Air guide structure of air conditioner and air conditioner

By setting an angle adjustment part on the connecting rod and the shaft of the air guide of the air conditioner, a simple adjustment of the air guide structure of the air conditioner is achieved, solving the problem of cumbersome air guide operation in the prior art, and improving the user experience and product reliability.

CN223165703UActive Publication Date: 2025-07-29GREE ELECTRIC APPLIANCE INC OF ZHUHAI
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422476828.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-12
Publication Date
2025-07-29
Estimated Expiration
2034-10-12

AI Technical Summary

Technical Problem

The air guide parts of existing air conditioners are complicated to operate when adjusting the airflow direction, resulting in inconvenient use.

Method used

A first angle adjustment part is provided on the connecting rod, and a second angle adjustment part is provided on the rocking shaft of the air guide member, so that the rocking shaft is shaken relative to the connecting rod, and the adjustment of the wind guide direction is achieved through the cooperation of the first and second angle adjustment parts.

Benefits of technology

The adjustment steps of the air guide direction are simplified, the simplicity and flexibility of operation are improved, the complexity of mechanical connections is reduced, the manufacturing cost is reduced, and the product reliability is improved.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223165703U_ABST
    Figure CN223165703U_ABST
Patent Text Reader

Abstract

The utility model discloses an air conditioner air guide structure and an air conditioner, and the air conditioner air guide structure comprises a connecting rod which is provided with at least one first angle adjusting part along the length direction of the connecting rod; the at least one air guide piece comprises a rocking shaft, a second angle adjusting part and an air guide part, the air guide part is connected with the rocking shaft, the second angle adjusting part is arranged on the rocking shaft, and the rocking shaft is connected with the first angle adjusting part of the connecting rod through the second angle adjusting part; the first angle adjusting part is matched with the second angle adjusting part so that the rocking shaft can rock relative to the connecting rod. The first angle adjusting part is arranged on the connecting rod, the second angle adjusting part is arranged on the rocking shaft of the air guide piece, and the first angle adjusting part and the second angle adjusting part are connected and matched to enable the rocking shaft to rock relative to the connecting rod so as to drive the air guide part connected with the rocking shaft to adjust the direction of airflow. Therefore, the operation of adjusting the air guide direction by a user is simpler and more convenient, and the required adjusting steps are fewer.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of air conditioning, and particularly relates to an air conditioner air guiding structure and an air conditioner. Background Art

[0002] When an air conditioner in the prior art is in use, the air guiding components at the air outlet usually have two groups of air guiding plates, namely a horizontal air guiding plate and a vertical air guiding plate, and the horizontal air guiding plate and the vertical air guiding plate only have the ability of single-axis rotation. When a user changes the air flow direction, it is usually necessary to separately control and adjust the two groups of horizontal and vertical air guiding plates, which makes the operation of adjusting the air guiding direction more cumbersome, inconvenient to use, and the user experience is poor. Summary of the Utility Model

[0003] An embodiment of the utility model provides an air conditioner air guiding structure and an air conditioner, aiming to solve the problems of cumbersome operation and inconvenient use when the air guiding components of the air conditioner adjust the air guiding direction in the prior art.

[0004] In a first aspect, the utility model provides an air conditioner air guiding structure, including: a connecting rod, at least one first angle adjusting portion is arranged along its length direction; at least one air guiding member, including a rocking shaft, a second angle adjusting portion and an air guiding portion, the air guiding portion is connected to the rocking shaft, the second angle adjusting portion is arranged on the rocking shaft, and the rocking shaft is connected to the first angle adjusting portion of the connecting rod through the second angle adjusting portion; wherein, the first angle adjusting portion and the second angle adjusting portion cooperate to make the rocking shaft rock relative to the connecting rod.

[0005] In the air conditioner air guiding structure provided by the utility model, the first angle adjusting portion is a first angle adjusting hole arranged on the connecting rod, and the second angle adjusting portion is rotatably inserted into the first angle adjusting hole.

[0006] In the air conditioner air guiding structure provided by the utility model, a first inner convex ring is arranged in the first angle adjusting hole, a first inner concave portion is arranged on the second angle adjusting portion, the hole wall of the first angle adjusting hole protrudes towards the geometric center of the first angle adjusting hole to form the first inner convex ring, the outer periphery of the rocking shaft is recessed towards its axis to form the first inner concave portion, the first inner concave portion is sleeved on the first inner convex ring, and there is an activity gap between the first inner concave portion and the first inner convex ring.

[0007] In the air conditioner air guiding structure provided by the utility model, a synchronizing rod is further included, at least two of the air guiding members are arranged at intervals along the length direction of the connecting rod, and the synchronizing rod is connected to at least two of the rocking shafts.

[0008] In the air conditioner air guide structure provided by the present utility model, the synchronization rod is provided with a third angle adjustment part, the rocker shaft is further provided with a fourth angle adjustment part, and the third angle adjustment part is connected to the fourth angle adjustment part.

[0009] In the air conditioner air guide structure provided by the present utility model, the third angle adjustment part is a third angle adjustment hole provided on the synchronization rod, and the fourth angle adjustment part is rotatably inserted into the third angle adjustment hole.

[0010] In the air conditioner air guide structure provided by the present utility model, a second inner convex ring is provided in the third angle adjustment hole, the fourth angle adjustment part is provided with a second inner concave part, the hole wall of the third angle adjustment hole protrudes towards the geometric center of the third angle adjustment hole to form the second inner convex ring, the outer periphery of the rocker shaft is recessed towards its axis to form the second inner concave part, the second inner concave part is sleeved on the second inner convex ring, and there is an activity gap between the second inner concave part and the second inner convex ring.

[0011] In the air conditioner air guide structure provided by the present utility model, the rocker shaft is provided with knuckles, the knuckles protrude from the outer periphery of the rocker shaft, and the second angle adjustment part is provided on the knuckles.

[0012] In the air conditioner air guide structure provided by the present utility model, the air guide part includes an air guide plate, and at least three air guide plates are evenly distributed on the outer peripheral side of the rocker shaft with the axis of the rocker shaft as the axis.

[0013] In a second aspect, the present utility model provides an air conditioner, including the above-mentioned air conditioner air guide structure.

[0014] Compared with the prior art, the beneficial effects of the present utility model are:

[0015] In the technical solution of the present utility model, by providing a first angle adjustment part on the connecting rod and a second angle adjustment part on the rocker shaft of the air guide member, the first angle adjustment part and the second angle adjustment part are connected and cooperated to enable the rocker shaft to swing relative to the connecting rod to drive the air guide part connected to the rocker shaft to adjust the direction of the air flow, so that the operation of the user to adjust the air guide direction is more convenient and the required adjustment steps are fewer. Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on the structures shown in these drawings without creative efforts.

[0017] Figure 1Schematic diagram of the air guide structure of the air conditioner according to the embodiment of the present utility model;

[0018] Figure 2 Schematic diagram of the air guide member of the air guide structure of the air conditioner according to the embodiment of the present utility model;

[0019] Figure 3 Another schematic diagram of the air guide member of the air guide structure of the air conditioner according to the embodiment of the present utility model;

[0020] Figure 4 Schematic diagram of the connecting rod of the air guide structure of the air conditioner according to the embodiment of the present utility model;

[0021] Figure 5 Cross-sectional view of the connecting rod of the air guide structure of the air conditioner according to the embodiment of the present utility model;

[0022] Figure 6 Schematic diagram of the synchronizing rod of the air guide structure of the air conditioner according to the embodiment of the present utility model;

[0023] Figure 7 Cross-sectional view when the air guide structure of the air conditioner according to the embodiment of the present utility model is installed in the air conditioner;

[0024] Figure 8 Partial enlarged view A of the cross-sectional view when the air guide structure of the air conditioner according to the embodiment of the present utility model is installed in the air conditioner;

[0025] Figure 9 Another cross-sectional view when the air guide structure of the air conditioner according to the embodiment of the present utility model is installed in the air conditioner;

[0026] Figure 10 Partial enlarged view B of another cross-sectional view when the air guide structure of the air conditioner according to the embodiment of the present utility model is installed in the air conditioner;

[0027] Figure 11 Schematic diagram of the air conditioner according to the embodiment of the present utility model;

[0028] Figure 12 Another schematic diagram of the air conditioner according to the embodiment of the present utility model;

[0029] 1. Connecting rod; 11. End head; 13. First angle adjustment part; 131. First inner convex ring;

[0030] 2. Air guide member; 21. Rocking shaft; 22. Air guide part; 221. Air guide plate; 23. Second angle adjustment part; 231. First inner concave part; 24. Fourth angle adjustment part; 241. Second inner concave part; 25. Joint;

[0031] 3. Synchronizing rod; 31. Gripping part; 34. Third angle adjustment part; 341. Second inner convex ring;

[0032] 4. Body; 41. Mesh cover; 42. Air outlet frame; 5. Air conditioner. Detailed implementation manner

[0033] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0034] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative position relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.

[0035] The present invention provides an air-conditioning air guiding structure, aiming to solve the problem that the operation is cumbersome when adjusting the air guiding direction of the air guiding part 22 of the air conditioner in the prior art, resulting in inconvenient use. Refer to Figures 1 to 12The air-conditioning air-guiding structure provided by the present invention includes: a connecting rod 1, which is provided with at least one first angle adjustment portion 13 along its length direction; at least one air-guiding member 2, including a rocking shaft 21, a second angle adjustment portion 23 and an air-guiding portion 22, the air-guiding portion 22 is connected to the rocking shaft 21, the second angle adjustment portion 23 is provided on the rocking shaft 21, and the rocking shaft 21 is connected to the first angle adjustment portion 13 of the connecting rod 1 through the second angle adjustment portion 23; wherein the first angle adjustment portion 13 cooperates with the second angle adjustment portion 23 to make the rocking shaft 21 rock relative to the connecting rod 1. The so-called connecting rod 1 is a structure for supporting the air-guiding member 2. In order to enable the user to adjust the three rotational degrees of freedom of the air-guiding member 2 at one time, a first angle adjustment portion 13 is provided on the connecting rod 1. The so-called air-guiding member 2 refers to a component for guiding the air flow of the air-conditioning outlet, which is often provided as a plate or a structural member with an air guide plate 221 in the air conditioner. In order to cooperate with the first angle adjustment part 13 so that it has rotational freedom in three-dimensional space, the main structure of the air guide 2 is a rocking shaft 21, which is connected to the air guide part 22 to have the function of guiding air. The second angle adjustment part 23 is set on the rocking shaft 21 and is connected to the first angle adjustment part 13. The structure of the first angle adjustment part 13 and the second angle adjustment part 23 cooperates to enable the rocking shaft 21 to rock relative to the connecting rod 1, so that the air guide part 22 rocks with the rocking shaft 21. The part between the connection between the first angle adjustment part 13 and the second angle adjustment part 23 and the farthest end of the air guide part 22 away from the connecting rod 1 can be freely rocked within a certain conical range, thereby changing the direction of the air conditioning airflow. The user only needs to manually adjust the swing position of the air guide 2 to complete the operation and control of the air guide direction. Compared with the air guide direction control structure under the existing technology, the operation is simpler and faster. At the same time, the air conditioning air guide structure of the present invention is simpler, has fewer parts, and is also conducive to quick assembly and maintenance.

[0036] Compared with the prior art, the present invention provides a first angle adjustment portion 13 on the connecting rod 1 and a second angle adjustment portion 23 on the rocking shaft 21 of the air guide 2. The first angle adjustment portion 13 and the second angle adjustment portion 23 are connected and cooperated to enable the rocking shaft 21 to rock relative to the connecting rod 1 to drive the air guide portion 22 connected to the rocking shaft 21 to adjust the direction of the airflow, thereby making it easier for users to adjust the air guide direction and requiring fewer adjustment steps.

[0037] In one embodiment, referring to Figure 1 , Figure 2 , Figure 4 , Figure 8 and Figure 10, the first angle adjustment part 13 is a first angle adjustment hole provided on the connecting rod 1, and the second angle adjustment part 23 is rotatably inserted into the first angle adjustment hole. In order to facilitate the manufacture of the first angle adjustment part 13, the first angle adjustment hole opened on the connecting rod 1 is used as the first angle adjustment part 13 for connecting with the second angle adjustment part 23. The second angle adjustment part 23 is designed to be rotatably inserted into the first angle adjustment hole, and the second angle adjustment part 23 freely moves within the first angle adjustment hole, so as to realize the rotation relative to the connecting rod 1. Through this relative swing, the second angle adjustment part 23 can affect the angle of the swing shaft 21 and adjust the direction of the air guiding part 22, so that the structural part between the end of the air guiding part 22 far from the swing shaft 21 and the second angle adjustment part 23 can freely swing within a preset conical range. Through the above structural relationship between the first angle adjustment part 13 and the second angle adjustment part 23, the flexible connection between the connecting rod 1 and the air guiding member 2 is realized, enabling the user to adjust the air guiding direction at one time according to needs. At the same time, the solution of this embodiment simplifies the mechanical connection while improving the flexibility of air guiding, which helps to reduce the manufacturing cost and improve the reliability of the product.

[0038] Further, referring to Figure 5 、 Figure 8 and Figure 10, a first inner convex ring 131 is provided in the first angle adjustment hole. The second angle adjustment part 23 is provided with a first inner concave part 231. The hole wall of the first angle adjustment hole protrudes toward the geometric center of the first angle adjustment hole to form the first inner convex ring 131. The outer periphery of the rocking shaft 21 is recessed toward its axis to form the first inner concave part 231. The first inner concave part 231 is sleeved on the first inner convex ring 131, and there is an activity gap between the first inner concave part 231 and the first inner convex ring 131. In order to make the angle adjustment achieved by shaking between the first angle adjustment part 13 and the second angle adjustment part 23 more accurate, a first inner convex ring 131 is provided in the first angle adjustment part 13 to provide stable support and positioning, and a first inner concave part 231 is provided in the second angle adjustment part 23 to cooperate with it. The first inner concave part 231 is sleeved and matched with the first inner convex ring 131, and the tight connection between the two components forms a stable support and a structure of mutual limitation. The first inner convex ring 131 is formed by the protrusion of the hole wall of the first angle adjustment hole toward its collection center, and the inner space of its hole is similar to the shape of a funnel. On the second angle adjustment part 23, the outer periphery of the rocking shaft 21 is recessed toward its axis to form a ring-shaped inner concave part as the first inner concave part 231. The shape of the first inner concave part 231 is sleeved with the first inner convex ring 131. The cooperation between the first inner convex ring 131 and the first inner concave part 231 provides a larger rocking range or rocking freedom degree for the air guiding member, and has a better mutual cooperation effect when not rocking to prevent the disturbance of the air guiding member caused by external interference. At the same time, the above features also enable the concave part to smoothly contact the convex ring during the rocking process, thereby reducing wear and jamming phenomena. The maximum outer diameter of the first inner concave part 231 is greater than the minimum inner diameter of the first inner convex ring 131, ensuring that there is enough space between the two to realize the swing of the air guiding member 2, while avoiding excessive loosening of the connection structure between the two, resulting in the air guiding angle being easily disturbed and changed, and enhancing the stability of the air guiding part 22 during operation. Through the solution disclosed in this embodiment, it is ensured that there is enough space for the swing of the rocking shaft 21, and at the same time, excessive loosening between the air guiding member 2 and the connecting rod 1 is avoided, thereby ensuring the stability of the air guiding part 22 during air guiding and providing more accurate air flow adjustment.

[0039] In one embodiment, referring to Figure 1 , Figures 6 to 10, the air guiding structure of the present utility model further includes a synchronizing rod 3. At least two air guiding members 2 are arranged at intervals along the length direction of the connecting rod 1, and the synchronizing rod 3 is connected to at least two rocker shafts 21. In order to achieve the coordinated movement between multiple rocker shafts 21, the synchronizing rod 3 is provided. As a connecting component, when the synchronizing rod 3 connects multiple air guiding members 2 at the same time, it can ensure that multiple spaced rocker shafts 21 can swing simultaneously or synchronously, so as to achieve a more consistent air flow direction during the air guiding process. The air guiding members 2 arranged at intervals along the length direction of the connecting rod 1 can enhance the air guiding effect, so that the air can be more evenly distributed to different areas of the room. When the synchronizing rod 3 is pushed or rotated, all the rocker shafts 21 connected thereto can be controlled together. The connection relationship between the synchronizing rod 3 and the air guiding member 2 can effectively improve the system response speed and control stability of the entire air guiding structure, making the process of adjusting the air flow direction more efficient. The synchronizing rod 3 can be connected to the air guiding member 2 by a hinge or a sliding connection to ensure that the movements between different rocker shafts 21 can be coordinated and the problem of out-of-step does not occur.

[0040] In one embodiment, referring to Figure 1 , Figures 6 to 10 , the synchronizing rod 3 is provided with a third angle adjusting portion 34, and the rocker shaft 21 is further provided with a fourth angle adjusting portion 24, and the third angle adjusting portion 34 is connected to the fourth angle adjusting portion 24. In order to cooperate with the angle adjusting function between the connecting rod 1 and the air guiding member 2, the fourth angle adjusting portion 24 is arranged on the side of the rocker shaft 21 away from the air guiding portion 22, and the third angle adjusting portion 34 is arranged on the synchronizing rod 3. Through the relative cooperation and connection of each angle adjusting portion, a stable four-bar linkage structure is formed among the rocker shafts 21, the connecting rod 1 and the synchronizing rod 3 of adjacent air guiding members 2, further enhancing the stability of the air guiding structure of the air conditioner. The cooperative setting of the third angle adjusting portion 34 and the fourth angle adjusting portion 24 can be used to actively adjust the angle between the rocker shaft 21 and the synchronizing rod 3, thereby changing the angle between the rocker shaft 21 and the connecting rod 1, and further affecting the air flow direction of the air guiding portion 22, realizing a more precise and fast air guiding control.

[0041] In one embodiment, referring to Figure 1 , Figures 6 to 10, the third angle adjustment part 34 is a third angle adjustment hole provided on the synchronizing rod 3, and the fourth angle adjustment part 24 is rotatably inserted into the third angle adjustment hole. Similar to the structures of the first angle adjustment part 13 and the second angle adjustment part 23 between the connecting rod 1 and the rocker shaft 21 in the foregoing embodiment, the third angle adjustment hole opened in the hole on the synchronizing rod 3 serves as the third angle adjustment part 34, and the fourth angle adjustment part 24 is rotatably inserted into the third angle adjustment hole. The interaction between the third angle adjustment hole and the fourth angle adjustment part 24 makes the adjustment process of the entire air guiding structure smoother. The user can directly affect the angle of the rocker shaft 21 by adjusting the synchronizing rod 3, and the cooperation between the third angle adjustment hole and the fourth angle adjustment part 24 provides the physical space for angle adjustment. In cooperation with the first angle adjustment part 13 and the second angle adjustment part 23, synchronous angle adjustment and simultaneous limiting can be achieved, making the air guiding structure of the air conditioner more stable. The air guiding structure part disclosed in this embodiment can effectively coordinate the work of multiple rocker shafts 21, further simplifying the adjustment operation of the user.

[0042] Further, referring to Figure 1 , Figures 7 to 10, a second inner convex ring is provided in the third angle adjustment hole, and a second inner concave portion is provided on the fourth angle adjustment portion. The hole wall of the third angle adjustment hole protrudes toward the geometric center of the third angle adjustment hole to form the second inner convex ring, and the outer periphery of the swing shaft is recessed toward its axis to form the second inner concave portion. The second inner concave portion is sleeved on the second inner convex ring, and there is an activity gap between the second inner concave portion and the second inner convex ring. Similar to the structures of the first angle adjustment portion 13 and the second angle adjustment portion 23, a second inner convex ring 341 is provided on the third angle adjustment portion 34, and a second inner concave portion 241 is provided on the fourth angle adjustment portion 24. The second inner convex ring 341 provides a structural protruding portion on the third angle adjustment portion 34, and the second inner concave portion 241 forms a corresponding recessed portion on the fourth angle adjustment portion 24, so that the second inner convex ring 341 can be smoothly sleeved in the second inner concave portion 241. The fourth angle adjustment portion 24 freely swings within the third angle adjustment portion 34, ensuring the accuracy of its relative position and angle during swinging, and at the same time preventing it from falling off. The second inner convex ring 341 is formed by the hole wall of the second angle adjustment hole protruding toward its collection center, and the inner space of the hole is similar to the shape of a funnel. On the fourth angle adjustment portion 24, the outer periphery of the swing shaft 21 is recessed toward its axis to form an annular inner concave portion as the second inner concave portion 241, and the shape of the first inner concave portion 241 is sleeved with the first inner convex ring 131. The cooperation of the second inner convex ring 341 and the second inner concave portion 241 provides a larger swinging range or swinging freedom degree for the air guiding member, and has a better mutual cooperation effect when not swinging to prevent the air guiding member from being disturbed by external interference. At the same time, the above features also enable the concave portion to smoothly contact the convex ring during the swinging process, thereby reducing wear and jamming phenomena. The maximum outer diameter of the first inner concave portion 231 is greater than the minimum inner diameter of the first inner convex ring 131, ensuring that there is enough space between the two to realize the swing of the air guiding member 2, while avoiding excessive loosening of the connection structure between the two, resulting in the air guiding angle being easily disturbed and changing automatically, and ensuring the stability of the air guiding portion 22 during operation.

[0043] Further, taking Figures 7 to 10For example, in actual use, it was found that there were certain mutual restrictions between the rocking shaft 21 and the synchronization rod 3, and between the rocking shaft 21 and the connecting rod 1 when the rocking shaft 21 was rocked. The shorter the distance between the second angle adjustment part 23 and the fourth angle adjustment part 24, the greater the rocking angle of the rocking shaft 21. As the distance between the first angle adjustment part 13 and the third angle adjustment part 34 becomes shorter, the stability of the structure formed between the adjacent rocking shafts 21, the synchronization rod 3 and the connecting rod 1 also decreases, and the air guide 2 is more susceptible to external interference factors and non-human angle changes, such as strong winds and vibrations, resulting in the loss of the directional air guidance effect. Therefore, the distance between the second angle adjustment part 23 and the fourth angle adjustment part 24 is usually set according to a certain ratio of the distance between adjacent air guides 2, so as to meet the stability and controllable angle range of the rocking shaft 21 according to different actual usage conditions.

[0044] In one embodiment, referring to Figure 8 and Figure 10 , a joint 25 is provided on the rocking shaft 21, and the joint 25 protrudes from the outer periphery of the rocking shaft, and the second angle adjustment part 23 is provided on the joint 25. In the actual production process, the air guide 2 is usually produced in one go by injection molding. In order to make the connection between the rocking shaft 21 and the connecting rod 1 more stable, a joint 25 is provided on the rocking shaft 21 to increase the structural size of the second angle adjustment part, thereby enhancing the structural strength. In addition, when installing the air-conditioning air-guiding structure, the fourth angle adjustment part 24 will first pass through the first angle adjustment part 13, and then the second angle adjustment part 23 will be docked with the first angle adjustment part 13. Due to the existence of the joint 25 and the need for the first angle adjustment part 13 to cooperate with the second angle adjustment part 23, the fourth angle adjustment part 24 will not cause mutual obstruction and jamming when passing through the first angle adjustment part 13, and the installation will be smoother, making the installation and connection of the air-conditioning air-guiding structure of the utility model more efficient.

[0045] In order to more clearly illustrate the solution of the present invention, the following is an example of the assembly process of the air-conditioning air guide structure in one embodiment of the present invention. Figure 1 and Figure 7For example, multiple air guides 2 are first inserted into the connecting rod 1 in parallel, and the first angle adjustment portion 13 and the second angle adjustment portion 23 are fitted together. Since the outer diameter of the second inner recess 241 is smaller than the inner diameter of the first inner convex ring 131, the first inner convex ring 131 will not structurally interfere with the second inner recess 241 during the installation process, and the installation is unobstructed. Therefore, when assembling the connecting rod 1 and the air guide 2, if automated assembly equipment is used, the assembly time can be shortened, and the positioning mold is not required, which also reduces production costs. Then, the synchronization rod 3 is installed on the multiple air guides 2, and the fourth angle adjustment portions 24 on the multiple air guides 2 on the synchronization rod 3 are aligned and fitted together to complete the installation of the air conditioning air guide structure. In particular, in order to make the fitting connection process between the paired angle adjustment parts smoother, inclined surfaces facing away from the recesses are also provided on the upper and lower sides of the first recessed portion 231 and the second recessed portion 241. Since the connecting rod 1, the air guide 2 and the synchronization rod 3 are usually made of plastic with a certain elasticity, the above-mentioned inclined surfaces will stretch the corresponding inner convex rings during installation, thereby facilitating the alignment and fitting of the paired inner recesses and inner convex rings, thereby achieving alignment and quick installation.

[0046] In one embodiment, the air guide portion 22 includes air guide plates 221. At least three air guide plates 221 are evenly distributed around the outer periphery of the rocking shaft 21, with the axis of the rocking shaft 21 as the axis. Providing at least three air guide plates 221 not only achieves more uniform airflow distribution, but also, the axially symmetrical distribution of at least three air guide plates 221 facilitates airflow guidance within a pre-set conical range as the rocking shaft 21 swings. This enhances the overall stability and wind pressure resistance of the air guide plates 221, thereby improving the air guiding effect of the air conditioner. Furthermore, the configuration of multiple air guide plates 221 allows for flexible adjustment of airflow direction in different usage scenarios to meet the varying needs of users.

[0047] The present invention also provides an air conditioner 5, which includes the air conditioning air guide structure in the above embodiment. Figure 7 , Figure 9 , Figure 11 and Figure 12, the air guiding structure is installed on the air outlet frame 42 of the fuselage 4. Both sides of the connecting rod 1 are provided with end heads 11, and the end heads 11 are inserted into the holes (not shown in the figure) on the air outlet frame 42. Both the end heads 11 and the holes are rectangular, ensuring the stable installation of the connecting rod 1. Since the connecting rod 1 itself is made of elastic plastic material, during installation and disassembly, only the connecting rod 1 and the synchronizing rod 3 need to be slightly bent to insert the end head 11 of the connecting rod 1 into the hole on the air outlet frame 42. Before the air flow blows out from the air outlet frame 42 and passes through the air conditioner air guiding structure, it also blows through the mesh cover 41 for diffusing the flow, making the air flow more uniform, and then is guided by the air conditioner air guiding structure and blown out of the air conditioner 5, realizing the directional and uniform blowing in the space where the air conditioner 5 is arranged to meet the user's usage requirements. When the user needs to control the blowing direction, just hold the gripping part 31 on the synchronizing rod 3 with the hand to control. The gripping part 31 is provided with corrugated textures, which play a role in prompting the user to grip and anti-slip.

[0048] The above is only the specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention can easily think of various equivalent modifications or substitutions, and these modifications or substitutions should all be covered within the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the protection scope of the claims.

Claims

1. An air conditioner air guide structure, characterized in that, Comprising: A connecting rod, having at least one first angle adjustment portion along its length direction; At least one air guiding member, including a rocking shaft, a second angle adjustment portion and an air guiding portion, the air guiding portion is connected to the rocking shaft, the second angle adjustment portion is provided on the rocking shaft, and the rocking shaft is connected to the first angle adjustment portion of the connecting rod through the second angle adjustment portion; Wherein, the first angle adjustment portion cooperates with the second angle adjustment portion to enable the rocking shaft to rock relative to the connecting rod.

2. The air conditioner air guiding structure according to claim 1, characterized in that, The first angle adjustment portion is a first angle adjustment hole provided on the connecting rod, and the second angle adjustment portion is rotatably inserted into the first angle adjustment hole.

3. The air conditioner air guide structure according to claim 2, characterized in that, A first inner convex ring is provided in the first angle adjustment hole, the second angle adjustment portion is provided with a first inner concave portion, the hole wall of the first angle adjustment hole protrudes towards the geometric center of the first angle adjustment hole to form the first inner convex ring, the outer periphery of the rocking shaft is recessed towards its axis to form the first inner concave portion, the first inner concave portion is sleeved on the first inner convex ring, and there is an activity gap between the first inner concave portion and the first inner convex ring.

4. The air-conditioning air guide structure according to any one of claims 1 to 3, characterized in that It further includes a synchronizing rod, at least two of the air guiding members are arranged at intervals along the length direction of the connecting rod, and the synchronizing rod is connected to at least two of the rocking shafts.

5. The air-conditioning air guide structure according to claim 4, wherein The synchronizing rod is provided with a third angle adjustment portion, and the rocking shaft is further provided with a fourth angle adjustment portion, and the third angle adjustment portion is connected to the fourth angle adjustment portion.

6. The air conditioner air guiding structure according to claim 5, characterized in that, The third angle adjustment portion is a third angle adjustment hole provided on the synchronizing rod, and the fourth angle adjustment portion is rotatably inserted into the third angle adjustment hole.

7. The air conditioner air guide structure according to claim 6, characterized in that A second inner convex ring is provided in the third angle adjustment hole, the fourth angle adjustment portion is provided with a second inner concave portion, the hole wall of the third angle adjustment hole protrudes towards the geometric center of the third angle adjustment hole to form the second inner convex ring, the outer periphery of the rocking shaft is recessed towards its axis to form the second inner concave portion, the second inner concave portion is sleeved on the second inner convex ring, and there is an activity gap between the second inner concave portion and the second inner convex ring.

8. The air-conditioning air guide structure according to claim 1, characterized in that, A joint is provided on the rocking shaft, the joint protrudes from the outer periphery of the rocking shaft, and the second angle adjustment portion is provided on the joint.

9. The air conditioner air guide structure according to claim 1, characterized in that, The air guiding portion includes an air guiding plate, and at least three of the air guiding plates are evenly distributed on the outer peripheral side of the rocking shaft with the axis of the rocking shaft as the axis.

10. An air conditioner, characterized in that, An air-conditioning air guiding structure according to any one of claims 1 to 9 is included.