Emission device of air freshener

By combining a rotating dispersion mechanism and a reflective diffusion mechanism, the problem of slow evaporation of air fresheners is solved, achieving rapid evaporation and efficient diffusion, thus improving the air freshening effect.

CN223746740UActive Publication Date: 2026-01-02LONGGANG CHEMBO IND CO LTD
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Patent Information

Application Number
CN202520231934.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-13
Publication Date
2026-01-02
Estimated Expiration
2035-02-13

AI Technical Summary

Technical Problem

Existing air fresheners evaporate slowly, making it difficult for the freshener molecules to diffuse sufficiently over a large space in a short time, thus failing to improve the overall air quality of the space in a timely and efficient manner.

Method used

It employs a rotating evaporation mechanism and a reflective diffusion mechanism. By combining the centrifugal force generated by rotation with the axial flow fan, along with the wind-gathering shroud and airflow reflection components, it improves the evaporation speed and diffusion range.

Benefits of technology

It achieves rapid evaporation and efficient diffusion of the air freshener, enabling it to spread more evenly and over longer distances into the surrounding space, thus improving the air freshening effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of fresheners, and particularly relates to an air freshener emitting device. Comprising a freshener shell, the top of the freshener shell is provided with a detachably-connected cover plate, and a plurality of air holes are formed in the cover plate; the utility model discloses a cyclone quick-dispersing mechanism. Comprising a rotating shell used for containing a freshener shell inside, a first motor assembly used for driving the rotating shell to rotate, a wind scattering shell detachably connected to the upper portion of the rotating shell, an axial flow fan arranged in the wind scattering shell and a second motor assembly used for driving the axial flow fan to exhaust gas volatilized by a freshener to the outside. And the reflection diffusion mechanism comprises a wind gathering cover arranged at the top of the wind diffusion shell and an airflow reflection assembly used for expanding the diffusion range of the volatile gas. According to the air freshener, the centrifugal force generated by rotation of the rotary quick-dispersing mechanism is matched with the axial flow fan, and then volatile gas is discharged to the outside through the reflection and diffusion mechanism, so that the volatilization speed and the diffusion range of the air freshener are improved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of freshener technology, especially disclose a air freshener emitting device. BACKGROUND

[0002] In modern life, air freshener plays a very important role, is widely used in family, office, commercial space and various vehicles. Its core use is to effectively purify the air, remove the odor in the environment, such as smoke, pet odor, cooking oil smoke, etc., create a fresh and pleasant air environment. At the same time, different air freshener of fragrance type can also add unique atmosphere to space, such as lavender fragrance type can help sleep and relax, lemon fragrance type can refresh and sober up, improve people's comfort and pleasure in the corresponding environment. At present, many air freshener products on the market still mainly rely on natural wind to realize volatilization. Taking the common solid air freshener as an example, they are often placed in the corner or plane, and only rely on the natural flow of surrounding air to emit fragrance. This natural volatilization method has obvious disadvantages, and the volatilization speed is very slow, which is difficult to make the freshener molecules fully diffuse to a larger space range in a short time. In a slightly larger living room or office, after a long time, only the area near the air freshener can smell a little, and the place far away from the placement point can hardly feel the effect of the air freshener. This leads to its inability to improve the air quality of the overall space in time and efficiently, and it is difficult to meet people's demand for rapid and comprehensive air purification. CONTENT OF THE UTILITY MODEL

[0003] The rotating speed scattering mechanism of the utility model generates centrifugal force by rotation, cooperates with the axial flow fan, and then the reflection diffusion mechanism discharges the volatilized gas to the outside, so that the volatilization speed and diffusion range of the air freshener are improved.

[0004] The purpose of the utility model is achieved by an air freshener emitting device, which comprises:

[0005] The freshener shell body has a detachable cover plate on the top, and a plurality of air holes are formed in the cover plate.

[0006] The cyclone speed scattering mechanism comprises a rotating shell body for accommodating the freshener shell body inside, a first motor assembly for driving the rotating shell body to rotate, a wind scattering shell body detachably connected above the rotating shell body, an axial flow fan arranged in the wind scattering shell body, and a second motor assembly for driving the axial flow fan to discharge the volatilized gas of the freshener to the outside.

[0007] The reflection diffusion mechanism comprises a wind collecting cover arranged on the top of the wind scattering shell body and an air flow reflection assembly for expanding the diffusion range of the volatilized gas.

[0008] The utility model further sets up, be equipped with rotating assembly between the freshener casing and rotating casing, the rotating assembly includes:

[0009] Annular boss, be located in the inner bottom surface of rotating casing;

[0010] If several rollers are evenly arranged on the inner wall of annular boss, the outer surface of freshener casing is equipped with the annular recess that matches with roller.

[0011] The utility model further sets up, the first motor assembly includes:

[0012] First body, be located in rotating casing below along the axial direction, the output shaft of first body is connected with freshener casing bottom part;

[0013] Motor support chamber, cover first body outside, the top of motor support chamber is connected with rotating casing bottom.

[0014] The utility model further sets up, the inner bottom surface of motor support chamber is equipped with counterweight disc, and the bottom of motor support chamber is equipped with antiskid pad.

[0015] The utility model further sets up, the second motor assembly includes:

[0016] Second body, be located in the wind dispersion casing inside longitudinally, the output shaft of second body is connected with axial flow fan;

[0017] Motor base, be located in second motor bottom part;

[0018] Multiple connecting rods are connected between the periphery of motor base and the inner wall of wind dispersion casing.

[0019] The utility model further sets up, the wind collecting cover has the connecting port that is connected with wind dispersion casing top and the air outlet for discharging volatile gas, and the wind collecting cover presents the horn shape structure of little big.

[0020] The utility model further sets up, be equipped with multiple along the inclined arrangement of the turbulence fin on the inner wall of wind collecting cover.

[0021] The utility model further sets up, the airflow reflection assembly includes:

[0022] Reflection plate main part, present umbrella shape structure and be located in the top of wind collecting cover;

[0023] Multiple support columns are evenly distributed between the bottom of reflection plate main part and the top of wind collecting cover.

[0024] Through adopting above-mentioned technical scheme, the utility model can obtain the beneficial effect is:

[0025] 1. The first motor assembly of the cyclone speed dispersion mechanism drives the rotation of the rotating shell, so that the freshener shell rotates, and the air vents on the top cover plate of the freshener shell utilize centrifugal force to accelerate the volatilization of the freshener in the freshener shell; at the same time, the second motor assembly drives the axial flow fan to rotate, and the volatilized gas is discharged to the outside. The cooperation of rotation and fan blowing drives the rapid volatilization and efficient discharge of the freshener gas, and improves the volatilization speed and diffusion range of the freshener.

[0026] 2. The rotating assembly arranged between the freshener shell and the rotating shell comprises an annular boss and rollers uniformly arranged on the inner wall of the annular boss, and the outer surface of the freshener shell is provided with an annular groove matched with the rollers. Such a structure converts the rotation friction of the freshener shell from sliding friction to rolling friction, reduces the friction resistance, and ensures the stability of the freshener shell in the rotation process through the cooperation of the rollers and the annular groove, so that the freshener shell can rotate smoothly. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a schematic diagram of the three-dimensional structure of the utility model;

[0028] Figure 2 is a schematic diagram of the three-dimensional sectional structure of the utility model;

[0029] Figure 3 is a schematic diagram of the A part of the utility model Figure 2 enlarged structure. The reference signs in the figure are: 1, freshener shell; 10, cover plate; 11, air vent; 2, cyclone speed dispersion mechanism; 20, rotating shell; 21, first motor assembly; 210, first machine body; 211, motor support chamber; 22, wind dispersion shell; 23, axial flow fan; 24, second motor assembly; 240, second machine body; 241, motor seat; 242, connecting rod; 3, reflection diffusion mechanism; 30, wind gathering cover; 300, connecting port; 301, air outlet; 31, air flow reflection assembly; 310, reflection plate main body; 311, support column; 4, rotating assembly; 40, annular boss; 41, roller; 42, annular groove; 5, counterweight disc; 6, non-slip pad; 7, turbulence fin. DETAILED DESCRIPTION

[0030] The utility model will be further described in combination with the drawings and specific embodiments, and the drawings are referred to Figures 1-3:

[0031] Embodiment 1

[0032] The embodiment provides a device for emitting air freshener, which comprises:

[0033] The freshener housing 1 has a detachably connected cover plate 10 on the top, and a plurality of air holes 11 are formed in the cover plate 10.

[0034] The cyclone rapid emission mechanism 2 comprises a rotating housing 20 for accommodating the freshener housing 1, a first motor assembly 21 for driving the rotating housing 20 to rotate, a wind emission housing 22 detachably connected above the rotating housing 20, an axial flow fan 23 arranged in the wind emission housing 22, and a second motor assembly 24 for driving the axial flow fan 23 to emit the volatile gas of the freshener to the outside.

[0035] The reflection diffusion mechanism 3 comprises a wind collecting cover 30 arranged on the top of the wind emission housing 22 and an air flow reflection assembly 31 for expanding the diffusion range of the volatile gas.

[0036] The freshener housing 1 is used for accommodating air freshener and is a storage container of the air freshener. The freshener housing 1 can be generally cylindrical, cuboid or other suitable shapes.

[0037] The cover plate 10 seals the freshener housing 1 and forms the air holes 11, so that the volatile gas of the freshener can be emitted. The cover plate 10 is a flat or slightly arc-shaped plate structure, which matches the shape of the top of the freshener housing 1 and ensures close fitting. The cover plate 10 can be connected to the top of the freshener housing 1 by detachable connection modes such as buckles, threads or hinges.

[0038] The air holes 11 provide a channel for the volatile gas of the freshener, so that the gas can be emitted from the inside of the freshener housing 1 to the outside. The air holes 11 are a plurality of small holes integrally formed with the cover plate 10, which are generally circular and distributed on the cover plate 10, so that the gas can be evenly emitted from the inside of the freshener housing 1 to the outside.

[0039] The cyclone rapid emission mechanism 2 promotes the volatilization and diffusion of the freshener through rotation and the action of the fan.

[0040] The rotating housing 20 is used for accommodating the freshener housing 1 and rotating under the driving of the motor, and utilizes centrifugal force to promote the volatilization of the freshener and provide protection and support for the internal structure. The rotating housing 20 is generally a hollow container structure, which has enough space to accommodate the freshener housing 1, and is generally cylindrical, which is beneficial to keeping balance during rotation and facilitating the manufacture and installation of other components.

[0041] The first motor assembly 21 provides power for the rotation of the rotating housing 20, so that the whole rotating system can operate.

[0042] The air dispersing shell 22 is used to accommodate the axial fan 23 and the second motor assembly 24, guide and constrain the air flow, so that the air flow generated by the axial fan 23 can be efficiently discharged from the device. The air dispersing shell 22 is generally a hollow structure with reasonable space layout to accommodate the axial fan 23 and the second motor assembly 24, and is usually in the shape of a cylinder or a cuboid. The cylindrical shape is conducive to the uniform distribution and flow of air, and the cuboid shape is more convenient for installation and arrangement in a specific space. The air dispersing shell 22 and the rotating shell 20 can be connected by a detachable connection method such as bayonet, thread, flange, etc.

[0043] The axial fan 23 is used to generate axial air flow to quickly discharge the freshener volatile gas outside the device, so as to realize the diffusion of the air freshener. The axial fan 23 can be fixed on the output shaft of the second motor assembly 24 by key connection, interference fit or bolt connection, etc. to ensure that it will not loosen during high-speed rotation.

[0044] The second motor assembly 24 provides power for the axial fan 23 to drive the axial fan 23 to rotate at high speed to generate air flow with sufficient strength.

[0045] The reflection and diffusion mechanism 3 expands the diffusion range of the volatile gas and enhances the diffusion effect of the freshener through the air collecting cover 30 and the air flow reflection assembly 31.

[0046] The air collecting cover 30 is used to gather and directionally guide the gas blown out by the axial fan 23, enhance the gas injection strength, and improve the diffusion effect of the freshener volatile gas.

[0047] The air flow reflection assembly 31 is used to further expand the diffusion range of the volatile gas, change the direction of the air flow, and make the freshener gas more evenly distributed in the surrounding environment.

[0048] Embodiment 2:

[0049] The embodiment provides an air freshener emitting device, which has the following technical features in addition to the technical solutions of the above-mentioned embodiments.

[0050] The rotating assembly 4 is arranged between the freshener shell 1 and the rotating shell 20, and the rotating assembly 4 comprises:

[0051] The annular boss 40 is arranged on the inner bottom surface of the rotating shell 20.

[0052] The plurality of rollers 41 are uniformly arranged on the inner wall of the annular boss 40, and the outer surface of the freshener shell 1 is provided with an annular groove 42 matched with the rollers 41.

[0053] The annular boss 40 provides a rotating support base for the air freshener shell 1, guides the rotating track of the air freshener shell 1, and limits the displacement of the air freshener shell 1 during rotation, ensuring the stability of rotation. The annular boss 40 is generally in the form of a raised annular structure arranged around the central area of the inner bottom surface of the rotating shell 20, and has a standard annular shape with the center coinciding with the central axis of the rotating shell 20, ensuring uniform stress during rotation. The annular boss 40 can be integrally formed with the rotating shell 20.

[0054] The roller 41 is used to reduce the friction between the air freshener shell 1 and the rotating shell 20, convert sliding friction into rolling friction, and enable the air freshener shell 1 to rotate more smoothly on the annular boss 40, while further assisting in supporting the weight of the air freshener shell 1. The roller 41 is generally in the form of a solid cylindrical structure, and the two ends are usually smooth and flat to maintain stability during installation and rolling. The roller 41 has a cylindrical shape that can maintain uniform stress and a stable motion track during rolling. The rollers 41 are uniformly arranged on the inner wall of the annular boss 40, and a plurality of rollers 41 form a circle around the annular boss 40 and are in contact with the annular groove 42 on the outer surface of the air freshener shell 1. The rollers 41 can be installed in the slots or grooves provided on the inner wall of the annular boss 40, allowing them to roll freely within the slots without falling out of the annular boss 40. The rollers 41 and the annular groove 42 on the outer surface of the air freshener shell 1 are in rolling contact, which enables the air freshener shell 1 to be supported and guided in rotation through this contact.

[0055] The annular groove 42 cooperates with the roller 41 to guide the rolling direction of the roller 41, ensuring the stability and accuracy of the air freshener shell 1 during rotation, and also serving as a positioning function to prevent the air freshener shell 1 from undergoing radial displacement during rotation. The annular groove 42 is generally in the form of a recessed annular structure surrounding the outer surface of the air freshener shell 1, and has an annular shape that matches the shapes of the annular boss 40 and the roller 41, ensuring tight cooperation between the components during rotation. The annular groove 42 can be integrally formed with the air freshener shell 1.

[0056] Embodiment 3:

[0057] The embodiment provides an air freshener dispensing device, which has the following technical features in addition to the technical solutions of the above-mentioned embodiments.

[0058] The first motor assembly 21 comprises:

[0059] The first body 210 is arranged below the rotating shell 20 in the axial direction, and the output shaft of the first body 210 is connected to the bottom of the air freshener shell 1.

[0060] The motor support chamber 211 is located outside the first body 210, and the top of the motor support chamber 211 is connected to the bottom of the rotating shell 20.

[0061] The first body 210 is used to convert electrical energy into mechanical energy to provide rotating power for the rotating shell 20 and the interior freshener shell 1. The first body 210 is arranged below the rotating shell 20 in the axial direction, and the output shaft thereof is connected to the bottom of the freshener shell 1 to ensure that the power can be directly and efficiently transmitted to the rotating components. The output shaft of the first body 210 is connected to the bottom of the freshener shell 1 by a coupling, a key connection, or direct welding, etc., to ensure the stability and reliability of power transmission. The first body 210 is fixed in the motor support chamber 211 by screws, buckles, or welding, etc., to be stably installed in the motor support chamber 211.

[0062] The motor support chamber 211 provides physical support and protection for the first body 210, and also serves as a connection for the rotating shell 20, ensuring the stability of the motor during operation and isolating the heat and vibration generated during the operation of the motor from affecting other components. The motor support chamber 211 is generally a closed or semi-closed cavity structure, which can be a cuboid, a cylinder, or other suitable shapes. The top of the motor support chamber 211 is tightly connected to the bottom of the rotating shell 20 by screw connection, buckle connection, or welding, etc., to ensure that there is no relative displacement between the two during rotation. The connection mode with the first body 210 can be screw fixing, buckle fixing, or welding, etc., according to the installation requirements of the motor, to ensure the stable installation of the motor in the support chamber.

[0063] Embodiment 4:

[0064] The embodiment provides an air freshener emitting device, which has the following technical features in addition to the technical solutions of the above embodiments.

[0065] The inner bottom surface of the motor support chamber 211 is provided with a counterweight disc 5, and the bottom of the motor support chamber 211 is provided with an anti-skid pad 6.

[0066] The counterweight disc 5 is used to adjust the center of gravity of the first motor assembly 21 and the entire device, to ensure that the device remains balanced and stable during rotation, and to reduce vibration and shaking caused by the deviation of the center of gravity. The counterweight disc 5 is generally a disc-shaped structure, and its shape is generally a standard circle, with the center of the circle coinciding with the central axis of the motor support chamber 211, to ensure that the forces in all directions are evenly distributed during rotation, maintaining balance. The counterweight disc 5 and the inner bottom surface of the motor support chamber 211 can be connected by welding, screw fixing, or strong glue sticking, etc.

[0067] The anti-skid pad 6 is used to increase the friction between the motor support chamber 211 and the placement plane, prevent the entire device from sliding during operation, and ensure that the device maintains a stable position during operation. The anti-skid pad 6 is generally in a sheet shape, and its shape is adapted to the shape of the bottom surface of the motor support chamber 211, and common shapes include circular, square, or irregular shapes, to ensure that it can completely cover the contact area between the bottom surface of the motor support chamber 211 and the placement plane. The anti-skid pad 6 can be pasted on the bottom of the motor support chamber 211 through glue, to ensure firm pasting and prevent it from falling off. For some designs that need to be detachable, buckles, suction cups, or other connection methods can also be used to facilitate replacement of the anti-skid pad 6.

[0068] Embodiment 5:

[0069] The embodiment provides an air freshener emitting device, in addition to the technical solutions of the above-mentioned embodiments, and has the following technical features.

[0070] The second motor assembly 24 comprises:

[0071] The second motor body 240 is longitudinally arranged in the air dispersion shell 22, and an output shaft of the second motor body 240 is connected with the axial flow fan 23;

[0072] The motor seat 241 is arranged at the bottom of the second motor;

[0073] The plurality of connecting rods 242 are connected between the circumferential side of the motor seat 241 and the inner wall of the air dispersion shell 22.

[0074] The second motor body 240 is used to convert electric energy into mechanical energy, to provide rotating power for the axial flow fan 23, drive the axial flow fan 23 to generate airflow, and accelerate the diffusion of air freshener volatile gas. The second motor body 240 is longitudinally arranged in the air dispersion shell 22, and an output shaft of the second motor body 240 is connected with the axial flow fan 23, so that power can be directly transmitted to the axial flow fan 23 to drive it to rotate. The output shaft of the second motor body 240 is connected with the axial flow fan 23 through a shaft coupling, a key connection, or direct welding, to ensure the stability and reliability of power transmission. The motor is connected with the inner wall of the air dispersion shell 22 through the motor seat 241, and is fixed between the motor seat 241 through screws, buckles, or welding, to ensure stable installation of the motor in the air dispersion shell 22.

[0075] The motor base 241 is used to support and fix the second machine body 240, so that the second machine body 240 is kept in the correct position and posture in the air dispersion shell 22, and the motor is prevented from displacement or shaking during operation, and a stable installation base is provided for the motor. The motor base 241 is usually a block structure with a certain thickness and strength, and the shape is usually round, square or special-shaped structure. The motor base 241 is tightly connected with the second machine body 240 by means of screws, buckles or welding, so that the relative displacement between the motor and the motor base 241 is prevented. The connection between the motor base 241 and the inner wall of the air dispersion shell 22 is achieved by welding, screw connection or buckle connection, so that the motor base 241 is stably connected with the inner wall of the air dispersion shell 22 through the connecting rod 242.

[0076] The connecting rod 242 is used to connect the motor base 241 and the inner wall of the air dispersion shell 22, so that the motor base 241 is fixed at a suitable position in the air dispersion shell 22, the second motor assembly 24 is stably installed in the air dispersion shell 22 as a whole, and the vibration and torque generated by the motor during operation are dispersed to the air dispersion shell 22, so that the stability of the whole structure is enhanced. The connecting rod 242 is generally an elongated rod structure, and the shape is usually a straight rod. The connecting rod 242 is uniformly distributed on the side of the motor base 241. The connecting rod 242 is connected with the motor base 241 and the inner wall of the air dispersion shell 22 by means of welding, screw connection or buckle connection.

[0077] Embodiment 6:

[0078] The embodiment provides an air freshener emitting device, which comprises the technical scheme of the above-mentioned embodiments and has the following technical features.

[0079] The air collecting cover 30 has a connecting port 300 connected with the top of the air dispersion shell 22 and an air outlet 301 for discharging volatile gas, and the air collecting cover 30 has a horn-shaped structure with a small lower part and a large upper part.

[0080] The air collecting cover 30 has a hollow structure, a connecting port 300 connected with the top of the air dispersion shell 22 and an air outlet 301 for discharging volatile gas. The air collecting cover 30 has a horn-shaped structure with a small lower part and a large upper part. This shape is beneficial to the gradual acceleration and concentration of gas, which conforms to the principle of fluid dynamics. The air collecting cover 30 is fixed with the top of the air dispersion shell 22 by means of buckling, screw connection or welding, so that the connection is tight and gas leakage is prevented.

[0081] Embodiment 7:

[0082] The embodiment provides an air freshener emitting device, which comprises the technical scheme of the above-mentioned embodiments and has the following technical features.

[0083] The inner wall of the air collecting cover 30 is provided with a plurality of inclined turbulence fins 7.

[0084] The turbulence fins 7 are used to disturb the flow state of the airflow in the wind collector 30, so as to change the airflow from laminar flow to turbulent flow, enhance the gas mixing effect, and improve the diffusion efficiency of the freshener volatile gas. The turbulence fins 7 are generally thin sheet structures in strip shape, and are usually arranged obliquely along the inner wall of the wind collector 30, and the shape thereof can be strip shape. The turbulence fins 7 and the inner wall of the wind collector 30 can be fixed by welding, integrally formed by injection molding, pasted by glue, or connected by buckles.

[0085] Embodiment 8:

[0086] The embodiment provides an air freshener emitting device, in addition to the technical solutions of the above-mentioned embodiments, and has the following technical features.

[0087] The airflow reflection assembly 31 comprises:

[0088] The reflection plate body 310 is in an umbrella shape and is located above the wind collector 30.

[0089] The plurality of support columns 311 are uniformly distributed between the bottom of the reflection plate body 310 and the top of the wind collector 30.

[0090] The reflection plate body 310 is used to change the direction of the airflow blown out of the wind collector 30, reflect it to the surroundings, expand the diffusion range of the freshener volatile gas, and make the freshener more evenly distributed in the surrounding environment. The reflection plate body 310 is generally in a plate shape, and the shape thereof can be in an umbrella shape with the edges inclined downward. This shape can effectively reflect the airflow vertically upward from the wind collector 30 to different directions around, so as to realize omnidirectional diffusion. The reflection plate body 310 is connected to the top of the wind collector 30 through the support columns 311.

[0091] The support columns 311 are used to support the reflection plate body 310, so that the reflection plate body 310 is kept at a proper position above the wind collector 30, and ensure that the reflection plate body 310 can stably reflect the airflow and the airflow can smoothly pass below the reflection plate body 310. The support columns 311 are generally in an elongated rod shape, and the shape thereof is usually a straight rod shape. One end of the support column 311 can be connected to the bottom of the reflection plate body 310 by welding, screw connection or buckle connection, and the other end can be connected to the top of the wind collector 30 in the same way, so as to ensure firm connection and prevent loosening. The above-mentioned embodiments are only preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, so that: any equivalent changes made according to the structure, shape and principle of the present application should be covered within the protection scope of the present application.

Claims

1. An air freshener dispensing device characterized by , comprising: A freshener shell (1) with a detachable cover (10) on the top, and a plurality of air holes (11) on the cover (10); A cyclone speed dispersion mechanism (2) including a rotating shell (20) for accommodating the freshener shell (1) inside, a first motor assembly (21) for driving the rotating shell (20) to rotate, a wind dispersion shell (22) detachably connected above the rotating shell (20), an axial flow fan (23) arranged in the wind dispersion shell (22), and a second motor assembly (24) for driving the axial flow fan (23) to discharge the volatile gas of the freshener to the outside; A reflection and diffusion mechanism (3) including a wind collecting cover (30) arranged on the top of the wind dispersion shell (22) and an air flow reflection assembly (31) for expanding the diffusion range of the volatile gas.

2. An air freshener dispenser according to claim 1, wherein, A rotating assembly (4) is arranged between the freshener shell (1) and the rotating shell (20), and the rotating assembly (4) includes: An annular boss (40) arranged on the inner bottom surface of the rotating shell (20); A plurality of rollers (41) uniformly arranged on the inner wall of the annular boss (40), and the outer surface of the freshener shell (1) is provided with an annular groove (42) matched with the rollers (41).

3. The air freshener dispensing device of claim 1, wherein, The first motor assembly (21) includes: A first body (210) arranged below the rotating shell (20) in the axial direction, and the output shaft of the first body (210) is connected with the bottom of the freshener shell (1); A motor support chamber (211) covering the outside of the first body (210), and the top of the motor support chamber (211) is connected with the bottom of the rotating shell (20).

4. An air freshener dispenser according to claim 3, wherein the air freshener is a solid air freshener. The inner bottom surface of the motor support chamber (211) is provided with a counterweight disc (5), and the bottom of the motor support chamber (211) is provided with an anti-skid pad (6).

5. The air freshener dispensing device of claim 1, wherein, The second motor assembly (24) includes: A second body (240) longitudinally arranged in the wind dispersion shell (22), and the output shaft of the second body (240) is connected with the axial flow fan (23); A motor seat (241) arranged at the bottom of the second motor; A plurality of connecting rods (242) connected between the peripheral side of the motor seat (241) and the inner wall of the wind dispersion shell (22).

6. The air freshener dispensing device of claim 1, wherein, The wind collecting cover (30) has a connecting port (300) connected with the top of the wind dispersion shell (22) and an air outlet (301) for discharging the volatile gas, and the wind collecting cover (30) has a horn-shaped structure with a small lower part and a large upper part.

7. An air freshener dispenser according to claim 6, wherein the air freshener is a solid air freshener. A plurality of inclined turbulence fins (7) are arranged on the inner wall of the wind collecting cover (30).

8. An air freshener dispenser according to claim 7, wherein the air freshener is a solid air freshener. The air flow reflection assembly (31) includes: A reflection plate body (310) in the shape of an umbrella and located above the wind collecting cover (30); A plurality of support columns (311) uniformly distributed between the bottom of the reflection plate body (310) and the top of the wind collecting cover (30).