Magnet mount, air conditioner panel assembly and air conditioner

By using an integrated magnet mounting component, the elastic deformation and clamping effect of the overhanging part are utilized to solve the problems of magnet wobbling and difficult installation on the air conditioner panel, thereby achieving magnet stability and easy installation, and reducing production costs.

CN224498721UActive Publication Date: 2026-07-14QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD
Filing Date
2025-06-17
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

The magnet mounting position on the air conditioner panel has problems such as magnet wobbling and difficulty in installation.

Method used

The magnet mounting component is made of one piece and includes a base, a limiting part and a cantilever part. The cantilever part has the ability to bend and deform elastically. Through the elastic deformation and clamping action between the cantilever part and the magnet support surface, the swaying of the magnet is restricted and the installation difficulty is reduced.

Benefits of technology

It effectively solves the problems of magnet wobbling and difficult installation, improves the stability and ease of installation of magnets, reduces production costs and increases production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to air conditioner technical field provides a magnet mounting piece, air conditioner panel subassembly and air conditioner, wherein, magnet mounting piece includes seat body part, first limit part, second limit part, overhanging part, third limit part and fourth limit part, and the second end of seat body part has magnet support surface, first limit part and second limit part are along the longitudinal interval distribution of magnet support surface, third limit part and fourth limit part are along the lateral interval distribution of magnet support surface, and the first end of overhanging part is connected in the side of first limit part close to second limit part, overhanging part extends along the direction away from first limit part, and overhanging part occurs bending elastic deformation, and the distance between at least the second end of overhanging part and magnet support surface is less than the size of the normal of magnet along the magnet support surface in the natural state of overhanging part. Such setting, the bending elastic deformation of overhanging part can reduce the installation difficulty of magnet, and after magnet installation, overhanging part presses magnet tightly, can limit the shake of magnet.
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Description

Technical Field

[0001] This utility model relates to the field of air conditioner technology, and in particular to a magnet mounting component, an air conditioner panel assembly, and an air conditioner. Background Technology

[0002] Air conditioners are common household appliances used to regulate indoor air temperature and humidity. Some air conditioner panels have magnets 3' installed on them. To install magnets 3' on the air conditioner panel, a magnet mounting position needs to be provided on the panel.

[0003] In related technologies, the magnet mounting position on the air conditioner panel includes two pairs of limiting bodies 1', with a magnet 3' placed between each pair of limiting bodies 1'. The two pairs of limiting bodies 1' cooperate to restrict the magnet 3' from sliding relative to the air conditioner panel in a direction parallel to the air conditioner panel. A locking part 2' is provided at the end of one pair of limiting bodies 1' away from the air conditioner panel to prevent the magnet 3' from falling off in a direction away from the air conditioner panel. The setting of the locking part 2' is as follows: Figure 1 When installing the magnet 3', it needs to be inserted from one end of the pair of limiting bodies 1' where the snap-fit ​​part 2' is located to the other end. The two snap-fit ​​parts 2' on the pair of limiting bodies 1' are distributed at both ends of the limiting bodies 1' along the insertion direction. In order to facilitate the installation of the magnet 3', the distance between the snap-fit ​​part 2' and the supporting surface of the magnet 3' needs to be greater than the thickness of the magnet 3'. However, the magnet 3' will wobble and generate noise after installation. If the distance between the snap-fit ​​part 2' and the supporting surface of the magnet 3' is less than or equal to the thickness of the magnet 3', it will increase the difficulty of installing the magnet 3', and may even lead to the problem of the magnet 3' being unable to be installed.

[0004] Therefore, how to solve the problems of magnet wobbling and difficulty in installation on the magnet mounting position of the air conditioner panel in related technologies has become an important technical problem to be solved by those skilled in the art. Utility Model Content

[0005] This utility model provides a magnet mounting component, an air conditioner panel assembly, and an air conditioner to solve the defects of magnet wobbling and difficulty in installation in the magnet mounting position on the air conditioner panel in related technologies.

[0006] This utility model provides a magnet mounting component, comprising:

[0007] The base portion has a first end adapted to be connected to an air conditioning panel, and a second end having a magnetic support surface;

[0008] The first limiting part and the second limiting part are fixedly disposed at the second end of the base part and are distributed at intervals along the longitudinal direction of the magnet support surface;

[0009] The third and fourth limiting parts are fixedly disposed at the second end of the base and are distributed laterally at intervals along the magnet support surface;

[0010] The cantilever portion has a first end connected to the side of the first limiting portion near the second limiting portion. The cantilever portion extends in a direction away from the first limiting portion. The cantilever portion is adapted to undergo bending elastic deformation. In its natural state, at least the distance between the second end of the cantilever portion and the magnet support surface is less than the normal dimension of the magnet along the magnet support surface.

[0011] With this design, the bending elastic deformation of the overhang can reduce the difficulty of installing the magnet. After the magnet is installed, the overhang presses the magnet tightly. Relying on the force exerted on the magnet by the overhang and the magnet support surface, the shaking of the magnet can be limited, thus solving the problem of magnet shaking and difficulty in installation in the magnet mounting position on the air conditioner panel in related technologies.

[0012] According to the present invention, a magnet mounting component is provided in which the base part, the first limiting part, the second limiting part, the cantilever part, the third limiting part and the fourth limiting part are integrally formed.

[0013] This design, which makes the magnet mounting component a one-piece molded part, helps to improve the structural strength of the magnet mounting component, is suitable for mass production, improves production efficiency, and reduces production costs.

[0014] According to the present invention, the length of the extended portion along the longitudinal direction of the magnet support surface is the length dimension of the extended portion, and the length dimension of the magnet along the longitudinal direction of the magnet support surface is the width dimension of the magnet. The length dimension of the extended portion is greater than one-third of the width dimension of the magnet, and the length dimension of the extended portion is less than three-quarters of the width dimension of the magnet.

[0015] This design ensures that the cantilever section can exert a suitable clamping force on the magnet, thus ensuring the magnet's stability and avoiding problems such as difficulty in magnet installation due to an excessively large cantilever section or instability due to an excessively small cantilever section.

[0016] According to the present invention, a magnet mounting component is provided in which the end of the second limiting part away from the magnet support surface has a first inclined surface, the distance between the first inclined surface and the magnet support surface is a first inter-surface distance, and the first inter-surface distance gradually decreases along the direction close to the first limiting part.

[0017] With this configuration, the first inclined surface can accommodate the process of the magnet being inserted at an angle between the cantilever and the magnet support surface. When the dimensions of the second limiting part along the normal direction of the magnet support surface are the same, it is beneficial to reduce the tilt angle when the magnet is inserted between the cantilever and the magnet support surface, and to reduce the difficulty of installing the magnet.

[0018] According to the present invention, the maximum distance between the first surfaces is 1.5 to 3 mm.

[0019] This design avoids the problem of difficult magnet installation caused by excessive distance between the second surfaces, and also avoids the problem of magnets easily detaching caused by excessive distance between the second surfaces. It can both ensure the limiting effect on the magnet and ensure that the magnet is easy to install.

[0020] According to the present invention, a magnet mounting component is provided at the second end of the cantilever portion, and the distance between the second inclined surface and the magnet support surface is the second surface distance, which gradually decreases along the direction close to the first limiting portion.

[0021] This design reduces the difficulty of inserting the magnet into the cantilever section and the magnet support surface.

[0022] According to the present invention, a magnet mounting component is provided with a first reinforcing rib on the side of the cantilever portion away from the base portion and on the side of the first limiting portion away from the second limiting portion.

[0023] And / or, the seat portion is a hollow structure, and a second reinforcing rib is provided inside the seat portion.

[0024] With this configuration, the first reinforcing rib can increase the structural strength of the overhang and the first limiting part, and the seat part is a hollow structure, which is conducive to reducing the weight of the magnet mounting parts and the air conditioning panel assembly, and is conducive to lightweight design. The second reinforcing rib can increase the structural strength of the seat part.

[0025] This utility model also provides an air conditioner panel assembly, including an air conditioner panel and a magnet mounting component disposed on one side of the air conditioner panel, wherein the magnet mounting component is the aforementioned magnet mounting component.

[0026] This design allows the air conditioner panel assembly to easily install magnets, and the magnets themselves are highly stable.

[0027] According to the air conditioner panel assembly provided by this utility model, the magnet mounting component is integrally formed with the air conditioner panel.

[0028] This design helps to improve the connection strength and stability between the magnet mounting components and the air conditioning panel.

[0029] This utility model also provides an air conditioner, including the above-mentioned magnet mounting component, or including the above-mentioned air conditioner panel assembly.

[0030] With this design, the air conditioner has the advantages of easy installation of magnets and strong magnet stability.

[0031] The magnet mounting component provided by this utility model includes a base, a first limiting part, a second limiting part, a cantilever part, a third limiting part, and a fourth limiting part. The first end of the base is used to connect to an air conditioning panel, and the first, second, third, and fourth limiting parts are fixedly disposed at the second end of the base. The first and second limiting parts are longitudinally spaced along the magnet support surface, and the third and fourth limiting parts are transversely spaced along the magnet support surface. The magnet is located between the first and second limiting parts and between the third and fourth limiting parts. The first and second limiting parts can restrict the longitudinal movement of the magnet located between the first and second limiting parts along the magnet support surface, and the third and fourth limiting parts can restrict the transverse movement of the magnet located between the third and fourth limiting parts along the magnet support surface. After the magnet is installed, the first, second, third, and fourth limiting parts, combined with the first, second, third, and fourth limiting parts, can restrict the movement of the magnet along the magnet support surface. The first end of the cantilever is connected to the side of the first limiting part near the second limiting part, and the cantilever extends in a direction away from the first limiting part. When the magnet is installed in the magnet mounting component provided by this utility model, the magnet is located between the magnet support surface and the cantilever. When the cantilever is subjected to force, it can undergo bending elastic deformation, so that the second end of the cantilever moves closer to or further away from the magnet support surface. In its natural state, at least the distance between the second end of the cantilever and the magnet support surface is less than the normal dimension of the magnet along the magnet support surface, and the cantilever can apply pressure to the magnet, pressing and fixing the magnet to the magnet support surface. When installing the magnet in the magnet mounting component provided by this utility model, a force is first applied to the second end of the cantilever to increase the distance between the second end of the cantilever and the magnet support surface, so that one end of the tilted magnet extends into the space between the second end of the cantilever and the magnet support surface. Then, the magnet is pushed along the longitudinal direction of the magnet support surface, and the tilt angle of the magnet is adjusted as the magnet moves. During the process of pushing the magnet, the cantilever portion undergoes a certain degree of elastic deformation until the magnet is completely positioned between the first and second limiting portions. At this point, the cantilever portion recovers some of its elastic deformation and presses firmly against the magnet. This design reduces the difficulty of magnet installation due to the bending elastic deformation of the cantilever portion. After the magnet is installed, the cantilever portion presses against it, and the force exerted on the magnet by the cantilever portion and the magnet support surface limits the magnet's movement. This solves the problems of magnet movement and difficulty in installation present in related technologies for magnet mounting positions on air conditioning panels.

[0032] Furthermore, the air conditioner panel assembly provided by this utility model also possesses the various advantages described above due to the presence of the magnet mounting component as described above.

[0033] Furthermore, the air conditioner provided by this utility model, having the magnet mounting component or air conditioner panel assembly as described above, also possesses the various advantages described above. Attached Figure Description

[0034] To more clearly illustrate the technical solutions in this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0035] Figure 1 This is a schematic diagram of the magnet mounting position in the prior art.

[0036] Figure 2 This is a structural schematic diagram of the air conditioner panel assembly provided by this utility model.

[0037] Figure 3 This is a schematic diagram of the structure of the magnet mounting component provided by this utility model when a magnet is installed.

[0038] Figure 4 This is a schematic diagram of the magnet mounting component provided by this utility model when no magnet is installed.

[0039] Figure label:

[0040] 1' Limiting body; 2' Snap-fit ​​part; 3' Magnet; 1. Base part; 2. Air conditioning panel; 3. Magnet support surface; 4. First limiting part; 5. Second limiting part; 6. Overhanging part; 7. Third limiting part; 8. Fourth limiting part; 9. Magnet; 10. First inclined surface; 11. Second inclined surface; 12. First reinforcing rib; 13. Second reinforcing rib. Detailed Implementation

[0041] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0042] In related technologies, air conditioners are commonly used appliances in daily life, used to regulate indoor air temperature and humidity. To enrich the functions of air conditioners, additional functional modules such as sterilization modules are installed on the air conditioner body. These additional functional modules may generate high voltage or high-intensity light during operation. To prevent users from being injured by the working additional functional modules when the air conditioner panel 2 is opened, a magnet 9 is installed on the air conditioner panel 2, and a magnetic control switch is installed on the body. When the user opens the air conditioner panel 2, the magnet 9 on the air conditioner panel 2 separates from the magnetic control switch on the body, de-energizing the additional functional modules and ensuring user safety.

[0043] The magnet mounting component provided by this utility model is suitable for installation on the air conditioner panel 2 and is used to install and fix the magnet 9.

[0044] The following is combined Figures 2 to 4 This invention describes the magnet mounting component.

[0045] like Figures 2 to 4 As shown, the magnet mounting component provided in this embodiment of the present invention includes a base part 1, a first limiting part 4, a second limiting part 5, a cantilever part 6, a third limiting part 7, and a fourth limiting part 8.

[0046] Specifically, the first end of the seat 1 is used to connect with the air conditioning panel 2, and the first limiting part 4, the second limiting part 5, the third limiting part 7 and the fourth limiting part 8 are fixedly disposed at the second end of the seat 1.

[0047] The first limiting part 4 and the second limiting part 5 are longitudinally spaced along the magnet support surface 3, and the third limiting part 7 and the fourth limiting part 8 are transversely spaced along the magnet support surface 3. The magnet 9 is located between the first limiting part 4 and the second limiting part 5, and between the third limiting part 7 and the fourth limiting part 8. The first limiting part 4 and the second limiting part 5 restrict the longitudinal movement of the magnet 9 located between the first limiting part 4 and the second limiting part 5 along the magnet support surface 3, and the third limiting part 7 and the fourth limiting part 8 restrict the transverse movement of the magnet 9 located between the third limiting part 7 and the fourth limiting part 8 along the magnet support surface 3. After the magnet 9 is installed, the first limiting part 4, the second limiting part 5, the third limiting part 7, and the fourth limiting part 8 together restrict the movement of the magnet 9 along the magnet support surface 3.

[0048] The longitudinal direction of the magnet support surface 3 is as follows: Figure 3 and Figure 4 The direction indicated by y in the figure, the transverse direction of the magnet support surface 3 is as follows Figure 3 and Figure 4 The direction indicated by 'x' in the diagram, the normal direction of magnet support surface 3 is perpendicular to magnet support surface 3, and the normal direction of magnet support surface 3 is as follows: Figure 3 and Figure 4 The direction indicated by z in the middle.

[0049] The first end of the cantilever portion 6 is connected to the side of the first limiting portion 4 near the second limiting portion 5, and the cantilever portion 6 extends in a direction away from the first limiting portion 4. When the magnet 9 is installed in the magnet mounting component provided in this embodiment of the present invention, the magnet 9 is located between the magnet support surface 3 and the cantilever portion 6.

[0050] When subjected to force, the cantilever 6 can undergo bending elastic deformation, so that the second end of the cantilever 6 can move closer to or further away from the magnet support surface 3.

[0051] In its natural state, at least the distance between the second end of the cantilever 6 and the magnet support surface 3 is less than the dimension of the magnet 9 along the normal direction of the magnet support surface 3. The cantilever 6 can apply pressure to the magnet 9 and press the magnet 9 firmly and fix it to the magnet support surface 3.

[0052] When installing the magnet 9 into the magnet mounting component provided by this utility model, a force is first applied to the second end of the cantilever 6 to increase the distance between the second end of the cantilever 6 and the magnet support surface 3, so that one end of the inclined magnet 9 extends into the space between the second end of the cantilever 6 and the magnet support surface 3.

[0053] Then, the magnet 9 is pushed along the longitudinal direction of the magnet support surface 3, and the tilt angle of the magnet 9 is adjusted as the magnet 9 moves. During the process of pushing the magnet 9, the cantilever part 6 has a certain elastic deformation until the magnet 9 is completely located between the first limiting part 4 and the second limiting part 5. Then, the cantilever part 6 recovers some elastic deformation until the cantilever part 6 is pressed against the magnet 9.

[0054] With this configuration, the bending elastic deformation of the cantilever part 6 can reduce the installation difficulty of the magnet 9. After the magnet 9 is installed, the cantilever part 6 presses the magnet 9 tightly. Relying on the force exerted on the magnet 9 by the cantilever part 6 and the magnet support surface 3, the shaking of the magnet 9 can be limited, thus solving the problem of magnet shaking and difficulty in installation in the magnet mounting position on the air conditioner panel in related technologies.

[0055] It should be noted that the pressing effect of the cantilever 6 on the magnet 9 can limit the magnet 9 from swaying along the normal direction of the magnet support surface 3, and also limit the magnet 9 from swaying in a direction parallel to the magnet support surface 3. Even if the distance between the first limiting part 4 and the second limiting part 5 and the distance between the third limiting part 7 and the fourth limiting part 8 are increased to a certain extent, the stability of the magnet 9 can still be ensured, which helps to further reduce the installation difficulty of the magnet 9.

[0056] In a specific embodiment, the magnet 9 has a longitudinal dimension of 9.5 mm along the magnet support surface 3, a transverse dimension of 10.5 mm along the magnet support surface 3, and a normal dimension of 5 mm along the magnet support surface 3. In this case, the distance between the first limiting part 4 and the second limiting part 5 can be set to 10 mm, the distance between the third limiting part 7 and the fourth limiting part 8 can be set to 11 mm, and when the cantilever part 6 is in its natural state, the distance between the second end of the cantilever part 6 and the magnet support surface 3 can be 4.5 mm.

[0057] In this embodiment of the utility model, the aforementioned seat part 1, first limiting part 4, second limiting part 5, cantilever part 6, third limiting part 7 and fourth limiting part 8 are connected to form an integral structure, which can be integrally molded by injection molding process.

[0058] Designing the magnet mounting component as a single molded part improves its structural strength, makes it suitable for mass production, increases production efficiency, and reduces production costs.

[0059] The length of the cantilever 6 along the longitudinal direction of the magnet support surface 3 is called the length dimension of the cantilever 6, and the length of the magnet 9 along the longitudinal direction of the magnet support surface 3 is called the width dimension of the magnet 9. In this embodiment, the length dimension of the cantilever 6 is greater than one-third of the width dimension of the magnet 9, and the length dimension of the cantilever 6 is less than three-quarters of the width dimension of the magnet 9.

[0060] This configuration ensures that the cantilever 6 can exert a suitable clamping force on the magnet 9, thus ensuring the stability of the magnet 9 and avoiding the problems of difficult installation of the magnet 9 due to excessive length of the cantilever 6 and instability of the magnet 9 due to insufficient length of the cantilever 6.

[0061] Specifically, the length of the cantilever 6 can be half the width of the magnet 9.

[0062] In this embodiment of the present invention, the end of the second limiting part 5 away from the magnet support surface 3 has a first inclined surface 10, and the distance between the first inclined surface 10 and the magnet support surface 3 is the first inter-surface distance, which gradually decreases along the direction close to the first limiting part 4.

[0063] The first inclined surface 10 can accommodate the process of the magnet 9 being inserted at an angle between the cantilever 6 and the magnet support surface 3. When the second limiting part 5 has the same dimension along the normal direction of the magnet support surface 3, it is beneficial to reduce the tilt angle when the magnet 9 is inserted between the cantilever 6 and the magnet support surface 3, and to reduce the installation difficulty of the magnet 9.

[0064] The distance between the edge of the first inclined surface 10 away from the first limiting part 4 and the magnet support surface 3 is the maximum value of the distance between the first surfaces. In this embodiment, the maximum value of the distance between the first surfaces is controlled within the range of 1.5 to 3 mm.

[0065] This design avoids the problem of difficult magnet installation caused by excessive distance between the second surfaces, and also avoids the problem of magnet 9 easily detaching caused by excessive distance between the second surfaces. It can both ensure the limiting effect on magnet 9 and ensure that magnet 9 is easy to install.

[0066] Specifically, the maximum value of the distance between the first surfaces can be set to 2 millimeters.

[0067] In a further embodiment, the second end of the cantilever portion 6 is provided with a second inclined surface 11, and the distance between the second inclined surface 11 and the magnet support surface 3 is the second inter-surface distance, which gradually decreases along the direction close to the first limiting portion 4.

[0068] The second inclined surface 11 reduces the difficulty of inserting the magnet 9 between the cantilever 6 and the magnet support surface 3.

[0069] In this embodiment of the invention, a first reinforcing rib 12 is provided on the side of the cantilever portion 6 away from the seat portion 1 and on the side of the first limiting portion 4 away from the second limiting portion 5, as shown in the figure. Figure 3 and Figure 4 The first reinforcing rib 12 can increase the structural strength of the cantilever part 6 and the first limiting part 4.

[0070] The base 1 has a hollow structure, which helps reduce the weight of the magnet mounting components and the air conditioning panel assembly, thus facilitating lightweight design. The base 1 has a second reinforcing rib 13 inside, as shown in the reference... Figure 3 and Figure 4 The second reinforcing rib 13 can increase the structural strength of the seat part 1.

[0071] On the other hand, this embodiment of the present invention also provides an air conditioner panel assembly, including an air conditioner panel 2 and a magnet mounting component provided in any of the above embodiments, wherein the magnet mounting component is disposed on one side of the air conditioner panel 2. The magnet mounting component provided in any of the above embodiments can reduce the installation difficulty of the magnet 9 and can prevent the magnet 9 from shaking. Therefore, the air conditioner panel assembly in this embodiment has the advantages of convenient installation of the magnet 9 and strong stability of the magnet 9. The derivation process of the beneficial effects of the air conditioner panel assembly in this embodiment of the present invention is largely similar to the derivation process of the beneficial effects of the magnet mounting component described above, so it will not be repeated here.

[0072] In some embodiments, the magnet mounting component can be fixedly connected to the air conditioning panel 2 by adhesive bonding.

[0073] In other embodiments, the magnet mounting component and the air conditioning panel 2 can be integrally molded using an injection molding process, which helps to improve the connection strength and stability between the magnet mounting component and the air conditioning panel 2.

[0074] Furthermore, this utility model embodiment also provides an air conditioner, including the magnet mounting component or air conditioner panel assembly provided in any of the above embodiments. It possesses all the advantages of the aforementioned magnet mounting component or air conditioner panel assembly. The derivation process of the beneficial effects of the air conditioner in this utility model embodiment is largely similar to the derivation process of the beneficial effects of the aforementioned magnet mounting component or air conditioner panel assembly, and therefore will not be repeated here.

[0075] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A magnet mounting component, characterized in that, include: The seat (1) has a first end adapted to be connected to the air conditioning panel (2) and a second end having a magnet support surface (3). The first limiting part (4) and the second limiting part (5) are fixedly disposed at the second end of the base part (1) and are distributed at intervals along the longitudinal direction of the magnet support surface (3); The third limiting part (7) and the fourth limiting part (8) are fixedly disposed at the second end of the base part (1) and are distributed at transverse intervals along the magnet support surface (3); The cantilever portion (6) has a first end connected to the side of the first limiting portion (4) near the second limiting portion (5). The cantilever portion (6) extends in a direction away from the first limiting portion (4). The cantilever portion (6) is adapted to undergo bending elastic deformation. In its natural state, at least the distance between the second end of the cantilever portion (6) and the magnet support surface (3) is less than the dimension of the magnet (9) along the normal direction of the magnet support surface (3).

2. The magnet mounting component according to claim 1, characterized in that, The seat part (1), the first limiting part (4), the second limiting part (5), the cantilever part (6), the third limiting part (7) and the fourth limiting part (8) are integrally formed.

3. The magnet mounting component according to claim 1, characterized in that, The length of the cantilever (6) along the longitudinal direction of the magnet support surface (3) is the length dimension of the cantilever (6), and the dimension of the magnet (9) along the longitudinal direction of the magnet support surface (3) is the width dimension of the magnet (9). The length dimension of the cantilever (6) is greater than one-third of the width dimension of the magnet (9), and the length dimension of the cantilever (6) is less than three-quarters of the width dimension of the magnet (9).

4. The magnet mounting component according to claim 1, characterized in that, The second limiting part (5) has a first inclined surface (10) at one end away from the magnet support surface (3). The distance between the first inclined surface (10) and the magnet support surface (3) is the first inter-surface distance, which gradually decreases along the direction close to the first limiting part (4).

5. The magnet mounting component according to claim 4, characterized in that, The maximum distance between the first surfaces is 1.5 to 3 millimeters.

6. The magnet mounting component according to claim 1, characterized in that, The second end of the cantilever (6) is provided with a second inclined surface (11), and the distance between the second inclined surface (11) and the magnet support surface (3) is the second surface distance, which gradually decreases along the direction close to the first limiting part (4).

7. The magnet mounting component according to any one of claims 1-6, characterized in that, The side of the cantilever (6) away from the seat (1) and the side of the first limiting part (4) away from the second limiting part (5) are provided with a first reinforcing rib (12). And / or, the seat part (1) is a hollow structure, and the interior of the seat part (1) is provided with a second reinforcing rib (13).

8. An air conditioner panel assembly, characterized in that, It includes an air conditioning panel (2) and a magnet mounting member disposed on one side of the air conditioning panel (2), wherein the magnet mounting member is the magnet mounting member as described in any one of claims 1 to 7.

9. The air conditioning panel assembly according to claim 8, characterized in that, The magnet mounting component is integrally formed with the air conditioning panel (2).

10. An air conditioner, characterized in that, It includes the magnet mounting component as described in any one of claims 1 to 7, or the air conditioning panel assembly as described in claim 8 or 9.