamp adapted to a high-humidity environment, comprising a mounting plate, a mounting frame, a protective shell, an LED lamp board, a first power connector, and a second power connector; the mounting plate is provided with a mounting frame; the mounting frame is provided with a protective shell, and through holes are formed in the protective shell; a plurality of LED lamp boards are mounted on the mounting frame; a plurality of first power connectors are fixedly connected to each LED lamp board; a plurality of second power connectors are mounted on the mounting plate; each second power connector is connected to the corresponding first power connector; further comprising an isolation ring, an annular slide rail, an electric slider, a roller, an exhaust duct, an exhaust fan, and a first drain pipe; the mounting frame is connected with an isolation ring; the mounting plate is fixedly connected with an annular slide rail; a plurality of electric sliders are slidably connected to the annular slide rail; a roller is rotatably connected to each electric slider; all the rollers are in contact with the mounting plate and the mounting frame; the mounting plate is provided with an exhaust duct, and a raised liquid storage tank is arranged at the bottom of the exhaust duct, and the exhaust duct is communicated with the through hole; an exhaust fan is mounted in the exhaust duct; a first drain pipe is communicated with the exhaust duct.

[0008] As a further preferred solution, it further comprises a flow guiding assembly, which includes a flow guiding plate, a flow guiding pipe, a liquid storage device, a second drain pipe, a sponge block, a connecting block, and a third drain pipe; the mounting frame is connected with a flow guiding plate; a plurality of flow guiding pipes are connected to the mounting frame; a connecting block is fixedly connected to the exhaust fan; a third drain pipe is penetrated through the connecting block; the third drain pipe is fixedly connected with the exhaust duct; a second drain pipe is inserted into the third drain pipe; a liquid storage device is fixedly connected to the second drain pipe, and a plurality of water inlets are formed at the connection of the second drain pipe and the liquid storage device; a sponge block is connected to the second drain pipe.

[0009] As a further preferred solution, flow guiding grooves are formed in the protective shell.

[0010] As a further preferred solution, spiral grooves are arranged on the surface of the roller.

[0011] As a further preferred solution, the sponge block and the second drain pipe are arranged in a quick-release structure.

[0012] As a further preferred solution, it further comprises an isolation assembly, including an isolation assembly; a first elastic member, a first isolation sleeve, a second elastic member, a second isolation sleeve, and an isolation head; a first isolation sleeve is slidably connected inside each second power connector; a first elastic member is fixedly connected to each first isolation sleeve; all the first elastic members are fixedly connected to the corresponding LED lamp board; a second isolation sleeve is slidably connected to each second power connector; a plurality of second elastic members are fixedly connected to each second isolation sleeve; all the second elastic members are jointly fixedly connected to the mounting plate; an isolation head is fixedly connected to each second power connector.

[0013] As a further preferred solution, a rubber sleeve is provided on each first isolation sleeve.

[0014] As a further preferred solution, the upper surface of the second power connector is provided with a concave structure.

[0015] The present invention has the following advantages: 1. The present invention drives the roller to move along with the electric slider, that is, the roller rotates to clean the water vapor at the junction of the mounting plate and the mounting bracket, avoiding the safety problem of short circuit caused by water vapor entering the gap at the junction of the mounting plate and the mounting bracket;

[0016] 2. The present invention adsorbs the water vapor in the air through the sponge block. When the sponge block is saturated with adsorption, the liquid droplets will also drip into the liquid storage device. Although the sponge block can adsorb part of the water vapor, part of the water vapor will still enter the exhaust pipe. After the water vapor enters the exhaust pipe, it will liquefy and also drip into the room through the through hole. That is, in this process, the sponge block can also block the liquefied water vapor to reduce the pollution caused by the water droplets to the room that needs to be clean;

[0017] 3. The rubber sleeve on the first isolation sleeve of the present invention is in an expanded state and wraps the upper surface of the second power connector. At the same time, the mounting bracket is used to completely wrap the second power connector to prevent it from being polluted by the outside and affecting its conductive effect. Similarly, under the action of the second elastic member, the second isolation sleeve is flush with the isolation head, and the second power connector is wrapped by the mounting plate, the second isolation sleeve and the isolation head. That is, during the process of not assembling the mounting plate and the mounting bracket, the exhaust fan can still perform the air exchange work on the room to ensure the circulation of the indoor air. Similarly, the second isolation sleeve and the isolation head are used to prevent the water vapor from directly contacting the second power connector. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic structural diagram of the LED lamp adapted to a high humidity environment of the present invention;

[0019] Figure 2 It is a schematic combined structural diagram of the LED lamp board, the first power connector and the second power connector of the LED lamp adapted to a high humidity environment of the present invention;

[0020] Figure 3 It is a schematic combined structural diagram of the mounting bracket, the protective shell and the LED lamp board of the LED lamp adapted to a high humidity environment of the present invention;

[0021] Figure 4 It is a schematic structural diagram of the flow guide plate, the flow guide pipe and the liquid storage device of the LED lamp adapted to a high humidity environment of the present invention;

[0022] Figure 5 It is a schematic combined structural diagram of the second drain pipe, the sponge block, the connecting block and the third drain pipe of the LED lamp adapted to a high humidity environment of the present invention;

[0023] Figure 6 Schematic diagram of the combined structure of the first elastic member and the first isolation sleeve of the LED lamp adapted to a high-humidity environment according to the present invention;

[0024] Figure 7 Figure 6 Enlarged view of area A.

[0025] Wherein: 1 - mounting plate, 2 - mounting bracket, 3 - protective housing, 3001 - through hole, 3002 - flow guiding groove, 4 - LED lamp board, 5 - first power connector, 6 - second power connector, 7 - isolation ring, 8 - annular slide rail, 9 - electric slider, 10 - roller, 11 - exhaust duct, 11001 - liquid storage tank, 12 - exhaust fan, 13 - first drain pipe, 101 - flow guiding plate, 102 - flow guiding pipe, 103 - liquid reservoir, 104 - second drain pipe, 10401 - water inlet, 105 - sponge block, 106 - connecting block, 107 - third drain pipe, 201 - first elastic member, 202 - first isolation sleeve, 20201 - rubber sleeve, 203 - second elastic member, 204 - second isolation sleeve, 205 - isolation head. Detailed implementation manners

[0026] The following further illustrates the technical solution in combination with specific embodiments. It should be noted that: The words indicating directions such as up, down, left, and right mentioned in this article are only for the positions of the shown structures in the corresponding drawings. The serial numbers assigned to the components in this article, such as: the first, the second, etc., are only used to distinguish the described objects and do not have any sequential or technical meanings. And as used in this application: connections, couplings, unless otherwise specified, all include direct and indirect connections (couplings).

[0027] Embodiment 1

[0028] An LED lamp adapted to a high-humidity environment, as Figures 1-3 shown, includes a mounting plate 1, a mounting bracket 2, a protective housing 3, an LED lamp board 4, a first power connector 5 and a second power connector 6; The mounting plate 1 is provided with a mounting bracket 2; The mounting bracket 2 is provided with a protective housing 3, and a through hole 3001 is provided on the protective housing 3; The mounting bracket 2 is provided with four annularly arrayed LED lamp boards 4; Two symmetrically arranged first power connectors 5 are fixedly connected to each LED lamp board 4; The mounting plate 1 is provided with eight annularly arrayed second power connectors 6; Each second power connector 6 is connected to the corresponding first power connector 5;

[0029] It further includes an isolation ring 7, an annular slide rail 8, an electric slider 9, a roller 10, an exhaust duct 11, an exhaust fan 12 and a first drain pipe 13; the isolation ring 7 is connected to the mounting bracket 2; the annular slide rail 8 is bolted to the mounting plate 1; four electric sliders 9 arranged in an annular array are slidably connected to the annular slide rail 8; a roller 10 is rotatably connected to each electric slider 9; all the rollers 10 are in contact with the mounting plate 1 and the mounting bracket 2; the exhaust duct 11 is mounted on the mounting plate 1, a raised liquid storage tank 11001 is provided at the bottom of the exhaust duct 11, and the exhaust duct 11 is communicated with the through hole 3001; the exhaust fan 12 is mounted in the exhaust duct 11; the first drain pipe 13 is communicated with the exhaust duct 11.

[0030] First, the staff uses a connecting pipe to connect the exhaust duct 11 with an external exhaust system, and then uses a connecting pipe to connect the external drainage system with the first drain pipe 13. During the operation of the LED lamp adapted to a high-humidity environment, first, the LED lamp panel 4 is controlled to operate by power-on, that is, the clean room is illuminated by the LED lamp panel 4. During this process, at the same time, the exhaust fan 12 is controlled to perform a suction operation to suck the indoor air. The air enters the exhaust duct 11 through the through hole 3001, then enters the exhaust system through the exhaust duct 11, and finally is discharged, that is, the indoor air is exchanged to ensure the discharge of indoor waste gas. On the one hand, in an environment with high water vapor, the water vapor in the room can be reduced, making it easier for users to breathe. On the other hand, in a scenario such as a clean room, it can be prevented from accumulating indoors and posing a threat to the health of personnel. During this process, the protective shell 3 is cooled by the air flow, thereby reducing the temperature inside the protective shell 3;

[0031] It should be noted that when the LED lamp panel 4 operates for a long time, although the protective shell 3 can have the functions of dust prevention and waterproofing, a large amount of heat will be generated inside it and cannot be effectively discharged. That is, most of the existing protective shells 3 are made of plastic materials and have a certain heat dissipation function, but the heat dissipation effect is limited.

[0032] The suction work is carried out by the exhaust fan 12, so that a large amount of air flows through the through hole 3001, thereby taking away the heat dissipated by the protective shell 3, and then reducing the temperature inside the protective shell 3, avoiding the overheating of the LED lamp board 4. At the same time, some water vapor in the air will directly contact the exhaust fan 12, that is, part of the water vapor condenses into droplets and drips into the liquid storage tank 11001. As the usage time becomes longer, that is, a large amount of liquid will be stored in the liquid storage tank 11001. During this process, when the liquid in the liquid storage tank 11001 is too much, the water inside will flow into the first drain pipe 13 and then enter the external drainage system for discharge, avoiding the liquid in the liquid storage tank 11001 from being discharged through the through hole 3001 and causing the liquid to enter the clean room. That is, during the subsequent use process, since the water stored in the liquid storage tank 11001 is in close contact with the mounting plate 1, the heat transferred to the mounting plate 1 during the operation of the second power connector 6 can be reduced by the water stored in the liquid storage tank 11001;

[0033] It should be noted that the main functions of the first power connector 5 and the second power connector 6 are to supply power to the LED lamp board 4. That is, during this process, heat will be generated. In order to ensure the extension of its service life, cooling work needs to be carried out. When the exhaust fan 12 is used to exhaust the clean room, driven by the air flow, some water vapor will move upward and adhere to the mounting plate 1, the mounting frame 2 and the protective shell 3. Since the water vapor is in fine particles, some water vapor will enter the gap at the junction of the mounting plate 1 and the mounting frame 2. During the subsequent maintenance process of the LED lamp adapted to the high humidity environment, since it is necessary to disassemble the mounting frame 2 from the mounting plate 1 during the maintenance process, and during the subsequent installation process, if the water vapor on the mounting plate 1 and the mounting frame 2 is not cleaned, that is, under the pressure of the mounting plate 1 and the mounting frame 2, the water vapor will flow and contact the first power connector 5 and the second power connector 6, thereby causing a short circuit problem. During the operation of the LED lamp adapted to the high humidity environment, at the same time, the electric slider 9 is controlled to slide on the annular slide rail 8, and the electric slider 9 drives the roller 10 to move accordingly. That is, the water vapor at the junction of the mounting plate 1 and the mounting frame 2 is cleaned by the rotation of the roller 10, avoiding the water vapor from entering the gap at the junction of the mounting plate 1 and the mounting frame 2 and causing a short circuit safety problem.

[0034] Embodiment 2

[0035] Based on the above Embodiment 1, as Figures 4-5As shown in the figure, it further includes a diversion component, which includes a diversion plate 101, a diversion pipe 102, a liquid storage device 103, a second drain pipe 104, a sponge block 105, a connection block 106, and a third drain pipe 107; the diversion plate 101 is connected to the mounting bracket 2; four annularly arrayed diversion pipes 102 are connected to the mounting bracket 2; the connection block 106 is fixedly connected to the exhaust fan 12; the third drain pipe 107 passes through the connection block 106; the third drain pipe 107 is fixedly connected to the exhaust duct 11; the second drain pipe 104 is inserted into the third drain pipe 107; the liquid storage device 103 is fixedly connected to the second drain pipe 104, and four annularly arrayed water inlets 10401 are opened at the connection between the second drain pipe 104 and the liquid storage device 103; the sponge block 105 is connected to the second drain pipe 104.

[0036] A diversion groove 3002 is opened on the protective shell 3 for guiding the liquefied water vapor in cooperation with the diversion pipe 102.

[0037] A spiral groove is provided on the surface of the roller 10 for guiding the liquefied water vapor.

[0038] The sponge block 105 and the second drain pipe 104 are arranged in a quick-release structure, which is convenient for replacing the sponge block 105.

[0039] First, the staff uses a connecting pipe to connect an external suction device to the third drain pipe 107. During the process of the electric slider 9 driving the roller 10 to clean the water vapor at the junction of the mounting plate 1 and the mounting bracket 2, first, the electric slider 9 drives the roller 10 to roll along the junction of the mounting plate 1 and the mounting bracket 2.

[0040] During the rolling process of the roller 10, due to the spiral groove provided on the surface of the roller 10, that is, part of the cleaned water vapor forms droplets and flows downward. First, it contacts the diversion plate 101 and is stored in the storage space formed by the diversion plate 101 and the mounting bracket 2.

[0041] Then the droplets converge and flow towards the diversion pipe 102, and flow through the diversion pipe 102 and converge into the liquid storage device 103. During this process, control the operation of the external suction device.

[0042] The liquefied water in the liquid storage device 103 is sucked through the third drain pipe 107 and the second drain pipe 104, that is, the water enters the second drain pipe 104 through the water inlet 10401, then enters the third drain pipe 107 through the second drain pipe 104, and is discharged through the external suction device, avoiding the problem of excessive liquid accumulation and overflow in the liquid storage device 103. At the same time, it avoids the problem that during the cleaning process of the roller 10, the water vapor liquefies into droplets and drips into the room, avoiding the problem that the existing technology lamps will pollute the working room (i.e., the clean room) with environmental requirements.

[0043] It should be noted that the main function of the clean room is indoor pollution control. Without a clean room, it is impossible to mass-produce pollution-sensitive parts. Therefore, the droplets attached to the ceiling lamp need to be cleaned in time to prevent them from dripping and polluting the clean room. At the same time, when the exhaust fan 12 is performing the ventilation work, the water vapor in the air will contact the inner wall when entering the through hole 3001, and then liquefy and drip. That is, during this process, the sponge block 105 adsorbs the water vapor in the air. When the sponge block 105 is saturated with adsorption, the droplets will also drip into the liquid storage device 103. Although the sponge block 105 can adsorb part of the water vapor, some of the water vapor will still enter the exhaust pipe 11. After the water vapor enters the exhaust pipe 11 and liquefies, it will also drip into the clean room through the through hole 3001. That is, during this process, the sponge block 105 can also block the liquefied water vapor to reduce the pollution caused by water droplets to the clean room.

[0044] Embodiment 3

[0045] On the basis of the above Embodiment 2, as Figures 6-7 shown, it further includes an isolation component, including an isolation component; a first elastic member 201, a first isolation sleeve 202, a second elastic member 203, a second isolation sleeve 204, and an isolation head 205; a first isolation sleeve 202 is slidably connected inside each second power connector 6; a first elastic member 201 is fixedly connected to each first isolation sleeve 202; all the first elastic members 201 are fixedly connected to the corresponding LED lamp board 4; a second isolation sleeve 204 is slidably connected to each second power connector 6; two symmetrically arranged second elastic members 203 are fixedly connected to each second isolation sleeve 204; all the second elastic members 203 are jointly fixedly connected to the mounting plate 1; an isolation head 205 is fixedly connected to each second power connector 6.

[0046] A rubber sleeve 20201 is provided on each first isolation sleeve 202 for blocking the second power connector 6.

[0047] The upper surface of the second power connector 6 is provided with a concave structure for cooperating with the rubber sleeve 20201 to isolate pollution.

[0048] During the repair and assembly of the LED lamp adapted to the high-humidity environment, for the convenience of repair and assembly, the plug-in and quick-disassembly method is usually adopted for assembly without cumbersome disassembly. During this disassembly and assembly process, the first power connector 5 and the second power connector 6 are protected by the first isolation sleeve 202, the second isolation sleeve 204, and the isolation head 205 to prevent the first power connector 5 and the second power connector 6 from being polluted by the external environment and affecting subsequent use.

[0049] During the installation process, the staff holds the mounting bracket 2 and drives the first elastic member 201 and the first isolation sleeve 202 close to the isolation head 205. At this time, under the elastic force of the first elastic member 201, the first isolation sleeve 202 is flush with the upper surface of the first power connector 5, and the rubber sleeve 20201 on the first isolation sleeve 202 is in an expanded state and wraps the upper surface of the second power connector 6. At the same time, the mounting bracket 2 is used to completely wrap the second power connector 6 to prevent it from being contaminated by the outside world and affecting its conductive effect.

[0050] Similarly, under the action of the second elastic member 203, the second isolation sleeve 204 is flush with the isolation head 205, and the second power connector 6 is wrapped by the mounting plate 1, the second isolation sleeve 204 and the isolation head 205. That is, during the process when the mounting plate 1 and the mounting bracket 2 are not assembled, the exhaust fan 12 can still perform the air change work on the clean room to ensure the air circulation in the clean room.

[0051] Similarly, the second isolation sleeve 204 and the isolation head 205 are used to prevent water vapor from directly contacting the second power connector 6. During the subsequent installation process, first, the first isolation sleeve 202 contacts the isolation head 205, and under the extrusion of the isolation head 205, the first isolation sleeve 202 slides in the first power connector 5 and compresses the corresponding first elastic member 201. At the same time, the first power connector 5 squeezes the second isolation sleeve 204, causing the second isolation sleeve 204 to slide on the second power connector 6 and compress the second elastic member 203, so that the first power connector 5 and the second power connector 6 are connected, ensuring that the first power connector 5 and the second power connector 6 are not contaminated and improving the power transmission efficiency and service life of the first power connector 5 and the second power connector 6.

[0052] Although the present disclosure has been described with respect to only a limited number of embodiments, those skilled in the art who benefit from the present disclosure will understand that various other embodiments can be designed without departing from the scope of the present invention. Therefore, the scope of the present invention should be limited only by the appended claims.

Claims

1. An LED lamp adapted to a high-humidity environment, comprising a mounting plate (1), a mounting frame (2), a protective shell (3), an LED lamp board (4), a first power connector (5) and a second power connector (6); the mounting plate (1) is provided with the mounting frame (2); the mounting frame (2) is provided with the protective shell (3), and a through hole (3001) is formed in the protective shell (3); the mounting frame (2) is provided with a plurality of LED lamp boards (4); a plurality of first power connectors (5) are fixedly connected to each LED lamp board (4); a plurality of second power connectors (6) are mounted on the mounting plate (1); each second power connector (6) is connected to the corresponding first power connector (5); characterized in that, It further includes an isolation ring (7), an annular slide rail (8), an electric slider (9), a roller (10), an exhaust duct (11), an exhaust fan (12) and a first drain pipe (13); The isolation ring (7) is connected to the mounting bracket (2); the annular slide rail (8) is fixedly connected to the mounting plate (1); a plurality of electric sliders (9) are slidably connected to the annular slide rail (8); a roller (10) is rotatably connected to each electric slider (9); all the rollers (10) are in contact with the mounting plate (1) and the mounting bracket (2); the exhaust duct (11) is installed on the mounting plate (1), a raised liquid storage tank (11001) is provided at the bottom of the exhaust duct (11), and the exhaust duct (11) communicates with the through hole (3001); an exhaust fan (12) is installed in the exhaust duct (11); a first drain pipe (13) is communicated with the exhaust duct (11).

2. The LED lamp adapted to a high-humidity environment according to claim 1, characterized in that, It further includes a diversion assembly, and the diversion assembly includes a diversion plate (101), a diversion pipe (102), a liquid storage device (103), a second drain pipe (104), a sponge block (105), a connection block (106) and a third drain pipe (107); The diversion plate (101) is connected to the mounting bracket (2); a plurality of diversion pipes (102) are connected to the mounting bracket (2); the connection block (106) is fixedly connected to the exhaust fan (12); the third drain pipe (107) passes through the connection block (106); the third drain pipe (107) is fixedly connected to the exhaust duct (11); the second drain pipe (104) is inserted into the third drain pipe (107); the liquid storage device (103) is fixedly connected to the second drain pipe (104), and a plurality of water inlets (10401) are provided at the connection between the second drain pipe (104) and the liquid storage device (103); the sponge block (105) is connected to the second drain pipe (104).

3. The LED lamp adapted to a high humidity environment according to claim 1, characterized in that, A diversion groove (3002) is provided on the protective shell (3).

4. The LED lamp adapted to a high humidity environment according to claim 1, characterized in that, The surface of the roller (10) is provided with a groove of spiral structure.

5. The LED lamp adapted to a high-humidity environment according to claim 2, characterized in that, The sponge block (105) and the second drain pipe (104) are arranged in a quick-release structure.

6. The LED lamp adapted to a high-humidity environment according to claim 5, characterized in that, It further includes an isolation assembly, including a first elastic member (201), a first isolation sleeve (202), a second elastic member (203), a second isolation sleeve (204) and an isolation head (205); the first isolation sleeve (202) is slidably connected inside each second power connector (6); the first elastic member (201) is fixedly connected to each first isolation sleeve (202); all the first elastic members (201) are fixedly connected to the corresponding LED light board (4); the second isolation sleeve (204) is slidably connected to each second power connector (6); a plurality of second elastic members (203) are fixedly connected to each second isolation sleeve (204); all the second elastic members (203) are fixedly connected to the mounting plate (1) together; the isolation head (205) is fixedly connected to each second power connector (6).

7. An LED lamp adapted to a high-humidity environment according to claim 6, characterized in that, A rubber sleeve (20201) is provided on each first isolation sleeve (202).

8. An LED lamp adapted to a high humidity environment according to claim 6, characterized in that, The upper surface of the second power connector (6) is arranged in a concave structure.