Water filtration smoke sucking device with double air outlet

By employing a dual-force water filtration assembly and a multi-color lighting control module in the smoke extraction device, the problems of inconvenient extraction and poor filtration effect of existing devices have been solved, achieving better smoke filtration and dazzling lighting effects, thus improving the user experience.

CN224268330UActive Publication Date: 2026-05-26王晓琼
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
王晓琼
Filing Date
2025-06-10
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

Existing smoke extraction devices have a simple structure, are not convenient to use, have poor smoke filtration, and affect the user experience.

Method used

Design a water-filtered smoke extraction device with dual air outlets. It adopts a dual-force water filtration component and a multi-color lighting effect control module. It achieves smoke filtration through the gravity water filtration principle and sets up multi-color dazzling lighting effects in the device to enhance the user experience.

Benefits of technology

It achieves better smoke filtration, making suction more convenient and effortless, while also producing multi-colored dazzling light effects during operation, enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This utility model discloses a water-filtered smoke extraction device with dual air outlets, belonging to the field of smoke extraction devices. It includes an air path valve shaft assembly, a first gravity water filter assembly, a second gravity water filter assembly, a water path conduction assembly, an input air path assembly, a first suction nozzle assembly, and a second suction nozzle assembly. The air path valve shaft assembly includes a rotating body and a main valve shaft, with an air path channel formed within the main valve shaft. The first and second suction nozzle assemblies are connected to the air path channel of the main valve shaft. The rotating body includes a first connecting end and a second connecting end. The first gravity water filter assembly is connected to the air path channel through the first connecting end, and the second gravity water filter assembly is connected to the air path channel through the second connecting end. Compared with existing technologies, this application can achieve smoke filtration and exhaust based on the principle of gravity water, resulting in better filtration and hygiene. Simultaneously, smoke extraction is more convenient and effortless, improving the user experience.
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Description

Technical Field

[0001] This utility model belongs to the field of smoke extraction devices, and specifically relates to a water-filtered smoke extraction device with dual air outlets. Background Technology

[0002] Electronic vaporizers typically require a vapor extraction device to filter the vapor, making the inhaled vapor healthier. For example, electronic hookahs use a hookah to filter the vapor, improving its health benefits.

[0003] However, existing smoke extraction devices, due to their relatively simple structure, often suffer from problems such as inconvenient extraction and poor smoke filtration, thus affecting the user experience. Utility Model Content

[0004] To address the aforementioned problems, the primary objective of this invention is to provide a water-filtered smoke extraction device with dual air outlets, which offers better filtration and is more hygienic.

[0005] Another objective of this invention is to provide a water-filtered smoke extraction device with dual air outlets, which makes smoke extraction more convenient and effortless, thereby enhancing the user experience.

[0006] To achieve the above objectives, the technical solution of this utility model is as follows:

[0007] This utility model provides a water-filtered smoke suction device with dual air outlets, including: an air circuit valve shaft assembly, a first gravity water filter assembly, a second gravity water filter assembly, a water circuit conduction assembly, an input air circuit assembly, a first suction nozzle assembly, and a second suction nozzle assembly.

[0008] The air passage valve shaft assembly includes a rotating body and a main valve shaft for conducting smoke. The rotating body is rotatably connected to the main valve shaft, and an air passage is provided inside the main valve shaft. The first suction nozzle assembly and the second suction nozzle assembly are respectively installed at both ends of the main valve shaft and are respectively connected to both ends of the air passage. The input air passage assembly is connected to the air passage of the main valve shaft.

[0009] The rotating body includes a first connecting end and a second connecting end. The first gravity water filter assembly is connected to the air passage through the first connecting end, and the second gravity water filter assembly is connected to the air passage through the second connecting end. The first gravity water filter assembly and the second gravity water filter assembly are located above and below the main valve shaft, respectively, and the first gravity water filter assembly and the second gravity water filter assembly are connected through a water passage conduction assembly.

[0010] Further, the first gravity water filtration assembly includes a first glass body, a first valve stem, a first valve stem shaft, a first sealing cap, a first sealing ring, and a first threaded connecting ring. The first glass body is threadedly connected to a first connecting end via the first threaded connecting ring, forming a first cavity between the first glass body and the first connecting end. The first valve stem, first valve stem shaft, first sealing cap, and first sealing ring are all disposed within the first cavity. A first filtration channel is provided inside the first valve stem. A first air inlet hole is provided on the inner wall of the first connecting end. A second air inlet hole is provided on the inner wall of the air passage. The air passage is connected to the first connecting end via the second air inlet hole and the first air inlet hole. The first filter channel is connected, and the first sealing ring is disposed between the inner wall of the first valve stem and the first air inlet hole; the first valve stem shaft is sleeved on the outside of the first valve stem, and a first through hole is opened on the side wall of the first valve stem shaft, through which the first filter channel is connected to the first cavity; the first connecting end is also provided with a first air outlet hole connected to the first cavity, and a second air outlet hole is opened on the inner wall of the air passage, through which the first cavity is connected to the air passage; a first airflow blocking component is also provided in the air passage, and the first airflow blocking component is disposed between the second air inlet hole and the second air outlet hole.

[0011] Furthermore, the first gravity water filtration assembly also includes a first lamp plate, a first lamp plate holder, a first sealing adhesive plate, and a first light-transmitting plate. The first lamp plate holder is fixedly installed inside the first connecting end, and the first lamp plate, the first sealing adhesive plate, and the first light-transmitting plate are sequentially arranged inside the first lamp plate holder.

[0012] Furthermore, the second gravity water filtration assembly includes a second glass body, a second valve stem, a second valve stem shaft, a second sealing cap, a second sealing ring, and a second threaded connecting ring. The second glass body is threadedly connected to the second connecting end via the second threaded connecting ring, forming a second cavity between the second glass body and the second connecting end. The second valve stem, second valve stem shaft, second sealing cap, and second sealing ring are all disposed within the second cavity. A second filtration channel is provided inside the second valve stem. A third air inlet hole is provided on the inner wall of the first connecting end, and a fourth air inlet hole is provided on the inner wall of the air passage. The air passage is connected to the second connecting end via the fourth air inlet hole and the third air inlet hole. The second filter channel is connected, and the second sealing ring is disposed between the inner wall of the second valve stem and the third air inlet hole; the second valve stem shaft is sleeved on the outside of the second valve stem, and a second through hole is opened on the side wall of the second valve stem shaft, through which the second filter channel is connected to the second cavity; the second connecting end is also provided with a third air outlet hole connected to the second cavity, and a fourth air outlet hole is opened on the inner wall of the air passage, through which the second cavity is connected to the air passage; a second airflow barrier is also provided in the air passage, and the second airflow barrier is disposed between the fourth air inlet hole and the fourth air outlet hole.

[0013] Furthermore, the second gravity water filtration assembly also includes a second lamp plate, a second lamp plate holder, a second sealing adhesive plate, and a second light-transmitting plate. The second lamp plate holder is fixedly installed inside the second connecting end, and the second lamp plate, the second sealing adhesive plate, and the second light-transmitting plate are sequentially arranged inside the second lamp plate holder.

[0014] Furthermore, both the first connecting end and the second connecting end are provided with shaft holes, the main valve shaft is rotatably installed in the shaft holes and rotatably connected to the first connecting end and the second connecting end, and a main valve shaft positioning clamp and a main valve shaft seal are also provided between the main valve shaft and the shaft holes.

[0015] Furthermore, a first air path output component and a second air path output component are respectively provided at both ends of the main valve shaft. The first suction nozzle component is connected to the main valve shaft through the first air path output component, and the second suction nozzle component is connected to the main valve shaft through the second air path output component.

[0016] Furthermore, the first air path output assembly includes a first air path output magnet and a first air path output connector. One end of the first air path output connector is fixed to the main valve shaft by a screw, and the other end of the first air path output connector is magnetically connected to the first suction nozzle assembly through the first air path output magnet.

[0017] Furthermore, the second air path output assembly includes a second air path output magnet and a second air path output connector. One end of the second air path output connector is fixed to the main valve shaft by a screw, and the other end of the second air path output connector is magnetically connected to the second suction nozzle assembly through the second air path output magnet.

[0018] Furthermore, the water conduction assembly includes a transparent bracket, a transparent water pipe, a first silicone frame, a second silicone frame, and a third light panel. The rotating body has a mounting groove between the first and second connecting ends. The transparent water pipe, the first silicone frame, the second silicone frame, and the third light panel are all disposed within the mounting groove, and the transparent bracket is located outside the mounting groove. One end of the transparent water pipe is connected to the first cavity via the first silicone frame, and the other end of the transparent water pipe is connected to the second cavity via the second silicone frame. In this application, the transparent water pipe can connect to the first cavity via the first silicone frame and to the second cavity via the second silicone frame, thereby achieving communication between the first and second cavities and facilitating water flow between the first and second glass bodies. The third light panel is used to indicate the state of the water flow.

[0019] Furthermore, the device also includes a water-channel lighting effect control module, which comprises a battery cell, a control board, and buttons. A receiving groove is also provided inside the rotating body, and a main body bottom cover is installed on the rotating body. The battery cell and control board are disposed within the receiving groove and sealed by the main body bottom cover. The battery cell is electrically connected to the control board, and the buttons are connected to the control board and exposed outside the rotating body. The first, second, and third light panels are all connected to the control board. The control board can control the first, second, and third light panels, producing multi-colored dazzling lighting effects on the first glass body, second glass body, and transparent support during water flow, enhancing the user experience.

[0020] Furthermore, the input air path assembly includes a support base, a column, a column fixing component, an input air path inlet component, and an input air path inlet seal. The column is fixed to the main valve shaft by the column fixing component. An air path inlet with a through-hole is opened on the side wall of the column. The input air path inlet component and the input air path inlet seal are respectively connected to the two ends of the air path inlet. A fifth air inlet hole is opened on the main valve shaft. An air guide channel is provided inside the column. One end of the air guide channel is connected to the air path channel through the fifth air inlet hole, and the other end is connected to the air path inlet. An input air path is provided inside the input air path inlet component. An air inlet is opened on the side wall of the input air path inlet component. One end of the input air path is connected to the air inlet, and the other end is connected to the air path inlet. In this application, smoke enters the inlet air passage through the air inlet, then passes through the air passage inlet, the air guide channel, and the fifth air inlet into the air passage channel, and is delivered to the first gravity water filter assembly and the second gravity water filter assembly. The air passage inlet is open from front to back, and air can be introduced from both ends or one end. When air is introduced from one end, the other end is sealed by the air passage inlet seal.

[0021] Furthermore, the column is also equipped with a column lighting effect assembly, which includes a column main board, a column control panel, a cylindrical battery, a first column light panel, a first column light-transmitting plate, a second column light panel, and a second column light-transmitting plate. The cylindrical battery and the column main board are installed inside the column. The column control panel is correspondingly disposed on the outside of the column main board and fixedly installed on the outer wall of the column. The first column light panel and the second column light panel are respectively installed on two opposite outer walls of the column. The first column light-transmitting plate is disposed on the outside of the first column light panel, and the second column light-transmitting plate is disposed on the outside of the second column light panel. The cylindrical battery, the first column light panel, and the second column light panel are all electrically connected to the column main board.

[0022] Furthermore, a base light panel is also provided inside the support base. The support base light panel is electrically connected to the main column. A base light-transmitting plate is also provided on the support base light panel. The base light-transmitting plate is fixed to the outer wall of the support base.

[0023] In this application, the first column light panel, the second column light panel, and the base light panel are equipped with multi-colored LED lights, which are controlled by the column main board. When the airflow is flowing, multi-colored dazzling light effects are generated on the column and the base, enhancing the user experience.

[0024] Furthermore, the first suction nozzle assembly includes a first glass tube, a first metal tube, a first magnetic ring, and a first soft rubber tube. The first glass tube is installed at one end of the first metal tube, and the other end of the first metal tube is connected to the first soft rubber tube through the first magnetic ring. The first soft rubber tube is connected to the first air path output connector through the first air path output magnet.

[0025] Furthermore, the second suction nozzle assembly includes a second glass tube, a second metal tube, a second magnetic ring, and a second soft rubber tube. The second glass tube is installed at one end of the second metal tube, and the other end of the second metal tube is connected to the second soft rubber tube through the second magnetic ring. The second soft rubber tube is connected to the second air path output connector through the second air path output magnet.

[0026] The beneficial effects of this utility model are, compared with the prior art:

[0027] 1. This application, by setting a gravity water filter component above and below the main valve shaft, can achieve smoke filtration and exhaust based on the principle of gravity water, resulting in better filtration and greater hygiene;

[0028] 2. At the same time, the smoke is easier and less strenuous to inhale, which can improve the user experience;

[0029] 3. The device is equipped with light panels inside the first glass body, the second glass body, the transparent bracket, the column, and the support base. These panels can produce multi-colored dazzling lighting effects at various locations during the water flow and airflow processes, enhancing the user experience. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the water-filtered smoke extraction device in this embodiment.

[0031] Figure 2 This is an exploded view of the water-filtered smoke extraction device of this embodiment.

[0032] Figure 3 This is a cross-sectional view of the first position of the water-filtered smoke extraction device in this embodiment.

[0033] Figure 4 yes Figure 3 A magnified view of a portion of point A in the middle.

[0034] Figure 5 yes Figure 3 A magnified view of a section at point B in the middle.

[0035] Figure 6 This is a cross-sectional view of the second position of the water-filtered smoke extraction device in this embodiment.

[0036] In the figure: 1. Air circuit valve shaft assembly; 11. Rotating body; 111. First connecting end; 112. Second connecting end; 12. Main valve shaft; 13. Air circuit passage; 131. First airflow barrier; 132. Second airflow barrier; 14. Main shaft positioning clamp; 15. Main shaft seal;

[0037] 2. First gravity water filtration assembly; 21. First glass body; 22. First valve stem; 23. First valve stem shaft; 24. First sealing cover; 25. First sealing ring; 26. First threaded connecting ring; 27. First cavity; 28. First filter channel; 29. ​​First air inlet hole; 210. Second air inlet hole; 211. First through hole; 212. First air outlet hole; 213. Second air outlet hole; 214. First lamp panel; 215. First lamp panel holder; 216. First sealing adhesive plate; 217. First light-transmitting plate;

[0038] 3. Second gravity water filter assembly; 31. Second glass body; 32. Second valve stem; 33. Second valve stem shaft; 34. Second sealing cover; 35. Second sealing ring; 36. Second threaded connecting ring; 37. Second cavity; 38. Second filter channel; 39. Third air inlet hole; 310. Fourth air inlet hole; 311. Second through hole; 312. Third air outlet hole; 313. Fourth air outlet hole; 314. Second lamp panel; 315. Second lamp panel holder; 316. Second sealing adhesive plate; 317. Second light-transmitting plate;

[0039] 4. Water conduction assembly; 41. Transparent bracket; 42. Transparent water pipe; 43. First silicone frame; 44. Second silicone frame; 45. Third light panel;

[0040] 5. Input air path assembly; 51. Support base; 52. Column; 53. Column fixing component; 54. Input air path inlet component; 55. Input air path inlet seal; 56. Air path inlet; 57. Fifth air inlet hole; 58. Air guide channel; 59. Inlet air path; 510. Air inlet; 511. Base light panel; 512. Base light-transmitting panel;

[0041] 6. First suction nozzle assembly; 61. First glass tube; 62. First metal tube; 63. First magnetic ring; 64. First soft rubber tube;

[0042] 7. Water circuit lighting control module; 71. Battery cell; 72. Control board; 73. Button; 74. Receiving slot; 75. Main body bottom cover;

[0043] 8. Second suction nozzle assembly; 81. Second glass tube; 82. Second metal tube; 83. Second magnetic ring; 84. Second soft rubber tube;

[0044] 9. First air path output assembly; 91. First air path output magnet; 92. First air path output connector;

[0045] 10. Second air path output assembly; 101. Second air path output magnet; 102. Second air path output connector;

[0046] 20. Column lighting effect assembly; 201. Column main board; 202. Column control panel; 203. Cylindrical battery; 204. First column light panel; 205. First column light-transmitting plate; 206. Second column light panel; 207. Second column light-transmitting plate. Detailed Implementation

[0047] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0048] To achieve the above objectives, the technical solution of this utility model is as follows:

[0049] See Figure 1-6 As shown, this embodiment provides a water-filtered smoke extraction device with dual air outlets, including: an air path valve shaft assembly 1, a first gravity water filter assembly 2, a second gravity water filter assembly 3, a water path conduction assembly 4, an input air path assembly 5, a first suction nozzle assembly 6, and a second suction nozzle assembly 8.

[0050] The air passage valve shaft assembly 1 includes a rotating body 11 and a main valve shaft 12 for conducting smoke. The rotating body 11 is rotatably connected to the main valve shaft 12. An air passage 13 is opened in the main valve shaft 12. The first suction nozzle assembly 6 and the second suction nozzle assembly 8 are respectively installed at both ends of the main valve shaft 12 and are respectively connected to both ends of the air passage 13. The input air passage assembly 5 is connected to the air passage 13 of the main valve shaft 12.

[0051] The rotating body 11 includes a first connecting end 111 and a second connecting end 112. The first gravity water filter assembly 2 is connected to the air passage 13 through the first connecting end 111, and the second gravity water filter assembly 3 is connected to the air passage 13 through the second connecting end 112. The first gravity water filter assembly 2 and the second gravity water filter assembly 3 are located above and below the main valve shaft 12, respectively, and the first gravity water filter assembly 2 and the second gravity water filter assembly 3 are connected through the water passage conduction assembly 4.

[0052] In this embodiment, the first connecting end and the second connecting end of the rotating body are an integral symmetrical structure. However, in other implementations, the first connecting end and the second connecting end can also be set as separate symmetrical structures, which are connected through an interface. This method should also be within the protection scope of this application.

[0053] Furthermore, the first gravity water filtration assembly 2 includes a first glass body 21, a first valve stem 22, a first valve stem shaft 23, a first sealing cap 24, a first sealing ring 25, and a first threaded connecting ring 26. The first glass body 21 is threadedly connected to the first connecting end 111 via the first threaded connecting ring 26, forming a first cavity 27 between the first glass body 21 and the first connecting end 111. The first valve stem 22, the first valve stem shaft 23, the first sealing cap 24, and the first sealing ring 25 are all disposed within the first cavity 27. A first filtration channel 28 is disposed within the first valve stem 22. A first air inlet hole 29 is opened on the inner wall of the first connecting end 111, and a second air inlet hole 210 is opened on the inner wall of the air passage 13. The air passage 13 passes through the second air inlet hole 210 and the first air inlet hole 29. The first filter channel 28 is connected to the first filter channel 28. The first sealing ring 25 is disposed between the inner wall of the first valve stem 22 and the first air inlet hole 29. The first valve stem shaft 23 is sleeved outside the first valve stem 22. The side wall of the first valve stem shaft 23 is provided with a first through hole 211. The first filter channel 28 is connected to the first cavity 27 through the first through hole 211. The first connecting end 111 is also provided with a first air outlet hole 212 connected to the first cavity 27. The inner wall of the air passage 13 is provided with a second air outlet hole. The first cavity 27 is connected to the air passage 13 through the first air outlet hole 212 and the second air outlet hole 213. The air passage 13 is also provided with a first airflow blocking component 131. The first airflow blocking component 131 is disposed between the second air inlet hole 210 and the second air outlet hole 213.

[0054] In this embodiment, the air passage 13 can be connected to the first filter passage 28 through the second air inlet 210 and the first air inlet 29, so that the smoke generated by the atomized gas can enter the first glass body 21 and be filtered by the water in the first glass body 21; the first filter passage 28 can be connected to the air passage 13 through the first air outlet 212 and the second air outlet 213, so that the filtered gas can enter the air passage 13 and then be sucked out by the first suction nozzle assembly 6.

[0055] Furthermore, the first gravity water filtration assembly 2 also includes a first lamp plate 214, a first lamp plate holder 215, a first sealing plate 216, and a first light-transmitting plate 217. The first lamp plate holder 215 is fixedly installed inside the first connecting end 111, and the first lamp plate 214, the first sealing plate 216, and the first light-transmitting plate 217 are sequentially arranged inside the first lamp plate holder 215. In this embodiment, the first lamp plate 214 can be used in the working state of the first gravity water filtration assembly 2. The first lamp plate 214 is sealed inside the first lamp plate holder 215 by the first sealing plate 216 and the first light-transmitting plate 217, which has a waterproof effect. The first sealing plate 216 is provided with a light-transmitting hole at the LED lamp position, so as to facilitate the light from the first lamp plate 214 to be emitted.

[0056] Furthermore, the second gravity water filtration assembly 3 includes a second glass body 31, a second valve stem 32, a second valve stem shaft 33, a second sealing cap 34, a second sealing ring 35, and a second threaded connecting ring 36. The second glass body 31 is threadedly connected to the second connecting end 112 via the second threaded connecting ring 36, forming a second cavity 37 between the second glass body 31 and the second connecting end 112. The second valve stem 32, the second valve stem shaft 33, the second sealing cap 34, and the second sealing ring 35 are all disposed within the second cavity 37. A second filtration channel 38 is disposed within the second valve stem 32. A third air inlet hole 39 is opened on the inner wall of the first connecting end 111, and a fourth air inlet hole 310 is opened on the inner wall of the air passage 13. The air passage 13 is connected to the second connecting end 111 via the fourth air inlet hole 310 and the third air inlet hole 39. The two filter channels 38 are connected, and the second sealing ring 35 is disposed between the inner wall of the second valve stem 32 and the third air inlet hole 39; the second valve stem shaft 33 is sleeved outside the second valve stem 32, and the side wall of the second valve stem shaft 33 is provided with a second through hole 311, through which the second filter channel 38 is connected to the second cavity 37; the second connecting end 112 is also provided with a third air outlet hole 312 connected to the second cavity 37, and a fourth air outlet hole 313 is provided on the inner wall of the air passage 13, through which the second cavity 37 is connected to the air passage 13; a second airflow blocking component 132 is also provided in the air passage 13, and the second airflow blocking component 132 is disposed between the fourth air inlet hole 310 and the fourth air outlet hole 313.

[0057] In this embodiment, the air passage 13 can be connected to the second filter passage 38 through the fourth air inlet 310 and the third air inlet 39, so that the smoke generated by the atomized gas can enter the second glass body 31 and be filtered by the water in the second glass body 31; the second filter passage 38 can be connected to the air passage 13 through the third air outlet 312 and the fourth air outlet 313, so that the filtered gas can enter the air passage 13 and then be sucked out by the second suction nozzle assembly 8.

[0058] Furthermore, the second gravity water filtration assembly 3 also includes a second lamp plate 314, a second lamp plate holder 315, a second sealing plate 316, and a second light-transmitting plate 317. The second lamp plate holder 315 is fixedly installed inside the second connecting end 112, and the second lamp plate 314, the second sealing plate 316, and the second light-transmitting plate 317 are sequentially arranged inside the second lamp plate holder 315. In this embodiment, the second lamp plate 314 can be used in the working state of the second gravity water filtration assembly 3. The second lamp plate 314 is sealed inside the second lamp plate holder 315 by the second sealing plate 316 and the second light-transmitting plate 317, which has a waterproof effect. The second sealing plate 316 has a light-transmitting hole at the LED lamp position, thereby facilitating the emission of light from the second lamp plate 314.

[0059] Furthermore, both the first connecting end 111 and the second connecting end 112 are provided with shaft holes. The main valve shaft 12 is rotatably mounted in the shaft holes and rotatably connected to the first connecting end 111 and the second connecting end 112. A main shaft positioning clamp 14 and a main shaft seal 15 are also provided between the main valve shaft 12 and the shaft holes. The main shaft seal 15 can achieve sealing between the first connecting end 111, the second connecting end 112 and the main valve shaft 12.

[0060] Furthermore, a first air path output component 9 and a second air path output component 10 are respectively provided at both ends of the main valve shaft 12. The first suction nozzle component 6 is connected to the end of the main valve shaft 12 near the first connection end 111 through the first air path output component 9, and the second suction nozzle component 8 is connected to the end of the main valve shaft near the second connection end 112 through the second air path output component 10.

[0061] Furthermore, the first air path output assembly 9 includes a first air path output magnet 91 and a first air path output connector 92. One end of the first air path output connector 92 is fixed to the main valve shaft 12 by a screw, and the other end of the first air path output connector 92 is magnetically connected to the first suction nozzle assembly 6 through the first air path output magnet 91.

[0062] Furthermore, the second air path output assembly 10 includes a second air path output magnet 101 and a second air path output connector 102. One end of the second air path output connector 102 is fixed to the main valve shaft 12 by a screw, and the other end of the second air path output connector 102 is magnetically connected to the second suction nozzle assembly 8 through the second air path output magnet 101.

[0063] Furthermore, the water conduction assembly 4 includes a transparent bracket 41, a transparent water pipe 42, a first silicone frame 43, a second silicone frame 44, and a third light panel 45. The rotating body 11 has a mounting groove between the first connecting end 111 and the second connecting end 112. The transparent water pipe 42, the first silicone frame 43, the second silicone frame 44, and the third light panel 45 are all disposed within the mounting groove, while the transparent bracket 41 is located outside the mounting groove. One end of the transparent water pipe 42 is connected to the first cavity 27 via the first silicone frame 43, and the other end of the transparent water pipe 42 is connected to the second cavity 37 via the second silicone frame 44. In this embodiment, the transparent water pipe 42 can be connected to the first cavity 27 via the first silicone frame 43 and to the second cavity 37 via the second silicone frame 44, thereby achieving communication between the first cavity 27 and the second cavity 37, facilitating water flow between the first glass body 21 and the second glass body 31. The third light panel 45 is used to indicate the state of the water flow.

[0064] Furthermore, the device also includes a water-channel lighting effect control module 7, which includes a battery cell 71, a control board 72, and buttons 73. A receiving groove 74 is also provided inside the rotating body 11, and a main body bottom cover 75 is installed on the rotating body 11. The battery cell 71 and control board 72 are disposed within the receiving groove 74 and sealed by the main body bottom cover 75. The battery cell 71 is electrically connected to the control board 72, and the buttons 73 are connected to the control board 72 and exposed outside the rotating body 11. The first light panel 214, the second light panel 314, and the third light panel 45 are all connected to the control board 72. The control board 72 can control the first light panel 214, the second light panel 314, and the third light panel 45, producing multi-colored dazzling lighting effects on the first glass body 21, the second glass body 31, and the transparent bracket 41 during water flow, enhancing the user experience.

[0065] Furthermore, the input air path assembly 5 includes a support base 51, a column 52, a column fixing member 53, an input air path inlet member 54, and an input air path inlet seal member 55. The upper end of the column 52 is fixed to the main valve shaft 12 by the column fixing member 53, and the support base 51 is fixed to the lower end of the column 52. An air path inlet 56 that runs through the front and back is opened on the side wall of the column 52. The input air path inlet member 54 and the input air path inlet seal member 55 are respectively connected to the air path inlet. At both ends of 56, the main valve shaft 12 has a fifth air inlet hole 57. The column 52 has an air guide channel 58. One end of the air guide channel 58 is connected to the air passage 13 through the fifth air inlet hole 57, and the other end is connected to the air inlet port 56. The input air passage guide 54 has an input air passage 59. An air inlet 510 is provided on the side wall of the input air passage guide 54. One end of the input air passage 59 is connected to the air inlet port 510, and the other end is connected to the air inlet port 56. In this application, smoke enters the input air passage 59 through the air inlet port 510, then passes through the air inlet port 56, the air guide channel 58, and the fifth air inlet hole 57 into the air passage 13, and is then transported to the first gravity water filter assembly 2 and the second gravity water filter assembly 3. The air inlet 56 is open at both ends, allowing air to enter from either end or one end. When air enters from one end, the other end is sealed by the air inlet seal 55.

[0066] Furthermore, the column 52 is also provided with a column lighting effect assembly 20, which includes a column main board 201, a column control panel 202, a cylindrical battery 203, a first column light panel 204, a first column light-transmitting plate 205, a second column light panel 206, and a second column light-transmitting plate 207. The cylindrical battery 203 and the column main board 201 are installed inside the column 52, and the column control panel 202 is correspondingly disposed on the column main board 201. The first column light panel 204 and the second column light panel 206 are respectively installed on the two oppositely arranged outer walls of the column 52. The first column light-transmitting plate 205 is located on the outside of the first column light panel 204, and the second column light-transmitting plate 207 is located on the outside of the second column light panel 206. The cylindrical battery 203, the first column light panel 204, and the second column light panel 206 are all electrically connected to the column main board 201.

[0067] Furthermore, a base light plate 511 is also provided inside the support base 51. The support base light plate 511 is electrically connected to the column main board 201. A base light-transmitting plate 512 is also provided on the support base light plate 511. The base light-transmitting plate 512 is fixed to the outer wall of the support base 51.

[0068] In this application, multi-colored LED lights are provided on the first column light panel 204, the second column light panel 206, and the base light panel 511. These lights are controlled by the column main board 201 and can produce multi-colored dazzling lighting effects on the column 52 and the supporting base 51 when the airflow is flowing, thereby enhancing the user experience.

[0069] Furthermore, the first suction nozzle assembly 6 includes a first glass tube 61, a first metal tube 62, a first magnetic ring 63, and a first soft rubber tube 64. The first glass tube 61 is installed at one end of the first metal tube 62, and the other end of the first metal tube 62 is connected to the first soft rubber tube 64 through the first magnetic ring 63. The first soft rubber tube 64 is connected to the first air path output connector 92 through the first air path output magnet 91.

[0070] Furthermore, the second suction nozzle assembly 8 includes a second glass tube 81, a second metal tube 82, a second magnetic ring 83, and a second soft rubber tube 84. The second glass tube 81 is installed at one end of the second metal tube 82, and the other end of the second metal tube 82 is connected to the second soft rubber tube 84 through the second magnetic ring 83. The second soft rubber tube 84 is connected to the second air path output connector 102 through the second air path output magnet 101.

[0071] The working principle in this embodiment is as follows: Since the rotating body 11 can rotate up and down relative to the main valve shaft 12, one of the first gravity water filter assembly 2 and the second gravity water filter assembly 3 is located above the main valve shaft 12, and the other is located below the main valve shaft 12. For example, when the first gravity water filter assembly 2 is located above the main valve shaft 12 and the second gravity water filter assembly 3 is located below the main valve shaft 12, the first glass body 21 will be connected to the air passage 13 through the second air inlet 210 and the first air inlet 29. Since the first glass body 21 is located above, the first air outlet 212 and the second air outlet 213 are not on the same side and will not be connected. In addition, the first airflow blocking component 131 blocks the airflow, so the first glass body 21 is not connected to the first suction nozzle assembly 6. The first glass body 21 can only take in air and cannot take out air. The second glass body 31 is exactly the opposite, it can only take out air to the second suction nozzle assembly 8 and cannot take in air. During use, the water in the upper first glass body 21 flows into the lower second glass body 31 due to gravity, creating a negative pressure in the first glass body 21. Smoke can enter the first glass body 21 through the air inlet 510, air passage 13, second air inlet 210, and first air inlet 29. At this time, when the water flows into the second glass body 31, it will squeeze the smoke in the second glass body 31 into the air passage 13 through the third air outlet 312 and fourth air outlet 313, and then flow out through the second suction nozzle assembly 8 for easy suction by the user.

[0072] Similarly, when the two gravity water filter components are rotated so that the first gravity water filter component 2 is below the main valve shaft 12 and the second gravity water filter component 3 is above the main valve shaft 12, the working principle is exactly the opposite, and the smoke will be discharged from the first suction nozzle component 6.

[0073] With the above structure, the smoke can be filtered by gravity water, resulting in better filtration and hygiene. At the same time, the smoke can automatically flow to the first suction nozzle assembly 6 or the second suction nozzle assembly 8 under the pressure of gravity water, making smoke extraction more convenient and effortless, and improving the user experience.

[0074] In addition, in the water flow operation, multi-colored LED lights are installed on the first light panel 214, the second light panel 314, the third light panel 45, the first column light panel 204, the second column light panel 206, and the base light panel 511. These lights can produce multi-colored dazzling lighting effects at multiple locations when airflow and water flow, thus enhancing the user experience.

[0075] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A water-filtered smoke extraction device with dual air outlets, characterized in that, include: Air path valve shaft assembly, first gravity water filter assembly, second gravity water filter assembly, water path conduction assembly, input air path assembly, first suction nozzle suction assembly, and second suction nozzle suction assembly; The air passage valve shaft assembly includes a rotating body and a main valve shaft for conducting smoke. The rotating body is rotatably connected to the main valve shaft, and an air passage is provided inside the main valve shaft. The first suction nozzle assembly and the second suction nozzle assembly are respectively installed at both ends of the main valve shaft and are respectively connected to both ends of the air passage. The input air passage assembly is connected to the air passage of the main valve shaft. The rotating body includes a first connecting end and a second connecting end. The first gravity water filter assembly is connected to the air passage through the first connecting end, and the second gravity water filter assembly is connected to the air passage through the second connecting end. The first gravity water filter assembly and the second gravity water filter assembly are located above and below the main valve shaft, respectively, and the first gravity water filter assembly and the second gravity water filter assembly are connected through a water passage conduction assembly.

2. The water-filtered smoke extraction device with dual air outlets as described in claim 1, characterized in that, The first gravity water filtration assembly includes a first glass body, a first valve stem, a first valve stem shaft, a first sealing cap, a first sealing ring, and a first threaded connecting ring. The first glass body is threadedly connected to a first connecting end via the first threaded connecting ring, forming a first cavity between the first glass body and the first connecting end. The first valve stem, the first valve stem shaft, the first sealing cap, and the first sealing ring are all disposed within the first cavity. A first filtration channel is provided inside the first valve stem. A first air inlet hole is provided on the inner wall of the first connecting end, and a second air inlet hole is provided on the inner wall of the air passage. The air passage is connected to the first connecting end via the second air inlet hole and the first air inlet hole. The filter channel is connected, and the first sealing ring is disposed between the inner wall of the first valve stem and the first air inlet hole; the first valve stem shaft is sleeved on the outside of the first valve stem, and a first through hole is opened on the side wall of the first valve stem shaft, through which the first filter channel is connected to the first cavity; the first connecting end is also provided with a first air outlet hole connected to the first cavity, and a second air outlet hole is opened on the inner wall of the air passage, through which the first cavity is connected to the air passage; a first airflow blocking component is also provided in the air passage, and the first airflow blocking component is disposed between the second air inlet hole and the second air outlet hole; The first gravity water filtration assembly further includes a first lamp plate, a first lamp plate holder, a first sealing adhesive plate, and a first light-transmitting plate. The first lamp plate holder is fixedly installed inside the first connecting end, and the first lamp plate, the first sealing adhesive plate, and the first light-transmitting plate are sequentially arranged inside the first lamp plate holder.

3. A water-filtered smoke extraction device with dual air outlets as described in claim 2, characterized in that, The second gravity water filtration assembly includes a second glass body, a second valve stem, a second valve stem shaft, a second sealing cap, a second sealing ring, and a second threaded connecting ring. The second glass body is threadedly connected to a second connecting end via the second threaded connecting ring, forming a second cavity between the second glass body and the second connecting end. The second valve stem, second valve stem shaft, second sealing cap, and second sealing ring are all disposed within the second cavity. A second filtration channel is provided inside the second valve stem. A third air inlet hole is provided on the inner wall of the first connecting end, and a fourth air inlet hole is provided on the inner wall of the air passage. The air passage connects to the second connecting end via the fourth air inlet hole and the third air inlet hole. The filter channel is connected, and the second sealing ring is disposed between the inner wall of the second valve stem and the third air inlet hole; the second valve stem shaft is sleeved outside the second valve stem, and a second through hole is opened on the side wall of the second valve stem shaft, through which the second filter channel is connected to the second cavity; the second connecting end is also provided with a third air outlet hole connected to the second cavity, and a fourth air outlet hole is opened on the inner wall of the air passage, through which the second cavity is connected to the air passage; a second airflow blocking component is also provided in the air passage, and the second airflow blocking component is disposed between the fourth air inlet hole and the fourth air outlet hole; The second gravity water filtration assembly also includes a second lamp plate, a second lamp plate holder, a second sealing adhesive plate, and a second light-transmitting plate. The second lamp plate holder is fixedly installed inside the second connecting end, and the second lamp plate, the second sealing adhesive plate, and the second light-transmitting plate are sequentially arranged inside the second lamp plate holder.

4. A water-filtered smoke extraction device with dual air outlets as described in claim 3, characterized in that, The main valve shaft is provided with a first air path output component and a second air path output component at both ends. The first suction nozzle component is connected to the main valve shaft through the first air path output component, and the second suction nozzle component is connected to the main valve shaft through the second air path output component.

5. A water-filtered smoke extraction device with dual air outlets as described in claim 4, characterized in that, The first air path output assembly includes a first air path output magnet and a first air path output connector. One end of the first air path output connector is fixed to the main valve shaft by a screw, and the other end of the first air path output connector is magnetically connected to the first suction nozzle assembly through the first air path output magnet. The second air path output assembly includes a second air path output magnet and a second air path output connector. One end of the second air path output connector is fixed to the main valve shaft by a screw, and the other end of the second air path output connector is magnetically connected to the second suction nozzle assembly through the second air path output magnet.

6. A water-filtered smoke extraction device with dual air outlets as described in claim 5, characterized in that, The water conduction assembly includes a transparent bracket, a transparent water pipe, a first silicone frame, a second silicone frame, and a third light panel. The rotating body has an installation groove between the first connecting end and the second connecting end. The transparent water pipe, the first silicone frame, the second silicone frame, and the third light panel are all disposed in the installation groove, and the transparent bracket is located outside the installation groove. One end of the transparent water pipe is connected to the first cavity through the first silicone frame, and the other end of the transparent water pipe is connected to the second cavity through the second silicone frame.

7. A water-filtered smoke extraction device with dual air outlets as described in claim 6, characterized in that, The device also includes a water-based lighting effect control module, which includes a battery cell, a control board, and buttons. The rotating body also has a receiving groove, and a main body bottom cover is installed on the rotating body. The battery cell and the control board are placed in the receiving groove and sealed by the main body bottom cover. The battery cell is electrically connected to the control board, and the buttons are connected to the control board and exposed outside the rotating body. The first lamp board, the second lamp board, and the third lamp board are all connected to the control board.

8. A water-filtered smoke extraction device with dual air outlets as described in claim 1, characterized in that, The input air path assembly includes a support base, a column, a column fixing component, an input air path inlet component, and an input air path inlet seal. The column is fixed to the main valve shaft by the column fixing component. A through air path inlet is provided on the side wall of the column. The input air path inlet component and the input air path inlet seal are respectively connected to the two ends of the air path inlet. A fifth air inlet hole is provided on the main valve shaft. An air guide channel is provided inside the column. One end of the air guide channel is connected to the air path channel through the fifth air inlet hole, and the other end is connected to the air path inlet. An input air path is provided inside the input air path inlet component. An air inlet is provided on the side wall of the input air path inlet component. One end of the input air path is connected to the air inlet, and the other end is connected to the air path inlet.

9. A water-filtered smoke extraction device with dual air outlets as described in claim 8, characterized in that, The column is also equipped with a column lighting effect assembly, which includes a column main board, a column control panel, a cylindrical battery, a first column light panel, a first column light-transmitting plate, a second column light panel, and a second column light-transmitting plate. The cylindrical battery and the column main board are installed inside the column. The column control panel is correspondingly located on the outside of the column main board and fixedly installed on the outer wall of the column. The first column light panel and the second column light panel are respectively installed on two opposite outer walls of the column. The first column light-transmitting plate is located on the outside of the first column light panel, and the second column light-transmitting plate is located on the outside of the second column light panel. The cylindrical battery, the first column light panel, and the second column light panel are all electrically connected to the column main board. The support base is also equipped with a base light plate, which is electrically connected to the main column. The support base light plate is also equipped with a base light-transmitting plate, which is fixed to the outer wall of the support base.

10. A water-filtered smoke extraction device with dual air outlets as described in claim 5, characterized in that, The first suction nozzle assembly includes a first glass tube, a first metal tube, a first magnetic ring, and a first soft rubber tube. The first glass tube is installed at one end of the first metal tube, and the other end of the first metal tube is connected to the first soft rubber tube through the first magnetic ring. The first soft rubber tube is connected to the first air path output connector through the first air path output magnet. The second suction nozzle assembly includes a second glass tube, a second metal tube, a second magnetic ring, and a second soft rubber tube. The second glass tube is installed at one end of the second metal tube, and the other end of the second metal tube is connected to the second soft rubber tube through the second magnetic ring. The second soft rubber tube is connected to the second air path output connector through the second air path output magnet.