An ultraviolet lamp system and a device containing the same

By designing a combined structure of sealing plate and air intake components, the safety hazards caused by dust and moisture entering the ultraviolet lamp system are solved, achieving efficient dust and water removal, significantly reducing safety hazards and improving system safety and heat dissipation efficiency.

CN118532658BActive Publication Date: 2025-11-28SHANDONG UNIV
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202410584762.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-13
Publication Date
2025-11-28
Estimated Expiration
2044-05-13

AI Technical Summary

Technical Problem

Existing UV lamp systems pose safety hazards due to dust and moisture ingress into low-voltage power supply devices, especially when used outdoors, potentially leading to short circuits and fires.

Method used

An ultraviolet lamp system was designed, which adopts a combination structure of sealing plate and air intake component. By dynamically changing the exhaust port and air intake port, dust and moisture are prevented from entering. The gas is treated by silicone component and water removal component. Combined with the cooperation of drive component and bevel gear, efficient water and dust removal is achieved.

Benefits of technology

It effectively prevents dust and moisture from entering the low-voltage power supply box, significantly reduces the risk of short circuits in components, and improves the system's safety performance and heat dissipation efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118532658B_ABST
    Figure CN118532658B_ABST
Patent Text Reader

Abstract

The application discloses an ultraviolet lamp system and a device containing the same, and belongs to the field of low-voltage power supply. The ultraviolet lamp system comprises a low-voltage power supply box, and further comprises: a heat dissipation fin fixedly arranged in the low-voltage power supply box; a heat dissipation cavity arranged between the heat dissipation fin and the bottom of the low-voltage power supply box; a plurality of heat dissipation grooves arranged on the heat dissipation fin; and a primary transformer fixedly arranged on the heat dissipation fin, wherein the primary transformer is used for converting a standard alternating voltage inputted by an input end into a set alternating low voltage. The application effectively prevents the short circuit of components in the low-voltage power supply box caused by the moisture of the gas for heat dissipation and air exchange, and effectively prevents dust and impurities from entering the low-voltage power supply box by adsorbing the impurities and particulate matters by a silica gel exhaust port, so that the probability of the existence of safety hazards is effectively reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of LED, in particular to an ultraviolet lamp system and a device containing the ultraviolet lamp system. BACKGROUND

[0002] For the current protection measures of the ultraviolet lamp system in the low-voltage power supply device, we found that the heat dissipation design mainly relies on the air blowing and ventilation of the cooling fan. However, this approach has some potential safety problems. First of all, through the air blowing and ventilation method, the external dust and impurities may be sucked into the low-voltage power supply device, and these dusts may reduce the heat dissipation effect of the internal components of the device, and even may cause a short circuit of the circuit, bringing potential safety hazards.

[0003] When the ultraviolet lamp system is used outdoors, such as in the garden, especially at night, due to the high humidity of the environment, the cooling fan may bring moisture into the low-voltage power supply device during the ventilation process. This not only may cause internal short circuit of the device, but also may cause serious safety accidents such as equipment fire.

[0004] Therefore, the existing protection measures still have certain safety risks for the low-voltage power supply device of the ultraviolet lamp system, and need to be further improved and perfected. SUMMARY

[0005] The technical problem to be solved by the present application is to overcome the shortcomings of the prior art, and to provide a device for diarrhea patients for stool drainage containing an ultraviolet lamp system, which can overcome the above problems or at least partially solve the above problems.

[0006] In order to achieve the above purpose, the present application adopts the following technical scheme:

[0007] An ultraviolet lamp system, comprising: a low-voltage power box, further comprising: a heat sink fixedly arranged in the low-voltage power box; a heat dissipation cavity arranged between the heat sink and the bottom of the low-voltage power box; a plurality of heat dissipation grooves opened on the heat sink; a primary transformer fixedly arranged on the heat sink, the primary transformer being used for converting a standard alternating voltage input by an input end into a set alternating low voltage; a secondary transformer fixedly arranged on the heat sink away from the primary transformer; a circuit board fixedly arranged on the heat sink and arranged between the primary transformer and the secondary transformer; a transient high-voltage circuit module arranged on the heat sink close to the secondary transformer, the secondary transformer being used for converting the set alternating low voltage into an input alternating high voltage of the transient high-voltage circuit module; a sealing plate sealingly sliding in the low-voltage power box, and an equipment cavity being arranged between the sealing plate and the heat sink; a limiting assembly for limiting the sealing plate; a first fixed plate fixedly arranged in the low-voltage power box and arranged on a side of the sealing plate away from the heat sink; a first compartment arranged between the first fixed plate and the top of the low-voltage power box, the first compartment being communicated with the outside of the low-voltage power box; a plurality of groups of exhaust ports fixedly arranged between the first fixed plate and the sealing plate, the exhaust ports being used for extracting gas in the equipment cavity and discharging the gas into the first compartment; a first driving assembly for driving the sealing plate to ascend and descend, when the sealing plate ascends, the gas in the exhaust ports is discharged into the first compartment; an air inlet assembly, the air inlet assembly being used for extracting gas in an air inlet chamber into the heat dissipation cavity, an air inlet end of the air inlet assembly being arranged on a side of the air inlet chamber; a first air inlet pipe fixedly arranged on the first fixed plate and communicated with the air inlet chamber, one end of the first air inlet pipe close to the air inlet chamber being arranged away from the air inlet end of the air inlet assembly; and a water removal assembly arranged in the air inlet assembly.

[0008] In order to facilitate the discharge of the gas in the equipment cavity, preferably, the output end of the exhaust port is fixedly connected with a silica gel part, one end of the exhaust port close to the silica gel part is provided with a cross interface, the silica gel part is provided with a connecting pipe one matched with the cross interface, the cross interface is matched with the upper end of the silica gel part, and the sealing plate is provided with an air inlet one communicated with the inside of the exhaust port.

[0009] In order to facilitate the driving of the sealing plate to ascend and descend, preferably, the first driving assembly comprises a rotating shaft sealingly rotating in the equipment cavity, one end of the low-voltage power box is fixedly connected with an electric motor, the output end of the electric motor is fixedly connected with the rotating shaft, the rotating shaft is fixedly connected with a convex rod matched with the sealing plate in a symmetrical manner, the limiting assembly comprises a limiting rod fixedly arranged on the sealing plate in a symmetrical manner, the limiting rod is sealingly connected with the first fixed plate, springs are fixedly connected between the first fixed plate and the sealing plate in a symmetrical manner, and the springs are sleeved on the limiting rod.

[0010] In order to facilitate the air supply to the heat dissipation cavity, preferably, the air inlet assembly comprises a water removal element arranged outside the low-voltage power supply box, one side of the air inlet chamber close to the water removal element is fixedly connected with an air suction plate, the air suction plate is communicated with the input end of the water removal element, the output end of the water removal element is sealingly rotatably connected with an exhaust steel pipe, one end of the exhaust steel pipe away from the water removal element is communicated with one end of the heat dissipation cavity close to the instantaneous high-voltage circuit module, the water removal assembly comprises a water absorption sponge block fixedly arranged in the water removal element, the air inlet chamber is provided with a water pumping assembly, one end of the rotating shaft away from the electric motor penetrates the low-voltage power supply box, one end of the rotating shaft away from the electric motor is fixedly connected with a control disc a, the control disc a is fixedly connected with a control rod body, one end of the low-voltage power supply box close to the control disc a is fixedly connected with a control disc b matched with the control disc a, the control disc b is fixedly connected with a control piece matched with the control rod body, and the control piece is matched with the convex rod.

[0011] In order to facilitate the water on the water absorption sponge block to be thrown out, preferably, one side of the low-voltage power supply box close to the water removal element is fixedly connected with a fixed ring, the water removal element is sealingly rotatable in the fixed ring, the arc-shaped end of the water removal element is provided with a plurality of circumferentially arranged water throwing openings, the fixed ring is provided with an annular groove a matched with the water throwing openings, the first compartment is sealingly rotatably connected with an air inlet steel pipe, the air inlet steel pipe is connected with the water removal element, the first compartment is fixedly connected with an air inlet ring, a plurality of equidistantly arranged circular holes are circumferentially arranged on the air inlet steel pipe, the circular holes are matched with the air inlet ring, and the air inlet ring and the air suction plate are fixedly connected with an air inlet pipe three, and one end of the air inlet steel pipe away from the water removal element is provided with a second driving assembly for driving the air inlet steel pipe to rotate.

[0012] In order to facilitate the water removal element to be driven to rotate, preferably, the second driving assembly comprises a driving pipe arranged on the fixed plate, a driving groove is arranged in the driving pipe, a driving rod body matched with the driving pipe is fixedly connected to the sealing plate, one end of the driving rod body slides in the driving pipe, one end of the driving rod body in the driving pipe is fixedly connected with a driving block matched with the driving groove, the driving pipe is connected with a bevel gear two close to the low-voltage power supply box, and one end of the air inlet steel pipe away from the water removal element is fixedly connected with a bevel gear one engaged with the air inlet steel pipe.

[0013] In order to facilitate the water mist to be sprayed into the air inlet chamber, preferably, an inclined surface is arranged in the fixed ring, the fixed plate one is fixedly connected with a spray pipe close to one side of the sealing plate, a plurality of equidistantly arranged spray output ports are arranged on the spray pipe, a connecting pipe two is arranged between the spray pipe and the fixed ring, the inclined surface is inclined to the direction of the low-voltage power supply box, and the low-voltage power supply box is provided with an air charging assembly for charging air into the fixed ring.

[0014] In order to facilitate the air supply to the air injection pipe, preferably, the air supply assembly comprises a symmetrically fixed air supply sleeve assembly arranged on the first fixed plate, an air supply slide rod is fixedly connected to the sealing plate, one end of the air supply slide rod away from the sealing plate is sealingly slid in the air supply sleeve assembly, the air supply sleeve assembly is provided with an air supply pipe and an air inlet pipe which are in communication with the inside of the air supply sleeve assembly, the fixed ring is fixedly connected with an air injection pipe, the air injection pipe is provided with a plurality of circumferentially arranged air injection outlets which are matched with the inclined surface, and the air supply pipe is in communication with the air injection pipe at an end away from the air supply sleeve assembly.

[0015] In order to facilitate the water extraction in the air inlet chamber, preferably, the water extraction assembly comprises a drainage cylinder fixedly arranged on the first fixed plate, the top of the drainage cylinder is provided with a drainage pipe in communication with the inside of the drainage cylinder, and the sealing plate is fixedly connected with a drainage slide rail, and the drainage slide rail is provided with a water inlet pipe.

[0016] The device further comprises a base, a plurality of support seats are symmetrically fixedly connected to the base, a plurality of groups of UVC lamps are fixedly connected to the support seats at equal intervals, an electric network matched with the UVC lamps is fixedly connected to the support seats, a cover plate matched with the electric network is fixedly connected to the base, and the low-voltage power supply box is fixedly arranged in the base.

[0017] Compared with the prior art, the ultraviolet lamp system has the following beneficial effects:

[0018] By designing the lower sliding mechanism of the sealing plate, the exhaust port can gradually rebound, thereby effectively absorbing the hot gas in the upper part of the device cavity into the exhaust port. This not only generates negative pressure in the device cavity, but also continuously supplies gas to the heat dissipation cavity through the air inlet assembly. At the same time, the water removal assembly removes water from the incoming gas, effectively preventing the short circuit of components in the low-voltage power supply box caused by humid gas, and significantly reducing the potential safety hazards.

[0019] The air inlet assembly is used to extract the gas in the air inlet chamber. The external gas enters the air inlet chamber through the air inlet pipe one, and then enters the air inlet assembly. At this time, the exhaust port changes from the compressed state to the reset state, so that the outside of the exhaust port presents dynamic deformation. The gas entering the air inlet chamber continuously collides with the outside of the exhaust port and changes the airflow direction through the exhaust port. The particulate matter and impurities in the gas change the direction of motion under the action of inertia after colliding with the silica gel exhaust port, and finally fall onto the sealing plate or are adsorbed by the silica gel exhaust port. This design effectively prevents dust and impurities from entering the low-voltage power supply box, further reduces the risk of component short circuit, and significantly reduces the safety hazards.

[0020] The unique matching mechanism between the driving rod body and the driving pipe enables the driving pipe to rotate. The rotation drives the bevel gear II to rotate, which in turn drives the bevel gear I and the air inlet steel pipe. This makes the water removal element rotate rapidly, which promotes the water in the water absorption sponge block to be thrown out. The thrown-out water is guided into the fixed ring through a specific path, which significantly improves the water absorption efficiency of the water absorption sponge block. This design effectively prevents water in the gas from entering the low-voltage power box, further enhancing the safety performance of the system.

[0021] The parts not involved in the ultraviolet lamp system and its device are the same as or can be realized by the prior art. Through the above improvements, the invention successfully prevents the humidification problem caused by the heat dissipation and ventilation gas and the impurities entering the low-voltage power box, thereby significantly reducing the potential safety hazards. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 Structure diagram of the ultraviolet lamp system proposed by the invention;

[0023] Figure 2 Explosion diagram of the ultraviolet lamp system proposed by the invention;

[0024] Figure 3 Structure diagram of the ultraviolet lamp system proposed by the invention; Figure 2 Enlarged diagram of position A in the ultraviolet lamp system proposed by the invention;

[0025] Figure 4 Structure diagram of the vibrating plate of the ultraviolet lamp system proposed by the invention;

[0026] Figure 5 Structure diagram of the ultraviolet lamp system proposed by the invention;

[0027] Figure 6 Structure diagram of the heat dissipation fin of the ultraviolet lamp system proposed by the invention;

[0028] Figure 7 Sectional view diagram of the exhaust port of the ultraviolet lamp system proposed by the invention;

[0029] Figure 8 Structure diagram of the exhaust port of the ultraviolet lamp system proposed by the invention;

[0030] Figure 9 Sectional view diagram of the ultraviolet lamp system proposed by the invention;

[0031] Figure 10 Sectional view diagram of the ultraviolet lamp system proposed by the invention;

[0032] Figure 11 Structure diagram of the ultraviolet lamp system proposed by the invention; Figure 10 Enlarged diagram of position B in the ultraviolet lamp system proposed by the invention;

[0033] Figure 12 Enlarged view of the UV lamp system of the present invention at Figure 10 Enlarged view of the UV lamp system of the present invention at

[0034] Figure 13 Enlarged view of the UV lamp system of the present invention at Figure 11 Enlarged view of the UV lamp system of the present invention at

[0035] Figure 14 Structure diagram of the rotating shaft of the UV lamp system of the present invention;

[0036] Figure 15 Enlarged view of the UV lamp system of the present invention at Figure 14 Enlarged view of the UV lamp system of the present invention at

[0037] Figure 16 Sectional view of the air supply sleeve assembly of the UV lamp system of the present invention.

[0038] In the figure: 1, base; 101, cover plate; 102, support seat; 103, UVC lamp; 104, power grid; 105, vibrating plate; 106, elastic rope; 107, magnet I; 2, low-voltage power supply box; 201, heat dissipation fin; 202, heat dissipation groove; 203, primary transformer; 204, circuit board; 205, secondary transformer; 206, instantaneous high-voltage circuit module; 207, heat dissipation cavity; 3, sealing plate; 301, fixed plate I; 302, limiting rod; 303, spring; 304, fixed plate II; 305, magnet II; 306, first compartment; 307, backflow component; 308, air outlet pipe I; 309, backflow pipe; 310, inclined hole; 311, air inlet chamber; 312, air inlet pipe I; 313, equipment cavity; 4, air outlet; 401, silica gel part; 402, connecting pipe I; 403, cross interface; 404, air inlet I; 405, electric motor; 406, rotating shaft; 407, protruding rod; 408, control disc a; 409, control rod body; 410, control disc b; 411, control piece; 5, drainage cylinder; 501, drainage sliding rail; 502, drainage pipe; 503, water inlet pipe; 6, fixed ring; 601, inclined surface; 602, annular groove a; 603, air jet pipe; 604, air jet outlet; 605, connecting pipe II; 606, spray pipe; 607, spray outlet; 608, air supply sleeve assembly; 609, air supply sliding rod; 610, air supply pipe; 611, air inlet pipe II; 7, water removal element; 701, water throwing opening; 702, water absorption sponge block; 703, counterweight block; 704, air inlet steel pipe; 705, bevel gear I; 706, circular hole; 707, air inlet ring; 708, air inlet pipe III; 709, air suction plate; 710, air outlet steel pipe; 8, drive pipe; 801, drive channel; 802, drive rod body; 803, drive block; 804, bevel gear II. DETAILED DESCRIPTION

[0039] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application.

[0040] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element containing the ultraviolet lamp system must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0041] Example 1: Reference Figure 5 , Figure 6 , Figure 7 , Figure 8 , Figure 10 and Figure 12The ultraviolet lamp system comprises a low-voltage power box 2, a heat dissipation fin 201 fixedly arranged in the low-voltage power box 2, a heat dissipation cavity 207 arranged between the heat dissipation fin 201 and the bottom of the low-voltage power box 2, a plurality of heat dissipation grooves 202 formed in the heat dissipation fin 201, a primary transformer 203 fixedly arranged on the heat dissipation fin 201, the primary transformer 203 being used for converting a standard alternating voltage input at an input end into a set alternating low voltage, a secondary transformer 205 fixedly arranged at one end of the heat dissipation fin 201 away from the primary transformer 203, a circuit board 204 fixedly arranged on the heat dissipation fin 201 and arranged between the primary transformer 203 and the secondary transformer 205, an instantaneous high-voltage circuit module 206 arranged at one end of the heat dissipation fin 201 close to the secondary transformer 205, the secondary transformer 205 being used for converting the set alternating low voltage into an input alternating high voltage of the instantaneous high-voltage circuit module 206, a sealing plate 3 sealingly sliding in the low-voltage power box 2 and having a device cavity 313 arranged between the sealing plate 3 and the heat dissipation fin 201, a limiting assembly for limiting the sealing plate 3, a first fixed plate 301 fixedly arranged in the low-voltage power box 2 and arranged at one side of the sealing plate 3 away from the heat dissipation fin 201, a first compartment 306 arranged between the first fixed plate 301 and the top of the low-voltage power box 2, the first compartment 306 being communicated with the outside of the low-voltage power box 2, a plurality of groups of exhaust ports 4 fixedly arranged between the first fixed plate 301 and the sealing plate 3, the exhaust ports 4 being used for extracting gas in the device cavity 313 and discharging the gas into the first compartment 306, a first driving assembly for driving the sealing plate 3 to ascend and descend, when the sealing plate 3 ascends, the gas in the exhaust ports 4 is discharged into the first compartment 306, an air inlet assembly, the air inlet assembly being used for extracting gas in an air inlet chamber 311 into the heat dissipation cavity 207, an air inlet end of the air inlet assembly being arranged at one side of the air inlet chamber 311, an air inlet pipe 312 fixedly arranged on the first fixed plate 301 and in communication with the air inlet chamber 311, one end of the air inlet pipe 312 close to the air inlet chamber 311 being arranged at one end away from the air inlet end of the air inlet assembly, and a water removal assembly arranged in the air inlet assembly.

[0042] The output end of the exhaust port 4 is fixedly connected with a silica gel part 401, one end of the exhaust port 4 close to the silica gel part 401 is provided with a cross interface 403, the silica gel part 401 is provided with a connecting pipe 402 matched with the cross interface 403, the cross interface 403 is in close contact with the upper end of the silica gel part 401, and the sealing plate 3 is provided with an air inlet 404 in communication with the inside of the exhaust port 4.

[0043] The first driving assembly comprises a rotating shaft 406 rotatingly sealed in the device cavity 313, the low-voltage power box 2 is fixedly connected with an electric motor 405 at one end, the output end of the electric motor 405 is fixedly connected with the rotating shaft 406, the rotating shaft 406 is fixedly connected with convex rod members 407 matched with the sealing plate 3 in symmetry, the limiting assembly comprises limiting rods 302 fixedly arranged on the sealing plate 3 in symmetry, the limiting rods 302 are sealingly and slidably connected with the fixed plate 301, springs 303 are fixedly connected between the fixed plate 301 and the sealing plate 3 in symmetry, and the springs 303 are sleeved on the limiting rods 302.

[0044] It should be noted that the exhaust port 4 is made of high-resilience silica gel, which is similar to the nipple structure in the prior art.

[0045] When the device is working, the primary transformer 203 is connected with the external 220V alternating current through the external plug, the primary transformer 203 converts the 220V alternating voltage into a set of alternating low voltage to supply power to the components in the low-voltage power box 2, and the secondary transformer 205 provides alternating high voltage for the transient high-voltage circuit module 206.

[0046] For example, when the device is used for capturing mosquitoes, the transient high-voltage circuit module 206 provides high voltage to kill mosquitoes instantaneously when the mosquitoes cause the transient high-voltage circuit module 206 to be short-circuited.

[0047] When the components in the low-voltage power box 2 are cooled, the electric motor 405 is started, the electric motor 405 drives the rotating shaft 406 to rotate, the rotating shaft 406 drives the two convex rod members 407 to rotate, the convex rod members 407 drive the sealing plate 3 to slide upward, the sealing plate 3 extrudes the exhaust port 4, the exhaust port 4 is deformed, the gas in the exhaust port 4 pressurizes the top end of the exhaust port 4 through the connecting pipe 402, the pressure of one end of the cross interface 403 of the exhaust port 4 increases, the exhaust port 4 at the cross interface 403 expands outward, the gas is sprayed from the cross interface 403 into the first compartment 306, and then flows out of the low-voltage power box 2.

[0048] When the sealing plate 3 slides downward, the exhaust port 4 gradually rebounds, the hot gas floating on the upper part of the device cavity 313 is absorbed into the exhaust port 4, a negative pressure is generated in the device cavity 313, the air supply assembly supplies air to the heat dissipation cavity 207, and the water removal assembly removes water from the air supplied by the air supply assembly, effectively preventing the air for heat dissipation from being humidified to cause short circuit of the components in the low-voltage power box 2, thereby effectively reducing the probability of existence of safety hazards.

[0049] When the air intake assembly extracts the gas in the air intake chamber 311, the external gas enters the air intake chamber 311 through the air intake pipe one 312, and then enters the air intake assembly. At this time, the exhaust port 4 gradually changes from the compressed state to the reset state, so that the outside of the exhaust port 4 is in a dynamic deformation state. The gas entering the air intake chamber 311 through the air intake pipe one 312 continuously collides with the outside of different exhaust ports 4, and changes the flow direction of the gas at any time through the exhaust port 4. The particulate matter and impurities in the gas change their movement direction under the action of inertia after colliding with the exhaust port 4 of the silica gel. The impurities and particulate matter fall on the sealing plate 3 or are adsorbed by the exhaust port 4 of the silica gel, effectively preventing dust and impurities from entering the low-voltage power supply box 2, thereby effectively preventing the short circuit of the components in the low-voltage power supply box 2, and further effectively reducing the probability of the existence of safety hazards.

[0050] Example 2: Refer to Figure 10 、 Figure 11 、 Figure 13 、 Figure 14 and Figure 15 , the ultraviolet lamp system is basically the same as example 1, further, the air intake assembly includes a water removal element 7 arranged outside the low-voltage power supply box 2. The air intake chamber 311 is fixedly connected with an air suction plate 709 on the side close to the water removal element 7. The air suction plate 709 is in communication with the input end of the water removal element 7. The output end of the water removal element 7 is sealingly rotatable with an exhaust steel pipe 710. The exhaust steel pipe 710 is in communication with the end of the heat dissipation cavity 207 close to the transient high-voltage circuit module 206. The water removal assembly includes a water absorption sponge block 702 fixedly arranged in the water removal element 7. The air intake chamber 311 is provided with a water pumping assembly. The end of the rotating shaft 406 away from the electric motor 405 penetrates the low-voltage power supply box 2. The end of the rotating shaft 406 away from the electric motor 405 is fixedly connected with a control disc a 408. The control disc a 408 is fixedly connected with a control rod body 409. The end of the low-voltage power supply box 2 close to the control disc a 408 is fixedly connected with a control disc b 410 matched with the control disc a 408. The control disc b 410 is fixedly connected with a control sheet 411 matched with the control rod body 409. The control sheet 411 is matched with the protruding rod 407.

[0051] The low-voltage power box 2 is fixedly connected with a fixed ring 6 near one side of the water removal element 7, the water removal element 7 is sealingly rotated in the fixed ring 6, the arc-shaped end of the water removal element 7 is provided with a plurality of circumferentially arranged water throwing openings 701, the fixed ring 6 is provided with an annular groove a 602 matched with the water throwing openings 701, a gas inlet steel pipe 704 is sealingly rotated in the first compartment 306, the gas inlet steel pipe 704 is connected with the water removal element 7, the first compartment 306 is fixedly connected with a gas inlet ring 707, a plurality of equidistantly arranged circular holes 706 are circumferentially arranged on the gas inlet steel pipe 704, the circular holes 706 are matched with the gas inlet ring 707, the gas inlet ring 707 is fixedly connected with a gas inlet pipe three 708 between the gas inlet ring 707 and the air suction plate 709, and the end of the gas inlet steel pipe 704 away from the water removal element 7 is provided with a second driving assembly for driving the gas inlet steel pipe 704 to rotate.

[0052] The second driving assembly comprises a driving pipe 8 fixedly arranged on the fixed plate one 301, the driving pipe 8 is provided with a driving groove 801, the sealing plate 3 is fixedly connected with a driving rod body 802 matched with the driving pipe 8, one end of the driving rod body 802 is slidingly arranged in the driving pipe 8, the end of the driving rod body 802 in the driving pipe 8 is fixedly connected with a driving block 803 matched with the driving groove 801, the end of the driving pipe 8 near the low-voltage power box 2 is connected with a bevel gear two 804, and the end of the gas inlet steel pipe 704 away from the water removal element 7 is fixedly connected with a bevel gear one 705 engaged with the gas inlet steel pipe 704.

[0053] The water removal element 7 is fixedly connected with a counterweight 703 at the lower end of the side near the low-voltage power box 2.

[0054] When the rotating shaft 406 rotates, the rotating shaft 406 drives the control disc a 408 to rotate, the control disc a 408 drives the control rod body 409 to rotate along the axis of the rotating shaft 406.

[0055] When the convex rod 407 drives the sealing plate 3 to slide upward, the control rod body 409 is electrified with the control sheet 411, at this time, a weak electric signal is transmitted to the control module on the circuit board 204, at this time, the control module electrifies the electromagnetic valve in the exhaust steel pipe 710, so that the electromagnetic valve is closed, when the convex rod 407 rotates downward to make the sealing plate 3 slide downward gradually, at this time, the control rod body 409 is de-energized with the control sheet 411, so that the control module opens the electromagnetic valve, at this time, the exhaust port 4 preferentially extracts the hot gas above the equipment cavity 313 through the air inlet one 404, at the same time, the negative pressure is generated in the equipment cavity 313, the gas in the air inlet chamber 311 enters the water removal element 7 in turn through the air suction plate 709, the air inlet pipe three 708 and the air inlet ring 707, absorbs the water in the gas through the water absorption sponge block 702, and then enters the heat dissipation cavity 207 through the exhaust steel pipe 710, so that the gas flow in the equipment cavity 313 flows from bottom to top, thereby effectively dissipating heat of the components in the low-voltage power supply box 2, and effectively preventing impurities and water in the gas from entering the low-voltage power supply box 2.

[0056] When the sealing plate 3 slides downward, the sealing plate 3 drives the driving rod body 802 to slide downward, the driving block 803 on the driving rod body 802 cooperates with the driving groove 801 in the driving pipe 8, so that the driving pipe 8 rotates, the driving pipe 8 drives the bevel gear two 804 to rotate, the bevel gear two 804 drives the bevel gear one 705 to rotate, the bevel gear one 705 drives the air inlet steel pipe 704 to rotate, the air inlet steel pipe 704 drives the water removal element 7 to rotate quickly, so that the water in the water absorption sponge block 702 is thrown out, the thrown-out water enters the fixed ring 6 through the water throwing port 701 and the annular groove a 602, thereby effectively improving the water absorption efficiency of the water absorption sponge block 702, and further effectively preventing water in the gas from entering the low-voltage power supply box 2.

[0057] Embodiment 3: refer to Figure 10 、 Figure 11 、 Figure 13 and Figure 16 , the ultraviolet lamp system is basically the same as that in embodiment 1, and further, the fixed ring 6 is provided with an inclined surface 601, the fixed plate one 301 is fixedly connected with a spray pipe 606 close to one side of the sealing plate 3, the spray pipe 606 is provided with a plurality of equidistant spray outlets 607, the spray pipe 606 and the fixed ring 6 are provided with a connecting pipe two 605, the inclined surface 601 is inclined to the direction of the low-voltage power supply box 2, and the low-voltage power supply box 2 is provided with a gas filling assembly for filling gas into the fixed ring 6.

[0058] The air charging assembly comprises a gas supply sleeve assembly 608 symmetrically fixed on the fixed plate 301, a gas supply slide rod 609 fixedly connected on the sealing plate 3, the end of the gas supply slide rod 609 away from the sealing plate 3 sealingly sliding in the gas supply sleeve assembly 608, a gas supply pipe 610 and an air inlet pipe 611 provided on the gas supply sleeve assembly 608 and communicating with the inside of the gas supply sleeve assembly 608, a gas jet pipe 603 fixedly connected in the fixed ring 6, a plurality of gas jet outlets 604 circumferentially arranged on the gas jet pipe 603 and matched with the inclined surface 601, and the end of the gas supply pipe 610 away from the gas supply sleeve assembly 608 communicating with the gas jet pipe 603.

[0059] When the sealing plate 3 slides upward, the sealing plate 3 drives the gas supply slide rod 609 to slide into the gas supply sleeve assembly 608, the gas in the gas supply sleeve assembly 608 is discharged into the gas jet pipe 603 through the gas supply pipe 610, the gas in the gas jet pipe 603 is jetted out through the gas jet outlets 604, the water droplets remaining on the inner wall of the fixed ring 6 flow downward, the air pressure in the fixed ring 6 increases, the water and air in the fixed ring 6 enter into the spray pipe 606 through the connecting pipe 605, and then are jetted out through the spray outlets 607, so as to cool the air inlet chamber 311, the sprayed water mist washes away the dust and impurities on the air outlet 4, the outer surface of the air outlet 4 is in a wet state, the adsorption capacity of the dust and impurities in the gas is effectively improved, the gas in the air inlet chamber 311 is effectively cooled, and the cooling efficiency of the components in the low-voltage power supply box 2 is effectively improved. When a certain amount of water remains on the sealing plate 3, the water containing dust and impurities is pumped out through the water pumping assembly.

[0060] Embodiment 4: referring to Figure 10 the ultraviolet lamp system, which is basically the same as that in Embodiment 1, and further, the water pumping assembly comprises a water discharge cylinder 5 fixedly arranged on the fixed plate 301, a water discharge pipe 502 provided on the top of the water discharge cylinder 5 and communicating with the inside of the water discharge cylinder 5, a water discharge slide rail 501 fixedly connected on the sealing plate 3, and a water inlet pipe 503 provided in the water discharge slide rail 501.

[0061] When the sealing plate 3 drives the water discharge slide rail 501 to slide in the water discharge cylinder 5, the water in the air inlet chamber 311 enters into the water discharge cylinder 5 through the water inlet pipe 503, and then is discharged through the water discharge pipe 502, so as to timely pump out the water containing impurities in the air inlet chamber 311. The water inlet pipe 503 pumps out the gas at the bottom of the air inlet chamber 311 at the same time, so as to make the gas at the bottom of the air inlet chamber 311 flow away from the air suction plate 709, effectively preventing the dust from entering into the low-voltage power supply box 2. When the water inlet pipe 503 pumps out the gas, the flowing direction of the gas in the air inlet chamber 311 is constantly changed, the contact efficiency of the gas and the outer surface of the air outlet 4 is improved, and the adsorption efficiency of the dust and impurities in the gas is effectively improved.

[0062] Embodiment 5: Reference Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 9 A device further comprising a base 1, a plurality of groups of UVC lamps 103 are symmetrically and fixedly connected on the support seat 102, an electric network 104 matched with the UVC lamps 103 is fixedly connected on the support seat 102, a cover plate 101 matched with the electric network 104 is fixedly connected on the base 1, and a low-voltage power supply box 2 is fixedly arranged in the base 1.

[0063] A vibrating plate 105 is symmetrically and fixedly connected at the bottom of the electric network 104, an elastic rope 106 matched with the vibrating plate 105 is symmetrically and fixedly connected at the bottom of the electric network 104, a magnet 107 is fixedly connected at the middle of the elastic rope 106, a fixed plate 304 matched with the elastic rope 106 is fixedly connected between the ends of two adjacent limiting rods 302 away from the sealing plate 3, a magnet 305 matched with the magnet 107 is fixedly connected on the fixed plate 304, and the fixed plate 304 is matched with the end of the drain pipe 502 away from the drain cylinder 5.

[0064] A backflow component 307 is symmetrically and fixedly connected on both sides of the low-voltage power supply box 2, an exhaust pipe 308 communicating with the first compartment 306 is arranged in the backflow component 307, a backflow pipe 309 matched with the electric network 104 is symmetrically arranged on the backflow component 307, and an inclined hole 310 is arranged between the backflow pipe 309 and the exhaust pipe 308.

[0065] The end of the air inlet pipe 312 away from the air inlet chamber 311 is matched with the electric network 104.

[0066] When killing insects, the alternating low voltage output by the primary transformer 203 is supplied to the UVC lamps 103 through the circuit board 204, the UVC lamps 103 attract mosquitoes, and when the mosquitoes come into contact with the electric network 104, the electric network 104 is short-circuited, at this time, the instantaneous high-voltage circuit module 206 makes the electric network 104 generate high voltage, and the mosquitoes are electrocuted and killed;

[0067] When the air inlet pipe 312 extracts gas, the air inlet pipe 312 moves the gas in the electric network 104 downward, so that the internal pressure changes, at this time, the airflow outside the electric network 104 flows into the electric network 104, and since mosquitoes have the characteristic of liking flowing gas, the efficiency of killing mosquitoes is improved;

[0068] When the exhaust port 4 exhausts air into the first compartment 306, the gas in the first compartment 306 flows out through the exhaust pipe 308, at this time, according to the Bernoulli equation principle, the gas in the electric network 104 enters the exhaust pipe 308 through the backflow pipe 309 and the inclined hole 310 in turn, thereby further improving the efficiency of killing mosquitoes.

[0069] When the sealing plate 3 drives the limiting rod 302 to move up to the highest position, the magnet one 107 is attracted to the magnet two 305, when the sealing plate 3 drives the limiting rod 302 to descend, the elastic rope 106 is stretched, when the limiting rod 302 moves to the lowest point, the tension of the elastic rope 106 is greater than the attractive force of the magnet one 107 and the magnet two 305, so that the magnet one 107 and the magnet two 305 are separated, the magnet one 107 collides with the vibrating plate 105 under the action of inertia, so that the electric mesh 104 shakes, effectively preventing the residual mosquitoes and insects on the electric mesh 104 after killing, thereby effectively preventing the long-time short circuit of the electric mesh 104, making the instantaneous high-voltage circuit module 206 long power supply, and further effectively improving the safety of the low-voltage power supply box 2.

[0070] It should be noted that the connecting pipe one 402, the air inlet one 404, the drain pipe 502, the water inlet pipe 503, the air supply pipe 610, the air inlet pipe two 611, the water throwing opening 701, the air inlet steel pipe 704 and the air outlet steel pipe 710 are all provided with one-way valves, and the vibrating plate 105 is wrapped with cotton.

[0071] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. An ultraviolet lamp system, comprising: The base (1) and the low-voltage power supply box (2), wherein the low-voltage power supply box (2) is fixedly disposed within the base (1), characterized in that a support seat (102) is symmetrically fixedly connected to the base (1), and multiple sets of equidistantly arranged UVC lamps (103) are fixedly connected to the support seat (102), and further comprising: A heat sink (201) is fixedly installed inside the low-voltage power supply box (2); A heat dissipation cavity (207) is disposed between the heat sink (201) and the bottom of the low-voltage power supply box (2); Multiple heat dissipation grooves (202) are formed on the heat sink (201); A primary transformer (203) is fixedly mounted on the heat sink (201). The primary transformer (203) is used to convert the standard AC voltage input at the input terminal into a set AC low voltage. The secondary transformer (205) is fixedly installed at the end of the heat sink (201) away from the primary transformer (203); A circuit board (204) is fixedly mounted on the heat sink (201), and the circuit board (204) is positioned between the primary transformer (203) and the secondary transformer (205). A transient high voltage circuit module (206) is disposed at one end of the heat sink (201) near the secondary transformer (205), wherein the secondary transformer (205) is used to convert the set AC low voltage into the input AC high voltage of the transient high voltage circuit module (206); A sealing plate (3) is provided to slide within the low-voltage power supply box (2), and a device cavity (313) is provided between the sealing plate (3) and the heat sink (201); A limiting component is used to limit the sealing plate (3); Fixing plate 1 (301) is fixedly installed inside the low-voltage power supply box (2), and the fixing plate 1 (301) is located on the side of the sealing plate (3) away from the heat sink (201); The first compartment (306) is located between the fixed plate (301) and the top of the low-voltage power box (2), and the first compartment (306) communicates with the outside of the low-voltage power box (2); Multiple exhaust ports (4) are fixedly disposed between the fixed plate (301) and the sealing plate (3). The exhaust ports (4) are used to extract gas from the equipment cavity (313) and discharge the gas into the first compartment (306). The first drive assembly is used to drive the sealing plate (3) to rise and fall. When the sealing plate (3) rises, the gas in the exhaust port (4) is discharged into the first compartment (306). An air intake assembly is used to draw gas from the air intake chamber (311) into the heat dissipation cavity (207), and the air intake end of the air intake assembly is located on one side of the air intake chamber (311). An intake pipe (312) is fixedly mounted on the fixing plate (301), and the intake pipe (312) is connected to the intake chamber (311). The end of the intake pipe (312) near the intake chamber (311) is located at the end away from the intake end of the intake assembly. A water removal component is installed within the air intake component.

2. The ultraviolet lamp system according to claim 1, characterized in that, The output end of the exhaust port (4) is fixedly connected to a silicone part (401). A cross interface (403) is provided at one end of the exhaust port (4) near the silicone part (401). A connecting pipe (402) matching the cross interface (403) is provided inside the silicone part (401). The cross interface (403) is in contact with the upper end of the silicone part (401). An air inlet (404) communicating with the inside of the exhaust port (4) is provided on the sealing plate (3).

3. The ultraviolet lamp system according to claim 1, characterized in that, The first driving component includes a rotating shaft (406) that rotates within the sealed chamber (313). One end of the low-voltage power supply box (2) is fixedly connected to an electric motor (405). The output end of the electric motor (405) is fixedly connected to the rotating shaft (406). A protruding rod (407) matching the sealing plate (3) is symmetrically fixedly connected to the rotating shaft (406). The limiting component includes a limiting rod (302) symmetrically fixedly arranged on the sealing plate (3). The limiting rod (302) is slidably connected to the first fixing plate (301). A spring (303) is symmetrically fixedly connected between the first fixing plate (301) and the sealing plate (3). The spring (303) is sleeved on the limiting rod (302).

4. The ultraviolet lamp system according to claim 3, characterized in that, The air intake assembly includes a water removal element (7) disposed outside the low-voltage power supply box (2). An air intake plate (709) is fixedly connected to the side of the air intake chamber (311) near the water removal element (7). The air intake plate (709) is connected to the input end of the water removal element (7). An exhaust steel pipe (710) is sealed and rotated at the output end of the water removal element (7). The end of the exhaust steel pipe (710) away from the water removal element (7) is connected to the end of the heat dissipation cavity (207) near the instantaneous high-voltage circuit module (206). The water removal assembly includes a water-absorbing sponge block (702) fixedly disposed inside the water removal element (7). The air intake chamber (311) is provided with... The device includes a pumping assembly. The end of the rotating shaft (406) away from the electric motor (405) passes through the low-voltage power supply box (2). A control disk a (408) is fixedly connected to the end of the rotating shaft (406) away from the electric motor (405). A control rod body (409) is fixedly connected to the control disk a (408). A control disk b (410) matching the control disk a (408) is fixedly connected to the end of the low-voltage power supply box (2) near the control disk a (408). A control piece (411) matching the control rod body (409) is fixedly connected to the control disk b (410). The control piece (411) matches the protruding rod (407).

5. The ultraviolet lamp system according to claim 4, characterized in that, The low-voltage power supply box (2) is fixedly connected to a fixing ring (6) on the side near the dewatering element (7). The dewatering element (7) is sealed and rotates within the fixing ring (6). The arc-shaped end of the dewatering element (7) has multiple sets of circumferentially arranged water-throwing ports (701). The fixing ring (6) is provided with an annular groove a (602) that matches the water-throwing ports (701). An air inlet steel pipe (704) is sealed and rotates within the first compartment (306). The air inlet steel pipe (704) is connected to the ratchet mechanism of the dewatering element (7). The first compartment (306) is fixedly connected to an air intake ring (707). The air intake steel pipe (704) has a plurality of equally spaced circular holes (706) on its circumference. The circular holes (706) match the air intake ring (707). The air intake ring (707) and the air intake plate (709) are fixedly connected to an air intake pipe (708). The end of the air intake steel pipe (704) away from the water removal element (7) is provided with a second drive assembly for driving the air intake steel pipe (704) to rotate.

6. The ultraviolet lamp system according to claim 5, characterized in that, The second drive assembly includes a drive tube (8) fixedly mounted on a fixed plate (301). A drive channel (801) is provided inside the drive tube (8). A drive rod (802) matching the drive tube (8) is fixedly connected to the sealing plate (3). One end of the drive rod (802) slides inside the drive tube (8). A drive block (803) matching the drive channel (801) is fixedly connected to one end of the drive rod (8) inside the drive tube (8). A bevel gear (804) is ratcheted to one end of the drive tube (8) near the low-voltage power supply box (2). A bevel gear (705) meshing with the air intake steel pipe (704) is fixedly connected to one end of the air intake steel pipe (704) away from the water removal element (7).

7. The ultraviolet lamp system according to claim 5, characterized in that, An inclined surface (601) is provided inside the fixed ring (6). A spray pipe (606) is fixedly connected to the side of the fixed plate (301) near the sealing plate (3). A plurality of spray outlets (607) are provided on the spray pipe (606) at equal intervals. A connecting pipe (605) is provided between the spray pipe (606) and the fixed ring (6). The inclined surface (601) is inclined toward the low-voltage power box (2). An inflation component for inflating the fixed ring (6) is provided inside the low-voltage power box (2).

8. The ultraviolet lamp system according to claim 7, characterized in that, The inflation assembly includes an air supply sleeve assembly (608) symmetrically fixed on a fixed plate (301). An air supply slide rod (609) is fixedly connected to the sealing plate (3). The end of the air supply slide rod (609) away from the sealing plate (3) slides sealed within the air supply sleeve assembly (608). The air supply sleeve assembly (608) is provided with an air supply pipe (610) and an air inlet pipe (611) communicating with the interior of the air supply sleeve assembly (608). An air jet pipe (603) is fixedly connected within the fixed ring (6). The air jet pipe (603) is provided with multiple air jet outlets (604) arranged in a circular pattern. The air jet outlets (604) are matched with the inclined surface (601). The end of the air supply pipe (610) away from the air supply sleeve assembly (608) is connected to the air jet pipe (603).

9. The ultraviolet lamp system according to claim 4, characterized in that, The pumping assembly includes a drain cylinder (5) fixedly mounted on a fixed plate (301), a drain pipe (502) communicating with the inside of the drain cylinder (5) is provided on the top of the drain cylinder (5), a drain slide rail (501) is fixedly connected to the sealing plate (3), and a water inlet pipe (503) is provided inside the drain slide rail (501).

10. An apparatus comprising an ultraviolet lamp system, including the ultraviolet lamp system according to any one of claims 1-9, characterized in that, The support base (102) is fixedly connected to an electrical grid (104) that matches the UVC lamp (103), and the base (1) is fixedly connected to a cover plate (101) that matches the electrical grid (104).

Citation Information

Patent Citations

  • Electronic lamp

    CN117968043A

  • Environment-friendly dry-type power transformer

    CN215911295U