Air intensifier
Through the wirelessly controlled telescopic drive device and the rotating sleeve lifting sleeve structure, the problems of inconvenient manual operation and easy damage of the traditional fragrance box are solved, automatic replacement and the use of multi-form fragrance are realized, and the convenience and durability of use are improved.
Patent Information
- Application Number
- CN202511139941.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-14
- Publication Date
- 2025-10-17
AI Technical Summary
Traditional fragrance boxes need to be installed and removed manually, only support solid or liquid forms, and the press-to-pop-up structure is easily damaged, making it inconvenient to use and the structure undurable.
A wirelessly controlled telescopic drive device is used, combined with a rotating sleeve and a lifting sleeve to achieve automatic extension and retraction of the liquid storage box, support the use of solid and liquid fragrances, and achieve air enhancement through the air guide structure.
It realizes contactless automatic replacement of the liquid storage box, improves the convenience of use and structural durability, supports multiple fragrance forms, and simplifies the cleaning process.
Smart Images

Figure CN120799601A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of air purification equipment, in particular to an air enhancer. BACKGROUND
[0002] At present, the air enhancer on the market is mainly based on fragrance boxes. The traditional fragrance box needs to be installed manually by hand. Then, it is also manually operated to take out, which is relatively troublesome to use. In addition, most of the traditional fragrance boxes can only support one of solid or liquid forms, so the generalization of the form is poor. Also, when replacing the fragrance box or cleaning the fragrance box, the bottom box at the bottom of the fragrance box must be disassembled first, and then the cleaning can be performed, which increases the trouble of the cleaning process. Now there is a kind of fragrance box which adopts the way of pressing and popping out the fragrance pop by encapsulation structure, which aims to solve the problem of poor generalization of solid or liquid forms and the problem of more convenient taking out of the fragrance pop. However, this pressing and popping out way is easy to be damaged after repeated use for a period of time, causing the defect of not durable structure. SUMMARY
[0003] In view of the above problems, the purpose of the present application is to provide an air enhancer which is convenient to use and has a durable structure.
[0004] To achieve the above-mentioned purpose, the present application provides an air enhancer, which comprises an inner front box provided in an installation carrier, a baffle provided on the end of the inner front box and clamped on the surface of the installation carrier, a lifting sleeve provided in the inner front box, a rotating sleeve provided between the inner front box and the lifting sleeve, a gland provided on the end of the inner front box and limiting the rotating sleeve in the inner front box, an inner rear box provided on the gland and sealing the inner front box, an extension and retraction driving device provided on the gland and driving the rotating sleeve to push outward or pull inward to lift the lifting sleeve, a capsule assembly provided in the lifting sleeve and extending into the lifting sleeve from outside through the baffle, and a wind guide structure provided in the lifting sleeve and promoting the circulation of internal and external air.
[0005] In some embodiments, the baffle is provided with a first air hole communicating with the lifting sleeve.
[0006] In some embodiments, the telescopic drive device comprises a ring-shaped tooth on the ring-shaped wall at one end of the rotating sleeve, a pinion gear meshing with the ring-shaped tooth, a motor connected with the pinion gear at the position corresponding to the pinion gear on the gland, a first PCBA board connected with the motor in the space formed between the gland and the inner rear box, a wireless switch wirelessly connected with the first PCBA board on the outside of the combination of the inner front box and the inner rear box, a first inclined groove and a second inclined groove respectively extending obliquely upwards on the two sides of the rotating sleeve, and a first sliding block and a second sliding block respectively sliding upwards or downwards along the first inclined groove and the second inclined groove on the two sides of the lifting sleeve corresponding to the positions of the first inclined groove and the second inclined groove.
[0007] In some embodiments, the wireless switch is an electrically controlled switch wirelessly connected.
[0008] In some embodiments, the first inclined groove and the second inclined groove both extend obliquely upwards in a clockwise direction, and the bending angles are both 180 degrees.
[0009] In some embodiments, the capsule assembly comprises a liquid storage box body accommodated in the lifting sleeve, a fixing plate provided in the lifting sleeve on the outside of the liquid storage box body, a second PCBA board and a first magnetic block provided on the fixing plate, a contact sheet provided on the second PCBA board, an encrypted identification card in contact connection with the contact sheet provided on the liquid storage box body corresponding to the position of the contact sheet, a second magnetic block magnetically attracted to the first magnetic block provided on the liquid storage box body corresponding to the position of the first magnetic block, and a capsule cover provided on the liquid storage box body. The first PCBA board is provided with a contact pin in contact connection with the second PCBA board through the fixing plate. The air guide structure comprises an accommodation box provided on the inner wall of the lifting sleeve on one side of the liquid storage box body, a fan connected with the second PCBA board provided in the accommodation box, an air inlet hole communicating between the outside and the inside of the lifting sleeve provided at the center position of the capsule cover, a first air outlet hole communicating between the inside of the lifting sleeve and the inside of the accommodation box provided on the side surface of the accommodation box, a second air outlet hole provided on the capsule cover corresponding to the position of the accommodation box, and a third air outlet hole communicating between the second air outlet hole and the inside of the accommodation box provided on the accommodation box corresponding to the position of the second air outlet hole. The second air outlet hole communicates with the outside.
[0010] The liquid storage box body comprises a corresponding shell of the lifting sleeve, a cylindrical cavity provided in the shell, and a liquid storage cavity provided on both sides of the cylindrical cavity; the capsule cover cooperates with the shell to seal the cylindrical cavity and the liquid storage cavity.
[0011] The liquid storage cavity is mainly composed of the space enclosed by the bottom surface, the side surface of the shell, the capsule cover, and the side partition plate provided on the side surface of the liquid storage cavity.
[0012] The cylindrical cavity is mainly composed of a circular tube arranged on the bottom surface of the shell.
[0013] One end of the circular tube is communicated with the first air outlet, and the other end is provided with a notch communicated with the inside of the shell. The inside of the shell is communicated with the air inlet.
[0014] The two sides of the circular tube are respectively provided with side through holes communicated with the liquid storage cavities.
[0015] The length of the liquid-solid carrier is less than or equal to the length of the circular tube.
[0016] After the liquid-solid carrier is loaded into the circular tube, the side through holes on the two sides are blocked to prevent liquid leakage from the liquid storage cavities on the two sides.
[0017] A baffle plate is arranged between the side baffles on the two sides of the circular tube and cooperates with the capsule cover to guide the air entering the inside of the shell from the air inlet.
[0018] In some embodiments, the capsule cover is clamped on the baffle.
[0019] In some embodiments, a mask is arranged on the baffle. A guide hole for the capsule cover to pass through is arranged on the mask corresponding to the capsule cover.
[0020] In some embodiments, the installation carrier is a wall or a ceiling.
[0021] In some embodiments, the installation carrier is provided with a bottom box accommodating the combination of the front inner box and the rear inner box. The bottom box is bolted to the baffle.
[0022] The beneficial effects of the present application are convenient to use and durable in structure. Due to the improved remote wireless control switch mode, the liquid storage box body can be automatically extended outward without contact, and then the liquid storage box body is removed, avoiding direct manual contact. Moreover, the remote wireless control switch can support mobile phone App remote control or other intelligent system linkage. In addition, the liquid storage box body in the capsule assembly can use solid and liquid fragrance, and even extend to various media such as fragrance sheets and gels, with stronger compatibility. Furthermore, the automatic ejection structure of the liquid storage box body is easier to replace and clean, thus achieving the purpose of convenient use. Moreover, the remote wireless control switch avoids the pressing structure in the prior art, improving the durability of the capsule assembly. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 The structure of the present application is shown in the figure;
[0024] Figure 2 The structure of the present application is shown in the figure;
[0025] Figure 3Schematic diagram of exploded structure of the present application;
[0026] Figure 4 Schematic diagram of partially exploded structure of the present application;
[0027] Figure 5 Schematic diagram of exploded structure of the capsule assembly;
[0028] Figure 6 Schematic diagram of cross-sectional structure of the present application;
[0029] Figure 7 Schematic diagram of structure of the rotating sleeve and the lifting sleeve in the present application;
[0030] Figure 8 Schematic diagram of structure of the rotating sleeve in the present application; Figure 7 Schematic diagram of structure of another view;
[0031] Figure 9 Schematic diagram of structure of the rotating sleeve in the present application;
[0032] Figure 10 Schematic diagram of structure of another view; Figure 9 Schematic diagram of structure of another view;
[0033] Figure 11 Schematic diagram of structure of the capsule assembly and the lifting sleeve in the present application;
[0034] Figure 12 Schematic diagram of structure of another view; Figure 11 Schematic diagram of structure of another view;
[0035] Figure 13 Schematic diagram of top view of structure of the lifting sleeve;
[0036] Figure 14 Schematic diagram of structure of another view; Figure 13 Schematic diagram of structure of another view;
[0037] Figure 15 Schematic diagram of structure of the liquid storage box and the fan;
[0038] Figure 16 Schematic diagram of structure of another view; Figure 15 Schematic diagram of structure of another view;
[0039] Figure 17 Schematic diagram of structure of the second PCBA board;
[0040] Figure 18 Schematic diagram of structure of the lifting sleeve;
[0041] Figure 19 Schematic diagram of exploded structure of the liquid storage box;
[0042] Figure 20 Schematic diagram of structure of the outer shell. DETAILED DESCRIPTION
[0043] The invention will be further described in detail below with reference to the accompanying drawings.
[0044] like Figures 1-17 As shown, an air intensifier includes an inner front box 01 disposed within a mounting carrier, a baffle 02 disposed at the end of the inner front box 01 and clamped on the surface of the mounting carrier, a lifting sleeve 03 disposed within the inner front box 01, a rotating sleeve 04 disposed between the inner front box 01 and the lifting sleeve 03, a pressure cap 05 disposed at the end of the inner front box 01 to restrict the rotating sleeve 04 within the inner front box 01, an inner rear box 06 disposed on the pressure cap 05 to seal the inner front box 01, a telescopic drive device 07 disposed on the pressure cap 05 to drive the rotating sleeve to push outward or pull inward to extend and retract the lifting sleeve, a capsule assembly 08 disposed within the lifting sleeve 03, extending from the outside through the baffle 02 and into the lifting sleeve 03, and an air guide structure 09 disposed within the lifting sleeve 03 to promote internal and external air circulation. The baffle 02 may be a plate integrally connected to the inner front box 01 or a frame integrally connected to the inner front box 01. When the baffle 02 is a plate integrally connected to the inner front box 01, the baffle 02 is provided with a first vent hole communicating with the lifting sleeve 03. The above-mentioned mounting carrier is a wall or a ceiling or a downlight hole in the ceiling.
[0045] The telescopic drive device 07 comprises an annular toothing 71 on the ring wall at one end of the rotating sleeve 04, a pinion 72 meshing with the annular toothing 71, a motor 73 connected to the pinion 72 on the pressure cap 05 corresponding to the position of the pinion 72, a first PCBA board 74 connected to the motor 73 located in the space between the pressure cap 05 and the inner rear box 06, a wireless switch wirelessly connected to the first PCBA board 74 located on the exterior of the combined inner front and rear boxes 01 and 06, and a first and second inclined slots 75 and 76 extending diagonally upward on either side of the rotating sleeve 04, and a first and second sliders 77 and 78 sliding upward or downward along the first and second inclined slots 75 and 76 on either side of the lifting sleeve 03 corresponding to the first and second inclined slots 75 and 76, respectively. The wireless switch is a wireless, electrically controlled switch. The first and second inclined slots 75 and 76 both extend diagonally upward in a clockwise direction, each bending at an angle of 180 degrees. The aforementioned electronically controlled switch can be controlled electronically by a mobile phone. The capsule cover 88 is snapped onto the baffle 02. A mask 10 is mounted on the baffle 02. The mask 10 corresponding to the capsule cover 88 is provided with a guide opening 11 for inserting the capsule cover 88. This guide opening 11 is reserved for the capsule cover 88, and its shape corresponds to that of the capsule cover 88. Once installed, the surface of the mask 10 is flush with the surface of the capsule cover 88.
[0046] The working principle of the telescopic driving device 07 is as follows: after the remote wireless electric control switch is opened, the first PCBA board 74 is connected to the signal, and the command is sent to the motor 73, and then the motor 73 starts to work to drive the pinion 72 to rotate. At this time, the rotating sleeve 04 rotates with the ring-shaped tooth 71 meshing with the pinion 72. When the rotating sleeve 04 rotates clockwise, the first slider 77 and the second slider 78 on both sides of the lifting sleeve 03 slide upward along the first inclined groove 75 and the second inclined groove 76 respectively, and the lifting sleeve 03 extends out of the rotating sleeve 04 synchronously. When the rotating sleeve 04 rotates counterclockwise, the first slider 77 and the second slider 78 on both sides of the lifting sleeve 03 slide downward along the first inclined groove 75 and the second inclined groove 76 respectively, and the lifting sleeve 03 retracts into the rotating sleeve 04 synchronously.
[0047] The capsule assembly 08 comprises a liquid storage box 81 accommodated in the lifting sleeve 03, a fixed plate 82 provided in the lifting sleeve 03 outside the liquid storage box 81, a second PCBA board 83 and a first magnetic block 84 provided on the fixed plate 82, a contact sheet 85 provided on the second PCBA board 83, an encrypted identification card 86 provided on the liquid storage box 81 corresponding to the position of the contact sheet 85 and in contact with the contact sheet 85, a second magnetic block 87 provided on the liquid storage box 81 corresponding to the position of the first magnetic block 84 and magnetically attracted to the first magnetic block 84, and a capsule cover 88 provided on the liquid storage box 81. The first PCBA board 74 is provided with a contact pin 89 which passes through the fixed plate 82 and is in contact with the second PCBA board 83. The air guide structure 09 comprises an accommodation box 91 provided on the inner wall of the lifting sleeve 03 on one side of the liquid storage box 81, a fan 92 provided in the accommodation box 91 and connected with the second PCBA board 83, an air inlet hole 93 provided in the center of the capsule cover 88 and communicating between the outside and the inside of the lifting sleeve 03, a first air outlet hole 94 provided on the side of the accommodation box 91 and communicating between the inside of the lifting sleeve 03 and the inside of the accommodation box 91, a second air outlet hole 95 provided on the capsule cover 88 corresponding to the position of the accommodation box 91, and a third air outlet hole 96 provided on the accommodation box 91 corresponding to the position of the second air outlet hole 95 and communicating between the second air outlet hole 95 and the inside of the accommodation box 91. The second air outlet hole 95 communicates with the outside.
[0048] The working principle of the capsule assembly 08 is as follows: the second PCBA board 83 and the first magnetic block 84 are pre-installed on the fixed plate 82, wherein the second PCBA board 83 is in contact with the first PCBA board 74 through the contact pin 89 on the first PCBA board 74. The contact sheet 85 is provided on the second PCBA board 83. In addition, the second magnetic block 87 magnetically attracted to the first magnetic block 84 and the encrypted identification card 86 in contact with the contact sheet 85 are also provided at the bottom end of the liquid storage box 81. The purpose is to identify the information of the liquid storage box 81 after the liquid storage box 81 is fixed in the lifting sleeve 03.
[0049] like Figures 18-20 As shown, the liquid storage box 81 includes a housing 811 corresponding to the lifting sleeve 03, a cylindrical cavity 812 within the housing 811, a liquid-absorbing solid carrier within the cylindrical cavity 812, and liquid storage cavities 814 on either side of the cylindrical cavity 812. The capsule cover 88 cooperates with the housing 811 to seal the cylindrical cavity 812 and the liquid storage cavities 814. The liquid-absorbing solid carrier can be a circular cylindrical surface-absorbing liquid material or a breathable material of any shape. The liquid storage cavities 814 are primarily composed of the space enclosed by the bottom 815 and side surfaces 816 of the housing 811, the capsule cover 88, and side partitions 817 on the side surfaces 816 of the liquid storage cavities 814. The tops of the two liquid storage cavities 814 have small holes 800 for injecting liquid, which are then sealed after injection. The cylindrical cavity 812 is mainly composed of a circular tube 818 provided on the bottom surface 815 of the outer shell 811. One end of the circular tube 818 is connected to the first air outlet 94, and the other end is provided with a notch 819 that communicates with the interior of the outer shell 811. The interior of the outer shell 811 is connected to the air inlet 93. Side passages 8110 are provided on both sides of the circular tube 818, which are connected to the liquid storage cavity 814. The length of the adsorbed liquid solid carrier 813 is less than or equal to the length of the circular tube 818. After the adsorbed liquid solid carrier 813 is loaded into the circular tube 818, the side passages 8110 on both sides are blocked to prevent leakage of the liquid storage cavity 814 on both sides. Between the side partitions 817 on both sides of the circular tube 818, there are provided wind guide plates 8111 that cooperate with the capsule cover 88 to guide the wind entering the interior of the outer shell 811 from the air inlet 93.
[0050] The liquid storage box 81 can use solid and liquid fragrances according to the working principle: when the annular cylindrical adsorbent liquid solid carrier 813 is inserted into the circular tube 818, the side passages 8110 on both sides are blocked, and then liquid is poured into the liquid storage cavities 814 on both sides. During use, the liquid will penetrate through the gaps in the side passages 8110 and into the middle adsorbent liquid solid carrier 813. When the penetration reaches a certain value, the liquid inside the liquid storage cavities 814 on both sides stops penetrating due to the negative pressure. When the adsorbent liquid solid carrier 813 evaporates and dries, the air penetrates through the middle of the adsorbent liquid solid carrier 813, causing the negative pressure in the liquid storage cavities 814 on both sides to return to normal air pressure. At this time, the liquid on both sides continues to penetrate into the adsorbent liquid solid carrier 813. Under the action of the fan, the wind entering the interior of the shell 811 from the air inlet 93 enters from the notch 819 under the guidance of the wind guide plate 8111, passes through the middle of the adsorbed liquid solid carrier 813, passes through the first air outlet 94 and the third air outlet, and is finally discharged to the outside from the second air outlet.
[0051] When the cartridge is used, the liquid storage box 81 containing the adsorbed liquid solid carrier is inserted into the lifting sleeve 03 from the guide hole 11 of the mask 10 together with the capsule cover 88, and then the capsule cover 88 is clamped on the baffle 02, and the liquid storage box 81 is in the state of being inside the lifting sleeve 03. The first magnetic block 84 and the second magnetic block 87 are magnetically attracted to each other, so that the liquid storage box 81 is fixed in the lifting sleeve 03, and the information of the liquid storage box 81 is recognized by the second PCBA board 83 and fed back to the first PCBA board 74, and a remote push signal is sent to the electric control switch to determine whether to start the motor 73.
[0052] If the motor 73 is not started, the fan 92 starts to work, and the air entering the inside of the lifting sleeve 03 from the air inlet hole 93 is discharged to the outside together with the fragrance emitted by the adsorbed liquid solid carrier through the first air outlet hole 94 and the third air outlet hole 96 on the containing box 91, and the second air outlet hole 95, so as to achieve the purpose of air enhancement.
[0053] When the remote wireless electric control switch is opened, the first PCBA board 74 receives the signal and sends a command to the motor 73, and the motor 73 starts to drive the pinion 72 to rotate. At this time, the rotating sleeve 04 rotates with the ring-shaped teeth 71 engaged with the pinion 72. When the rotating sleeve 04 rotates clockwise, the first sliding block 77 and the second sliding block 78 on both sides of the lifting sleeve 03 slide upward along the first inclined groove 75 and the second inclined groove 76, respectively, and the lifting sleeve 03 is simultaneously extended out of the rotating sleeve 04. Only the liquid storage box 81 together with the capsule cover 88 needs to be taken out. After replacing the new liquid storage box 81, the information of the liquid storage box 81 is recognized by the second PCBA board 83, and then fed back to the first PCBA board 74, and a remote push information is sent to the electric control switch. When the motor 73 starts to rotate the sleeve counterclockwise, the first sliding block 77 and the second sliding block 78 on both sides of the lifting sleeve 03 slide downward along the first inclined groove 75 and the second inclined groove 76, respectively, and the lifting sleeve 03 is simultaneously retracted from the rotating sleeve 04. In this way, the process of replacing the liquid storage box 81 as a whole is completed.
[0054] The mounting carrier is provided with a bottom box 12 combined with the inner front box 01 and the inner rear box 06 as a whole; and the bottom box 12 is bolted with the baffle 02. The purpose is to improve the overall mounting efficiency and structural durability of the inner front box 01 and the inner rear box 06. The bottom box 12 is mounted on the mounting carrier in advance, and then the baffle 02 is bolted with the bottom box 12.
[0055] The above only describes some embodiments of the present application. Those skilled in the art can make several modifications and improvements without departing from the inventive concept, which are all within the scope of protection of the application.
Claims
1. An air enhancer, characterized in that: The invention comprises an inner front box provided in the mounting carrier, a baffle provided on the end of the inner front box and clamped on the surface of the mounting carrier, a lifting sleeve provided inside the inner front box, a rotating sleeve provided between the inner front box and the lifting sleeve, a pressure cover provided on the end of the inner front box for limiting the rotating sleeve inside the inner front box, an inner rear box provided on the pressure cover for sealing the inner front box, a telescopic driving device provided on the pressure cover for driving the rotating sleeve to push outward or pull inward the lifting sleeve to extend and retract, a capsule assembly provided in the lifting sleeve that extends from the outside through the baffle and into the lifting sleeve, and an air guide structure provided in the lifting sleeve for promoting air circulation inside and outside.
2. An air enhancer according to claim 1, characterized in that: The baffle is provided with a first vent hole communicated with the lifting sleeve.
3. An air enhancer according to claim 1 or 2, characterized in that: The telescopic drive device includes an annular tooth pattern provided on the ring mouth wall at one end of the rotating sleeve, a small gear meshing with the annular tooth pattern provided on the annular tooth pattern, a motor connected to the small gear provided on the pressure cover corresponding to the position of the small gear, a first PCBA board connected to the motor provided in the space formed between the pressure cover and the inner rear box, a wireless switch wirelessly connected to the first PCBA board provided on the overall outside of the combination of the inner front box and the inner rear box, a first oblique groove and a second oblique groove extending obliquely upward provided on both sides of the rotating sleeve, and a first slider and a second slider sliding upward or downward along the first oblique groove and the second oblique groove provided on both sides of the lifting sleeve corresponding to the positions of the first oblique groove and the second oblique groove.
4. An air enhancer according to claim 3, characterized in that: The wireless switch is an electrically controlled switch with a wireless connection.
5. The air intensifier according to claim 3, characterized in that: The first oblique groove and the second oblique groove both extend clockwise and obliquely upward, and the bending angle is 180 degrees.
6. An air enhancer according to claim 1 or 2, characterized in that: The capsule assembly includes a liquid storage box body accommodated in a lifting sleeve, a fixing plate provided in the lifting sleeve outside the liquid storage box body, a second PCBA board and a first magnetic block provided on the fixing plate, a contact piece provided on the second PCBA board, an encryption identification card provided on the liquid storage box body at a position corresponding to the contact piece and in contact with the contact piece, a second magnetic block provided on the liquid storage box body at a position corresponding to the first magnetic block and magnetically attracted to the first magnetic block, and a capsule cover provided on the liquid storage box body; The first PCBA board is provided with contact pins that pass through the fixing plate and are in contact with the second PCBA board; The air guide structure includes a receiving box provided on the inner wall of the lifting sleeve on one side of the liquid storage box body, a fan connected to the second PCBA board provided in the receiving box, an air inlet hole connected between the outside and the inside of the lifting sleeve provided at the center position of the capsule cover, a first air outlet hole connected between the inside of the lifting sleeve and the inside of the receiving box provided on the side of the receiving box, a second air outlet hole provided on the capsule cover corresponding to the position of the receiving box, and a third air outlet hole connected between the second air outlet hole and the inside of the receiving box provided on the receiving box corresponding to the position of the second air outlet hole; The second air outlet is connected to the outside world; The liquid storage box body includes a shell corresponding to the lifting sleeve, a cylindrical cavity provided in the shell, a solid carrier for absorbing liquid provided inside the cylindrical cavity, and liquid storage cavities provided on both sides of the cylindrical cavity; the capsule cover and the shell cooperate with each other to seal the cylindrical cavity and the liquid storage cavity; The liquid storage cavity is mainly composed of the bottom surface, side surfaces and capsule cover of the shell, and the side partitions provided on the side surfaces of the liquid storage cavity. The cylindrical cavity is mainly composed of a circular tube provided on the bottom surface of the shell; One end of the circular tube is connected to the first air outlet, and the other end is provided with a notch connected to the interior of the shell; the interior of the shell is connected to the air inlet; Side through holes for connecting to the liquid storage cavity are respectively provided on both sides of the circular tube; The length of the liquid adsorption solid carrier is less than or equal to the length of the circular tube; After the liquid adsorption solid carrier is loaded into the circular tube, the side through holes on both sides are blocked to prevent leakage of the liquid storage cavities on both sides; An air guide plate is provided between the side partitions on both sides of the circular tube and cooperates with the capsule surface cover to guide the wind entering the interior of the shell from the air inlet hole.
7. An air enhancer according to claim 6, characterized in that: The capsule surface cover is clamped on the baffle.
8. An air intensifier according to claim 7, characterized in that: The baffle is provided with a mask; and the mask corresponding to the capsule cover is provided with a guide port for accommodating the capsule cover to penetrate.
9. The air intensifier according to claim 1, characterized in that: The installation carrier is a wall or a ceiling.
10. The air intensifier according to claim 7, characterized in that: The installation carrier is provided with a bottom box for accommodating the inner front box and the inner rear box as a whole; the bottom box is connected with the baffle bolts.