Air conditioner stacking frame

By setting a superimposed frame and integrating a drive structure on the side end face of the air conditioner, the problems of large space occupation and high cost of traditional air conditioner air guide plate adjustment mechanism are solved, realizing the compactness of the internal design of the air conditioner and reducing costs, and improving the stability of the air guide plate and the smoothness of airflow.

CN223580192UActive Publication Date: 2025-11-21FOSHAN VIOMI ELECTRICAL TECH
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Patent Information

Application Number
CN202422948099.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-11-21
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The existing air conditioning deflector adjustment mechanism relies on a complex lifting mechanism, which occupies a large amount of internal space, affects the flexibility of the air conditioning internal design, and increases costs.

Method used

An air conditioning stacking frame is adopted, and the drive structure is integrated into the cavity of the stacking frame. Multiple stacking frames are set on the side end face of the air conditioner to provide a stable connection point and heat insulation function, and optimize airflow guidance.

Benefits of technology

It improves the compactness of the internal structure design of the air conditioner, reduces manufacturing costs, enhances the stability of the air guide plate and the smoothness of airflow, and prevents condensation and airflow disturbance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an air conditioner stacking frame which comprises a first stacking frame body, the first stacking frame body is arranged on the side end face of an air conditioner, a cavity is formed in the first stacking frame body, a first driving structure is assembled in the cavity, the first driving structure is provided with a first driving arm, the first driving arm penetrates through the first stacking frame body, and a second driving arm is assembled in the first stacking frame body. The first driving structure is used for being in transmission connection with the first air guide plate of the air conditioner so as to drive the first air guide plate to move upwards or downwards relative to the air conditioner, the first driving structure is integrated in the cavity of the first stacking frame, the situation that a traditional driving structure occupies the internal space of the air conditioner is avoided, and the internal structural design of the air conditioner is more compact; and the first stacking frame is arranged on the side end face of the air conditioner, upgrading can be carried out on the basis of a mold of an existing air conditioner middle frame, and the manufacturing cost of the air conditioner is greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technical field especially relates to a kind of air conditioner superposition frame. BACKGROUND

[0002] In the existing air conditioning technical field, in order to improve user experience, reduce the discomfort caused by cold wind or hot wind directly blowing to human body, especially for infants, the elderly and susceptible population, the anti-direct blowing function has become an important design direction of air conditioning product. One of the traditional solutions is to set a baffle parallel to the panel at the air outlet of the air conditioner. The baffle sends the wind into the gap between the baffle and the panel through the air outlet of the air conditioner. The airflow after subsequent air guiding can effectively avoid directly blowing to the human body, achieving the effect of anti-direct blowing.

[0003] However, the existing baffle adjustment mechanism mostly relies on complex lifting mechanisms to realize the up-down or angle adjustment thereof. These mechanisms not only require additional motors, transmission devices, guide rails and other components, thus occupying a considerable space inside the air conditioner. Especially when the internal structure of the air conditioner is designed to be compact, the introduction of these mechanisms greatly limits the flexibility of the internal design of the air conditioner, and also requires adjustment of the shape and installation method of other components inside the air conditioner, which not only may affect the overall performance of the air conditioner, but also increases the design and production costs and the mold opening cost for new-shaped components. SUMMARY

[0004] In order to overcome at least one of the defects of the prior art described above, the utility model provides an air conditioner superposition frame, which can solve the problem of affecting the performance of the air conditioner and increasing the design and mold opening cost caused by setting a transmission structure inside the air conditioner in the prior art.

[0005] The technical solution adopted by the utility model to solve the problem is:

[0006] An air conditioner superposition frame, comprising:

[0007] A first superposition frame is provided on the side end face of the air conditioner. The first superposition frame has a cavity inside, and a first drive structure is assembled in the cavity. The first drive structure has a first drive arm, which passes through the first superposition frame and is used to drive connect the first baffle of the air conditioner, so as to drive the first baffle to move up or down relative to the air conditioner.

[0008] By adopting the above scheme, by integrating the first driving structure in the cavity of the first superposition frame, the occupation of the traditional driving structure to the internal space of the air conditioner is avoided, the internal structure design of the air conditioner is more compact, more space is provided for other key components, and the first superposition frame is arranged at the side end face of the air conditioner, which can be upgraded on the basis of the existing air conditioner frame mold, greatly reducing the manufacturing cost of the air conditioner.

[0009] In addition, the first superposition frame is provided with a cavity, that is, the first superposition frame is equivalent to an air heat insulation cavity, which can effectively prevent the phenomenon of condensation on the side end face of the air conditioner provided with the first superposition frame, and can also prevent the air flow from the side of the air conditioner from flowing into the internal air conditioner to affect the internal air flow of the air conditioner.

[0010] Further, the two side end faces of the air conditioner are provided with the first superposition frame, the first driving structure is arranged in the first superposition frame on one side, and the first driving arm is in transmission connection with the first air deflector.

[0011] When the second driving structure is arranged in the first superposition frame on the other side, the second driving structure has a second driving arm, and the second driving arm is in transmission connection with the first air deflector, so that the first driving arm and the second driving arm jointly act on the first air deflector to move upward or downward relative to the air conditioner.

[0012] When the second driving structure is arranged in the first superposition frame on the other side, the second driving structure has a second driving arm, and the second driving arm is in transmission connection with the first air deflector, so that the first driving arm and the second driving arm jointly act on the first air deflector to move upward or downward relative to the air conditioner.

[0013] By adopting the above scheme, by arranging the first superposition frame on both sides of the air conditioner, and arranging the first driving structure in the first superposition frame on one side and the second driving structure or the driven structure in the first superposition frame on the other side, multiple stable connection points are provided for the first air deflector, the multiple stable connection points can enhance the stability of the air deflector during movement, improve the structural strength and durability of the entire air conditioner system, and effectively avoid the shaking or deviation phenomenon caused by the single-sided connection of the first air deflector, thereby improving the user experience.

[0014] Further, the first superposition frame comprises an assembly superposition frame and a heat insulation superposition frame, the assembly superposition frame and the heat insulation superposition frame are sequentially attached along the thickness direction of the air conditioner, the assembly superposition frame and the heat insulation superposition frame are both cavity structures, and the first driving structure is arranged in the cavity of the assembly superposition frame.

[0015] By adopting the above scheme, since the first driving structure needs to drive the first deflector, its installation position is close to the first deflector, which is the best. If a traditional single superposition frame design is adopted, the first driving structure will need to be placed in a cavity with a deep depth for assembly, increasing the assembly complexity, and the two-section design of the first superposition frame, i.e., the first superposition frame is divided into an assembly superposition frame and a heat insulation superposition frame, the assembly superposition frame is arranged on the side close to the first deflector, so that the cavity depth of the assembly superposition frame is small, which provides a more spacious and convenient space for the installation of the first driving structure, thereby greatly reducing the assembly difficulty.

[0016] In addition, the assembly superposition frame and the heat insulation superposition frame are both cavities, and therefore have heat insulation functions, thereby achieving the effect of preventing condensation.

[0017] Further, the heat insulation superposition frame is provided with an assembly edge on the side facing the assembly superposition frame, the assembly superposition frame is provided with an opening on the side facing the heat insulation superposition frame, the assembly superposition frame and the heat insulation superposition frame are assembled by inserting the assembly edge into the opening, and the assembly edge abuts against the inner wall of the opening.

[0018] By adopting the above scheme, the assembly edge and the opening are matched, which facilitates the assembly of the heat insulation superposition frame and the assembly superposition frame.

[0019] Further, a second superposition frame is further included, the second superposition frame is arranged between the first deflector and the panel, the upper side and the lower side of the second superposition frame are both provided with a second protrusion facing away from the panel, and the second protrusion has a gap with the first deflector.

[0020] By adopting the above scheme, the second protrusion has a gap with the first deflector, the gap forms an air duct, and the second superposition frame is provided with the second protrusion, which is protruded on the second superposition frame and away from the panel, and can change the direction of the gas flowing along the first deflector again, thereby achieving the effect of horizontal air outlet.

[0021] Further, the first superposition frame is provided with a first protrusion facing away from the panel.

[0022] By adopting the above scheme, the first protrusion has a gap with the first deflector, the gap forms an air duct, and the first protrusion is protruded on the first superposition frame and away from the panel, which can change the direction of the gas flowing along the first deflector again, thereby achieving the effect of horizontal air outlet.

[0023] Further, the first superposition frame and the second superposition frame are integrally formed, and the second protrusion is connected with the adjacent first protrusion.

[0024] By adopting the above scheme, the design that the first superposition frame and the second superposition frame are integrally formed eliminates the joint or connecting piece between the first superposition frame and the second superposition frame, thereby enhancing the integrity and stability of the whole structure and facilitating the installation relative to the air conditioner shell.

[0025] Further, the lower side of the second superposition frame is provided with an avoiding opening for avoiding the air outlet of the air conditioner, and the avoiding opening of the second superposition frame is provided with a second air baffle, which is inclined towards the direction away from the first air baffle, for guiding the airflow to pass through the gap between the second superposition frame body and the panel.

[0026] By adopting the above scheme, the avoiding opening allows the air outlet of the air conditioner to smoothly discharge the airflow, avoiding the problem of poor airflow caused by the blockage of the second superposition frame. At the same time, the second air baffle is inclined towards the direction away from the first air baffle, effectively guiding the airflow to pass through the gap between the second superposition frame body and the panel, preventing the airflow from flowing into the gap between the second superposition frame and the panel, and further ensuring the smooth flow of the airflow.

[0027] Further, the second air baffle is an arc-shaped plate and extends into the air outlet of the air conditioner.

[0028] By adopting the above scheme, the arc-shaped second air baffle can more accurately guide the airflow to flow along the predetermined trajectory, reducing the turbulence and vortex phenomenon of the airflow, and ensuring the stability and continuity of the airflow.

[0029] Further, the second superposition frame and the second air baffle are integrally formed.

[0030] By adopting the above scheme, the integrally formed second superposition frame body and second air baffle ensure seamless connection between the second superposition frame body and the second air baffle, greatly reducing the possibility of the airflow escaping from the connecting gap when passing through, preventing the occurrence of condensation, and also preventing problems such as airflow disturbance caused by the gap, thereby achieving the effect of improving the stability of the airflow.

[0031] In summary, the air conditioner superposition frame provided by the present application has the following technical effects:

[0032] 1. By integrating the first driving structure in the cavity of the first superposition frame, the traditional driving structure is avoided to occupy the internal space of the air conditioner, so that the internal structure design of the air conditioner is more compact, and more space is provided for other key components.

[0033] 2. The first superposition frame is arranged at the side end surface of the air conditioner, which can be upgraded on the basis of the existing air conditioner frame mold, greatly reducing the manufacturing cost of the air conditioner.

[0034] 3. The first superimposed frame is provided with a cavity, that is, the first superimposed frame is equivalent to an air heat insulation cavity, which can effectively prevent the condensation phenomenon of the side end surface of the air conditioner provided with the first superimposed frame, and can also prevent the air flow from the side surface of the air conditioner into the interior of the air conditioner to affect the air flow in the interior of the air conditioner. BRIEF DESCRIPTION OF DRAWINGS

[0035] Figure 1 It is a three-dimensional structure schematic diagram of the air conditioner superimposed frame of the utility model;

[0036] Figure 2 It is a first perspective view explosion structure schematic diagram of the air conditioner superimposed frame of the utility model;

[0037] Figure 3 It is a second perspective view explosion structure schematic diagram of the air conditioner superimposed frame of the utility model;

[0038] Figure 4 It is a structure schematic diagram of the air conditioner superimposed frame and the air conditioner in an assembled state of the utility model;

[0039] Figure 5 It is a cross-sectional structure schematic diagram of the air conditioner superimposed frame and the air conditioner in an assembled state of the utility model;

[0040] Figure 6 It is an enlarged view of A of the utility model; Figure 5

[0041] Figure 7 It is a schematic diagram of the air flow direction of the utility model.

[0042] Among them, the meaning of the reference signs is as follows: 1, first superimposed frame; 11, assembled superimposed frame; 111, opening; 12, heat insulation superimposed frame; 121, assembled edge; 13, first protrusion; 21, first driving structure; 211, first driving arm; 22, second driving structure; 221, second driving arm; 3, first air deflector; 4, second superimposed frame; 41, second protrusion; 42, avoiding opening; 43, second air deflector; 5, panel; 6, air outlet. DETAILED DESCRIPTION

[0043] In order to better understand and implement, the technical solutions in the embodiments of the utility model will be clearly and completely described and discussed below in combination with the drawings of the utility model. Obviously, only some examples of the utility model are described here, and not all examples. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor belong to the protection scope of the utility model.

[0044] In order to facilitate the understanding of the embodiments of the utility model, the following will be further explained and described with specific embodiments as examples in combination with the drawings, and each embodiment does not constitute a limitation on the embodiments of the utility model.​

[0045] In the description of the utility model, it needs to explain, the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and so on indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawing, just for the convenience of describing the utility model and simplifying the description, and it is not indicated or implied that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the utility model.

[0046] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the utility model belongs. The terms used in the specification of the utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the utility model.

[0047] Referring to Figures 1-7 The utility model discloses a kind of air conditioner superposition frame, first superposition frame 1, the first superposition frame 1 is located in the side end surface of air conditioner, the first superposition frame 1 inside is equipped with cavity, the first drive structure 21 is assembled in the cavity, the first drive structure 21 has first drive arm 211, the first drive arm 211 is set through the first superposition frame 1, for transmission connection the first air deflector 3 of air conditioner, to drive the first air deflector 3 relative to the air conditioner moves up or moves down.

[0048] Specifically, the first superposition frame 1 is located in the side end surface of the air conditioner, which refers to one of the end surfaces on the left and right sides of the air conditioner. The first superposition frame 1 has a cavity inside, and the first drive structure 21 is assembled in the cavity. The first drive structure 21 has a first drive arm 211, which is in transmission connection with the first air deflector 3. The first drive structure 21 can be a gear drive structure, a connecting rod drive structure, or other drive structures, capable of driving the first drive arm 211 to swing or rotate, and at the same time driving the first air deflector 3 to move up or down relative to the air conditioner.

[0049] The side surface of the first superposition frame 1 is best identical in shape to the side end surface of the air conditioner, which can ensure that the air conditioner body assembled with the first superposition frame 1 is more robust. More importantly, by using the above structure, it can also prevent air flow from the side surface of the air conditioner from flowing into the interior of the air conditioner and affecting the air flow inside the air conditioner.

[0050] Referring to Figures 1-3 As shown in the drawings, in some embodiments, both side end surfaces of the air conditioner are provided with the first superposition frame 1. The first drive structure 21 is arranged in the first superposition frame 1 on one side, and the first drive arm 211 is in transmission connection with the first air deflector 3. The second drive structure 22 or the driven structure is arranged in the first superposition frame 1 on the other side.

[0051] When the second driving structure 22 is arranged in the first superposition frame 1 on the other side, the second driving structure 22 has a second driving arm 221, and the second driving arm 221 is in transmission connection with the first air deflector 3, so that the first driving arm 211 and the second driving arm 221 jointly act on the first air deflector 3 to move the first air deflector 3 upward or downward relative to the air conditioner.

[0052] When the driven structure is arranged in the first superposition frame 1 on the other side, the driven structure has a driven arm, and the driven arm is in transmission connection with the first air deflector 3, so that when the first driving arm 211 drives the first air deflector 3 to move, the driven arm moves synchronously with the first air deflector 3.

[0053] Specifically, in order to improve the stability when driving the first air deflector 3, the first superposition frame 1 is arranged on both side end faces of the air conditioner, and in this embodiment, one first superposition frame 1 is arranged on each side end face of the air conditioner. One of the first superposition frames 1 is equipped with the first driving structure 21, and correspondingly, the first driving arm 211 passes through the first superposition frame 1 and is in transmission connection with the first air deflector 3. The other first superposition frame 1 can be selectively arranged with the second driving structure 22 or the driven structure.

[0054] When the second driving structure 22 is arranged in the first superposition frame 1 on the other side, the second driving structure 22 has a second driving arm 221, and the second driving arm 221 is in transmission connection with the first air deflector 3, so that the first driving arm 211 and the second driving arm 221 jointly act on the first air deflector 3 to move the first air deflector 3 upward or downward relative to the air conditioner.

[0055] When the driven structure is arranged in the first superposition frame 1 on the other side, the driven structure has a driven arm, and the driven arm is in transmission connection with the first air deflector 3, so that when the first driving arm 211 drives the first air deflector 3 to move, the driven arm moves synchronously with the first air deflector 3.

[0056] In this embodiment, the first driving structure 21 and the second driving structure 22 are arranged in the two first superposition frames 1 respectively, and the first driving structure 21 and the second driving structure 22 are arranged in a symmetrical relationship with the center line of the air conditioner. In this way, when the first air deflector 3 is driven, more power is provided, and in the case of more power redundancy, a driver with lower cost and / or smaller size can also be selected, thereby further reducing the manufacturing cost of the air conditioner.

[0057] Referring to Figures 1-3 As shown in some embodiments, in order to facilitate the installation of the first driving structure 21, the first superposition frame 1 includes an assembly superposition frame 11 and a heat insulation superposition frame 12, which are sequentially attached along the thickness direction of the air conditioner. The assembly superposition frame 11 and the heat insulation superposition frame 12 are both hollow structures, and the first driving structure 21 is arranged in the cavity of the assembly superposition frame 11.

[0058] Specifically, since the first driving structure 21 needs to drive the first air deflector 3, it is best to install it close to the first air deflector 3. If a traditional single superposition frame design is adopted, the first driving structure 21 will need to be placed in a deep cavity for assembly, increasing the complexity of assembly. The two-section design of the first superposition frame 1, i.e., dividing the first superposition frame 1 into an assembly superposition frame 11 and a heat insulation superposition frame 12, sets the assembly superposition frame 11 close to one side of the first air deflector 3, so that the cavity depth of the assembly superposition frame 11 is small, providing more spacious and convenient space for the installation of the first driving structure 21, thereby greatly reducing the assembly difficulty.

[0059] Correspondingly, if the air conditioner is provided with the first superposition frame 1 on both sides, the first superposition frame 1 on both sides is set in the form of combination of the assembly superposition frame 11 and the heat insulation superposition frame 12, so as to facilitate the installation of the internal first driving structure 21 and the second driving structure 22 or the driven structure.

[0060] It should be noted that since the assembly superposition frame 11 itself also has a cavity, the assembly superposition frame 11 and the heat insulation superposition frame 12 both have heat insulation function, thereby achieving the effect of preventing condensation.

[0061] Referring to Figures 1-3 In some embodiments, in order to facilitate the assembly of the heat insulation superposition frame 12 and the assembly superposition frame 11, the heat insulation superposition frame 12 is provided with an assembly edge 121 on the side facing the assembly superposition frame 11, the assembly superposition frame 11 is provided with an opening 111 on the side facing the heat insulation superposition frame 12, the assembly superposition frame 11 and the heat insulation superposition frame 12 are assembled by inserting the assembly edge 121 into the opening 111, and the assembly edge 121 and the inner wall of the opening 111 abut.

[0062] Referring to Figures 1-3 and Figure 5 In some embodiments, in order to optimize the flow direction of the air flow guided through the first air deflector 3, the air conditioner superposition frame further comprises a second superposition frame 4, which is arranged between the first air deflector 3 and the panel 5. The upper side and the lower side of the second superposition frame 4 are both provided with a second protrusion 41 facing away from the panel 5, and the second protrusion 41 has a gap with the first air deflector 3.

[0063] Specifically, the second protrusion 41 has a gap with the first air deflector 3, which forms an air duct, and the second superposition frame 4 is provided with the second protrusion 41, which is protruding away from the panel 5 on the second superposition frame 4, i.e., the second protrusion 41 is horizontally arranged, so as to change the direction of the gas flowing along the first air deflector 3 again, thereby achieving the effect of horizontal air outlet.

[0064] Further, in the structure of the second superposition frame 4, since cold air passes through the second superposition frame 4, the position has the possibility of generating condensation. In order to solve the above problems, a gap can be left between the second superposition frame 4 and the panel 5, and a heat insulation cavity is formed between the second superposition frame 4 and the panel 5. The heat insulation cavity can significantly reduce the temperature gradient when cold and hot air exchanges, reduce the generation of condensate, and effectively prevent the direct transmission of heat or cold.

[0065] Referring to Figures 1-3 and Figure 5 In some embodiments, in order to optimize the flow direction of the air flow guided through the first air guide plate 3, the first superposition frame 1 is provided with a first protrusion 13 facing away from the panel 5, and the first protrusion 13 has a gap with the first air guide plate 3.

[0066] Specifically, the gap between the first protrusion 13 and the first air guide plate 3 forms an air duct, and the first protrusion 13 is protrudingly arranged in the direction away from the panel 5 of the first superposition frame 1, that is, the first protrusion 13 is horizontally arranged, so that it can change the direction of the gas flowing along the first air guide plate 3 again, achieving the effect of horizontal air outlet.

[0067] Referring to Figure 2 and Figure 3 In the structure of the second superposition frame 4, in order to improve the structure of the first superposition frame 1 and the second superposition frame 4, the first superposition frame 1 and the second superposition frame 4 are integrally formed, and the second protrusion 41 is connected with the adjacent first protrusion 13. When the first superposition frame 1 is arranged at both side end faces of the air conditioner, the first superposition frames 1 at both sides are integrally formed with the second superposition frame 4.

[0068] Referring to Figure 2 , Figure 3 and Figure 5 In some embodiments, in order to ensure smooth air flow discharge of the air outlet 6 of the air conditioner, the lower side of the second superposition frame 4 has a avoiding port 42 for avoiding the air outlet 6 of the air conditioner, and the second superposition frame 4 is provided with a second air guide plate 43 at the avoiding port 42. The second air guide plate 43 is inclined away from the first air guide plate 3, so as to guide the air flow to pass through the gap between the second superposition frame 4 and the panel 5.

[0069] Specifically, the second superposition frame 4 is provided with an avoiding opening 42 at the position of the air outlet 6 of the air conditioner, so as to facilitate the air outlet of the air outlet 6. The specific size and shape of the avoiding opening 42 can be set according to the size and shape of the air outlet 6 of the corresponding air conditioner. When the second protrusion 41 is provided at the lower side of the second superposition frame 4, the avoiding opening 42 can be provided by breaking the second protrusion 41. The remaining second protrusion 41 on both sides of the avoiding opening 42 is connected with the adjacent first protrusion 13. The second air baffle 43 is inclined towards the direction away from the first air baffle 3, so as to guide the airflow to pass through the gap between the second superposition frame 4 and the panel 5, prevent the airflow from flowing into the gap between the second superposition frame 4 and the panel 5, and further ensure the smooth flow of the airflow. Especially when there is a gap between the second superposition frame 4 and the panel 5, the structure can effectively prevent condensation.

[0070] Referring to Figure 3 , Figures 5-7 As shown in the drawings, on the basis of the structure of the second air baffle 43 provided on the second superposition frame 4, the second air baffle 43 is an arc-shaped plate and extends into the air outlet 6 of the air conditioner. Since the arc-shaped second air baffle 43 can more accurately guide the airflow to flow along the predetermined track, the turbulence and vortex phenomenon of the airflow are reduced, and the stability and continuity of the airflow are ensured.

[0071] On the basis of the structure of the second air baffle 43 provided on the second superposition frame 4, the second superposition frame 4 and the second air baffle 43 are integrally formed. By integrally forming the second superposition frame 4 and the second air baffle 43, the seamless connection between the second superposition frame 4 and the second air baffle 43 is ensured. The seamless connection greatly reduces the possibility of the airflow escaping from the connecting gap when passing through, prevents condensation, and also prevents problems such as airflow disturbance caused by the gap, thereby achieving the effect of improving the stability of the airflow.

[0072] The technical means disclosed in the utility model scheme is not limited to the technical means disclosed in the above-mentioned embodiments, but also includes the technical scheme composed of any combination of the above technical features. It should be noted that for ordinary skilled persons in the technical field, without departing from the principle of the utility model, some improvements and refinements can be made, and these improvements and refinements are also considered as the protection range of the utility model.

Claims

1. An air conditioner stacking frame, characterized in that, include: A first stacking frame is disposed on the side end face of the air conditioner. The first stacking frame has a cavity inside, and a first driving structure is assembled inside the cavity. The first driving structure has a first driving arm, which passes through the first stacking frame and is used to drive and connect to the first air guide plate of the air conditioner, so as to drive the first air guide plate to move up or down relative to the air conditioner.

2. An air conditioner stacking frame according to claim 1, characterized in that, The air conditioner has the first stacking frame on both sides. The first drive structure is provided in the first stacking frame on one side, and the first drive arm is connected to the first air guide plate. The second drive structure or driven structure is provided in the first stacking frame on the other side. When the second driving structure is set in the first stacked frame on the other side, the second driving structure has a second driving arm, which is connected to the first air guide plate in a transmission manner, so that the first driving arm and the second driving arm work together to move the first air guide plate up or down relative to the air conditioner. When the driven structure is provided in the first stacking frame on the other side, the driven structure has a driven arm, which is connected to the first air guide plate so that when the first drive arm drives the first air guide plate to move, the driven arm moves synchronously with the first air guide plate.

3. An air conditioner stacking frame according to claim 2, characterized in that, The first stacking frame includes an assembly stacking frame and a heat insulation stacking frame. The assembly stacking frame and the heat insulation stacking frame are sequentially attached along the thickness direction of the air conditioner. The assembly stacking frame and the heat insulation stacking frame are both hollow structures. The first driving structure is located in the cavity of the assembly stacking frame.

4. An air conditioner stacking frame according to claim 3, characterized in that, The heat insulation stacked frame has an assembly ridge on the side facing the assembly stacked frame, and the assembly stacked frame has an opening on the side facing the heat insulation stacked frame. The assembly stacked frame and the heat insulation stacked frame are assembled by inserting the assembly ridge into the opening, and the assembly ridge abuts against the inner wall of the opening.

5. An air conditioner stacking frame according to claim 2, characterized in that, It also includes a second stacking frame, which is disposed between the first air guide plate and the panel. The upper and lower sides of the second stacking frame are provided with a second protrusion facing away from the panel, and there is a gap between the second protrusion and the first air guide plate.

6. An air conditioner stacking frame according to claim 5, characterized in that, The first stacked frame has a first protrusion facing away from the panel, and there is a gap between the first protrusion and the first air guide plate.

7. An air conditioner stacking frame according to claim 6, characterized in that, The first stacked frame and the second stacked frame are integrally formed, and the second protrusion is connected to the adjacent first protrusion.

8. An air conditioner stacking frame according to claim 6, characterized in that, The lower side of the second stacked frame has a clearance opening for avoiding the air outlet of the air conditioner. A second air guide plate is provided at the clearance opening of the second stacked frame. The second air guide plate is inclined in a direction away from the first air guide plate to guide the airflow across the gap between the second stacked frame and the panel.

9. An air conditioner stacking frame according to claim 8, characterized in that, The second air guide plate is an arc-shaped plate and extends into the air outlet of the air conditioner.

10. An air conditioner stacking frame according to claim 8 or 9, characterized in that, The second stacked frame and the second air guide plate are integrally formed.