Soft wind mechanism and air conditioner indoor unit

By designing a soft air mechanism, using the swing of the drive components and multiple soft air components, the problems of excessive wind speed and uneven air supply in the traditional air conditioner supply mode are solved, and a larger air volume and more uniform cooling capacity are achieved, improving the user experience.

CN222837077UActive Publication Date: 2025-05-06TCL AIR CONDITIONER ZHONGSHAN CO LTD
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Patent Information

Application Number
CN202421569444.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-04-15
Filing Date
2024-07-03
Publication Date
2025-05-06
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

The air supply method of traditional air conditioning systems has the problem of excessive wind speed and uneven air supply. Micro-porous plates lead to small air volume and small cooling capacity in windless sensing technology.

Method used

A soft air mechanism is designed, including a driving component and a plurality of soft air components arranged at intervals. The driving component drives the swing of the soft air components to control the air volume blown out by the air conditioning indoor unit, and achieves a variety of soft air effects.

Benefits of technology

Through the use of soft air mechanism, the air volume and cooling capacity can be effectively improved, the problems of excessive wind speed and uneven air supply can be solved, and the user experience can be improved.

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Abstract

The utility model provides a gentle wind mechanism and an air conditioner indoor unit, the gentle wind mechanism comprises a driving assembly and a plurality of gentle wind parts arranged at intervals, and the driving assembly drives the plurality of gentle wind parts to swing so that airflow of the air conditioner indoor unit can pass through the gentle wind parts or the gentle wind parts can avoid the airflow of the air conditioner indoor unit. The driving assembly switches the soft air part to different positions so as to blow out air conditioner air with different air volumes, a user can adjust the soft air effect according to actual requirements, diversified requirements are met, and the technical problems that in the related wind-feeling-free technology, the air volume is small, and the cooling capacity is small are solved.
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Description

Technical Field

[0001] The present application relates to the technical field of air conditioning, and in particular to a soft wind mechanism and an air conditioning indoor unit. Background Art

[0002] With the continuous improvement of people's living standards and the continuous improvement of comfort requirements, the requirements for the air supply quality of indoor air-conditioning systems are also getting higher and higher. The air supply method used by traditional air-conditioning systems has problems such as too high wind speed and uneven air supply. Long-term use of air conditioners will cause users to feel uncomfortable and seriously affect the user experience. Among the related windless technologies, microporous plates are a common method. The airflow passes through the microporous plates with micropores, which can achieve soft air outlet of the air conditioner, but the microporous plates will have problems such as small air volume and small cooling capacity. Utility Model Content

[0003] The utility model provides a soft wind mechanism and an indoor unit of an air conditioner, so as to solve the technical problems of small air volume and small cooling capacity of a microporous plate in the windless technology.

[0004] To achieve the above-mentioned purpose, the present application proposes a soft wind mechanism, including a driving component and a plurality of soft wind parts arranged at intervals. The driving component drives the plurality of soft wind parts to swing so that the soft wind parts allow airflow of the air-conditioning indoor unit to pass through, or so that the soft wind parts avoid the airflow of the air-conditioning indoor unit.

[0005] Optionally, in one embodiment, the soft wind component includes a connecting rod and a soft wind plate, the soft wind plate is connected to the first end of the connecting rod, the second end of the connecting rod is connected to the driving component, and the soft wind plate is provided with wind holes, and the driving component is used to drive the connecting rod to rotate to drive the soft wind plate to be exposed to the air outlet of the air-conditioning indoor unit, or hidden in the air-conditioning indoor unit.

[0006] Optionally, in one embodiment, the wind holes are provided in plurality and are spaced apart along the circumference of the soft wind plate.

[0007] Optionally, in one embodiment, the soft wind plate includes a first plate body and a second plate body, the first plate body and the second plate body are both provided with the wind holes, the second plate body is connected to the first plate body, and the second plate body and the first plate body enclose an air cavity, the periphery of the air cavity at least partially forms an air outlet gap, the wind holes of the first plate body, the air cavity and the wind holes of the second plate body constitute a first air outlet channel, and the wind holes of the first plate body, the air cavity and the air outlet gap constitute a second air outlet channel. Optionally, in one embodiment, along the air outlet direction of the soft wind component, the outer diameter of the first plate body is greater than the outer diameter of the second plate body; the radius of the wind hole of the second plate body is smaller than the inner diameter of the wind hole of the first plate body.

[0008] Optionally, in one embodiment, the driving assembly includes a driving member and a synchronizing member, the driving member is connected to and drives at least one of the soft wind members to rotate, and the synchronizing member is connected to a plurality of the soft wind members so that the plurality of the soft wind members rotate simultaneously.

[0009] Optionally, in one embodiment, the synchronization member includes a synchronization connecting rod, and the synchronization connecting rod is rotatably connected to the plurality of soft wind members.

[0010] Optionally, in one embodiment, it also includes a baffle, which is used to be fixedly connected to the air-conditioning indoor unit, the baffle is provided with a limiting groove, the soft wind piece is provided with a limiting column, the limiting column is located in the limiting groove, and the limiting groove extends along the rotation path of the soft wind piece to limit the rotation range of the soft wind piece.

[0011] Optionally, in one embodiment, it also includes a box body, which is fixedly connected to the air-conditioning indoor unit and arranged adjacent to the air outlet of the air-conditioning indoor unit. The box body is provided with an opening on the side facing the air outlet, and the soft wind plate can be swung through the opening to be exposed at the air outlet of the air-conditioning indoor unit, or be stored in the box body.

[0012] The present application also proposes an air-conditioning indoor unit, comprising the soft wind mechanism as described above.

[0013] A soft wind mechanism provided in the present application drives a plurality of soft wind parts arranged at intervals to swing through a driving component, and switches the soft wind parts to different positions to control the air volume blown out by the indoor unit of the air conditioner, thereby achieving a variety of soft wind effects, so as to solve the problems of small air volume and small cooling capacity in related technologies. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on the structures shown in these drawings without paying any creative work.

[0015] Figure 1 This is a structural schematic diagram of the soft wind mechanism of the present application when it is exposed to the air outlet of the indoor unit of the air conditioner;

[0016] Figure 2 This is a cross-sectional view of the soft wind mechanism of the present application when it is installed in the indoor unit of the air conditioner, for showing the first plate and the second plate;

[0017] Figure 3 This is a schematic diagram of the overall structure of the soft wind mechanism of this application;

[0018] Figure 4This is an exploded view of the soft wind mechanism of this application;

[0019] Figure 5 A side view of a soft wind component in the soft wind mechanism of the present application;

[0020] Figure 6 It is a partial structural schematic diagram of another soft wind component and a box body in the soft wind mechanism of the present application;

[0021] Figure 7 This is a partial structural diagram of another soft wind component, baffle and box body in the soft wind mechanism of the present application;

[0022] Figure 8 This is a comparison chart of the wind speed at the air outlet of the soft wind mechanism of this application and the microporous plate in the related technology.

[0023] Description of Figure Numbers:

[0024] 1. Driving assembly; 11. Driving member; 12. Synchronous connecting rod; 2. Soft wind member; 21. Connecting rod; 22. Soft wind plate; 221. Wind hole; 222. First plate body; 223. Second plate body; 224. Air outlet gap; 225. Air passage cavity; 23. Fixing rod; 24. Limiting column; 3. Baffle; 31. Limiting groove; 32. Limiting rib; 4. Box body; 41. Stop rib; 5. Air conditioner indoor unit; 51. Air outlet.

[0025] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION

[0026] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.

[0027] The embodiment of the present application provides a soft wind mechanism to solve the problem of small air volume and small cooling capacity caused by the microporous plate in the related art. The following will be described in conjunction with the accompanying drawings.

[0028] In the embodiments of the present application, Figure 1 , Figure 2 as well as Figure 3As shown, the soft wind mechanism includes a driving component 1 and a plurality of soft wind parts 2 arranged at intervals. The driving component 1 drives the plurality of soft wind parts 2 to swing, and the soft wind parts 2 allow the airflow of the air-conditioning indoor unit 5 to pass through, or the soft wind parts 2 avoid the airflow of the air-conditioning indoor unit 5. It should be noted that the soft wind parts 2 can disperse the air-conditioning wind, making the air-conditioning wind soft and comfortable; the driving component 1 drives the plurality of soft wind parts 2 to swing, which can refer to the reciprocating movement of the soft wind parts 2 around the axis within a certain angle range, or the reciprocating movement of the soft wind parts 2 along a non-specific shape of the moving route. In this way, the driving component 1 switches the soft wind parts 2 to different positions to blow out air-conditioning wind with different air volumes. The user can adjust the soft wind effect according to actual needs to meet diversified needs; for example, the soft wind parts 2 avoid the airflow of the air-conditioning indoor unit 5 to increase the air supply volume of the target area; or the airflow of the air-conditioning indoor unit 5 passes through the soft wind parts 2 to achieve a soft wind effect. At the same time, multiple soft wind parts 2 arranged at intervals can reduce the loss of air conditioning wind, ensure a larger air volume, and achieve a variety of soft wind effects without sacrificing a larger air volume, thereby solving the technical problems of small air volume and small cooling capacity in related windless technology.

[0029] In some embodiments, Figure 3 and Figure 4 As shown, the soft wind piece 2 includes a connecting rod 21 and a soft wind plate 22, the soft wind plate 22 is connected to the first end of the connecting rod 21, the second end of the connecting rod 21 is connected to the driving component 1, and the soft wind plate 22 is provided with a wind hole 221. The driving component 1 is used to drive the connecting rod 21 to rotate to drive the soft wind plate 22 to be exposed to the air outlet 51 of the air-conditioning indoor unit 5, or hidden in the air-conditioning indoor unit 5. In this way, the purpose of dispersing and breaking up the air-conditioning wind is achieved by arranging the wind hole 221 on the soft wind plate 22, so that the air-conditioning wind becomes a smooth and comfortable structure; the driving component 1 can be a motor, and the multiple soft wind pieces 2 can be respectively provided with a motor to realize swinging. Through the above-mentioned soft wind piece 2 structure, the soft wind piece 2 swings around the second end of the connecting rod 21 within a certain angle range.

[0030] Exemplarily, the driving component 1 is a motor, the connecting rod 21 and the soft wind plate 22 are perpendicular to the motor shaft of the motor, and the motor shaft of the motor is parallel to the air outlet direction of the soft wind piece 2. In this way, the soft wind piece 2 has a better soft wind effect.

[0031] In some embodiments, Figure 6 As shown, a plurality of air holes 221 are provided and spaced apart along the circumference of the soft wind plate 22. In this way, the air conditioning wind flows out in different directions after passing through the air holes 221, so that the air supply range and angle are wider and the wind feeling is softer.

[0032] In some specific embodiments, the plurality of air holes 221 of the soft wind plate 22 extend in the radial direction of the soft wind plate 22, and the width of the air holes 221 gradually increases in the direction away from the center of the soft wind plate 22. The plurality of spaced soft wind members 2 reduce the air supply area of ​​the air outlet 51 of the air conditioner indoor unit 5, and the plurality of air holes 221 of the soft wind plate 22 further separate the wind flow to form multiple jets, which interfere and overlap with each other at a short distance from the air outlet 51, increase the turbulence intensity, and continuously suck the air in the room to reduce the wind speed and increase the air supply range.

[0033] In some other embodiments, a plurality of wind holes 221 are arranged at intervals along the circumferential direction, and the shape of the soft wind plate 22 can be a conventional geometric shape such as a circle, a triangle or a square; the radius of the soft wind plate 22 is 10 mm-100 mm.

[0034] When the air flows out from the four sides of the soft wind plate 22, the airflow in the width direction of the air hole 221 interferes with the main jet flowing out between the adjacent soft wind plates 22, affecting the flow direction of the main jet, thereby causing the main jet to flow forward in a left-right undulating manner, forming a fluctuating soft wind for the air-conditioning airflow. Since the airflow velocity in nature is generally fluctuating, compared with the mechanical wind with a constant flow velocity of conventional air-conditioning, the fluctuating natural wind can bring a more comfortable feeling to people. Therefore, the air-conditioning airflow passing through the fluctuating soft wind will bring a wind feeling similar to the natural wind, thereby improving the comfort of air conditioning.

[0035] In some embodiments, Figure 5 As shown, the soft wind member 2 includes a plurality of soft wind plates 22, and the plurality of soft wind plates 22 are stacked and spaced apart. The soft wind member 2 also includes a fixing rod 23, and the fixing rod 23 connects adjacent soft wind plates 22. It should be noted that stacking means that along the air outlet direction of the soft wind member 2, the positive projections of the plurality of soft wind plates 22 overlap; the number of the fixing rods 23 can be one or more, and it can be understood that when two soft wind plates 22 are provided, the fixing rods 23 can be one or more and connected between the two soft wind plates 22.

[0036] The soft wind effect is further improved by providing multiple soft wind plates 22 at intervals in layers. For example, to reduce the amount of air sacrificed during the soft wind process, multiple soft wind plates 22 can be provided with different sizes, and the air holes 221 of different soft wind plates 22 can also be provided with different sizes.

[0037] In some embodiments, Figure 5As shown, the soft wind plate 22 includes a first plate body 222 and a second plate body 223, and the first plate body 222 and the second plate body 223 are both provided with wind holes 221, the second plate body 223 is connected to the first plate body 222, and an air cavity 225 is enclosed between the second plate body 223 and the first plate body 222, and an air outlet gap 224 is at least partially formed at the periphery of the air cavity, the wind holes 221 of the first plate body 222, the air cavity 225 and the wind holes 221 of the second plate body 223 constitute a first air outlet channel, and the wind holes 221 of the first plate body 222, the air cavity 225 and the air outlet gap 224 constitute a second air outlet channel.

[0038] In some embodiments, Figure 5 As shown, the wind softening member 2 further includes a fixing rod 23 , which connects the adjacent first plate body 222 and the second plate body 223 .

[0039] In some embodiments, Figure 4 and Figure 5 As shown, along the air outlet direction of the soft wind member 2, the outer diameter of the first plate 222 is greater than the outer diameter of the second plate 223; the radius of the air hole 221 of the second plate 223 is smaller than the inner diameter of the air hole 221 of the first plate 222. It should be noted that the air hole 221 is set to be circular, and the first plate 222 and the second plate 223 are each provided with an air hole 221, and the center points of the two air holes 221 are located on the same straight line; in this way, along the air outlet direction, as the outer diameter of the soft wind member 2 gradually decreases, the soft wind mechanism has a wider air supply range.

[0040] In this way, when the air-conditioning jet flows through the soft wind plate 22, it first hits the first plate body 222 with a larger outer diameter, and the jet flows to the two sides of the first plate body 222 and the air holes 221 of the first plate body 222 respectively, and then the airflow of the air holes 221 of the first plate body 222 continues to hit the second plate body 223 through the air cavity 225, and flows to the air outlet gap 224 and the air holes 221 of the second plate body 223 respectively. This reduces the airflow speed and realizes the sputtering soft wind.

[0041] In some embodiments, Figure 6 and Figure 7 As shown, the driving component 1 includes a driving member 11 and a synchronizing member. The driving member 11 is connected to and drives at least one soft wind member 2 to rotate. The synchronizing member connects multiple soft wind members 2 so that multiple soft wind members 2 rotate simultaneously. It should be noted that the driving member 11 can be a motor; the synchronizing member can be a component similar to a rod-shaped structure, and is connected to the driving member 11 and the soft wind member 2 at the same time to achieve the purpose of driving multiple soft wind members 2 to move synchronously; the synchronizing member can also adopt a synchronous belt drive or a chain drive. In this way, under the action of the synchronizing member, by setting a driving member 11, the synchronous swing of multiple soft wind members 2 can be achieved, and the unified and synchronous switching of the positions of multiple soft wind members 2 is convenient.

[0042] In some embodiments, Figure 7 As shown, the synchronization member includes a synchronization link 12, and the synchronization link 12 is rotatably connected to multiple soft wind members 2. Specifically, the synchronization link 12 is hinged to the connecting rod 21 of the multiple soft wind members 2.

[0043] In some embodiments, Figure 7 As shown, the soft wind mechanism also includes a baffle 3, which is fixedly connected to the air conditioner indoor unit 5, and the baffle 3 is provided with a limiting groove 31, and the soft wind member 2 is provided with a limiting column 24, and the limiting column 24 is located in the limiting groove 31, and the limiting groove 31 extends along the rotation path of the soft wind member 2 to limit the rotation range of the soft wind member 2;

[0044] Furthermore, the soft wind component 2 includes a connecting rod 21 and a soft wind plate 22, the soft wind plate 22 is connected to the first end of the connecting rod 21, the second end of the connecting rod 21 is connected to the driving assembly 1, one end of the limiting column 24 is fixedly connected to the connecting rod 21, and the other end of the limiting column 24 extends into the limiting groove 31.

[0045] In some embodiments, Figure 7 As shown, the soft wind mechanism also includes a box body 4, which is fixedly connected to the air conditioner indoor unit 5 and is arranged adjacent to the air outlet 51 of the air conditioner indoor unit 5. The box body 4 is provided with an opening on one side facing the air outlet 51, and the soft wind plate 22 can swing through the opening to be exposed at the air outlet 51 of the air conditioner indoor unit 5, or be stored in the box body 4;

[0046] Furthermore, the soft wind mechanism also includes a baffle 3, which is fixedly connected to the air-conditioning indoor unit 5, and the baffle 3 is provided with a limiting groove 31; the soft wind component 2 also includes a limiting column 24, one end of the limiting column 24 is fixedly connected to the connecting rod 21, and the other end of the limiting column 24 extends into the limiting groove 31; when the limiting column 24 rotates to either end of the limiting groove 31, the soft wind plate 22 is stored in the box body 4, and when the limiting column 24 rotates to the middle of the limiting groove 31, the soft wind plate 22 is completely exposed to the air outlet 51 of the air-conditioning indoor unit 5.

[0047] In this way, the projection area of ​​the soft wind piece 2 and the air outlet 51 along the air outlet direction has three different states, namely complete overlap, partial overlap and complete non-overlap. The three states can achieve different air supply effects. In addition to making the soft wind piece 2 in one of the above three states, the soft wind piece 2 is swung by the driving mechanism to make the air conditioning wind jet distribution dynamically change, thereby achieving dynamic soft wind.

[0048] In some embodiments, Figure 4 As shown, a stop rib 41 is provided in the box body 4, and the stop rib 41 is located at one end of the positive projection of the limit groove 31 on the box body 4, and the stop rib 41 is used to stop the connecting rod 21. In this way, the stop rib 41 can constrain the initial installation position of the soft wind part 2.

[0049] In some embodiments, Figure 7 As shown, a plurality of limiting ribs 32 are provided on the side of the baffle 3 facing away from the box body 4, and a limiting rib 32 is provided on both sides of each limiting groove 31 in the width direction. The limiting ribs 32 are arranged along the extension direction of the limiting groove 31, and the limiting ribs 32 are used for sliding connection with the synchronous connecting rod 12.

[0050] In some embodiments, the soft wind mechanism also includes a photosensitive sensor, a temperature sensor and a controller to achieve intelligent control. When the photosensitive sensor detects that the current state is night, the controller controls the soft wind piece 2 to swing at a small angle to provide a more comfortable sleeping environment for the user; if the photosensitive sensor detects that it is daytime, the temperature sensor is further used to detect the current indoor temperature. When the absolute value of the ambient temperature minus the set temperature is above 3°C, the soft wind piece 2 is retracted into the box body 4; when the absolute value of the ambient temperature minus the set temperature is within 3°C, the soft wind piece 2 is controlled to swing to provide a more natural and comfortable indoor air environment for the user.

[0051] The embodiment of the present application also provides an air conditioner indoor unit 5, which includes the above-mentioned soft wind mechanism. The specific structure of the soft wind mechanism refers to the above-mentioned embodiment. Since the air conditioner indoor unit 5 adopts all the technical solutions of all the above-mentioned embodiments, it at least has all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be repeated here. Among them, the air conditioner indoor unit 5 is provided with an air outlet 51. When the driving component 1 of the soft wind mechanism drives the multiple soft wind parts 2 to swing, the soft wind parts 2 are exposed at the air outlet 51.

[0052] In order to illustrate the use effect of the soft wind mechanism provided in the embodiment of the present application, the soft wind blade in the related art is set as a microporous plate at the air outlet 51 of the air conditioner indoor unit 5, and the soft wind mechanism in the present application is also set at the air outlet 51 of the same air conditioner indoor unit 5, and the wind speed at the air outlet 51 is measured under the same air outlet conditions. The specific results are as follows Figure 8 As shown. Figure 8 In the description, vertical distance refers to the distance between the middle of the air outlet 51 in the vertical direction, microporous plate sweeping refers to using the microporous plate in the related technology to flip and sweep the air at the air outlet 51, microporous plate soft wind refers to using the microporous plate in the related technology to maintain a fixed posture at the air outlet 51 to deliver soft wind, and soft wind structure soft wind refers to fully exposing the soft wind part 2 provided in the embodiment of the present application to the air outlet 51 to deliver soft wind. Figure 8 It can be seen that the soft wind using the soft wind mechanism in the present application can better enhance the turbulence intensity, improve the wind speed fluctuation effect, and have a better soft wind effect.

[0053] In the above embodiments, the description of each embodiment has its own emphasis. For parts not described in detail in a certain embodiment, please refer to the relevant description of other embodiments. In the description of this application, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more features.

[0054] The above is a detailed introduction to the soft wind mechanism provided in the embodiment of the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method of the present application and its core idea; at the same time, for technical personnel in this field, based on the idea of ​​the present application, there will be changes in the specific implementation method and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.

Claims

1. A soft wind mechanism, characterized in that: The invention comprises a driving component (1) and a plurality of soft wind pieces (2) arranged at intervals, wherein the driving component (1) drives the plurality of soft wind pieces (2) to swing so that the soft wind pieces (2) allow airflow of an air conditioner indoor unit (5) to pass through, or the soft wind pieces (2) avoid the airflow of the air conditioner indoor unit (5).

2. The soft wind mechanism according to claim 1, characterized in that: The soft wind component (2) comprises a connecting rod (21) and a soft wind plate (22), wherein the soft wind plate (22) is connected to the first end of the connecting rod (21), and the second end of the connecting rod (21) is connected to the driving component (1), and the soft wind plate (22) is provided with a wind hole (221), and the driving component (1) is used to drive the connecting rod (21) to rotate so as to drive the soft wind plate (22) to be exposed to the air outlet (51) of the air conditioner indoor unit (5), or to be hidden in the air conditioner indoor unit (5).

3. The soft wind mechanism according to claim 2, characterized in that: The wind holes (221) are provided in plurality and are arranged at intervals along the circumference of the soft wind plate (22).

4. The soft wind mechanism according to claim 2, characterized in that: The soft wind plate (22) includes a first plate body (222) and a second plate body (223), the first plate body (222) and the second plate body (223) are both provided with the wind holes (221), the second plate body (223) is connected to the first plate body (222), and an air cavity (225) is enclosed between the second plate body (223) and the first plate body (222), the periphery of the air cavity (225) at least partially forms an air outlet gap (224), the wind holes (221) of the first plate body (222), the air cavity (225) and the wind holes (221) of the second plate body (223) constitute a first air outlet channel, and the wind holes (221) of the first plate body (222), the air cavity (225) and the air outlet gap (224) constitute a second air outlet channel.

5. The soft wind mechanism according to claim 4, characterized in that: Along the air outlet direction of the soft wind part (2), the outer diameter of the first plate body (222) is greater than the outer diameter of the second plate body (223); and the radius of the air hole (221) of the second plate body (223) is smaller than the inner diameter of the air hole of the first plate body (222).

6. The soft wind mechanism according to claim 1, characterized in that: The driving component (1) comprises a driving member (11) and a synchronizing member, wherein the driving member (11) is connected to and drives at least one of the soft wind members (2) to rotate, and the synchronizing member is connected to a plurality of the soft wind members (2) so that the plurality of the soft wind members (2) rotate simultaneously.

7. The soft wind mechanism according to claim 6, characterized in that: The synchronization component comprises a synchronization connecting rod (12), and the synchronization connecting rod (12) is rotatably connected to the plurality of soft wind components (2).

8. The soft wind mechanism according to claim 1, characterized in that: It also comprises a baffle (3), the baffle (3) being used for being fixedly connected to the air conditioner indoor unit (5), the baffle (3) being provided with a limiting groove (31), the soft wind piece (2) being provided with a limiting column (24), the limiting column (24) being located in the limiting groove (31), the limiting groove (31) extending along the rotation path of the soft wind piece (2) so as to limit the rotation range of the soft wind piece (2).

9. The soft wind mechanism according to claim 2, characterized in that: The invention also comprises a box body (4), wherein the box body (4) is fixedly connected to the air conditioner indoor unit (5) and is arranged adjacent to the air outlet (51) of the air conditioner indoor unit (5); the box body (4) is provided with an opening on one side facing the air outlet (51); the soft air plate (22) can swing through the opening to be exposed at the air outlet (51) of the air conditioner indoor unit (5), or be stored in the box body (4).

10. An air conditioner indoor unit, characterized in that: It comprises a soft wind mechanism as described in any one of claims 1-9.