Decorative plate reinforcing structure, air conditioner door plate and air conditioner

By combining the snap-fit ​​structure with the reinforcement plate through gap and interference fit, the problem of air conditioner door panel breakage caused by stress concentration during transportation is solved, achieving a more stable connection and a longer service life.

CN224050599UActive Publication Date: 2026-03-27GREE ELECTRIC APPLIANCES ZHENGZHOU +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The sheet metal reinforcing strips and buckle structure of existing air conditioner door panels are prone to breakage due to stress concentration during transportation, resulting in loose connections and affecting stability and the air outlet shielding effect.

Method used

The design employs a combination of snap-fit ​​structure and reinforcement plate with clearance and interference fit. By dispersing stress through the micro-movement space of the reinforcement plate, stress concentration in the snap-fit ​​structure is reduced.

Benefits of technology

It improves the stability and service life of the decorative panel, reduces the risk of breakage of the snap-fit ​​structure, and enhances the overall strength and impact resistance of the air conditioner door panel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a decorative plate reinforcing structure, an air conditioner door plate and an air conditioner, and belongs to the technical field of compressors. The reinforcing structure comprises a plurality of buckle structures and a reinforcing plate, the buckle structures are arranged on the mounting base plane, and mounting positions are formed between the buckle structures and the mounting base plane. The reinforcing plate is clamped in the mounting position; at least one buckle structure is in clearance fit with the reinforcing plate, and at least one buckle structure is in interference fit with the reinforcing plate. The reinforcing structure can increase the strength of the device plate, stress between the buckle structure and the reinforcing plate is dispersed, the buckle structure is not prone to breakage, and therefore the stability of the whole reinforcing structure is better, and the service life is longer.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a compressor technical field especially relates to a decorative plate reinforcing structure, air conditioner door board and air conditioner. BACKGROUND

[0002] As a common refrigeration and heating equipment, the appearance design and structural stability of the cabinet air conditioner are crucial to the performance and user experience. On the front side of the cabinet air conditioner, a large door plate is usually used to block the air outlet, which plays a role in appearance and protection of internal components. In order to ensure that the large door plate of the cabinet air conditioner has consistent gaps when it is turned off and turned on, and does not deform due to time, temperature and other reasons, a sheet metal reinforcing strip is usually used inside the large door plate to strengthen the structural performance. The sheet metal reinforcing strip is usually fixed by using multiple buckles on the large door plate. However, the cooperation between the existing sheet metal reinforcing strip and the multiple buckles is usually that the buckles are tightly attached to the surface of the sheet metal reinforcing strip. This design causes the assembly buckles between the large door plate and the reinforcing strip to bear additional stress during transportation due to the bumps and vibrations of the vehicle. However, the buckle cannot effectively disperse stress, which causes the buckle to easily break, ultimately causing the connection between the large door plate and the reinforcing strip to loosen, affecting the stability of the large door plate and interfering with the blocking effect of the air outlet.

[0003] Therefore, it is urgent to improve the connection method of the existing buckle and reinforcing strip to overcome the defects of the prior art. CONTENT OF THE UTILITY MODEL

[0004] To overcome the problems in the related art, one of the purposes of the utility model is to provide a decorative plate reinforcing structure, which can increase the strength of the device plate, and the stress dispersion between the buckle structure and the reinforcing plate, the buckle structure is not easy to break, so that the stability of the whole reinforcing structure is better and the service life is longer.

[0005] A decorative plate reinforcing structure, comprising:

[0006] A buckle structure is arranged on the mounting base surface, and a plurality of buckle structures are arranged on the mounting base surface, and a mounting position is formed between the buckle structure and the mounting base surface;

[0007] A reinforcing plate is clamped in the mounting position, and at least one buckle structure and the reinforcing plate are gap-fitted, and at least one buckle structure and the reinforcing plate are interference-fitted.

[0008] The decorative plate reinforcing structure can form an integral structure with the reinforcing plate and the decorative plate. When external force acts on the decorative plate, the reinforcing plate can share part of the external force, thereby reducing deformation of the decorative plate. Moreover, due to the clearance fit between the at least one buckle structure and the reinforcing plate and the interference fit between the at least one buckle structure and the reinforcing plate, when the decorative plate vibrates or is impacted by external force, the clearance fit buckle allows the reinforcing plate to have a certain amount of micro-motion space. Thus, when the integral structure is subjected to external force, stress borne by the interference fit buckle will not be too large instantaneously, but will be dispersed to the entire buckle structure and the reinforcing plate through micro-motion at the clearance fit buckle. For example, when a vehicle passes over a bumpy road, the reinforcing plate will be slightly displaced due to vibration, and the clearance at the clearance fit buckle can absorb part of the vibration energy, thereby avoiding the interference fit buckle from bearing excessive impact force, and thus reducing the risk of breakage of the buckle structure.

[0009] In the preferred technical scheme of the present application, the buckle structure comprises a first buckle body and a second buckle body, the first buckle body and the second buckle body are oppositely arranged, a first clamping position is formed between the first buckle body and the mounting base surface, and a second clamping position is formed between the second buckle body and the mounting base surface.

[0010] When the reinforcing plate is clamped in the mounting position, one side of the reinforcing plate is clamped in the first clamping position, and the opposite side is clamped in the second clamping position.

[0011] The first buckle body and the second buckle body are oppositely arranged and form clamping positions with the mounting base surface, respectively, and the two sides of the reinforcing plate are clamped in different clamping positions. This double-sided clamping method can better limit the displacement of the reinforcing plate in various directions compared to single-sided clamping. Double-sided clamping can effectively prevent the reinforcing plate from shaking left and right or jumping up and down during vibration, ensuring that the reinforcing plate is always firmly installed on the decorative plate and improving the connection stability of the entire decorative plate reinforcing structure.

[0012] In the preferred technical scheme of the present application, a plurality of buckle structures are arranged on the mounting base surface along the length direction of the reinforcing plate, and the buckle structures at the two ends of the reinforcing plate are clearance fit with the reinforcing plate along the length direction of the reinforcing plate.

[0013] The clearance fit buckle structures at the two ends of the reinforcing plate can act as a buffer and allow the reinforcing plate to move within a certain range. This movement can absorb part of the impact force, avoiding the impact force from being directly transmitted to the buckle structure and the mounting base surface, thereby reducing the risk of breakage of the buckle structure and damage to the mounting base surface and improving the impact resistance of the entire decorative plate reinforcing structure. Moreover, the clearance fit buckle structure makes it easier to insert the reinforcing plate into the clamping position when installing the reinforcing plate, thereby reducing the installation difficulty and improving the installation efficiency.

[0014] In the preferable technical scheme of the utility model, the buckle structure is provided with 8-12, and multiple buckle structures are arranged on the installation base surface along the length direction of the reinforcing plate, and the minimum distance between two adjacent buckle structures is 20-50cm.

[0015] The arrangement of 8-12 buckle structures can ensure the effective connection between the reinforcing plate and the installation base surface, avoid the increase of installation cost and the complexity of the installation process caused by too many buckles, and make the reinforcing plate evenly transmit stress to each buckle structure when stressed, without excessively increasing the cost.

[0016] In the preferable technical scheme of the utility model, the buckle structure is provided with a buckling protrusion, and the reinforcing plate is provided with a clamping groove corresponding to the buckling protrusion.

[0017] The corresponding arrangement of the buckling protrusion and the clamping groove can enhance the stability of the connection between the reinforcing plate and the installation base surface, prevent the reinforcing plate from being easily pulled out of the buckle structure, and ensure the integrity and stability of the reinforcing structure.

[0018] In the preferable technical scheme of the utility model, the first buckle body is provided with a plurality of first reinforcing ribs on the side away from the first clamping position, and the second buckle body is provided with a plurality of second reinforcing ribs on the side away from the second clamping position.

[0019] In the preferable technical scheme of the utility model, the height of the first clamping position is 3.6-4.5mm, and the height of the second clamping position is 2-3.5mm.

[0020] The arrangement of the first reinforcing rib and the second reinforcing rib significantly improves the structural strength of the first buckle body and the second buckle body. The buckle structure can better resist deformation and damage, and ensure the stability and reliability of the connection between the reinforcing plate and the installation base surface. When the reinforcing plate is subjected to external force, the stress will spread along the direction of the reinforcing rib, avoiding stress concentration in the local position of the buckle structure, thereby reducing the risk of damage to the buckle structure.

[0021] The second purpose of the utility model is to provide an air conditioner door plate comprising a plate body, wherein the plate body is provided with the decorative plate reinforcing structure as described above.

[0022] The air conditioner door plate can effectively share the external force borne by the door plate through the above-mentioned reinforcing structure, and enhance the overall strength of the door plate. For example, during the transportation of the air conditioner, even if a certain degree of collision is caused, the reinforcing plate can disperse the impact force, prevent the door plate from being damaged, such as being concave or deformed, and ensure the integrity and aesthetic appearance of the door plate. Moreover, the use of the above-mentioned reinforcing structure can disperse the stress borne by the buckle structure, thereby prolonging the service life of the reinforcing structure.

[0023] The third purpose of the utility model is to provide an air conditioner, which comprises the air conditioner door plate as described above.

[0024] The utility model discloses the beneficial effects are:

[0025] The utility model provides a kind of reinforcing structure of decorative plate, the reinforcing structure includes buckle structure and reinforcing plate, buckle structure is set on installation base surface, and buckle structure is set multiple on installation base surface, and installation site is formed between buckle structure and installation base surface.Reinforcing plate is clamped in installation site;And clearance fit between at least one buckle structure and reinforcing plate, at least one buckle structure and reinforcing plate are interference fit.The reinforcing structure due to clearance fit between at least one buckle structure and reinforcing plate, at least one buckle structure and reinforcing plate are interference fit, when decorative plate is subjected to vibration or subjected to external force impact in the transportation process of decorative plate, clearance fit buckle allows reinforcing plate to have certain micro-motion space.In this way, when overall structure is subjected to external force, the stress that interference fit buckle bears is not too large instantaneously, but through the micro-motion of clearance fit buckle place, stress is dispersed to entire buckle structure and reinforcing plate, the clearance of clearance fit buckle place can absorb part vibration energy, avoid interference fit buckle to bear too large impact force, to reduce the risk of buckle structure fracture.Because buckle structure is not easy to break, reinforcing plate can continuously and stably play the reinforcing effect, and is not easy to be damaged due to the failure of reinforcing plate, thereby prolonging the service life of entire decorative plate reinforcing structure.

[0026] The application also provides air conditioner door plate comprising the reinforcing structure and air conditioner, the mechanism of the air conditioner door plate is stable, and the service life is long, so that it can play a stable role in air conditioner, which helps to improve the user's experience. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is the schematic diagram of reinforcing structure of decorative plate provided in the embodiment of the utility model;

[0028] Figure 2 It is the schematic diagram of reinforcing structure not including reinforcing plate provided in the embodiment of the utility model;

[0029] Figure 3 It is the schematic diagram of part structure of reinforcing plate provided in the embodiment of the utility model;

[0030] Figure 4 It is the schematic diagram of air conditioner door plate provided in the embodiment of the utility model;

[0031] Figure 5 It is the schematic diagram of air conditioner door plate provided in the embodiment of the utility model; Figure 4 The local enlarged view of A in the middle.

[0032] REFERENCE NUMERALS:

[0033] 1, installation base surface; 11, installation site; 2, reinforcing plate; 21, clamping groove; 3, buckle structure; 31, first buckle body; 311, first reinforcing rib; 312, first clamping position; 32, second buckle body; 321, second reinforcing rib; 322, second clamping position; DETAILED DESCRIPTION

[0034] The preferred embodiments of the present application will be described in more detail below with reference to the accompanying drawings. Although the preferred embodiments of the present application are shown in the drawings, it is understood that the present application can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present application more thorough and complete, and to convey the scope of the present application to those skilled in the art.

[0035] As a common refrigeration and heating equipment, the appearance design and structural stability of the cabinet air conditioner are crucial to the performance and user experience of the product. On the front side of the cabinet air conditioner, a large door plate is usually used to block the air outlet, which plays a role in aesthetics and protection of internal components. In order to ensure that the gap of the large door plate of the cabinet air conditioner is consistent when the machine is turned off and turned on, and the deformation of the injection molding part does not occur due to time, temperature, etc., a sheet metal reinforcing strip is usually used inside the large door plate to strengthen the structural performance. The sheet metal reinforcing strip is usually fixed by using multiple buckles on the large door plate. However, the cooperation between the existing sheet metal reinforcing strip and multiple buckles is usually that the buckles are tightly attached to the surface of the sheet metal reinforcing strip. This design causes the assembly buckles between the large door plate and the reinforcing strip to bear additional stress due to the bumps, vibrations and other external forces during transportation. However, the buckles cannot effectively disperse stress, which can cause the buckles to break easily, ultimately causing the connection between the large door plate and the reinforcing strip to loosen, affecting the stability of the large door plate, and interfering with the blocking effect of the air outlet.

[0036] Based on this, the present application provides a decorative plate reinforcing structure.

[0037] Embodiment 1

[0038] As shown in Figures 1-3 The decorative plate reinforcing structure provided by the present embodiment comprises:

[0039] A buckle structure 3 is arranged on the installation base surface 1, and a plurality of buckle structures 3 are arranged on the installation base surface 1, and the buckle structure 3 and the installation base surface 1 form an installation site 11 therebetween;

[0040] A reinforcing plate 2 is clamped in the installation site 11, and at least one buckle structure 3 and the reinforcing plate 2 are gap-fitted, and at least one buckle structure 3 and the reinforcing plate 2 are interference-fitted.

[0041] Specifically, a plurality of buckle structures 3 are integrally formed on the decorative plate by an injection molding process. The decorative plate can be a door plate on a cabinet air conditioner, a device plate on an automobile, or a decorative plate on a household appliance such as an oven.

[0042] In this embodiment, the buckle structures 3 can be divided into two categories, one is a clearance fit buckle, and the other is an interference fit buckle. For the clearance fit buckle, its size is designed so that the reinforcing plate 2 can be easily inserted into the installation site 11 formed by the buckle and the decorative plate when installed, and there is a small gap between the buckle and the reinforcing plate 2, which does not affect the basic installation stability of the reinforcing plate 2. But it can make the reinforcing plate 2 have a certain degree of micro-motion. For example, the inner diameter of the clearance fit buckle is 0.5 mm larger than the outer diameter of the corresponding clamping part of the reinforcing plate 2. For the interference fit buckle, its inner diameter is slightly smaller than the outer diameter of the corresponding clamping part of the reinforcing plate 2, and when installed, a certain external force needs to be applied to press the reinforcing plate 2 into the installation site 11 formed by the buckle and the decorative plate, so as to realize tight connection. For example, the inner diameter of the interference fit buckle is 0.3 mm smaller than the outer diameter of the corresponding clamping part of the reinforcing plate 2.

[0043] A high-strength metal sheet is selected as the reinforcing plate 2, which is cut and bent according to the shape of the plate and the distribution of the buckle, so that it can fit the installation site 11. When installing, first insert one end of the reinforcing plate 2 into the installation site 11 of the clearance fit buckle, then gradually push the reinforcing plate 2 forward, and when necessary, use tools to press the reinforcing plate 2 into the interference fit buckle to complete the installation of the entire reinforcing plate 2.

[0044] The reinforcing structure of the decorative plate can form a whole structure with the reinforcing plate 2 and the decorative plate. When external force acts on the decorative plate, the reinforcing plate 2 can share part of the external force, thereby reducing the deformation of the decorative plate. Moreover, due to the clearance fit between at least one buckle structure 3 and the reinforcing plate 2, and the interference fit between at least one buckle structure 3 and the reinforcing plate 2, when the decorative plate is shaken or impacted by external force, the clearance fit buckle allows the reinforcing plate 2 to have a certain micro-motion space. In this way, when the whole structure is subjected to external force, the stress borne by the interference fit buckle will not be too large instantaneously, but will be dispersed to the entire buckle structure 3 and the reinforcing plate 2 through the micro-motion at the clearance fit buckle. For example, when the vehicle passes through a bumpy road, the reinforcing plate 2 will produce a small displacement due to vibration, and the gap at the clearance fit buckle can absorb part of the vibration energy, avoiding the interference fit buckle bearing too much impact force, thereby reducing the risk of breaking of the buckle structure 3.

[0045] Embodiment 2

[0046] This embodiment is an improvement based on embodiment 1.

[0047] AsFigures 1-3 As shown in the embodiment, the buckle structure 3 comprises a first buckle body 31 and a second buckle body 32, the first buckle body 31 and the second buckle body 32 are oppositely arranged, the first buckle body 31 and the mounting base surface 1 form a first clamping position 312, and the second buckle body 32 and the mounting base surface 1 form a second clamping position 322.

[0048] When the reinforcing plate 2 is clamped in the mounting position 11, one side of the reinforcing plate 2 is clamped in the first clamping position 312, and the opposite side is clamped in the second clamping position 322. Specifically, the height of the first clamping position 312 is 3.6-4.5 mm, and the height of the second clamping position 322 is 2-3.5 mm. It should be noted that the height of the clamping position refers to the minimum distance between the bottom of the buckle body and the mounting base surface 1. In addition, the structure of the first buckle body 31 and the structure of the second buckle body 32 can be different.

[0049] The first buckle body 31 and the second buckle body 32 are oppositely arranged and form clamping positions with the mounting base surface 1 respectively, and the two sides of the reinforcing plate 2 are clamped in different clamping positions. Compared with single-side clamping, this double-side clamping mode can better limit the displacement of the reinforcing plate 2 in various directions. Double-side clamping can effectively prevent the reinforcing plate 2 from shaking left and right or jumping up and down during vibration, ensuring that the reinforcing plate 2 is always firmly installed on the decorative plate and improving the connection stability of the entire decorative plate reinforcing structure.

[0050] In addition, when installing the reinforcing plate 2, the double-side clamping mode makes the installation process more convenient. The operator can clearly align the two clamping positions for installation, reducing the installation difficulty and improving the installation efficiency. When disassembling the reinforcing plate 2 for later maintenance, the clamping relationship can also be relatively easily released from the two clamping positions respectively.

[0051] Embodiment 3

[0052] This embodiment is improved on the basis of embodiment 1.

[0053] As shown in the embodiment, Figures 1-3 In this embodiment, a plurality of buckle structures 3 are arranged on the mounting base surface 1 along the length direction of the reinforcing plate 2; and along the length direction of the reinforcing plate 2, the buckle structures 3 at both ends of the reinforcing plate 2 are gap-fitted with the reinforcing plate 2.

[0054] In the present embodiment, the reinforcing structure is used in the door panel of a cabinet air conditioner. In actual application, the door panel of a cabinet air conditioner is easily affected by vibration or other external force in the length direction during transportation. The two ends in the length direction are designed to be gap-fitted with the buckle structure 3, which can play a buffering role because it allows the reinforcing plate 2 to move within a certain range. This movement can absorb part of the impact force, avoiding the impact force being directly transmitted to the buckle structure 3 and the mounting base 1, reducing the risk of breakage of the buckle structure 3 and damage to the mounting base 1, and improving the impact resistance of the entire decorative plate reinforcing structure. Moreover, when installing the reinforcing plate 2, the gap-fitted buckle structure 3 makes it easier for the reinforcing plate 2 to be inserted into the clamping position, reducing the installation difficulty and improving the installation efficiency.

[0055] In addition, the two ends in the length direction are designed to be gap-fitted with the buckle structure 3, and the rest of the buckle and the reinforcing plate 2 are in interference fit, which can ensure the installation stability of the reinforcing plate 2.

[0056] Embodiment 4

[0057] The present embodiment is an improvement based on Embodiment 1.

[0058] As shown in Figures 1-3 In the present embodiment, the buckle structure 3 is provided in 8-12, and a plurality of buckle structures are arranged on the mounting base 1 in the length direction of the reinforcing plate 2, and the minimum distance between adjacent two buckle structures 3 is 20-50 cm.

[0059] In the present embodiment, the buckle structure 3 is made of engineering plastic by injection molding process. Each buckle structure 3 is composed of a first buckle body 31 and a second buckle body 32 arranged opposite to each other, and the first buckle body 31 and the mounting base 1 form a first clamping position 312, and the second buckle body 32 and the mounting base 1 form a second clamping position 322. In the present embodiment, 10 buckle structures 3 are selected. A thin plate of aluminum alloy material is selected as the reinforcing plate 2. Aluminum alloy has the characteristics of light weight and high strength, and has a wide range of applications.

[0060] Providing 8-12 buckle structures 3 can ensure effective connection between the reinforcing plate 2 and the mounting base 1, while avoiding the increase of installation cost and the complexity of installation process caused by too many buckles. The minimum distance between adjacent two buckle structures 3 can make the reinforcing plate 2 evenly transmit stress to each buckle structure 3 when stressed, without excessively increasing the cost.

[0061] If the interval is too small, although the connection between the reinforcing plate 2 and the mounting base 1 is more compact, the number of the buckle structures 3 is increased, which not only increases the cost, but also may cause local stress concentration of the reinforcing plate 2; if the interval is too large, the part of the reinforcing plate 2 between two buckles may be deformed greatly, and the stress cannot be effectively transmitted.

[0062] Embodiment 5

[0063] This embodiment is improved on the basis of Embodiment 1.

[0064] As shown in Figures 1-3 In this embodiment, the buckle structure 3 is provided with a buckling protrusion, and the reinforcing plate 2 is provided with a clamping groove 21 corresponding to the buckling protrusion.

[0065] Specifically, the surface of the buckle structure 3 is provided with a hemispherical buckling protrusion, and the corresponding position of the reinforcing plate 2 is processed by a stamping process to match the clamping groove 21.

[0066] The corresponding arrangement of the buckling protrusion and the clamping groove 21 can enhance the stability of the connection between the reinforcing plate 2 and the mounting base 1, and the reinforcing plate 2 will not easily come out of the buckle structure 3, which ensures the integrity and stability of the reinforcing structure.

[0067] In addition, although the cooperation of the buckling protrusion and the clamping groove 21 enhances the stability of the connection, the installation and disassembly process is not complicated. When installing, only the clamping groove 21 on the reinforcing plate 2 is aligned with the buckling protrusion on the buckle structure 3, and an external force is applied to press to complete the buckling; when disassembling, a certain external force is applied to overcome the friction between the buckling protrusion and the clamping groove 21, so that the reinforcing plate 2 can be separated from the buckle structure 3.

[0068] Embodiment 6

[0069] This embodiment is improved on the basis of Embodiment 1.

[0070] As shown in Figures 1-3 In this embodiment, the first buckle body 31 is provided with a plurality of first reinforcing ribs 311 on the side away from the first clamping position 312; and the second buckle body 32 is provided with a plurality of second reinforcing ribs 321 on the side away from the second clamping position 322.

[0071] The cross section of the first reinforcing rib 311 and the second reinforcing rib 321 can be a triangular structure, with a height of 5mm and a bottom width of 4mm.

[0072] The arrangement of the first reinforcing rib 311 and the second reinforcing rib 321 significantly improves the structural strength of the first buckle body 31 and the second buckle body 32. The buckle structure 3 can better resist deformation and damage, ensuring the stability and reliability of the connection between the reinforcing plate 2 and the installation base surface 1. When the reinforcing plate 2 is subjected to external force, stress will spread along the direction of the reinforcing rib, avoiding stress concentration in the local position of the buckle structure 3, thereby reducing the risk of damage to the buckle structure 3.

[0073] Embodiment 6

[0074] As Figures 1-5 shown, the embodiment provides an air conditioner door plate, which comprises a plate body provided with a decorative plate reinforcing structure as described above.

[0075] Specifically, the air conditioner door plate is a large door plate of a cabinet air conditioner, which is used to shield the air outlet and plays a role in aesthetics and protection of internal components. The air conditioner door plate is made of high-strength plastic material and is integrally formed by injection molding

[0076] On the inner wall of the plate body of the air conditioner door plate, 10 buckle structures 3 are uniformly distributed along the length direction, and the distance between adjacent two buckle structures 3 is 30 cm. Each buckle structure 3 comprises a first buckle body 31 and a second buckle body 32 arranged oppositely, and the first buckle body 31 and the second buckle body 32 are integrally formed with the door plate. The side of the first buckle body 31 away from the first clamping position 312 is provided with three triangular first reinforcing ribs 311, and the side of the second buckle body 32 away from the second clamping position 322 is provided with three identical second reinforcing ribs 321. The height of the reinforcing rib is 5 mm, and the bottom width is 4 mm. The height of the first clamping position 312 is 4 mm, and the height of the second clamping position 322 is 3 mm.

[0077] An aluminum alloy sheet is selected as the reinforcing plate 2, which is light in weight and high in strength. According to the size of the plate body and the layout of the buckle structure 3, the aluminum alloy sheet is cut and bent to adapt to the buckle structure 3. The reinforcing plate 2 is provided with a clamping groove 21 corresponding to the clamping protrusion of the buckle structure 3, which ensures the close connection with the buckle structure 3.

[0078] During daily use and transportation of the air conditioner, the door plate will be subjected to various external forces, such as collision, extrusion, etc. The reinforcing plate 2 in the decorative plate reinforcing structure is closely connected with the plate body through multiple buckle structures 3, which can effectively share the external force borne by the door plate and enhance the overall strength of the door plate. For example, during the transportation of the air conditioner, even if a certain degree of collision is encountered, the reinforcing plate 2 can disperse the impact force to prevent the door plate from being damaged, such as indentation, deformation, etc., thereby ensuring the integrity and aesthetics of the door plate.

[0079] Moreover, the use of the above-mentioned reinforcing structure can disperse the stress borne by the buckle structure 3, thereby prolonging the service life of the reinforcing structure.

[0080] Embodiment 7

[0081] As Figures 1-5 shown, the present embodiment provides an air conditioner, which comprises the air conditioner door plate as described above.

[0082] The air conditioner comprises an air conditioner cabinet, and the plate body of the air conditioner door plate is made of high-strength plastic and is injection molded. The inner wall of the door plate is provided with the decorative plate reinforcing structure as described above, which comprises 10 buckle structures 3 uniformly distributed along the length direction of the door plate, and the adjacent interval is 30 cm. The buckle structure 3 is integrally formed with the door plate.

[0083] The decorative plate reinforcing structure on the air conditioner door plate enhances the strength and stability of the door plate. During the operation of the air conditioner, the shaking and deformation of the door plate can be reduced, thereby improving the stability of the entire air conditioner.

[0084] The relative arrangement, numerical expressions, and values of the components and steps set forth in the embodiments are not limiting to the scope of the present application unless otherwise specifically stated. Meanwhile, it should be understood that the sizes of the various parts shown in the drawings are not drawn in accordance with the actual proportional relationship for the convenience of description. The technology, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered as part of the authorized description under appropriate circumstances. In all examples shown and discussed here, any specific value should be interpreted as merely exemplary and not as a limitation. Therefore, other examples of exemplary embodiments can have different values. It should be noted that similar reference numbers and letters represent similar items in the following drawings, so once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings. In the description of the present application, it should be understood that the orientation words such as "front, back, up, down, left, right", "horizontal, vertical, perpendicular, horizontal", and "top, bottom" and the like indicate the orientation or positional relationship shown in the drawings, which are only for the convenience of describing the present application and simplifying the description, and do not indicate and imply that the indicated device or element must have a particular orientation or be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the scope of protection of the present application; the orientation words "inner, outer" refer to the inner and outer of the contour of the components themselves.

[0085] For purposes of the description hereinafter, spatial

[0086] In addition, it should be noted that the use of the terms "first", "second", etc., to describe a component having a defined property are used herein only to facilitate identification of that particular component in a given example, and are not intended to serve as a limitation of the scope of the application. This application is not restricted to the embodiments described above, which are meant as only exemplary applications of the principles of this application. Those skilled in the art will recognize that this application can be practiced with modification and alteration, and that the disclosed embodiments are only examples of employing this application. Accordingly, the application is not limited to that precisely as shown and described.

Claims

1. A decorative panel reinforcing structure, characterized by, The decorative plate reinforcing structure comprises: a buckle structure (3) arranged on a mounting base surface (1), and a plurality of the buckle structures (3) are arranged on the mounting base surface (1), and a mounting position (11) is formed between the buckle structure (3) and the mounting base surface (1); a reinforcing plate (2) clamped in the mounting position (11), and at least one of the buckle structures (3) is clearance-fitted with the reinforcing plate (2), and at least one of the buckle structures (3) is interference-fitted with the reinforcing plate (2).

2. The decorative plate reinforcing structure according to claim 1, wherein: the buckle structure (3) comprises a first buckle body (31) and a second buckle body (32), the first buckle body (31) and the second buckle body (32) are oppositely arranged, a first clamping position (312) is formed between the first buckle body (31) and the mounting base surface (1), and a second clamping position (322) is formed between the second buckle body (32) and the mounting base surface (1); when the reinforcing plate (2) is clamped in the mounting position (11), one side of the reinforcing plate (2) is clamped in the first clamping position (312), and the other side opposite to the one side is clamped in the second clamping position (322).

3. The decorative plate reinforcing structure according to claim 2, wherein: a plurality of the buckle structures (3) are arranged on the mounting base surface (1) along the length direction of the reinforcing plate (2), and the buckle structures (3) at both ends of the reinforcing plate (2) are clearance-fitted with the reinforcing plate (2) along the length direction of the reinforcing plate (2).

4. The decorative plate reinforcing structure according to claim 2, wherein: 8-12 buckle structures (3) are arranged, and a plurality of the buckle structures (3) are arranged on the mounting base surface (1) along the length direction of the reinforcing plate (2), and the minimum distance between two adjacent buckle structures (3) is 20-50 cm.

5. The decorative plate reinforcing structure according to any one of claims 1-4, wherein: a buckle protrusion is arranged on the buckle structure (3), and a clamping groove (21) is arranged on the reinforcing plate (2), and the clamping groove (21) corresponds to the buckle protrusion.

6. The decorative plate reinforcing structure according to claim 2, wherein: a plurality of first reinforcing ribs (311) are arranged on the side of the first buckle body (31) away from the first clamping position (312), and a plurality of second reinforcing ribs (321) are arranged on the side of the second buckle body (32) away from the second clamping position (322).

7. The decorative plate reinforcing structure according to claim 2, wherein: the height of the first clamping position (312) is 3.6-4.5 mm, and the height of the second clamping position (322) is 2-3.5 mm.

8. An air conditioning door panel comprising a panel body, characterized by: The plate body is provided with the decorative plate reinforcing structure according to any one of claims 1-7.

9. An air conditioner characterized by comprising: The air conditioner door plate comprises the air conditioner door plate according to claim 8.