CN117190109A - Wall lamp capable of automatically catching mosquitoes and deforming based on centrifugal force - Google Patents

Wall lamp capable of automatically catching mosquitoes and deforming based on centrifugal force Download PDF

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Publication number
CN117190109A
CN117190109A CN202311202881.0A CN202311202881A CN117190109A CN 117190109 A CN117190109 A CN 117190109A CN 202311202881 A CN202311202881 A CN 202311202881A CN 117190109 A CN117190109 A CN 117190109A
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China
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lamp
lamp body
mosquito
mosquito catching
catching
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CN202311202881.0A
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CN117190109B (en
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李家航
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Walsun Lighting Huizhou Co ltd
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Walsun Lighting Huizhou Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/30Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change

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Abstract

The invention discloses an automatic mosquito catching deformation wall lamp based on centrifugal force, which comprises a lamp housing, a lamp cover covered on the lamp housing and a deformation lamp body arranged between the lamp housing and the lamp cover; the lamp cover is convexly provided with a boss, the boss is provided with a switching mechanism and a mosquito catching mechanism, and the switching mechanism is in transmission connection with the deformed lamp body and the mosquito catching mechanism; the switching mechanism is provided with a low-speed mode and a high-speed mode, and in the low-speed mode, the switching mechanism drives the deformed lamp body to change the form so as to change the irradiation range and the brightness of the deformed lamp body; in the high-speed mode, the switching mechanism drives the mosquito catching mechanism to work; the wall lamp has the lighting effect and the effect of killing mosquitoes, so that the functional attributes of the wall lamp are enriched, the interference of the mosquitoes to a user is reduced, and the use experience is improved.

Description

Wall lamp capable of automatically catching mosquitoes and deforming based on centrifugal force
Technical Field
The invention relates to the technical field of lamps, in particular to a wall lamp capable of automatically catching mosquitoes and deforming based on centrifugal force.
Background
The wall lamp is an auxiliary lighting decorative lamp arranged on an indoor wall and is generally arranged on stairs, corridor hallways and bedrooms with weak light. Meanwhile, the space where the wall lamp is installed is relatively closed, and mosquitoes polluting the environment or harmful to human bodies are likely to exist, and the lamp light is very easy to attract the mosquitoes, so that the mosquitoes gather around the wall lamp, which causes interference to users, however, the existing wall lamp only has the lighting function and has a fixed irradiation range.
Disclosure of Invention
The invention aims to overcome the defects and provide the wall lamp capable of automatically catching mosquitoes based on centrifugal force.
In order to achieve the above object, the present invention is specifically as follows:
a centrifugal force-based automatic mosquito catching deformation wall lamp comprises a lamp housing, a lamp cover covered on the lamp housing and a deformation lamp body arranged between the lamp housing and the lamp cover;
the lamp cover is convexly provided with a boss, the boss is provided with a switching mechanism and a mosquito catching mechanism, and the switching mechanism is in transmission connection with the deformed lamp body and the mosquito catching mechanism;
the switching mechanism is provided with a low-speed mode and a high-speed mode, and in the low-speed mode, the switching mechanism drives the deformed lamp body to change the form so as to change the irradiation range and the brightness of the deformed lamp body; in the high-speed mode, the switching mechanism drives the mosquito catching mechanism to work.
Optionally, the switching mechanism comprises a switching motor, a driving disc, a first driven shaft and a second driven shaft, the switching motor is arranged on the boss, the driving disc is connected with the output end of the switching motor, the second driven shaft is disc-shaped, the second driven shaft is rotationally connected to the lamp cover and is in transmission connection with the mosquito catching mechanism, and the first driven shaft is rotationally connected to the second driven shaft and is connected with the deformed lamp body;
the driving disk bottom is elastically connected with a plurality of sliding blocks in a sliding manner along the circumferential direction, each sliding block is fixedly provided with a friction block in the second driven shaft, and each friction block is abutted with the outer wall of the first driven shaft under the elastic action.
Optionally, a plurality of spouts have been equispaced along circumference to initiative dish bottom, slider sliding connection is in the spout, be connected with the spring along the length direction of spout between slider and the spout.
Optionally, the periphery wall of second driven shaft is provided with tooth structure, catch mosquito mechanism and be connected with drive gear, rotate on the boss and be connected with the carrier gear, carrier gear's both ends respectively with drive gear and tooth structure meshing.
Optionally, the mosquito catching mechanism comprises a mosquito catching box fixed on the boss, a mosquito catching cage arranged in the mosquito catching box, a rotor rotationally connected in the mosquito catching box, a mosquito catching cover covered at the opening of the mosquito catching box and a mosquito trapping lamp arranged on the mosquito catching cover, wherein the side wall and the bottom of the mosquito catching box are both provided with first strip-shaped holes, the mosquito catching cage is of a funnel-shaped structure which is folded downwards, the mosquito catching cage is provided with second strip-shaped holes, the mosquito catching cover is provided with radially distributed suction holes, and the transmission gear is fixedly sleeved on the rotor.
Optionally, the inner side wall of the mosquito catching box is provided with a clamping pin, the mosquito catching cage is provided with a clamping lug with an L-shaped structure, and the clamping pin is clamped into the clamping lug by rotating the mosquito catching cage, so that the mosquito catching cage is clamped on the mosquito catching box.
Optionally, a plurality of bionic lamp beads capable of emitting ultraviolet waves are arranged on the mosquito-attracting lamp.
Optionally, the deformation lamp body is including being the first lamp body and the second lamp body that fan-shaped and interval set up, protruding the being equipped with the axis body on the fan handle of first lamp body, the fan handle of second lamp body is connected with first driven shaft, the range upon range of a plurality of third lamp bodies that are fan-shaped on the axis body, pass through multiunit linkage subassembly transmission in proper order between first lamp body, second lamp body, each third lamp body and connect for the deformation lamp body can be fan-shaped or disc form.
Optionally, the linkage subassembly includes first connecting rod and second connecting rod, all protruding first protruding axle that is equipped with on the fan handle of first lamp body and second lamp body, set up second protruding axle and bar slide hole on the fan handle of third lamp body, the one end of first connecting rod articulates on first protruding axle or second protruding axle, the other end sliding hinge of first connecting rod is on bar slide hole, the one end of second connecting rod articulates the other end at first connecting rod, the other end of second connecting rod articulates on first protruding axle or second protruding axle.
Compared with the prior art, the invention has the beneficial effects that: according to the invention, the switching mechanism is provided with the low-speed mode and the high-speed mode, so that when the switching mechanism is controlled to be in the low-speed mode, the deformed lamp body is driven to change the form, the irradiation range and the brightness of the deformed lamp body are changed, different illumination effects are obtained, and when the switching mechanism is controlled to be in the high-speed mode, the mosquito catching mechanism is driven to work to catch mosquitoes; so make the wall lamp not only have the illuminating effect, can also reach the effect of eliminating the mosquito, so enrich the functional attribute of wall lamp, do benefit to the interference that the reduction mosquito caused the user, promote and use and experience.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
FIG. 2 is a schematic cross-sectional view of the present invention;
FIG. 3 is an exploded schematic view of the present invention;
FIG. 4 is a schematic cross-sectional view of the switching mechanism of the present invention;
FIG. 5 is an exploded schematic view of the switching mechanism of the present invention;
FIG. 6 is a schematic view of the mosquito catching mechanism of the present invention;
FIG. 7 is a schematic cross-sectional view of the mosquito trapping mechanism of the present invention;
FIG. 8 is an exploded view of the mosquito trapping mechanism of the present invention;
FIG. 9 is a schematic view showing the structure of a deformed lamp body of the present invention in a disc shape;
FIG. 10 is a schematic view of the deformed lamp body of the present invention in a fan shape;
reference numerals illustrate: 1. a lamp housing; 2. a lamp cover; 21. a boss; 3. deforming the lamp body; 31. a first lamp body; 32. a second lamp body; 33. a third lamp body; 34. a first link; 35. a second link; 36. a first protruding shaft; 37. a second protruding shaft; 38. a bar-shaped slide hole; 4. a switching mechanism; 41. switching the motor; 42. a driving disk; 421. a chute; 43. a first driven shaft; 44. a second driven shaft; 45. a slide block; 46. a friction block; 47. a spring; 5. a mosquito catching mechanism; 51. a mosquito catching box; 511. a first bar-shaped hole; 512. a bayonet lock; 52. a mosquito catching cage; 521. a second hole; 522. clamping ears; 53. a rotor; 54. a mosquito catching cover; 541. a suction hole; 55. mosquito-attracting lamp; 56. A transmission gear; 6. carrier gear.
Detailed Description
The invention will now be described in further detail with reference to the drawings and the specific embodiments, without limiting the scope of the invention.
As shown in fig. 1 to 10, the centrifugal force-based automatic mosquito catching deformable wall lamp according to the present embodiment includes a lamp housing 1, a lamp cover 2 covering the lamp housing 1, and a deformable lamp body 3 disposed between the lamp housing 1 and the lamp cover 2;
the lamp housing 1 is disc-shaped, the wall lamp is mounted on an external wall surface through the lamp housing 1, a space for accommodating the deformed lamp body 3 is formed between the lamp housing 1 and the lamp cover 2, a boss 21 is convexly arranged on the outer side wall of the lamp cover 2, the boss 21 is cylindrical, the switching mechanism 4 and the mosquito catching mechanism 5 are mounted on the boss 21, and the switching mechanism 4 is in transmission connection with the deformed lamp body 3 and the mosquito catching mechanism 5;
the switching mechanism 4 has a low-speed mode and a high-speed mode, and in the low-speed mode, the switching mechanism 4 drives the deformed lamp body 3 to change the form, so that the irradiation range and the brightness of the deformed lamp body 3 are changed; in the high-speed mode, the switching mechanism 4 drives the mosquito catching mechanism 5 to work.
In the embodiment, the switching mechanism 4 is arranged to have a low-speed mode and a high-speed mode, so that when the switching mechanism 4 is controlled to be in the low-speed mode, the deformed lamp body 3 is driven to change the form, the irradiation range and the brightness of the deformed lamp body 3 are changed, different illumination effects are obtained, and when the switching mechanism 4 is controlled to be in the high-speed mode, the mosquito catching mechanism 5 is driven to work so as to catch mosquitoes; so make the wall lamp not only have the illuminating effect, can also reach the effect of eliminating the mosquito, so enrich the functional attribute of wall lamp, do benefit to the interference that the reduction mosquito caused the user, promote and use and experience.
As shown in fig. 2 to 5, the automatic mosquito catching deformable wall lamp according to the present embodiment includes a switching motor 41, a driving disc 42, a first driven shaft 43 and a second driven shaft 44, the switching motor 41 has a low speed mode and a high speed mode, the switching motor 41 is mounted on the boss 21, the driving disc 42 is connected with an output end of the switching motor 41, the second driven shaft 44 is disc-shaped, the second driven shaft 44 is rotatably connected to the lamp cover 2 and is in transmission connection with the mosquito catching mechanism 5, and the first driven shaft 43 is rotatably connected to the second driven shaft 44 and is connected with the deformable lamp body 3;
the bottom of the driving disk 42 is elastically and slidably connected with a plurality of sliding blocks 45 along the circumferential direction, the number of the sliding blocks 45 can be three, each sliding block 45 is fixed with a friction block 46 in the second driven shaft 44, and each friction block 46 is abutted with the outer wall of the first driven shaft 43 under the elastic action.
When the switching motor 41 starts the low-speed mode, the switching motor 41 drives the driving disc 42 to rotate at a low speed; at this time, the centrifugal force generated by the friction blocks 46 in the switching mechanism 4 cannot overcome the elastic force, so that the friction blocks 46 are always separated from contact with the inner side wall of the second driven shaft 44, and each friction block 46 holds the outer wall of the first driven shaft 43 tightly, so that the first driven shaft 43 can only be driven to rotate at a low speed, and the mosquito catching mechanism 5 cannot be driven to work; transmitting power from the driving disk 42 to the deformation lamp body 3 connected with the first driven shaft 43, and driving the deformation lamp body 3 to rotate so as to start deformation of the deformation lamp body 3, so that the irradiation range and brightness of the deformation lamp body 3 are changed; so that the user can adjust the deformation state of the deformed lamp body 3 by controlling the working time of the low-speed gear of the switching motor 41 so as to achieve different lighting effects;
if the upper limit of the operating time of the low-speed mode of the switching motor 41 is set to 30s, the deformed lamp body 3 can be completely deformed in the time; if the user does not need to control the deformed state of the deformed lamp body 3, the high-speed mode is automatically turned on when the upper limit of the operating time for switching the low-speed mode of the motor 41 is reached.
When the switching motor 41 starts the high-speed mode, the switching motor 41 drives the driving disc 42 to rotate at a high speed; at this time, the centrifugal force generated by the friction block 46 overcomes the elastic force and is out of contact with the first driven shaft 43, so that the first driven shaft 43 slides in the second driven shaft 44 and slowly decelerates to a standstill, and the power source of the deformed lamp body 3 is interrupted to stop deformation. Under high-speed rotation, the centrifugal force generated by the friction block 46 overcomes the elastic acting force, so that the sliding block 45 drives the friction block 46 to slide; until the friction blocks 46 are abutted against the inner side wall of the second driven shaft 44, the driving disc 42 drives the second driven shaft 44 to rotate through the friction blocks 46, the second driven shaft 44 transmits power to the mosquito catching mechanism 5 to enable the mosquito catching mechanism 5 to work, the effect of killing mosquitoes is achieved, the interference of the mosquitoes on a user is reduced, a more comfortable use environment is provided for the user, and the use experience is improved.
As shown in fig. 5, in the automatically mosquito-catching deformable wall lamp according to the present embodiment, a plurality of sliding grooves 421 are uniformly distributed at the bottom of the driving disc 42 along the circumferential direction, and correspondingly, the number of the sliding grooves 421 is three, the sliding blocks 45 are slidably connected in the sliding grooves 421, and springs 47 are connected between the sliding blocks 45 and the sliding grooves 421 along the length direction of the sliding grooves 421. In the embodiment, the sliding groove 421 is arranged to enable the sliding block 45 to slide stably, the spring 47 is arranged to enable the friction block 46 to keep holding and clamping the first driven shaft 43 when the switching motor 41 is in the low-speed mode, and the spring 47 enables the friction block 46 to realize power transmission between the driving disc 42 and the first driven shaft 43; when the friction block 46 is in the high-speed mode when the switching motor 41 is in the high-speed mode, the centrifugal force borne by the sliding block 45 and the friction block 46 is increased, so that the sliding block 45 drives the friction block 46 to outwards slide against the elastic force of the spring 47 until the friction block 46 abuts against the inner side wall of the second driven shaft 44, power transmission between the driving disc 42 and the second driven shaft 44 is achieved, the driving disc 42 drives the second driven shaft 44 to rotate, and the mosquito catching mechanism 5 is driven to work for catching mosquitoes.
As shown in fig. 2, in the automatically mosquito-catching deformation wall lamp according to the present embodiment, a tooth structure (not shown in the drawing) is disposed on the outer peripheral wall of the second driven shaft 44, the mosquito-catching mechanism 5 is connected with a transmission gear 56, the boss 21 is rotatably connected with a carrier gear 6, and two ends of the carrier gear 6 are respectively meshed with the transmission gear 56 and the tooth structure. In the embodiment, through the tooth structure, the bridge gear 6 and the transmission gear 56, the power transmission between the second driven shaft 44 and the mosquito catching mechanism 5 is realized, so that the mosquito catching mechanism 5 is driven to work; the carrier gear 6 is provided to ensure that the transfer gear 56 is turned the same as the second driven shaft 44.
As shown in fig. 1 to 3 and fig. 6 to 8, the automatic mosquito-catching deformation wall lamp based on centrifugal force in the embodiment, the mosquito-catching mechanism 5 includes a mosquito-catching box 51 fixed on the boss 21, a mosquito-catching cage 52 disposed in the mosquito-catching box 51, a rotor 53 rotatably connected in the mosquito-catching box 51, a mosquito-catching cover 54 covering the opening of the mosquito-catching box 51, and a mosquito-catching lamp 55 disposed on the mosquito-catching cover 54, wherein the side wall and the bottom of the mosquito-catching box 51 are both provided with first bar-shaped holes 511 to make the mosquito-catching box 51 in a grid shape, the mosquito-catching cage 52 is in a funnel-shaped structure which is folded downwards, the mosquito-catching cage 52 is provided with second bar-shaped holes 521, the mosquito-catching cover 54 is provided with radially distributed suction holes 541, and the transmission gear 56 is fixedly sleeved on the rotor 53. Specifically, a round hole is formed in the center of the mosquito catching box 51, a round pipe is convexly arranged at the periphery of the round hole towards the inside of the mosquito catching box 51, the rotor 53 rotates to penetrate through the round pipe, and a gap exists between the tip of the mosquito catching cage 52 and the outer wall of the round pipe, so that the sucked mosquitoes fall into the mosquito catching box 51.
When the switching motor 41 starts the high-speed mode, the second driven shaft 44 drives the rotor 53 to rotate at a high speed through the carrier gear 6 and the transmission gear 56, high-speed airflow is generated in the mosquito catching box 51, an air channel is formed among the suction hole 541, the second hole 521 and the first hole, air flows fast along the air channel and generates strong suction force at the suction hole 541, so that mosquitoes attracted by the mosquito-attracting lamp 55 are sucked into the mosquito catching box 51 along with the airflow, the grid-shaped mosquito catching box 51 and the funnel-shaped mosquito catching cage 52 are matched to effectively prevent the mosquitoes from escaping, meanwhile, the air channel continuously generates high-speed airflow and passes through the mosquito catching box 51, and the mosquitoes can be stored in the mosquito catching box 51 by utilizing the circulating airflow in an air drying mode, so that the comfort of a use environment is improved and the mosquitoes are kept clean.
As shown in fig. 7 and 8, according to the automatically deformable wall lamp capable of capturing mosquitoes based on centrifugal force in this embodiment, the inner side wall of the mosquito capturing box 51 is provided with a clamping pin 512, the mosquito capturing cage 52 is provided with a clamping lug 522 with an L-shaped structure, and the clamping pin 512 is clamped into the clamping lug 522 by rotating the mosquito capturing cage 52, so that the mosquito capturing cage 52 is clamped on the mosquito capturing box 51. In this embodiment, the clamping pin 512 and the clamping lug 522 are provided, so that the mosquito catching cage 52 can be mounted on the mosquito catching box 51 in a rotary clamping manner, and the assembly is more convenient.
According to the centrifugal force-based automatic mosquito catching deformation wall lamp, a plurality of bionic lamp beads capable of emitting purple light waves are arranged on the mosquito attracting lamp 55. Specifically, when the switching motor 41 is started, the bionic lamp beads emit ultraviolet waves and imitate the temperature of a human body, so that mosquitoes are attracted, the success rate of capturing the mosquitoes is improved, the interference of the mosquitoes on a user is further reduced, a more comfortable use environment is provided for the user, and the use experience is improved.
As shown in fig. 2, fig. 3, fig. 9 and fig. 10, the embodiment is a centrifugal force-based automatic mosquito catching deformation wall lamp, the deformation lamp body 3 includes a first lamp body 31 and a second lamp body 32 which are fan-shaped and arranged at intervals, a shaft body is convexly arranged on a fan handle of the first lamp body 31, the fan handle of the second lamp body 32 is connected with a first driven shaft 43, a plurality of fan-shaped third lamp bodies 33 are laminated on the shaft body, and the first lamp body 31, the second lamp body 32 and each third lamp body 33 are sequentially connected through a plurality of groups of linkage assemblies in a transmission mode, so that the deformation lamp body 3 can be in a fan-shaped or disc-shaped mode. When the switching motor 41 starts the low-speed mode, the switching motor 41 drives the driving disc 42 to rotate at a low speed, the driving disc 42 drives the first driven shaft 43 to rotate through the friction block 46, and the first driven shaft 43 drives the second lamp body 32 to rotate, so that the deformed lamp body 3 is driven to start to deform, at this time, the power linkage assembly is driven, so that each third lamp body 33 rotates in sequence to enable each third lamp body 33 to be unfolded or folded slowly, the effective light-emitting area of the deformed lamp body 3 is enlarged or reduced, and the irradiation range and the irradiation brightness are changed to adapt to different use requirements. By controlling the rotation direction of the switching motor 41 in the low-speed mode in this way, the shape of the deformed lamp body 3 can be changed.
As shown in fig. 9 and 10, the linkage assembly according to the present embodiment includes a first link 34 and a second link 35, a first protruding shaft 36 is protruding on the fan handle of the first lamp body 31 and the second lamp body 32, a second protruding shaft 37 and a bar-shaped sliding hole 38 are provided on the fan handle of the third lamp body 33, one end of the first link 34 is hinged on the first protruding shaft 36 or the second protruding shaft 37, the other end of the first link 34 is slidably hinged on the bar-shaped sliding hole 38, one end of the second link 35 is hinged on the other end of the first link 34, and the other end of the second link 35 is hinged on the first protruding shaft 36 or the second protruding shaft 37. In this embodiment, by setting the first link 34 and the second link 35, the first protruding shaft 36 is set on the fan handles of the first lamp body 31 and the second lamp body 32, and the second protruding shaft 37 and the bar-shaped sliding hole 38 are set on the fan handle of the third lamp body 33, so when the first driven shaft 43 drives the second lamp body 32 to rotate, the second lamp body 32 is matched with the first link 34 and the second link 35 to drive the third lamp body 33 to slowly spread out in sequence, and when the first driven shaft 43 drives the second lamp body 32 to reversely rotate, the second lamp body 32 is matched with the first link 34 and the second link 35 to drive the third lamp body 33 to fold and pack into a fan shape with the smallest area, the folding degree is different, the effective area of the deformed lamp body 3 is also different, so that different irradiation ranges and brightness effects are achieved, and the folded fan used by the principle can be spread out and folded; thus, the shape of the deformed lamp body 3 is changed.
The foregoing description is only one preferred embodiment of the invention, and therefore all changes and modifications that come within the meaning and range of equivalency of the structures, features and principles of the invention are intended to be embraced therein.

Claims (9)

1. The utility model provides a but automatic mosquito deformation wall lamp of catching based on centrifugal force which characterized in that includes lamp body, lid that closes on the lamp body and locates the deformation lamp body between lamp body and the lid;
the lamp cover is convexly provided with a boss, the boss is provided with a switching mechanism and a mosquito catching mechanism, and the switching mechanism is in transmission connection with the deformed lamp body and the mosquito catching mechanism;
the switching mechanism is provided with a low-speed mode and a high-speed mode, and in the low-speed mode, the switching mechanism drives the deformed lamp body to change the form so as to change the irradiation range and the brightness of the deformed lamp body; in the high-speed mode, the switching mechanism drives the mosquito catching mechanism to work.
2. The automatic mosquito catching deformation wall lamp based on centrifugal force according to claim 1, wherein the switching mechanism comprises a switching motor, a driving disc, a first driven shaft and a second driven shaft, the switching motor is arranged on a boss, the driving disc is connected with the output end of the switching motor, the second driven shaft is disc-shaped, the second driven shaft is rotatably connected to a lamp cover and is in transmission connection with the mosquito catching mechanism, and the first driven shaft is rotatably connected to the second driven shaft and is connected with the deformation lamp body;
the driving disk bottom is elastically connected with a plurality of sliding blocks in a sliding manner along the circumferential direction, each sliding block is fixedly provided with a friction block in the second driven shaft, and each friction block is abutted with the outer wall of the first driven shaft under the elastic action.
3. The wall lamp capable of automatically catching mosquitoes based on centrifugal force according to claim 2, wherein a plurality of sliding grooves are uniformly distributed at the bottom of the driving disk along the circumferential direction, the sliding blocks are slidably connected in the sliding grooves, and springs are connected between the sliding blocks and the sliding grooves along the length direction of the sliding grooves.
4. The centrifugal force-based automatic mosquito catching deformation wall lamp according to claim 2, wherein a tooth structure is arranged on the peripheral wall of the second driven shaft, the mosquito catching mechanism is connected with a transmission gear, a bridge gear is rotatably connected to the boss, and two ends of the bridge gear are respectively meshed with the transmission gear and the tooth structure.
5. The automatic mosquito catching deformation wall lamp based on centrifugal force according to claim 4, wherein the mosquito catching mechanism comprises a mosquito catching box fixed on a boss, a mosquito catching cage arranged in the mosquito catching box, a rotor rotatably connected in the mosquito catching box, a mosquito catching cover covered at an opening of the mosquito catching box and a mosquito trapping lamp arranged on the mosquito catching cover, the side wall and the bottom of the mosquito catching box are both provided with first strip-shaped holes, the mosquito catching cage is of a funnel-shaped structure which is folded downwards, the mosquito catching cage is provided with second strip-shaped holes, the mosquito catching cover is provided with suction holes which are distributed radially, and the transmission gear is fixedly sleeved on the rotor.
6. The centrifugal force-based automatic mosquito catching deformation wall lamp according to claim 5, wherein the inner side wall of the mosquito catching box is provided with a clamping pin, the mosquito catching cage is provided with a clamping ear with an L-shaped structure, and the clamping pin is clamped into the clamping ear by rotating the mosquito catching cage, so that the mosquito catching cage is clamped on the mosquito catching box.
7. The centrifugal force-based automatic mosquito catching deformation wall lamp as claimed in claim 5, wherein a plurality of bionic lamp beads capable of emitting ultraviolet waves are arranged on the mosquito-attracting lamp.
8. The automatic mosquito-catching deformed wall lamp based on centrifugal force according to claim 2, wherein the deformed lamp body comprises a first lamp body and a second lamp body which are fan-shaped and arranged at intervals, a shaft body is convexly arranged on a fan handle of the first lamp body, the fan handle of the second lamp body is connected with a first driven shaft, a plurality of fan-shaped third lamp bodies are laminated on the shaft body, and the first lamp body, the second lamp body and each third lamp body are sequentially connected in a transmission mode through a plurality of groups of linkage assemblies, so that the deformed lamp body can be in a fan-shaped or disc-shaped mode.
9. The automatic mosquito catching and deforming wall lamp based on centrifugal force as claimed in claim 8, wherein the linkage assembly comprises a first connecting rod and a second connecting rod, the fan handles of the first lamp body and the second lamp body are both convexly provided with a first protruding shaft, the fan handle of the third lamp body is provided with a second protruding shaft and a strip-shaped sliding hole, one end of the first connecting rod is hinged on the first protruding shaft or the second protruding shaft, the other end of the first connecting rod is slidably hinged on the strip-shaped sliding hole, one end of the second connecting rod is hinged on the other end of the first connecting rod, and the other end of the second connecting rod is hinged on the first protruding shaft or the second protruding shaft.
CN202311202881.0A 2023-09-18 2023-09-18 Wall lamp capable of automatically catching mosquitoes and deforming based on centrifugal force Active CN117190109B (en)

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