Air outlet assembly and air outlet equipment
By incorporating soft-wind blades with different apertures and a drive mechanism into the air conditioning outlet assembly, the problems of increased energy consumption and reduced cooling effect caused by direct airflow from the air conditioner have been solved, thereby improving both comfort and energy efficiency.
Patent Information
- Application Number
- CN202520322521.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-26
AI Technical Summary
While existing air conditioners reduce direct airflow, they often increase energy consumption and decrease cooling efficiency.
By incorporating soft-wind blades with different apertures in the air outlet assembly, combined with a drive mechanism, different air outlet areas can achieve varying wind speeds and soft-wind effects, providing forced cooling/heating while improving comfort and reducing energy consumption.
While providing forced cooling/heating effects, it avoids direct airflow, improving air conditioning comfort and reducing energy consumption.
Smart Images

Figure CN223954275U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present disclosure relates to the technical field of air conditioning, in particular, to an air outlet assembly and an air outlet device. BACKGROUND
[0002] With air conditioners becoming necessities in people's lives, users have increasingly high requirements for the comfort of air conditioners.
[0003] In the related art, some manufacturers of air conditioners weaken the feeling of wind straight blowing by changing the wind into a diffuse airflow using a wind blocking structure, reducing airflow pressure, avoiding high airflow pressure wind straight blowing on the human body, and improving comfort. However, this often increases the energy consumption of air conditioners and reduces the refrigeration effect. CONTENT OF THE UTILITY MODEL
[0004] To overcome the problems in the related art, the present disclosure provides an air outlet assembly and an air outlet device to solve the technical problems in the related art.
[0005] According to the embodiments of the present disclosure, an air outlet assembly is provided, which comprises an air outlet frame, at least one first soft wind blade, and at least one second soft wind blade.
[0006] The air outlet frame is provided with an air outlet, which comprises at least one first air outlet area and at least one second air outlet area. At least one first soft wind blade is arranged in each first air outlet area, and at least one second soft wind blade is arranged in each second air outlet area.
[0007] The first soft wind blade is provided with a plurality of first soft wind holes along the thickness direction thereof, and the second soft wind blade is provided with a plurality of second soft wind holes along the thickness direction thereof.
[0008] The diameter of the first soft wind hole is larger than that of the second soft wind hole.
[0009] In some embodiments, the first air outlet area is provided as one, the second air outlet area is provided as one, and the first air outlet area is located above the second air outlet area.
[0010] In some embodiments, the first air outlet area is arranged in an up-down direction.
[0011] The first soft wind blade is provided as one and arranged in an up-down direction, or the first soft wind blade is provided as a plurality and arranged in an up-down direction.
[0012] And / or,
[0013] The second air outlet area is arranged in an up-down direction.
[0014] The second flexible fan blade is arranged in one and extends in the up-down direction; or, the second flexible fan blade is arranged in multiple and is arranged in intervals in the up-down direction.
[0015] In some embodiments, the first flexible fan hole has a hole diameter ranging from 3mm to 4mm, and the second flexible fan hole has a hole diameter ranging from 1.5mm to 2mm.
[0016] In some embodiments, the hole diameter of the first flexible fan hole is 1.5 times to 2 times of the hole diameter of the second flexible fan hole.
[0017] In some embodiments, the air outlet assembly further comprises at least one first driving mechanism corresponding to the first air outlet area, the first flexible fan blade is movably connected to the air outlet frame, and the first driving mechanism drives the first flexible fan blade in the corresponding first air outlet area to move; and / or,
[0018] The air outlet assembly further comprises at least one second driving mechanism corresponding to the second air outlet area, the second flexible fan blade is movably connected to the air outlet frame, and the second driving mechanism drives the second flexible fan blade in the corresponding second air outlet area to move.
[0019] In some embodiments, the first flexible fan blade in the first air outlet area is arranged in multiple, and the first driving mechanism drives multiple first flexible fan blades in the corresponding first air outlet area to move synchronously; and / or,
[0020] The second flexible fan blade in the second air outlet area is arranged in multiple, and the second driving mechanism drives multiple second flexible fan blades in the corresponding second air outlet area to move synchronously.
[0021] In some embodiments, the first driving mechanism comprises a first driving part, a first crank and a first connecting rod, the first crank is transmissionally connected to the first driving part and the first connecting rod, the first crank drives the first connecting rod to reciprocate, and the first connecting rod is used to drive multiple first flexible fan blades to move synchronously; and / or,
[0022] The second driving mechanism comprises a second driving part, a second crank and a second connecting rod, the second crank is transmissionally connected to the second driving part and the second connecting rod, the second crank drives the second connecting rod to reciprocate, and the second connecting rod is used to drive multiple second flexible fan blades to move synchronously.
[0023] In some embodiments, the first soft wind blade comprises a first blade body, a first rotating shaft and a first driving arm, a plurality of the first soft wind holes are arranged on the first blade body, one end of the first rotating shaft is connected to the first blade body, the other end is rotatably connected to the air outlet frame, the first driving arm is connected to the first blade body and located on one side of the first rotating shaft, and the first driving arm is used for inputting external power to drive the first rotating shaft to rotate; and / or,
[0024] The second soft wind blade comprises a second blade body, a second rotating shaft and a second driving arm, a plurality of the second soft wind holes are arranged on the second blade body, one end of the second rotating shaft is connected to the second blade body, the other end is rotatably connected to the air outlet frame, the second driving arm is connected to the second blade body and located on one side of the second rotating shaft, and the second driving arm is used for inputting external power to drive the second rotating shaft to rotate.
[0025] According to the embodiments of the present disclosure, an air outlet device is also provided, which comprises the air outlet assembly.
[0026] The technical scheme provided by the embodiments of the present disclosure can have the following beneficial effects: by arranging the first soft wind blade in the first air outlet area, and arranging the first soft wind holes with a larger aperture on the first soft wind blade, the wind at the first air outlet area can be quickly and effectively blown out, a stronger air outlet airflow is provided, and good refrigeration / heating effects are achieved; by arranging the second soft wind blade in the second air outlet area, and arranging the second soft wind holes with a smaller aperture on the second soft wind blade, the air outlet at the second air outlet area can be softened to avoid direct blowing. That is, by arranging the soft wind blades with different apertures in different areas of the air outlet of the air outlet frame, a stronger air outlet airflow can be provided while a soft wind airflow is also provided, that is, good refrigeration / heating effects can be achieved while the comfort of blowing is improved, and the energy consumption can be reduced.
[0027] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure. BRIEF DESCRIPTION OF DRAWINGS
[0028] The accompanying drawings, which are incorporated into and form part of the specification, illustrate embodiments consistent with the present disclosure and, together with the specification, serve to explain the principles of the present disclosure.
[0029] Figure 1 is a schematic view of an air outlet assembly of an embodiment of the present disclosure.
[0030] Figure 2 is Figure 1 is a partial enlarged view of A in FIG.
[0031] Figure 3is a structural schematic view of a first flexible blade of an air outlet assembly according to an embodiment of the present disclosure, and part of an air outlet frame is also shown in the view.
[0032] Figure 4 is a side view of the first flexible blade of the air outlet assembly according to an embodiment of the present disclosure.
[0033] Figure 5 is a side view of a second flexible blade of the air outlet assembly according to an embodiment of the present disclosure.
[0034] Legend of reference signs
[0035] 1, first flexible blade; 11, first flexible hole; 12, first blade body; 13, first rotating shaft; 131, protruding rib; 132, limiting column; 14, first driving arm;
[0036] 2, second flexible blade; 21, second flexible hole; 22, second blade body; 23, second rotating shaft; 24, second driving arm;
[0037] 3, first driving mechanism; 31, first driving part; 32, first crank; 33, first connecting rod;
[0038] 10, air outlet frame; 101, rotating hole; 100, air outlet; 1001, first air outlet area; 1002, second air outlet area. DETAILED DESCRIPTION
[0039] The exemplary embodiments will be described in detail herein with reference to the attached drawings. In the following description, the same numbers are used to designate the same elements, unless otherwise specified, and the same description is not repeated. The embodiments described in the following exemplary embodiments do not represent all the embodiments consistent with the present disclosure. Rather, they are merely examples of devices and methods consistent with some aspects of the present disclosure, as detailed in the appended claims.
[0040] In the present disclosure, unless otherwise specified, the terms "up" and "down" refer to the up and down defined by the air outlet device in the normal use state, for example, the air outlet device described above can be configured as a standing air conditioner cabinet, and the up and down refer to the up and down of the standing air conditioner cabinet, which can be specifically referred to as shown in Figure 1 The terms such as "first", "second" are used only to distinguish one element from another element, and do not have sequential and important meanings, and in addition, the plural in the present application means two or more and includes two.
[0041] In the description of the present disclosure, it also needs to be explained that, unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, can be fixedly connected, can also be detachably connected, or integrally connected; can be directly connected, or indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present disclosure can be understood according to the specific circumstances.
[0042] Referring to Figures 1 to 5 As shown in the drawings, the present disclosure provides an air outlet assembly, which comprises an air outlet frame 10, at least one first flexible air blade 1 and at least one second flexible air blade 2.
[0043] The air outlet frame 10 is provided with an air outlet 100, and the air outlet 100 comprises at least one first air outlet area 1001 and at least one second air outlet area 1002. At least one first flexible air blade 1 is arranged in each first air outlet area 1001, and at least one second flexible air blade 2 is arranged in each second air outlet area 1002.
[0044] The first flexible air blade 1 is provided with a plurality of first flexible air holes 11 penetrating through the thickness direction thereof, and the second flexible air blade 2 is provided with a plurality of second flexible air holes 21 penetrating through the thickness direction thereof. The aperture of the first flexible air hole 11 is larger than the aperture of the second flexible air hole 21.
[0045] In the above technical solution, by arranging the first flexible air blade 1 in the first air outlet area 1001, and arranging the first flexible air blade 1 with the first flexible air hole 11 of larger aperture, the air at the first air outlet area 1001 can be blown out quickly and effectively, providing stronger air flow, realizing good refrigeration / heating effect, etc. By arranging the second flexible air blade 2 in the second air outlet area 1002, and arranging the second flexible air blade 2 with the second flexible air hole 21 of smaller aperture, the air at the second air outlet area 1002 can be softened to avoid direct blowing. That is, by arranging the flexible air blades with different apertures in different areas of the air outlet 100 of the air outlet frame 10, stronger air flow can be provided while soft air flow can also be provided, that is, good refrigeration / heating effect can be provided while the comfort of blowing air can also be improved, and the energy consumption can be reduced.
[0046] The first air outlet area 1001 can be one or multiple, and the present disclosure does not limit this. The second air outlet area 1002 can be one or multiple, and the present disclosure does not limit this.
[0047] In addition, each first air outlet zone 1001 may be equipped with one or more first soft wind blades 1, and this disclosure does not limit this. Each second air outlet zone 1002 may be equipped with one or more second soft wind blades 2, and this disclosure does not limit this.
[0048] In one implementation, reference Figure 1 As shown, a first air outlet area 1001 is set as one, and a second air outlet area 1002 is set as one, with the first air outlet area 1001 located above the second air outlet area 1002.
[0049] In this embodiment, the first air outlet area 1001 can blow out a stronger airflow from above, while the second air outlet area 1002 can blow out a gentler airflow from below, satisfying different airflow needs in the vertical direction. For example, when this air outlet component is applied to a floor-standing air conditioner for cooling, the soft air blades (first soft air blade 1) in the upper air outlet area (first air outlet area 1001) have larger apertures, allowing cold air to be blown out quickly and naturally sinking, thus significantly improving the cooling effect. The soft air blades (second soft air blade 2) in the lower air outlet area (second air outlet area 1002) have smaller apertures and denser holes, softening the cold air and preventing direct blowing, thereby improving the cooling effect, reducing energy consumption, and also enhancing the comfort of the air conditioner.
[0050] However, this disclosure does not limit the specific arrangement of the first air outlet area 1001 and the second air outlet area 1002; for example, in other embodiments, the first air outlet area 1001 and the second air outlet area 1002 may be arranged in a horizontal direction.
[0051] Optionally, the first air outlet area 1001 is arranged to extend in the vertical direction, and the first soft wind blade 1 is set as one and arranged to extend in the vertical direction.
[0052] Optionally, the first air outlet area 1001 extends in the vertical direction, and the first soft wind blades 1 are configured as multiple and arranged at intervals in the vertical direction.
[0053] Optionally, the second air outlet area 1002 extends in the vertical direction, and the second soft wind blade 2 is set as one and extends in the vertical direction.
[0054] Optionally, the second air outlet area 1002 extends in the vertical direction, and the second soft wind blades 2 are configured as multiple blades and arranged at intervals in the vertical direction.
[0055] In one embodiment, the diameter of the first soft air hole 11 is between 3 mm and 4 mm. For example, the diameter of the first soft air hole 11 can be 3 mm, 3.5 mm, or 4 mm, and this disclosure does not limit it. The diameter of the second soft air hole 21 is between 1.5 mm and 2 mm. For example, the diameter of the second soft air hole 21 can be 1.5 mm, 1.8 mm, or 2 mm, and this disclosure does not limit it.
[0056] In another embodiment, the diameter of the first soft air hole 11 is 1.5 to 2 times the diameter of the second soft air hole 21. For example, the diameter of the first soft air hole 11 can be 4 mm and the diameter of the second soft air hole 21 can be 2 mm; or, the diameter of the first soft air hole 11 can be 3 mm and the diameter of the second soft air hole 21 can be 2 mm; or, the diameter of the first soft air hole 11 can be 3 mm and the diameter of the second soft air hole 21 can be 1.875 mm. This disclosure does not impose specific limitations on these aspects.
[0057] In other implementations, refer to Figure 1 and Figure 2 As shown, the air outlet assembly also includes at least one first drive mechanism 3, which is configured one-to-one with the first air outlet area 1001. The first soft wind blade 1 is movably connected to the air outlet frame 10 and can have a first position opposite to the air outlet direction of the first air outlet area 1001 and a second position arranged along the air outlet direction. The first drive mechanism 3 drives the first soft wind blade 1 in the corresponding first air outlet area 1001 to move between the first position and the second position.
[0058] In this embodiment, by providing the first drive mechanism 3, the first soft-wind blade 1 within the corresponding first air outlet area 1001 can be driven individually, achieving modular division of functional areas. The first soft-wind blade 1 can reciprocate between a first position and a second position, thereby softening the airflow while guiding it. The aforementioned first drive mechanism 3 can be constructed as any suitable drive structure, and this disclosure does not limit it.
[0059] In addition, the air outlet assembly also includes at least one second drive mechanism, which is configured one-to-one with the second air outlet area 1002; the second soft wind blade 2 is movably connected to the air outlet frame 10 and can have a third position opposite to the air outlet direction of the second air outlet area 1002 and a fourth position arranged along the air outlet direction. The second drive mechanism drives the second soft wind blade 2 in the corresponding second air outlet area 1002 to move between the third position and the fourth position.
[0060] By setting the second driving mechanism, the second flexible fan blade 2 in the corresponding second air outlet area 1002 can be driven individually, realizing the modular division of the functional area. Among them, the second flexible fan blade 2 can reciprocate between the third position and the fourth position, and at the same time ensure the intensity of the air flow. The above-mentioned second driving mechanism can be constructed as any appropriate driving structure, and the present disclosure does not limit it.
[0061] Optionally, referring to Figure 1 , the first flexible fan blade 1 in the first air outlet area 1001 is provided in multiple, and the first driving mechanism 3 drives the multiple first flexible fan blades 1 in the corresponding first air outlet area 1001 to move synchronously.
[0062] In this embodiment, by using multiple first flexible fan blades 1 and making multiple first flexible fan blades 1 move synchronously, the direction and diffusion range of the air flow can be more accurately controlled, which helps to ensure the uniformity of the air distribution in the first air outlet area 1001. Since the first driving mechanism 3 drives multiple first flexible fan blades 1 to move synchronously, this design allows the angle or position of the first flexible fan blade 1 to be adjusted as needed, thereby changing the direction and speed of the air outlet to adapt to different environmental needs or user preferences.
[0063] Optionally, referring to Figure 1 , the second flexible fan blade 2 in the second air outlet area 1002 is provided in multiple, and the second driving mechanism drives multiple second flexible fan blades 2 in the corresponding second air outlet area 1002 to move synchronously.
[0064] In this embodiment, by using multiple second flexible fan blades 2 and making multiple second flexible fan blades 2 move synchronously, the direction and diffusion range of the air flow can be more accurately controlled, which helps to ensure the uniformity of the air distribution in the second air outlet area 1002. Since the second driving mechanism drives multiple second flexible fan blades 2 to move synchronously, this design allows the angle or position of the second flexible fan blade 2 to be adjusted as needed, thereby changing the direction and speed of the air outlet to adapt to different environmental needs or user preferences.
[0065] In other embodiments, referring to Figure 1 and Figure 2 , the first driving mechanism 3 includes a first driving part 31, a first crank 32, and a first connecting rod 33, the first crank 32 is transmissionally connected between the first driving part 31 and the first connecting rod 33, the first crank 32 drives the first connecting rod 33 to reciprocate, and the first connecting rod 33 is used to drive multiple first flexible fan blades 1 to move synchronously.
[0066] In this embodiment, the rotation of the first driving part 31 is converted into the reciprocating motion of the first connecting rod 33 by the first crank 32, and this mechanical design can efficiently transmit the power of the first driving part 31 to the first flexible blade 1, and the use of the crank connecting rod mechanism ensures the minimization of the loss in the energy transmission process.
[0067] Since all the first flexible blades 1 are driven by the same first connecting rod 33, the consistency and synchronization of the movement of these blades are ensured, which means that all the first flexible blades 1 can be adjusted at the same speed and angle, so as to keep the air flow in the air outlet area uniform and consistent.
[0068] In addition, the second driving mechanism can also include a second driving part, a second crank, and a second connecting rod, the second crank is drivingly connected between the second driving part and the second connecting rod, the second crank drives the second connecting rod to reciprocate, and the second connecting rod is used to drive the plurality of second flexible blades 2 to move synchronously, and the specific technical effects will not be described here.
[0069] In another embodiment, referring to Figure 3 and Figure 4 , the first flexible blade 1 includes a first blade body 12, a first rotating shaft 13, and a first driving arm 14, a plurality of first flexible holes 11 are arranged on the first blade body 12, one end of the first rotating shaft 13 is connected to the first blade body 12, and the other end is rotatably connected to the air outlet frame 10, the first driving arm 14 is connected to the first blade body 12 and located on one side of the first rotating shaft 13, and the first driving arm 14 is used to input external power to drive the first rotating shaft 13 to rotate.
[0070] In this embodiment, first, the rotatable connection between the first rotating shaft 13 and the air outlet frame 10 allows the first blade body 12 to adjust the angle, thereby changing the direction of the air flow. In combination with the external power input provided by the first driving arm 14, precise control of the blade position can be achieved, and thus precise adjustment of the direction and distribution of the air outlet air flow can be achieved; for example, in a specific transmission design, the first driving arm 14 can be drivingly connected with the above-mentioned first connecting rod 33. Secondly, since the first rotating shaft 13 and the first driving arm 14 are angularly connected to the first blade body 12, this layout helps to uniformly distribute the force applied to the blade, reduces local stress concentration, and enhances the stability and durability of the entire structure. In addition, the power input through the first driving arm 14 can drive the first rotating shaft 13 to rotate, so that the first blade body 12 can freely rotate within a certain range to meet the air outlet requirements of different angles.
[0071] In addition, referring to Figure 3As shown, the outer wall of the first rotating shaft 13 can be provided with a protruding rib 131, and the air outlet frame 10 is formed with a rotating hole 101, and the first rotating shaft 13 is rotatably arranged in the rotating hole 101. The protruding rib 131 can reduce the contact area between the first rotating shaft 13 and the inner wall of the rotating hole 101 and reduce the noise generated by friction. In addition, the first rotating shaft 13 can be provided with a limiting column 132, which can limit the hole edge of the rotating hole 101, thereby preventing the first flexible blade 1 from shaking or moving.
[0072] Referring to Figure 5 As shown, the second flexible blade 2 includes a second blade body 22, a second rotating shaft 23, and a second driving arm 24. A plurality of second flexible holes 21 are arranged on the second blade body 22. One end of the second rotating shaft 23 is connected to the second blade body 22, and the other end is rotatably connected to the air outlet frame 10. The second driving arm 24 is connected to the second blade body 22 and located on one side of the second rotating shaft 23. The second driving arm 24 is used to input external power to drive the second rotating shaft 23 to rotate.
[0073] In this embodiment, first, the rotatable connection between the second rotating shaft 23 and the air outlet frame 10 allows the second blade body 22 to adjust the angle and thus change the direction of the airflow. In combination with the external power input provided by the second driving arm 24, precise control of the blade position can be achieved, thereby achieving precise adjustment of the direction and distribution of the outlet airflow. For example, in a specific transmission design, the second driving arm 24 can be in transmission connection with the second connecting rod described above. Second, since the second rotating shaft 23 and the second driving arm 24 are angularly connected to the second blade body 22, this layout helps to uniformly distribute the force applied to the blade, reduces local stress concentration, and enhances the stability and durability of the entire structure. In addition, the power input by the second driving arm 24 can drive the second rotating shaft 23 to rotate, so that the second blade body 22 can freely rotate within a certain range to meet the air outlet requirements of different angles.
[0074] The present disclosure also provides an air outlet device including the air outlet assembly described above. The air outlet device can include air conditioning equipment, a warm air blower, and a fan, etc. The present disclosure does not limit the specific type of air outlet device; when the air outlet device is configured as an air conditioner, the air conditioner can be a floor standing type air conditioner. In addition, the air outlet frame 10 of the air outlet assembly described above can be a separate structural member or a part of the shell of the air outlet device, and the present disclosure does not limit this.
[0075] Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the disclosure being indicated by the following claims.
[0076] It will be understood that the present disclosure is not limited to the precise structures hereinbefore described and illustrated in the drawings, and that various modifications and changes can be made without departing from its scope. The scope of the present disclosure is limited only by the claims that follow.
Claims
1. An air outlet assembly comprising: The air outlet assembly comprises an air outlet frame, at least one first flexible air blade, and at least one second flexible air blade. The air outlet frame is provided with an air outlet, the air outlet comprises at least one first air outlet area and at least one second air outlet area, at least one first flexible air blade is arranged in each first air outlet area, and at least one second flexible air blade is arranged in each second air outlet area. The first flexible air blade is provided with a plurality of first flexible air holes along the thickness direction thereof, and the second flexible air blade is provided with a plurality of second flexible air holes along the thickness direction thereof. The diameter of the first flexible air hole is greater than the diameter of the second flexible air hole.
2. The air outlet assembly of claim 1, wherein, The first air outlet area is arranged as one, the second air outlet area is arranged as one, and the first air outlet area is located above the second air outlet area.
3. The air outlet assembly of claim 2, wherein, The first air outlet area is arranged in an up-down direction. The first flexible air blade is arranged as one and extends in the up-down direction, or the first flexible air blade is arranged as a plurality and is arranged in an up-down direction in a spaced manner. The second air outlet area extends in the up-down direction. The second flexible air blade is arranged as one and extends in the up-down direction, or the second flexible air blade is arranged as a plurality and is arranged in an up-down direction in a spaced manner. The diameter of the first flexible air hole ranges between 3mm and 4mm, and the diameter of the second flexible air hole ranges between 1.5mm and 2mm.
4. The air outlet assembly of claim 1, wherein, The diameter of the first flexible air hole is 1.5 times to 2 times the diameter of the second flexible air hole.
5. The air outlet assembly of claim 1, wherein, The air outlet assembly further comprises at least one first driving mechanism corresponding to the first air outlet area, the first flexible air blade is movably connected to the air outlet frame, and the first driving mechanism drives the first flexible air blade in the corresponding first air outlet area to move; and / or 6. The air outlet assembly of claim 1, wherein, The air outlet assembly further comprises at least one second driving mechanism corresponding to the second air outlet area, the second flexible air blade is movably connected to the air outlet frame, and the second driving mechanism drives the second flexible air blade in the corresponding second air outlet area to move. The first flexible air blade in the first air outlet area is arranged as a plurality, and the first driving mechanism drives the plurality of first flexible air blades in the corresponding first air outlet area to move synchronously; and / or 7. The air outlet assembly of claim 6, wherein, The second flexible air blade in the second air outlet area is arranged as a plurality, and the second driving mechanism drives the plurality of second flexible air blades in the corresponding second air outlet area to move synchronously. The first driving mechanism comprises a first driving part, a first crank, and a first connecting rod, the first crank is transmissionally connected to the first driving part and the first connecting rod, the first crank drives the first connecting rod to reciprocate, and the first connecting rod is used to drive the plurality of first flexible air blades to move synchronously; and / or 8. The air outlet assembly of claim 7, wherein, The second driving mechanism comprises a second driving part, a second crank, and a second connecting rod, the second crank is transmissionally connected to the second driving part and the second connecting rod, the second crank drives the second connecting rod to reciprocate, and the second connecting rod is used to drive the plurality of second flexible air blades to move synchronously. The second driving mechanism comprises a second driving part, a second crank and a second connecting rod, the second crank is drivingly connected with the second driving part and the second connecting rod, the second crank drives the second connecting rod to reciprocate, and the second connecting rod is used for driving a plurality of the second flexible blades to synchronously move.
9. The air outlet assembly of claim 1, wherein, The first flexible blade comprises a first blade body, a first rotating shaft and a first driving arm, a plurality of the first flexible holes are arranged on the first blade body, one end of the first rotating shaft is connected with the first blade body, the other end of the first rotating shaft is rotatably connected with the air outlet frame, the first driving arm is connected with the first blade body and located on one side of the first rotating shaft, and the first driving arm is used for inputting external power to drive the first rotating shaft to rotate; and / or, The second flexible blade comprises a second blade body, a second rotating shaft and a second driving arm, a plurality of the second flexible holes are arranged on the second blade body, one end of the second rotating shaft is connected with the second blade body, the other end of the second rotating shaft is rotatably connected with the air outlet frame, the second driving arm is connected with the second blade body and located on one side of the second rotating shaft, and the second driving arm is used for inputting external power to drive the second rotating shaft to rotate.
10. An air outlet device, characterized by The air outlet device comprises the air outlet assembly according to any one of claims 1-9.