Air conditioner indoor unit and air conditioner

By forming a positioning structure on the chassis of the air-conditioning indoor unit, the abnormal noise caused by thermal expansion and contraction between the chassis and the surface frame is solved, and the installation accuracy and efficiency of the buffer parts are improved.

CN222911939UActive Publication Date: 2025-05-27GD MIDEA AIR CONDITIONING EQUIP CO LTD
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Patent Information

Application Number
CN202421520355.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-05-27
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

In existing air-conditioned indoor units, thermal expansion and contraction between the chassis and the surface frame leads to abnormal noise, and the velvet cloth cannot be accurately positioned, resulting in incomplete installation.

Method used

设计了一种空调室内机,底盘上形成用于定位缓冲件的定位结构,通过定位结构可以准确定位缓冲件,提高安装精度和效率。

Benefits of technology

The positioning structure reduces the difficulty of installing the buffer parts, improves the accuracy and efficiency of the installation position, and avoids abnormal noise caused by thermal expansion and contraction between the chassis and the surface frame.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN222911939U_ABST
    Figure CN222911939U_ABST
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Abstract

The air conditioner indoor unit comprises a base plate, a face frame and a buffering piece, the face frame is arranged on the base plate, at least part of the buffering piece is arranged in an assembly gap between the base plate and the face frame, the base plate is provided with an installation face, the installation face faces the assembly gap, and the buffering piece is fixed to the installation face. And a positioning structure for positioning the buffer piece is formed on the chassis. According to the air conditioner indoor unit, the positioning structure used for positioning the buffering piece is formed on the base plate, the positioning difficulty of the buffering piece installed on the base plate can be well reduced through the positioning structure, and therefore the installation position precision of the buffering piece on the base plate can be well improved, and meanwhile the installation efficiency of the buffering piece can be improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioners, in particular to an indoor unit of an air conditioner and an air conditioner. Background Art

[0002] With the improvement of people's living standards, air conditioners have gradually entered thousands of households and become important household appliances in daily life. Among them, the frame structure of an air conditioner usually consists of a chassis and a front panel. However, since the air conditioner has functions of refrigeration and heating, in order to avoid abnormal noises caused by thermal expansion and contraction of the chassis and the frame, flannelette is usually arranged in the gap between the chassis and the frame. However, in the related art, the flannelette cannot be accurately positioned during pasting, resulting in frequent situations where the flannelette is not pasted in place. Therefore, improvement is needed. Summary of the Utility Model

[0003] The first aspect of the utility model provides an indoor unit of an air conditioner, which has the advantages of high installation accuracy and high installation efficiency of a buffer member.

[0004] The indoor unit of an air conditioner according to an embodiment of the first aspect of the utility model includes: a chassis; a front panel provided on the chassis;

[0005] a buffer member, at least a part of the buffer member is arranged in the assembly gap between the chassis and the front panel, the chassis has an installation surface facing the assembly gap, the buffer member is fixed to the installation surface, and a positioning structure for positioning the buffer member is formed on the chassis.

[0006] For the indoor unit of an air conditioner according to an embodiment of the first aspect of the utility model, a positioning structure for positioning the buffer member is formed on the chassis. Through the positioning structure, the positioning difficulty of installing the buffer member to the chassis can be better reduced, so that the installation position accuracy of the buffer member on the chassis can be better improved, and at the same time, the installation efficiency of the buffer member is facilitated to be improved.

[0007] According to some embodiments of the utility model, the positioning structure is located on one side of the installation surface for marking the installation reference of the installation surface.

[0008] According to some embodiments of the utility model, the positioning structure is formed as a positioning surface, and the positioning surface is connected to the installation surface and has an included angle with the installation surface.

[0009] According to some embodiments of the utility model, the surface of the chassis includes a first surface, the positioning surface is connected between the first surface and the installation surface, and there is an included angle between the first surface and the positioning surface.

[0010] According to some embodiments of the present utility model, the distance range between one end where the positioning surface is connected to the first surface and one end where the positioning surface is connected to the mounting surface is 0.1 - 1 mm.

[0011] According to some embodiments of the present utility model, one end of the buffer member adjacent to the positioning surface is aligned with the positioning surface.

[0012] According to some embodiments of the present utility model, the mounting surface includes a first sub - mounting surface and a second sub - mounting surface arranged at an angle. There is an angle between the first sub - mounting surface and the positioning surface and the first sub - mounting surface is connected between the positioning surface and the second sub - mounting surface. The buffer member at least includes a first buffer portion and a second buffer portion connected to each other. The first buffer portion is fixed on the first sub - mounting surface, and the second buffer portion is fixed on the second sub - mounting surface.

[0013] According to some embodiments of the present utility model, the position where the first buffer portion is connected to the second buffer portion forms a first connection portion, and the position where the first sub - mounting surface is connected to the second sub - mounting surface forms a first connection surface. The first connection portion is opposite to the first connection surface, and a plurality of cutting lines are formed on the first connection portion and arranged at intervals along the length direction of the buffer member; and / or, in the direction from the positioning surface to the second sub - mounting surface, the connection width between the first buffer portion and the first sub - mounting surface is not less than 5 mm.

[0014] According to some embodiments of the present utility model, the mounting surface further includes a third sub - mounting surface arranged at an angle with the second sub - mounting surface. The third sub - mounting surface is connected to the side of the second sub - mounting surface away from the first sub - mounting surface. The buffer member further includes a third buffer portion fixed on the third sub - mounting surface, and the third buffer portion is connected to the side of the second buffer portion away from the first buffer portion.

[0015] According to some embodiments of the present utility model, the position where the second buffer portion is connected to the third buffer portion forms a second connection portion, and the position where the second sub - mounting surface is connected to the third sub - mounting surface forms a second connection surface. The second connection portion is opposite to the second connection surface, and a plurality of cutting lines are formed on the second connection portion and arranged at intervals along the length direction of the buffer member; and / or, the first sub - mounting surface, the second sub - mounting surface and the third sub - mounting surface are arranged in a stepped manner.

[0016] According to some embodiments of the present utility model, an air outlet is formed on the chassis, and the buffer member is located outside the air outlet and the distance range between the buffer member and the air outlet is 0.5 - 1.5 mm.

[0017] According to some embodiments of the present utility model, the buffer member is adhesively connected to the chassis; and / or, the buffer member is flannelette or sponge.

[0018] The second aspect of the present utility model provides an air conditioner.

[0019] The air conditioner according to the embodiments of the second aspect of the present utility model includes: the above-mentioned air conditioner indoor unit.

[0020] In the air conditioner according to the embodiments of the second aspect of the present utility model, a positioning structure for positioning the buffer member is formed on the chassis. Through the positioning structure, the positioning difficulty of installing the buffer member onto the chassis can be better reduced, thereby the installation position accuracy of the buffer member on the chassis can be better improved, and at the same time, it is beneficial to improve the installation efficiency of the buffer member.

[0021] The additional aspects and advantages of the present utility model will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present utility model. Description of the Drawings

[0022] Figure 1 is an exploded view of the air conditioner indoor unit according to the embodiments of the present utility model;

[0023] Figure 2 is a schematic diagram of the chassis of the air conditioner indoor unit according to the embodiments of the present utility model;

[0024] Figure 3 is Figure 2 the front view of the chassis in

[0025] Figure 4 is Figure 3 the sectional view along A-A in

[0026] Figure 5 is Figure 4 the enlarged view of area B in

[0027] Figure 6 is Figure 4 the enlarged view of area C in

[0028] Figure 7 is a schematic diagram of the chassis and the buffer member of the air conditioner indoor unit according to the embodiments of the present utility model;

[0029] Figure 8 is Figure 7 the front view of the chassis and the buffer member in

[0030] Figure 9 is Figure 8 the sectional view along D-D in

[0031] Figure 10 is Figure 9Enlarged view of the E region.

[0032] Reference numerals:

[0033] 100, air conditioner indoor unit; 1, chassis; 11, mounting surface; 111, first sub-mounting surface; 112, second sub-mounting surface; 113, third sub-mounting surface; 12, positioning surface; 13, first surface; 14, air outlet; 2, front frame; 3, buffer member; 31, first buffer portion; 32, second buffer portion; 33, third buffer portion; 4, panel; 5, air deflector; 6, electric control box; 7, evaporator. Detailed implementation manners

[0034] The embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are intended to explain the present invention, and should not be construed as limiting the present invention.

[0035] The following disclosure provides many different embodiments or examples for implementing different structures of the present invention. To simplify the disclosure of the present invention, the components and settings of specific examples are described below. Of course, they are merely examples and are not intended to limit the present invention. In addition, the present invention may repeat reference numerals and / or letters in different examples. Such repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. In addition, the present invention provides examples of various specific processes and materials, but those of ordinary skill in the art may be aware of the applicability of other processes and / or the use of other materials.

[0036] The air conditioner indoor unit 100 according to the first aspect embodiment of the present invention will be described below with reference to the drawings.

[0037] As Figures 1 to 9 shown, the air conditioner indoor unit 100 according to the first aspect embodiment of the present invention includes: a chassis 1, a front frame 2, and a buffer member 3. The front frame 2 is disposed on the chassis 1, and at least a part of the buffer member 3 is disposed in the assembly gap between the chassis 1 and the front frame 2. The chassis 1 has a mounting surface 11, and the mounting surface 11 faces the assembly gap. The buffer member 3 is fixed to the mounting surface 11. It can be understood that affected by temperature, the chassis 1 and the front frame 2 will deform to a certain extent due to thermal expansion and contraction during the use of the air conditioner indoor unit 100. Therefore, by placing the buffer member 3 in the assembly gap, the buffer member 3 can preferably separate the relatively areas of the chassis 1 and the front frame 2, so as to avoid contact between the chassis 1 and the front frame 2 due to thermal expansion and contraction, and further avoid frictional noise caused by the contact between the chassis 1 and the front frame 2, which is beneficial to improving the quietness of the air conditioner indoor unit 100 during use.

[0038] Among them, a positioning structure for positioning the buffer member 3 is formed on the chassis 1. That is to say, through the positioning structure, the installation position of the buffer member 3 on the chassis 1 can be accurately positioned. The operator can accurately install the buffer member 3 at the specified position on the chassis 1 through the positioning structure, so as to ensure that the buffer member 3 can be accurately located within the assembly gap to prevent the chassis 1 from contacting the front frame 2. Thus, through the positioning structure, the positioning difficulty of installing the buffer member 3 onto the chassis 1 can be better reduced, thereby better improving the installation position accuracy of the buffer member 3 on the chassis 1, and at the same time facilitating the improvement of the installation efficiency of the buffer member 3.

[0039] For the air conditioner indoor unit 100 according to the first aspect embodiment of the present utility model, a positioning structure for positioning the buffer member 3 is formed on the chassis 1. Through the positioning structure, the positioning difficulty of installing the buffer member 3 onto the chassis 1 can be better reduced, thereby better improving the installation position accuracy of the buffer member 3 on the chassis 1, and at the same time facilitating the improvement of the installation efficiency of the buffer member 3.

[0040] In a specific example, as Figure 1 shown, the air conditioner indoor unit 100 is a wall-mounted type. The air conditioner indoor unit 100 includes a chassis 1, a front frame 2, a buffer member 3, a panel 4, a wind deflector 5, an electric control box 6, and an evaporator 7. The front frame 2 is disposed on the front side of the chassis 1. An air outlet 14 is formed on the chassis 1. The position corresponding to the air outlet 14 on the front frame 2 is a hollow structure. The panel 4 is disposed on the front side surface of the front frame 2. The wind deflector 5 is rotatably disposed on the chassis 1 to open or close the air outlet 14. The evaporator 7 is disposed inside the chassis 1 to adjust the gas temperature. The electric control box 6 is disposed inside the chassis 1 and is used to control the operating state of the air conditioner indoor unit 100.

[0041] According to some embodiments of the present utility model, the positioning structure is located on one side of the mounting surface 11 for marking the mounting reference of the mounting surface 11. Thus, by disposing the positioning structure on one side of the mounting surface 11, the space on the mounting surface 11 occupied by the positioning structure can be avoided, so that the positioning structure disposed on the mounting surface 11 can be prevented from affecting the fixation of the mounting surface 11 and the buffer member 3. Here, the mounting reference refers to the position where the buffer member 3 can be used as the installation starting point. It can be understood that when the size of the buffer member 3 is certain, during the installation of the buffer member 3, the starting position of the installation of the buffer member 3 is determined, and the installation position of the buffer member 3 on the chassis 1 is also determined accordingly. Therefore, through the mounting reference provided by the positioning structure, the installation position accuracy of the buffer member 3 on the chassis 1 can be ensured. Specifically, during the process of installing the buffer member 3 onto the chassis 1, one end of the buffer member 3 can be first aligned with the positioning structure for positioning. On this basis, the buffer member 3 is fixed on the mounting surface, and the precise installation of the buffer member 3 on the chassis 1 can be ensured.

[0042] According to some embodiments of the present utility model, the positioning structure is formed as a positioning surface 12, and the positioning surface 12 is connected to the mounting surface 11 and has an included angle with the mounting surface 11. Thus, the distance between the positioning surface 12 and the mounting surface 11 can be preferably shortened, thereby reducing the difficulty of positioning between the buffer member 3 and the positioning surface 12. Moreover, through the included angle between the positioning surface 12 and the mounting surface 11, the operator can clearly observe the position of the positioning surface 12, that is, the recognition difficulty of the positioning structure can be preferably reduced, so as to facilitate the operator to install the buffer member 3 according to the positioning surface 12. Thus, the convenience of using the positioning surface 12 can be preferably improved, which is beneficial to improving the installation efficiency of the buffer member 3.

[0043] According to some embodiments of the present utility model, the surface of the chassis 1 includes a first surface 13, and the positioning surface 12 is connected between the first surface 13 and the mounting surface 11, and there is an included angle between the first surface 13 and the positioning surface 12. That is to say, one side of the positioning surface 12 is connected to the mounting surface 11 arranged at an included angle, and the other side of the positioning surface 12 is connected to the first surface 13 arranged at an included angle, so that the mounting surface 11, the positioning surface 12 and the first surface 13 can form a stepped shape. Thus, the recognition difficulty of the mounting surface 11 can be preferably reduced, so as to facilitate the operator to position the installation position of the buffer member 3 on the base according to the positioning surface 12.

[0044] According to some embodiments of the present utility model, the distance between the end where the positioning surface 12 and the first surface 13 are connected and the end where the positioning surface 12 and the mounting surface 11 are connected ranges from 0.1 to 1 mm. That is, the dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13 (such as Figure 6 L1 shown in the figure) is controlled within the range of 0.1 mm to 1 mm. For example, the dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13 can be 0.1 mm, 0.2 mm, 0.3 mm, 0.4 mm, 0.5 mm, 0.6 mm, 0.7 mm, 0.8 mm, 0.9 mm, 1 mm, etc., and no specific limitation is made here.

[0045] It can be understood that the larger the dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13, the easier it is to identify the positioning structure, but the larger the space occupied by the positioning structure; conversely, the smaller the dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13, the greater the difficulty in identifying the positioning structure, but the smaller the space occupied by the positioning structure. Therefore, by controlling the dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13 within the range of 0.1 mm to 1 mm, it is possible to avoid an increase in the difficulty of identifying the positioning structure due to too small a dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13, and at the same time, it is possible to avoid too large a space being occupied by the positioning structure due to too large a dimension of the positioning surface 12 in the arrangement direction of the mounting surface 11 and the first surface 13, so that the space occupied by the positioning structure can be reduced on the basis of ensuring that the positioning structure is easy to identify.

[0046] According to some embodiments of the present invention, one end of the buffer member 3 adjacent to the positioning surface 12 is aligned with the positioning surface 12. That is to say, the buffer member 3 is positioned on the chassis 1 by aligning one end with the positioning surface 12. Thus, the cooperation difficulty between the buffer member 3 and the positioning structure can be better reduced. For example, during the installation process of the buffer member 3, the operator only needs to align one end of the buffer member 3 with the positioning surface 12, which is beneficial to reducing the use difficulty of the positioning structure, and thus the installation efficiency of the buffer member 3 can be better improved.

[0047] According to some embodiments of the present invention, the mounting surface 11 includes a first sub-mounting surface 111 and a second sub-mounting surface 112 arranged at an angle. There is an angle between the first sub-mounting surface 111 and the positioning surface 12, and the first sub-mounting surface 111 is connected between the positioning surface 12 and the second sub-mounting surface 112. The buffer member 3 at least includes a connected first buffer portion 31 and a second buffer portion 32. The first buffer portion 31 is fixed on the first sub-mounting surface 111, and the second buffer portion 32 is fixed on the second sub-mounting surface 112. That is to say, after the buffer member 3 is installed on the chassis 1, the first buffer portion 31 and the second buffer portion 32 are arranged at an angle. Thus, the coverage range of the buffer member 3 can be better increased, and the buffer member 3 can at least separate the first sub-mounting surface 111 and the second sub-mounting surface 112 from the face frame 2. In addition, the buffer member 3 is fixed on two different surfaces arranged at an angle at the same time. For example, through the connection between the first buffer portion 31 and the second buffer portion 32 and the fixed connection between the first buffer portion 31 and the first sub-mounting surface 111, it is possible to prevent the second buffer portion 32 from moving away from the second sub-mounting surface 112, so that the stability of the buffer member 3 fixed on the mounting surface 11 can be better improved.

[0048] According to some embodiments of the present utility model, the position where the first buffer portion 31 is connected to the second buffer portion 32 forms a first connection portion, and the position where the first sub-mounting surface 111 and the second sub-mounting surface 112 are connected forms a first connection surface. The first connection portion is opposite to the first connection surface, and a plurality of cutting lines are formed on the first connection portion and arranged at intervals along the length direction of the buffer member 3. Therefore, through the plurality of cutting lines on the first connection portion, it is convenient for the second buffer portion 32 to be bent relative to the first buffer portion 31 along the plurality of cutting lines, which can reduce the difficulty for the operator to bend the second buffer portion 32. At the same time, the accuracy of the bending position of the second buffer portion 32 relative to the first buffer portion 31 can be ensured. Specifically, when installing the buffer member 3, during the process of installing the buffer member 3 from the first sub-mounting surface 111 towards the second sub-mounting surface 112, the operator can directly bend the buffer member 3 along the plurality of cutting lines on the first connection portion without the need to use additional tools for the bending operation, which is beneficial to improving the installation efficiency of the buffer member 3.

[0049] According to some embodiments of the present utility model, in the direction from the positioning surface 12 to the second sub-mounting surface 112, the connection width between the first buffer portion 31 and the first sub-mounting surface 111 is not less than 5 mm. That is, the width of the portion connecting the buffer member 3 and the first sub-mounting surface 111 (such as Figure 10 L2 shown in the figure) is controlled within a range equal to or greater than 5 mm. For example, the width of the portion connecting the buffer member 3 and the first sub-mounting surface 111 can be 5 mm, 5.5 mm, 6 mm, 6.5 mm, 7 mm, 7.5 mm, 8 mm, 8.5 mm, 9 mm, 10 mm, etc., and no specific limitation is made here. It can be understood that the larger the width of the portion connecting the buffer member 3 and the first sub-mounting surface 111, the larger the connection area between the buffer member 3 and the first sub-mounting surface 111, and the higher the connection stability between the buffer member 3 and the first sub-mounting surface 111. Thus, it can preferably avoid the warping of the first buffer portion 31 caused by too small a connection area between the buffer member 3 and the first sub-mounting surface 111, so as to ensure the firm connection between the buffer member 3 and the base.

[0050] According to some embodiments of the present utility model, the mounting surface 11 further includes a third sub-mounting surface 113 disposed at an angle to the second sub-mounting surface 112. The third sub-mounting surface 113 is connected to the side of the second sub-mounting surface 112 away from the first sub-mounting surface 111. The buffer member 3 further includes a third buffer portion 33 fixed to the third sub-mounting surface 113. The third buffer portion 33 is connected to the side of the second buffer portion 32 away from the first buffer portion 31. That is to say, after the buffer member 3 is mounted on the chassis 1, the second buffer portion 32 and the third buffer portion 33 are disposed at an angle. Thus, the coverage range of the buffer member 3 can be preferably increased, and the buffer member 3 can space apart the first sub-mounting surface 111, the second sub-mounting surface 112, and the third sub-mounting surface 113 from the face frame 2 at the same time. In addition, the buffer member 3 is fixed on three different sides at the same time, and an angle is formed between any two adjacent sides, which can preferably improve the stability of the buffer member 3 fixed on the mounting surface 11.

[0051] According to some embodiments of the present utility model, the position where the second buffer portion 32 and the third buffer portion 33 are connected constitutes a second connection portion, and the position where the second sub-mounting surface 112 and the third sub-mounting surface 113 are connected constitutes a second connection surface. The second connection portion is opposite to the second connection surface, and a plurality of cutting lines are formed on the second connection portion and arranged at intervals along the length direction of the buffer member 3. Therefore, through the plurality of cutting lines on the second connection portion, it is convenient for the third buffer portion 33 to be bent relative to the second buffer portion 32 along the plurality of cutting lines, which can reduce the difficulty for the operator to bend the third buffer portion 33, and at the same time, the accuracy of the bending position of the third buffer portion 33 relative to the second buffer portion 3 can be ensured. Specifically, when installing the buffer member 3, during the process of installing the buffer member 3 from the second sub-mounting surface 112 towards the third sub-mounting surface 113, the operator can directly bend the buffer member 3 along the plurality of cutting lines on the second connection portion without using additional tools for bending operations, which is beneficial to improving the installation efficiency of the buffer member 3.

[0052] According to some embodiments of the present utility model, the first sub-mounting surface 111, the second sub-mounting surface 112, and the third sub-mounting surface 113 are arranged in a stepped manner. Specifically, during the process of installing the buffer member 3 on the chassis 1, first, the end of the first buffer portion 31 away from the second buffer portion 32 is aligned with the positioning surface 12, and then the first buffer portion 31 is pressed to fit it with the first sub-mounting surface 111, and then the second buffer portion 32 is bent to fit it with the second sub-mounting surface 112, and finally the third buffer portion 33 is bent to fit it with the third sub-mounting surface 113 to complete the installation of the buffer member 3.

[0053] According to some embodiments of the present utility model, an air outlet 14 is formed on the chassis 1. The buffer member 3 is located outside the air outlet 14 and the distance between the buffer member 3 and the air outlet 14 is 0.5 - 1.5 mm. That is, the distance between the buffer member 3 and the air outlet 14 (such asFigure 10 The L3) control shown in the figure is within the range of 0.5 mm to 1.5 mm. For example, the distance between the buffer member 3 and the air outlet 14 can be 0.5 mm, 0.6 mm, 0.7 mm, 0.8 mm, 0.9 mm, 1 mm, 1.1 mm, 1.3 mm, 1.5 mm, etc., and no specific limitation is made here. It can be understood that the closer the distance between the buffer member 3 and the air outlet 14, the smaller the area in the assembly gap that is not filled by the buffer member 3, and the better the buffering effect of the buffer member 3. However, the greater the possibility that the buffer member 3 extends into the air outlet 14 when being squeezed by the chassis 1 and the front panel 2; on the contrary, the farther the distance between the buffer member 3 and the air outlet 14, the larger the area in the assembly gap that is not filled by the buffer member 3, and the worse the buffering effect of the buffer member 3. However, the smaller the possibility that the buffer member 3 extends into the air outlet 14 when being squeezed by the chassis 1 and the front panel 2.

[0054] Therefore, by controlling the distance between the buffer member 3 and the air outlet 14 within the range of 0.5 mm to 1.5 mm, it is possible to avoid the situation that the buffer member 3 extends into the air outlet 14 due to the too-close distance between the buffer member 3 and the air outlet 14, and at the same time, it is possible to avoid the too-far distance between the buffer member 3 and the air outlet 14 from affecting the buffering effect of the buffer member 3. Thus, it is possible to ensure the buffering effect of the buffer member 3 on the chassis 1 and the front panel 2 while avoiding the buffer member 3 from extending into the air outlet 14.

[0055] Specifically, one end of the third sub-mounting surface 113 away from the second sub-mounting surface 112 is connected to the inner wall surface of the air outlet in the width direction.

[0056] According to some embodiments of the present invention, the buffer member 3 is adhesively connected to the chassis 1. Among them, the space occupied by the adhesive connection is small and the connection structure is simple. Thus, it is possible to preferably reduce the space required for mounting the buffer member 3 on the chassis 1, and at the same time, it has strong adaptability to the mounting surface 11. For example, the adhesive material can deform along with the buffer member 3 to adapt to the complex mounting surface 11. In a specific example, a double-sided tape can be pasted on the back surface of the buffer member 3, and the buffer member 3 is fixed on the mounting surface 11 through the fitting of the double-sided tape and the mounting surface 11.

[0057] According to some embodiments of the present invention, the buffer member 3 is flannelette or sponge. Among them, both flannelette and sponge are relatively soft and have good toughness, so that the buffer member 3 can buffer the deformation of the chassis 1 and the front panel 2 through flexible deformation. At the same time, the buffer member can flexibly adjust its shape according to the mounting surface 11 to adapt to the mounting surface 11, so as to expand the application range of the buffer member 3.

[0058] Next, an air conditioner according to a second aspect embodiment of the present invention will be described with reference to the accompanying drawings.

[0059] An air conditioner according to an embodiment of the second aspect of the present utility model includes: an indoor unit 100 of the air conditioner.

[0060] For the air conditioner according to the embodiment of the second aspect of the present utility model, a positioning structure for positioning the buffer member 3 is formed on the chassis 1. Through the positioning structure, the positioning difficulty of installing the buffer member 3 onto the chassis 1 can be better reduced, so that the installation position accuracy of the buffer member 3 on the chassis 1 can be better improved, and at the same time, it is beneficial to improve the installation efficiency of the buffer member 3.

[0061] In the present utility model, unless otherwise clearly defined and limited, terms such as "installation", "connection", "connection", "fixation" and other terms should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be directly connected, or indirectly connected through an intermediate medium, and can be the internal communication of two components or the interaction relationship between two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0062] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.

[0063] Although the embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and purposes of the present utility model, and the scope of the present utility model is defined by the claims and their equivalents.

Claims

1. An air conditioner indoor unit, characterized in that: include: Chassis; A face frame, arranged on the chassis; A buffer component, at least part of which is arranged in the assembly gap between the chassis and the face frame, the chassis has a mounting surface, the mounting surface faces the assembly gap, the buffer component is fixed to the mounting surface, and a positioning structure for positioning the buffer component is formed on the chassis.

2. The air conditioner indoor unit according to claim 1, characterized in that: The positioning structure is located on one side of the mounting surface and is used to mark the mounting reference of the mounting surface.

3. The air conditioner indoor unit according to claim 2, characterized in that: The positioning structure is formed as a positioning surface, which is connected to the mounting surface and has an included angle with the mounting surface.

4. The air conditioner indoor unit according to claim 3, characterized in that: The surface of the chassis includes a first surface, the positioning surface is connected between the first surface and the mounting surface, and an angle is formed between the first surface and the positioning surface.

5. The air conditioner indoor unit according to claim 4, characterized in that: The distance between one end of the positioning surface connected to the first surface and one end of the positioning surface connected to the mounting surface is in the range of 0.1-1 mm.

6. The air conditioner indoor unit according to claim 3, characterized in that: One end of the buffer member adjacent to the positioning surface is arranged to be aligned with the positioning surface.

7. The air conditioner indoor unit according to claim 3, characterized in that: The mounting surface includes a first sub-mounting surface and a second sub-mounting surface set at an angle, the first sub-mounting surface has an angle with the positioning surface and is connected between the positioning surface and the second sub-mounting surface, the buffer component includes at least a first buffer portion and a second buffer portion connected to each other, the first buffer portion is fixed on the first sub-mounting surface, and the second buffer portion is fixed on the second sub-mounting surface.

8. The air conditioner indoor unit according to claim 7, characterized in that: The position where the first buffer portion is connected to the second buffer portion constitutes a first connecting portion, the position where the first sub-mounting surface is connected to the second sub-mounting surface constitutes a first connecting surface, the first connecting portion is opposite to the first connecting surface, and a plurality of cutting lines arranged at intervals along the length direction of the buffer are formed on the first connecting portion; and / or, in the direction from the positioning surface to the second sub-mounting surface, the connection width between the first buffer portion and the first sub-mounting surface is not less than 5 mm.

9. The air conditioner indoor unit according to claim 7, characterized in that: The mounting surface also includes a third sub-mounting surface set at an angle with the second sub-mounting surface, and the third sub-mounting surface is connected to a side of the second sub-mounting surface away from the first sub-mounting surface. The buffer component also includes a third buffer portion fixed on the third sub-mounting surface, and the third buffer portion is connected to a side of the second buffer portion away from the first buffer portion.

10. The air conditioner indoor unit according to claim 9, characterized in that: The position where the second buffer portion is connected to the third buffer portion constitutes a second connecting portion, the position where the second sub-mounting surface is connected to the third sub-mounting surface constitutes a second connecting surface, the second connecting portion is opposite to the second connecting surface, and a plurality of cutting lines arranged at intervals along the length direction of the buffer member are formed on the second connecting portion; and / or the first sub-mounting surface, the second sub-mounting surface and the third sub-mounting surface are arranged in a step shape.

11. The air conditioner indoor unit according to claim 1, characterized in that: An air outlet is formed on the chassis, and the buffer is located outside the air outlet and the distance between the buffer and the air outlet is in the range of 0.5-1.5 mm.

12. The air conditioner indoor unit according to claim 1, characterized in that: The buffer is adhesively connected to the chassis; and / or the buffer is flannel or sponge.

13. An air conditioner, characterized in that: include: An air conditioning indoor unit according to any one of claims 1 to 12.