A controllable aromatic deodorizing device with multiple modes
By designing a controllable aroma deodorizing device combining volatile and atomization modes, the problem that traditional devices cannot meet diverse needs is solved, flexible aroma release and high user experience is achieved, and the aesthetics and technological sense of the device are enhanced through modular design and fog light effects.
Patent Information
- Application Number
- CN202411609672.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2044-11-12
AI Technical Summary
Traditional aroma deodorizing devices cannot meet the diverse needs of users in different scenarios, and there are inconveniences in the replacement, control and effect of aromatic agents.
A controlled aroma deodorizing device with multiple modes is designed, combining the volatilization and atomization of liquid aromatic agents. It adopts a modular design to facilitate users to replace aromatic agents and maintain them. It is combined with a micro atomizing nozzle through LED light strips to form a mist light effect.
It realizes that users choose suitable aroma release modes according to their needs, improves the flexibility and user experience of the device, and improves the aesthetics and technological sense of the device through modular design and fog light effects.
Smart Images

Figure CN119424713B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air deodorization, and particularly to a controllable aromatic deodorization device with multiple modes. Background Art
[0002] With the improvement of living standards, people's requirements for the quality of the living environment are also getting higher and higher. As a product that can improve air quality, aromatic deodorization devices are widely used in various environments such as homes, offices, and public places. Most traditional aromatic deodorization devices adopt a single way of releasing aromatic agents, such as only through volatilization, heating, or spraying, etc., which cannot meet the diverse needs of users in different scenarios. In addition, there are also many inconveniences in the replacement, control, and effect presentation of aromatic agents in some devices.
[0003] In view of the above problems, there is an urgent need in the market for a controllable aromatic deodorization device with multiple modes, which should be able to flexibly select the release mode of aromatic agents, such as volatilization, atomization, etc., and can be precisely controlled according to user needs. At the same time, the structural design of the device should facilitate the replacement and maintenance of aromatic agents, and provide good visual effects during use, such as fog light effects, etc., to enhance the user experience. Summary of the Invention
[0004] The purpose of the present invention is to provide a controllable aromatic deodorization device with multiple modes to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A controllable aromatic deodorization device with multiple modes, including a long-neck liquid storage bottle, the interior of the long-neck liquid storage bottle contains a liquid aromatic agent, the bottle mouth of the long-neck liquid storage bottle is screwed with a bottle mouth plug, the top of the bottle mouth plug is installed with a micro atomizing nozzle, the bottom surface of the top plate of the bottle mouth plug is fixed with a micro water pump, the liquid suction pipe of the micro water pump extends into the bottom of the long-neck liquid storage bottle, the liquid delivery pipe of the micro water pump is communicated with the liquid inlet of the micro atomizing nozzle, the top surface of the bottle mouth plug is provided with a water-absorbing cotton sleeve, the bottom end of the water-absorbing cotton sleeve is fixed with a cotton core strip, one end of the cotton core strip penetrates through the top plate of the bottle mouth plug and is fixed on the top surface of the cotton core sleeve, the bottom surface of the cotton core sleeve is fixed with a cotton core tube, the cotton core tube is sleeved outside the liquid suction pipe, the top of the long-neck liquid storage bottle is sleeved with an assembly rack, the bottom end of the assembly rack is screwed with a connecting bracket, there is a solid aromatic agent between the connecting bracket and the assembly rack, the top surface of the assembly rack is provided with an assembly groove, the bottom surface of the assembly groove is provided with a plurality of through holes, the top of the assembly rack is sleeved with a protective cover, the surface of the protective cover is provided with a plurality of air dispersion openings, a cover plate is inserted into the interior of the assembly groove, a traction handle one is fixed on the surface of the cover plate, the traction handle one is slidably connected in the air dispersion openings, a sealing cover is sleeved above the water-absorbing cotton sleeve, a traction handle two is fixed on the surface of the sealing cover, the traction handle two is slidably connected in the air dispersion openings, and an LED light strip is embedded on the top surface of the protective cover.
[0006] Preferably, the bottle mouth plug is a "T"-shaped cylinder. The top plate of the bottle mouth plug overlaps on the top surface of the long-neck liquid storage bottle. The outer wall of the bottle mouth plug is provided with a first external thread, and the inner wall of the bottle mouth of the long-neck liquid storage bottle is provided with a first internal thread. The first external thread and the first internal thread are in mating connection. A connecting sleeve is integrally formed at the top end of the bottle mouth plug. The water-absorbing cotton sleeve is sleeved and fixed on the connecting sleeve. A plurality of through holes are formed in the top plate of the bottle mouth plug. The plurality of through holes are circumferentially distributed with the connecting sleeve as the central axis. The cotton core strips correspond to the through holes one by one. The cotton core strips penetrate through the through holes and are fixed on the top surface of the cotton core sleeve. The cotton core sleeve is of a cylindrical structure. The liquid extraction tube penetrates through the bottom plate of the cotton core sleeve. A cotton core tube is integrally formed on the bottom plate of the cotton core sleeve. A plastic sleeve is fixed at the bottom end of the bottle mouth plug. The plastic sleeve is a "T"-shaped circular tube. The plastic sleeve is sleeved on the outside of the cotton core tube. The length of the cotton core tube is greater than the length of the plastic sleeve.
[0007] Preferably, the assembling frame is a circular ring frame with a "C"-shaped cross-section. A plurality of sliding grooves are formed in the bottom surface of the assembling frame. The sliding grooves are located on the inner ring surface of the assembling frame. A guiding strip is slidably connected inside the sliding grooves. The guiding strip is fixed on the outer wall of the bottleneck of the long-neck liquid storage bottle. The height of the sliding grooves is less than the height of the assembling frame.
[0008] Preferably, an embedding groove is formed in the top surface of the assembling frame. The embedding groove is a circular ring groove. A plurality of insertion openings are formed in the inner ring surface of the embedding groove. An insertion block is inserted inside the insertion openings. A plug ring is screwed inside the embedding groove. The plug ring squeezes one end of the insertion block to insert into a limiting groove. The limiting groove is formed at the bottleneck of the long-neck liquid storage bottle. The limiting groove is a circular ring groove.
[0009] Preferably, the plug ring is of a circular ring plate structure. The outer ring surface of the plug ring is provided with a second external thread. The outer ring surface of the embedding groove is provided with a second internal thread. The second internal thread and the second external thread are in mating connection. A plurality of picking grooves are formed in the top surface of the plug ring. A first clamping groove is formed in the bottom surface of the plug ring. The first clamping groove is a circular ring groove with a circular break. An introducing ring is inserted inside the first clamping groove. A first rubber clamping ring is sleeved and fixed at the top end of the introducing ring. The first rubber clamping ring is a circular ring strip with a circular cross-section. The diameter of the circular surface of the first rubber clamping ring is greater than the width of the notch of the first clamping groove.
[0010] Preferably, the plate body width of the insertion block is greater than the depth of the insertion opening. A slope is provided on the top surface of one end of the insertion block extending towards the inner side of the embedding groove. A notch is provided at the other end of the insertion block. The notch is a "C"-shaped groove. An elastic band is fixed on the surface of the notch. Two ends of the elastic band are respectively fixed on two parallel side walls of the insertion opening. After the plug ring squeezes one end of the insertion block to insert into the limiting groove, the elastic band is tensioned by the insertion block to generate elastic deformation.
[0011] Preferably, the connecting bracket is a circular ring frame with a "C"-shaped cross-section. The outer wall of the connecting bracket is provided with external thread three, and the outer ring surface of the inner groove of the assembling frame is provided with internal thread three. The internal thread three and the external thread three are connected in a matching manner. A retaining ring is fixed on the outer ring surface of the inner groove of the assembling frame, and the retaining ring blocks above the connecting bracket. A plurality of extraction grooves one are fixed on the bottom surface of the connecting bracket. The solid aromatic agent has an annular plate structure and is placed in the connecting bracket.
[0012] Preferably, a side groove is formed on the top surface of the assembling frame. The side groove is an annular groove, and the bottom end of the protective cover is inserted into the side groove. A plurality of clamping grooves two are formed on the inner ring surface of the protective cover. The clamping grooves two are annular grooves, and the plurality of clamping grooves two are arranged vertically. A plurality of rubber clamping rings two are sleeved and fixed on the inner ring surface of the side groove. The rubber clamping rings two and the clamping grooves two correspond one by one. The outer diameter of the rubber clamping ring two is larger than the inner diameter of the clamping groove two. After the bottom surface of the protective cover contacts the bottom surface of the side groove, the rubber clamping ring two is inserted into the corresponding clamping groove two.
[0013] Preferably, there are two traction handles one, and the two traction handles one are symmetrically distributed about the inner ring opening of the cover plate. There are two traction handles two, and the two traction handles two are symmetrically distributed about the sealing cover. Installation grooves are formed on both sides of the traction handle one and the traction handle two. A rubber clamping strip is fixed inside the installation groove. The thickness of the rubber clamping strip is greater than the depth of the installation groove. The rubber clamping strip generates elastic deformation when clamped between the installation groove and the air dispersion port.
[0014] Preferably, a round opening is formed at the center of the top plate of the protective cover for upwardly dispersing the atomized water vapor generated by the micro atomizing nozzle. And an LED light strip is fixed in the annular groove-shaped light groove formed on the top surface of the protective cover.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] The controllable aromatic deodorizing device with multiple modes proposed by the present invention combines the two usage modes of volatilization and atomization of liquid aromatic agents. Users can select a suitable mode according to actual needs. The volatilization mode is suitable for continuous and stable aromatic release, while the atomization mode can quickly disperse the fragrance in a short time and is suitable for occasions where rapid deodorization or creating a specific atmosphere is required; through the design of the traction handle and the sealing cover, users can conveniently control the usage status of the solid aromatic agent and the liquid aromatic agent. Whether using the solid aromatic agent alone, the liquid aromatic agent alone, or both at the same time, it can be achieved through simple operations.
[0017] The device adopts a modular design, and components such as the assembly frame and connection brackets are all detachable, facilitating users to replace the fragrance or perform cleaning and maintenance. At the same time, the screw connection design between the bottle mouth plug and the long-neck liquid storage bottle also ensures the sealing performance and the convenience of replacement; the LED light strip set at the top of the device, combined with the micro atomizing nozzle, can form a mist and light effect after the liquid fragrance is atomized, not only enhancing the visual effect of fragrance release, but also improving the aesthetics and technological sense of the entire device. Brief Description of the Drawings
[0018] Figure 1 is a schematic structural diagram of the present invention;
[0019] Figure 2 is a top view of the structure of the present invention;
[0020] Figure 3 is Figure 2 a sectional view of the structure at A-A in
[0021] Figure 4 is Figure 3 an enlarged schematic diagram of the structure at A in
[0022] Figure 5 is Figure 4 an enlarged schematic diagram of the structure at B in
[0023] Figure 6 is a schematic diagram of the connection structure between the assembly frame and the cover plate of the present invention;
[0024] Figure 7 is a schematic diagram of the structure of the assembly frame of the present invention;
[0025] Figure 8 is a schematic diagram of the structure of the insertion block of the present invention;
[0026] Figure 9 is a schematic diagram of the connection structure between the long-neck liquid storage bottle and the bottle mouth plug of the present invention;
[0027] Figure 10 is a schematic diagram of the connection structure between the bottle mouth plug and the plastic sleeve of the present invention;
[0028] Figure 11 is a schematic diagram of the connection structure between the cotton core sleeve and the cotton core tube of the present invention;
[0029] Figure 12 is a schematic diagram of the structure of the long-neck liquid storage bottle of the present invention;
[0030] Figure 13 is a schematic diagram of the structure after the bottom of the connection bracket of the present invention is turned upwards;
[0031] Figure 14 is a schematic diagram of the structure of the protective cover of the present invention;
[0032] Figure 15 isFigure 14 Schematic enlarged view of the structure at position C in the [device name];
[0033] Figure 16 is Figure 14 Schematic enlarged view of the structure at position D in the [device name];
[0034] Figure 17 Schematic diagram of the connection structure between the sealing cover and the towing handle II of the present invention;
[0035] Figure 18 Schematic diagram of the connection structure between the cover plate and the towing handle I of the present invention.
[0036] In the figure: long-neck liquid storage bottle 1, bottle mouth plug 2, connecting sleeve 3, micro atomizing nozzle 4, micro water pump 5, absorbent cotton sleeve 6, perforation 7, cotton core sleeve 8, cotton core strip 9, cotton core tube 10, plastic sleeve 11, assembly frame 12, assembly groove 13, through port 14, connection bracket 15, retaining ring 16, solid fragrance agent 17, picking groove I 18, sliding groove 19, guiding strip 20, embedding groove 21, socket 22, limiting groove 23, plug 24, notch 25, elastic band 26, plug ring 27, picking groove II 28, clamping groove I 29, guiding ring 30, rubber clamping ring I 31, protective cover 32, air dispersion port 33, side groove 34, clamping groove II 35, rubber clamping ring II 36, cover plate 37, towing handle I 38, sealing cover 39, towing handle II 40, installation groove 41, rubber clamping strip 42, connecting air pipe 43, lamp groove 44, LED lamp strip 45. Detailed implementation manners
[0037] In order to clearly and completely describe the purpose, technical solution of the present invention, and make the advantages more clear and understandable, the following further details the embodiments of the present invention with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are part of the embodiments of the present invention, rather than all of the embodiments, and are only used to explain the embodiments of the present invention, not to limit the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0038] Please refer to Figures 1 to 18, the present invention provides a technical solution: a controllable aromatic deodorizing device with multiple modes, including a long-neck liquid storage bottle 1. The interior of the long-neck liquid storage bottle 1 contains a liquid aromatic agent. A bottle mouth plug 2 is screwed onto the bottle mouth of the long-neck liquid storage bottle 1. A micro atomizing nozzle 4 is installed at the top of the bottle mouth plug 2. A micro water pump 5 is fixed to the bottom surface of the top plate of the bottle mouth plug 2. The liquid suction pipe of the micro water pump 5 extends into the bottom of the long-neck liquid storage bottle 1. The liquid delivery pipe of the micro water pump 5 is connected to the liquid inlet of the micro atomizing nozzle 4. A water-absorbing cotton sleeve 6 is provided on the top surface of the bottle mouth plug 2. A cotton core strip 9 is fixed to the bottom end of the water-absorbing cotton sleeve 6. One end of the cotton core strip 9 penetrates through the top plate of the bottle mouth plug 2 and is fixed to the top surface of a cotton core sleeve 8. A cotton core pipe 10 is fixed to the bottom surface of the cotton core sleeve 8. The cotton core pipe 10 is sleeved outside the liquid suction pipe. The bottle mouth plug 2 is in a "T"-shaped cylinder. The top plate of the bottle mouth plug 2 overlaps on the top surface of the long-neck liquid storage bottle 1. An external thread one is provided on the outer wall of the bottle mouth plug 2. An internal thread one is provided in the bottle mouth of the long-neck liquid storage bottle 1. The external thread one and the internal thread one are connected in cooperation. A connecting sleeve 3 is integrally formed at the top end of the bottle mouth plug 2. The water-absorbing cotton sleeve 6 is sleeved and fixed on the connecting sleeve 3. A plurality of through holes 7 are formed in the top plate of the bottle mouth plug 2. The plurality of through holes 7 are distributed in a circumferential manner with the connecting sleeve 3 as the central axis. The cotton core strip 9 and the through holes 7 correspond one by one. The cotton core strip 9 penetrates through the through hole 7 and is fixed to the top surface of the cotton core sleeve 8. The cotton core sleeve 8 is in a cylindrical structure. The liquid suction pipe penetrates through the bottom plate of the cotton core sleeve 8. The cotton core pipe 10 is integrally formed on the bottom plate of the cotton core sleeve 8. A plastic sleeve 11 is fixed to the bottom end of the bottle mouth plug 2. The plastic sleeve 11 is in a "T"-shaped round pipe. The plastic sleeve 11 is sleeved outside the cotton core pipe 10. The length of the cotton core pipe 10 is greater than the length of the plastic sleeve 11.
[0039] During use, in order to achieve the volatilization and atomization use of the liquid aromatic agent; after unscrewing and removing the bottle mouth plug 2 from the top of the long-neck liquid storage bottle 1, pour the liquid aromatic agent into the long-neck liquid storage bottle 1 for storage, and then screw the bottle mouth plug 2 to seal the bottle mouth of the long-neck liquid storage bottle 1, realizing the sealing of the bottle mouth of the long-neck liquid storage bottle 1, and the cotton core pipe 10 is introduced into the long-neck liquid storage bottle 1. After the liquid aromatic agent soaks the bottom end of the cotton core pipe 10, the cotton core pipe 10 adsorbs the saturated liquid aromatic agent and immerses it into the water-absorbing cotton sleeve 6 through the cotton core sleeve 8 and the cotton core strip 9. The aromatic agent adsorbed by the water-absorbing cotton sleeve 6 volatilizes outward, realizing the deodorization and purification of the surrounding air; when it is necessary to atomize and disperse the liquid aromatic agent, trigger the switch of the micro water pump 5. The micro water pump 5 sucks the liquid aromatic agent inside the long-neck liquid storage bottle 1 and transports it to the micro atomizing nozzle 4. The micro atomizing nozzle 4 atomizes and sprays the liquid aromatic agent. It should be noted that the water-absorbing cotton sleeve 6, the cotton core strip 9, and the cotton core sleeve 8 have air permeability, which is convenient for supplementing air pressure into the long-neck liquid storage bottle 1 when the micro water pump 5 sucks the liquid aromatic agent; the reason for installing the plastic sleeve 11 at the bottom end of the bottle mouth plug 2 is to ensure that the bottom end of the cotton core pipe 10 can extend to the bottom of the long-neck liquid storage bottle 1.
[0040] A mounting frame 12 is sleeved on the top of the long-neck liquid storage bottle 1. The mounting frame 12 is a circular ring frame with a "C"-shaped cross-section. A plurality of sliding grooves 19 are formed in the bottom surface of the mounting frame 12. The sliding grooves 19 are located on the inner ring surface of the mounting frame 12. A guiding strip 20 is slidably connected inside the sliding grooves 19. The guiding strip 20 is fixed on the outer wall of the bottleneck of the long-neck liquid storage bottle 1. The height of the sliding grooves 19 is less than the height of the mounting frame 12. An embedding groove 21 is formed in the top surface of the mounting frame 12. The embedding groove 21 is a circular ring groove. A plurality of insertion openings 22 are formed in the inner ring surface of the embedding groove 21. An insertion block 24 is inserted into the insertion openings 22. A plug ring 27 is screwed inside the embedding groove 21. One end of the insertion block 24 is pushed by the plug ring 27 and inserted into a limiting groove 23. The limiting groove 23 is formed in the bottleneck of the long-neck liquid storage bottle 1. The limiting groove 23 is a circular ring groove. The plug ring 27 is in the structure of a circular ring plate. An external thread two is provided on the outer ring surface of the plug ring 27. An internal thread two is provided on the outer ring surface of the embedding groove 21. The internal thread two and the external thread two are in mating connection. A plurality of picking grooves two 28 are formed in the top surface of the plug ring 27. A clamping groove one 29 is formed in the bottom surface of the plug ring 27. The clamping groove one 29 is a circular ring groove with a circular break. An introducing ring 30 is inserted into the clamping groove one 29. A rubber clamping ring one 31 is sleeved and fixed at the top end of the introducing ring 30. The rubber clamping ring one 31 is a circular ring strip with a circular cross-section. The diameter of the circular surface of the rubber clamping ring one 31 is greater than the width of the notch of the clamping groove one 29. The plate width of the insertion block 24 is greater than the depth of the insertion opening 22. An inclined surface is provided on the top surface of the end of the insertion block 24 extending towards the inner side of the embedding groove 21. A notch 25 is provided at the other end of the insertion block 24. The notch 25 is a "C"-shaped groove. An elastic band 26 is fixed on the surface of the notch 25. Two ends of the elastic band 26 are respectively fixed on two parallel side walls of the insertion opening 22. After one end of the insertion block 24 is pushed by the plug ring 27 and inserted into the limiting groove 23, the elastic band 26 is tensioned by the insertion block 24 and generates elastic deformation.
[0041] During use, in order to fix the mounting frame 12 above the bottle body of the long-neck liquid storage bottle 1; when the mounting frame 12 is installed on the long-neck liquid storage bottle 1, only a part of the bottom of the plug ring 27 is screwed into the embedding groove 21. At this time, the plug ring 27 does not limit the insertion block 24. At this time, the elastic band 26 is in an initial state, that is, the end of the insertion block 24 provided with the notch 25 retracts into the insertion opening 22, and the end of the insertion block 24 provided with the inclined surface extends into the embedding groove 21. Slide the sliding groove 19 at the bottom of the mounting frame 12 along the guiding strip 20. When the mounting frame 12 is sleeved on the top of the long-neck liquid storage bottle 1, insert a finger into the picking groove one 18 and screw the plug ring 27 downward. During the downward movement of the plug ring 27, the insertion block 24 is pushed along the inclined surface. The insertion block 24 slides along the insertion opening 22, and the elastic band 26 is tensioned and deformed by the insertion block 24 until one end of the insertion block 24 is inserted into the limiting groove 23. At this time, the rubber clamping ring one 31 is inserted into the clamping groove one 29 to prevent the plug ring 27 from loosening in the embedding groove 21, and the mounting frame 12 is firmly installed on the top of the long-neck liquid storage bottle 1.
[0042] The bottom end of the assembly frame 12 is screwed with a connecting bracket 15. There is a solid air freshener 17 between the connecting bracket 15 and the assembly frame 12. The connecting bracket 15 is a circular ring frame with a "C"-shaped cross-section. The outer wall of the connecting bracket 15 is provided with external threads III. The outer ring surface of the inner groove of the assembly frame 12 is provided with internal threads III. The internal threads III and the external threads III are in mating connection. A retaining ring 16 is fixed on the outer ring surface of the inner groove of the assembly frame 12. The retaining ring 16 blocks above the connecting bracket 15. The bottom surface of the connecting bracket 15 is fixed with a plurality of extraction grooves I 18. The solid air freshener 17 is in a ring-shaped plate structure. The solid air freshener 17 is placed in the connecting bracket 15. The top surface of the assembly frame 12 is provided with an assembly groove 13. The bottom surface of the assembly groove 13 is provided with a plurality of through holes 14.
[0043] During use, in order to use the solid air freshener 17 to deodorize the surrounding air, the solid air freshener 17 needs to be placed before the assembly frame 12 is installed on the long-necked liquid storage bottle 1. That is, after the solid air freshener 17 is placed in the connecting bracket 15, the connecting bracket 15 is inserted into the bottom of the assembly frame 12, and the connecting bracket 15 is screwed to the bottom end of the assembly frame 12 until the top surface of the connecting bracket 15 abuts against the lower side of the retaining ring 16. After the solid air freshener 17 volatilizes, it is dispersed through the through holes 14 to achieve deodorization of the surrounding air.
[0044] A protective cover 32 is sleeved on the top end of the assembly frame 12. The surface of the protective cover 32 is provided with a plurality of air dispersion openings 33. The top surface of the assembly frame 12 is provided with a side groove 34. The side groove 34 is an annular groove. The bottom end of the protective cover 32 is inserted into the side groove 34. The inner ring surface of the protective cover 32 is provided with a plurality of clamping grooves II 35. The clamping grooves II 35 are annular grooves. The plurality of clamping grooves II 35 are arranged vertically. A plurality of rubber clamping rings II 36 are sleeved and fixed on the inner ring surface of the side groove 34. The rubber clamping rings II 36 and the clamping grooves II 35 correspond one by one. The outer ring diameter of the rubber clamping rings II 36 is larger than the inner ring diameter of the clamping grooves II 35. After the bottom surface of the protective cover 32 contacts the bottom surface of the side groove 34, the rubber clamping rings II 36 are inserted into the corresponding clamping grooves II 35.
[0045] During use, in order to install the protective cover 32 on the assembly frame 12, that is, directly sleeve the bottom end of the protective cover 32 in the side groove 34. At this time, the rubber clamping rings II 36 are inserted into the corresponding clamping grooves II 35 to achieve anti-disconnection limit of the protective cover 32.
[0046] A cover plate 37 is inserted into the internal assembly slot 13. A first traction handle 38 is fixed on the surface of the cover plate 37. The first traction handle 38 is slidably connected in the air dispersion port 33. A sealing cover 39 is sleeved above the water-absorbing cotton sleeve 6. A second traction handle 40 is fixed on the surface of the sealing cover 39. The second traction handle 40 is slidably connected in the air dispersion port 33. There are two first traction handles 38, and the two first traction handles 38 are symmetrically distributed about the inner ring opening of the cover plate 37. There are two second traction handles 40, and the two second traction handles 40 are symmetrically distributed about the sealing cover 39. Installation slots 41 are formed on both sides of the first traction handle 38 and the second traction handle 40. A rubber clamping strip 42 is fixed inside the installation slot 41. The thickness of the rubber clamping strip 42 is greater than the depth of the installation slot 41. The rubber clamping strip 42 is clamped between the installation slot 41 and the air dispersion port 33 to generate elastic deformation.
[0047] During use, in order to control the use of the solid fragrance agent 17 and the liquid fragrance agent, rubber clamping strips 42 are installed on both sides of the first traction handle 38 and the second traction handle 40 to increase the friction between the first traction handle 38 and the air dispersion port 33 and increase the friction between the second traction handle 40 and the air dispersion port 33, so as to ensure that the first traction handle 38 does not randomly drop when pulling the cover plate 37, and the second traction handle 40 does not randomly drop when pulling the sealing cover 39. When only the liquid fragrance agent needs to be used, pinch the first traction handle 38 to pull the cover plate 37 down into the assembly slot 13 to cover the through hole 14, thus blocking the outward volatilization of the solid fragrance agent 17. Then pinch the second traction handle 40 and slide it up along the air dispersion port 33 until the sealing cover 39 no longer covers the water-absorbing cotton sleeve 6. At this time, the water-absorbing cotton sleeve 6 is exposed, and the liquid fragrance agent volatilizes around. If both the solid fragrance agent 17 and the liquid fragrance agent are used, pull up the first traction handle 38 to pull the cover plate 37 out of the assembly slot 13, and the solid fragrance agent 17 volatilizes and disperses from the through hole 14. If only the solid fragrance agent 17 needs to be used, pull down the second traction handle 40 until the sealing cover 39 is sleeved above the water-absorbing cotton sleeve 6 to cover the water-absorbing cotton sleeve 6.
[0048] An LED light strip 45 is embedded in the top surface of the protective cover 32. A round hole is formed at the center of the top plate of the protective cover 32 for upward dispersion of the atomized water vapor generated by the micro atomizing nozzle 4. And a lamp groove 44 is formed on the top surface of the protective cover 32. The lamp groove 44 is an annular groove, and the LED light strip 45 is fixed in the lamp groove 44.
[0049] During use, in order to achieve the fog-light effect after the atomization of the liquid fragrance, after the water mist atomized by the micro-atomizing nozzle 4 spreads out from the central round opening of the top plate of the protective cover 32, at this time, after triggering the switch of the LED light strip 45, the light of the LED light strip 45 is projected on the water mist to achieve the fog-light effect; according to needs, an air pipe 43 can be fixedly connected in the round opening, and the air pipe 43 communicates with the outlet of the micro-atomizing nozzle 4 to convey the mist ejected from the micro-atomizing nozzle 4 upward and eject it above the protective cover 32. The air pipe 43 is an optional structure, and the finished product produced by this solution does not default to installing the air pipe 43.
[0050] The specific usage process of the controllable aromatic deodorization device is as follows:
[0051] 1. Device assembly and fixation:
[0052] Assembly of the long-neck liquid storage bottle and the bottle mouth plug: The inner thread one is provided in the bottle mouth of the long-neck liquid storage bottle 1, and the outer thread one is provided on the outer wall of the bottle mouth plug 2. Through the cooperation connection of the outer thread one and the inner thread one, the bottle mouth plug 2 is screwed onto the bottle mouth of the long-neck liquid storage bottle 1 to seal the bottle mouth of the long-neck liquid storage bottle 1.
[0053] Fixation of the assembly rack and the long-neck liquid storage bottle: The sliding groove 19 is provided on the bottom surface of the assembly rack 12, and the guiding strip 20 is fixed on the outer wall of the bottleneck of the long-neck liquid storage bottle 1. The sliding groove 19 slides down along the guiding strip 20 so that the assembly rack 12 is sleeved on the top of the long-neck liquid storage bottle 1. The embedding groove 21 is provided on the top surface of the assembly rack 12, and the plug ring 27 is screwed inside the embedding groove 21. By rotating the plug ring 27, one end of the extrusion block 24 is pushed to insert into the limiting groove 23 at the bottleneck of the long-neck liquid storage bottle 1 to achieve the firm fixation of the assembly rack 12 and the long-neck liquid storage bottle 1.
[0054] Assembly of the connection bracket and the assembly rack: The outer thread three is provided on the outer wall of the connection bracket 15, and the inner thread three is provided on the outer ring surface of the inner groove of the assembly rack 12. Through the cooperation connection of the inner thread three and the outer thread three, the connection bracket 15 is screwed onto the bottom end of the assembly rack 12. The retaining ring 16 is provided above the connection bracket 15, and the retaining ring 16 blocks above the connection bracket 15 to prevent the connection bracket 15 from falling off.
[0055] Installation of the protective cover: The bottom end of the protective cover 32 is inserted into the side groove 34 on the top surface of the assembly rack 12. The clamping groove two 35 is provided on the inner ring surface of the protective cover 32, and the rubber clamping ring two 36 is sleeved and fixed on the inner ring surface of the side groove 34. The rubber clamping ring two 36 is inserted into the corresponding clamping groove two 35 to achieve the anti-detachment limit of the protective cover 32.
[0056] 2. Use and control of the fragrance:
[0057] Use of liquid fragrance: Pour the liquid fragrance into the long-neck liquid storage bottle 1. After the bottom end of the cotton core tube 10 is soaked with the liquid fragrance, the cotton core tube 10 adsorbs the saturated liquid fragrance and immerses it into the water-absorbing cotton sleeve 6 after passing through the cotton core sleeve 8 and the cotton core strip 9. The fragrance adsorbed by the water-absorbing cotton sleeve 6 volatilizes outward. When it is necessary to atomize and disperse the liquid fragrance, trigger the switch of the micro water pump 5. The micro water pump 5 sucks the liquid fragrance inside the long-neck liquid storage bottle 1 and transports it to the micro atomizing nozzle 4. The micro atomizing nozzle 4 atomizes and sprays the liquid fragrance. If it is necessary to enhance the atomization effect, the air pipe 43 can be connected to transport the mist sprayed by the micro atomizing nozzle 4 upward and spray it above the protective cover 32.
[0058] Use of solid fragrance: Place the solid fragrance 17 in the connecting bracket 15. After the solid fragrance 17 volatilizes, it disperses through the through hole 14 on the top surface of the assembly frame 12.
[0059] Control of fragrance use: Pull the cover plate 37 down into the assembly groove 13 through the traction handle 1 38 to cover the through hole 14 and block the outward volatilization of the solid fragrance 17. Pull the sealing cover 39 up or down through the traction handle 2 40 to control the covering and exposure of the water-absorbing cotton sleeve 6, thereby controlling the volatilization of the liquid fragrance.
[0060] 3. Fog light effect: After the water mist atomized by the micro atomizing nozzle 4 disperses from the central circular hole on the top plate of the protective cover 32, trigger the switch of the LED light strip 45. The light of the LED light strip 45 is projected onto the water mist to achieve the fog light effect.
[0061] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A controllable aroma deodorizing device with multiple modes, comprising a long-necked liquid storage bottle (1), wherein the long-necked liquid storage bottle (1) is filled with liquid aroma agent, characterized in that: The mouth of the long-necked liquid storage bottle (1) is screwed with a bottle mouth plug (2), the top of the bottle mouth plug (2) is equipped with a micro-atomizing nozzle (4), the bottom surface of the top plate of the bottle mouth plug (2) is fixed with a micro-water pump (5), the liquid extraction tube of the micro-water pump (5) extends into the bottom of the long-necked liquid storage bottle (1), and the infusion tube of the micro-water pump (5) is connected to the liquid inlet of the micro-atomizing nozzle (4), the top surface of the bottle mouth plug (2) is provided with a water-absorbing cotton sleeve (6), the bottom end of the water-absorbing cotton sleeve (6) is fixed with a cotton core strip (9), one end of the cotton core strip (9) passes through the top plate of the bottle mouth plug (2) and is fixed to the top surface of the cotton core sleeve (8), the bottom surface of the cotton core sleeve (8) is fixed with a cotton core tube (10), and the cotton core tube (10) is sleeved on the outside of the liquid extraction tube, and the top of the long-necked liquid storage bottle (1) is sleeved with an assembling frame (12), and the bottom end of the assembling frame (12) is screwed with a connecting bracket A frame (15), a solid aromatic (17) is arranged between the connecting bracket (15) and the assembly frame (12), an assembly groove (13) is provided on the top surface of the assembly frame (12), a plurality of through openings (14) are provided on the bottom surface of the assembly groove (13), a protective cover (32) is sleeved on the top of the assembly frame (12), a plurality of air dispersion openings (33) are provided on the surface of the protective cover (32), a cover plate (37) is inserted into the interior of the assembly groove (13), a traction handle (38) is fixed on the surface of the cover plate (37), and the traction handle (38) is slidably connected to the air dispersion opening (33), a sealing cover (39) is sleeved on the upper side of the absorbent cotton sleeve (6), a traction handle (40) is fixed on the surface of the sealing cover (39), and the traction handle (40) is slidably connected to the air dispersion opening (33), and an LED light strip (45) is embedded on the top surface of the protective cover (32); The top surface of the assembly frame (12) is provided with an embedding groove (21). The embedding groove (21) is an annular groove. A plurality of sockets (22) are provided on the inner ring surface of the embedding groove (21). An insertion block (24) is inserted into the inside of the socket (22). A plug ring (27) is screwed inside the embedding groove (21). One end of the plug ring (27) squeezes and pushes the insertion block (24) to insert into the limit groove (23). The limit groove (23) is opened at the bottleneck of the long-neck liquid storage bottle (1). The limit groove (23) is an annular groove; the plug ring (27) is in a circular ring plate structure. The outer ring surface of the plug ring (27) is provided with a second external thread. The outer ring surface of the embedding groove (21) is provided with a second internal thread. The second internal thread and the second external thread are in mating connection. A plurality of extraction grooves two (28) are opened on the top surface of the plug ring (27). A first clamping groove (29) is opened on the bottom surface of the plug ring (27). The first clamping groove (29) is an annular groove with a circular fracture. An introduction ring (30) is inserted into the inside of the first clamping groove (29). A first rubber clamping ring (31) is sleeved and fixed at the top end of the introduction ring (30). The first rubber clamping ring (31) is an annular strip with a circular cross-section. The diameter of the circular surface of the first rubber clamping ring (31) is greater than the width of the notch of the first clamping groove (29); the plate width of the insertion block (24) is greater than the depth of the socket (22). A slope is provided on the top surface of the end of the insertion block (24) extending towards the inside of the embedding groove (21). A notch (25) is provided at the other end of the insertion block (24). The notch (25) is a "匚”-shaped groove. An elastic band (26) is fixed on the surface of the notch (25). The two ends of the elastic band (26) are respectively fixed on two parallel side walls of the socket (22). After one end of the plug ring (27) squeezes and pushes the insertion block (24) to insert into the limit groove (23), the elastic band (26) is tensioned by the insertion block (24) to generate elastic deformation.
2. A controllable aroma deodorizing device with multiple modes according to claim 1, characterized in that: The bottle mouth plug (2) is a "T”-shaped cylinder. The top plate of the bottle mouth plug (2) overlaps on the top surface of the long-neck liquid storage bottle (1). The outer wall of the bottle mouth plug (2) is provided with a first external thread. A first internal thread is provided in the bottle mouth of the long-neck liquid storage bottle (1). The first external thread and the first internal thread are in mating connection. A connecting sleeve (3) is integrally formed at the top end of the bottle mouth plug (2). The water absorption cotton sleeve (6) is sleeved and fixed on the connecting sleeve (3). A plurality of through holes (7) are opened on the top plate of the bottle mouth plug (2). The plurality of through holes (7) are circumferentially distributed with the connecting sleeve (3) as the central axis. The cotton core strips (9) correspond to the through holes (7) one by one. The cotton core strips (9) penetrate through the through holes (7) and are fixed on the top surface of the cotton core sleeve (8). The cotton core sleeve (8) is in a cylindrical structure. The liquid extraction tube penetrates through the bottom plate of the cotton core sleeve (8). A cotton core tube (10) is integrally formed on the bottom plate of the cotton core sleeve (8). A plastic sleeve (11) is fixed at the bottom end of the bottle mouth plug (2). The plastic sleeve (11) is a "T”-shaped circular tube. The plastic sleeve (11) is sleeved on the outside of the cotton core tube (10). The length of the cotton core tube (10) is greater than the length of the plastic sleeve (11).
3. A controllable aroma deodorizing device with multiple modes according to claim 1, characterized in that: The assembled frame (12) is a circular ring frame with a "C"-shaped cross-section. A plurality of sliding grooves (19) are provided on the bottom surface of the assembled frame (12). The sliding grooves (19) are located on the inner ring surface of the assembled frame (12). A guiding strip (20) is slidably connected inside the sliding grooves (19). The guiding strip (20) is fixed on the outer wall of the bottleneck of the long-neck liquid storage bottle (1). The height of the sliding grooves (19) is less than the height of the assembled frame (12).
4. A controllable aroma deodorizing device with multiple modes according to claim 1, characterized in that: The connecting bracket (15) is a circular ring frame body with a "C"-shaped cross-section. An external thread three is provided on the outer wall of the connecting bracket (15). An internal thread three is provided on the outer ring surface of the inner groove body of the assembled frame (12). The internal thread three and the external thread three are in mating connection. A retaining ring (16) is fixed on the outer ring surface of the inner groove body of the assembled frame (12). The retaining ring (16) blocks above the connecting bracket (15). A plurality of picking slots one (18) are fixed on the bottom surface of the connecting bracket (15). The solid aromatic agent (17) has an annular plate-like structure. The solid aromatic agent (17) is placed in the connecting bracket (15).
5. A controllable aroma deodorizing device with multiple modes according to claim 1, characterized in that: An edge groove (34) is provided on the top surface of the assembled frame (12). The edge groove (34) is an annular groove. The bottom end of the protective cover (32) is inserted into the edge groove (34). A plurality of clamping slots two (35) are provided on the inner ring surface of the protective cover (32). The clamping slots two (35) are annular grooves. The plurality of clamping slots two (35) are arranged vertically. A plurality of rubber clamping rings two (36) are sleeved and fixed on the inner ring surface of the edge groove (34). The rubber clamping rings two (36) and the clamping slots two (35) are in one-to-one correspondence. The outer diameter of the rubber clamping rings two (36) is greater than the inner diameter of the clamping slots two (35). After the bottom surface of the protective cover (32) contacts the bottom surface of the edge groove (34), the rubber clamping rings two (36) are inserted into the corresponding clamping slots two (35).
6. A controllable aroma deodorizing device with multiple modes according to claim 1, characterized in that: Two traction handles one (38) are provided. The two traction handles one (38) are symmetrically distributed about the inner ring opening of the cover plate (37). Two traction handles two (40) are provided. The two traction handles two (40) are symmetrically distributed about the sealing cover (39). Installation grooves (41) are provided on both sides of the traction handle one (38) and the traction handle two (40). A rubber clamping strip (42) is fixed inside the installation grooves (41). The thickness of the rubber clamping strip (42) is greater than the depth of the installation grooves (41). The rubber clamping strip (42) is clamped between the installation grooves (41) and the air dispersion openings (33) to generate elastic deformation.
7. A controllable aroma deodorizing device with multiple modes according to claim 1, characterized in that: A circular opening is provided at the center of the top plate of the protective cover (32) for upwardly dispersing the atomized water vapor generated by the micro atomizing nozzle (4). Moreover, a lamp groove (44) is provided on the top surface of the protective cover (32). The lamp groove (44) is an annular groove. The LED light strip (45) is fixed in the lamp groove (44).
Citation Information
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