Air conditioner box body and air conditioner equipment

By designing and installing grooves and crimping grooves on the side panel of the air conditioner, and using high-strength materials and precision stamping processes, the problems of assembly complexity and safety hazards are solved, and an efficient and safe assembly process and a stable grounding connection are achieved.

CN223090806UActive Publication Date: 2025-07-11GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202422351820.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-25
Publication Date
2025-07-11
Estimated Expiration
2034-09-25

AI Technical Summary

Technical Problem

The assembly process of existing air conditioners' external electrical box components is complicated, with low production efficiency, insufficient hardness of the wiring bracket, poses safety hazards, and the grounding continuity is difficult to guarantee.

Method used

The installation groove and the first crimping groove are formed on the side plate, and the wire clamp assembly is installed in the installation groove to avoid screw intervention, simplify the assembly process, enhance the hardness of the side plate, and improve production efficiency and grounding continuity through high-strength materials and precision stamping process design.

Benefits of technology

Simplify the assembly process, reduce the number of parts, improve production efficiency, enhance the overall strength of the side plate, ensure grounding continuity and wire stability, and improve product safety and reliability.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223090806U_ABST
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Abstract

The utility model relates to an air conditioner side plate and air conditioner equipment, an air conditioner box body comprises a side plate, a mounting groove is formed in the side plate, a wiring hole is formed in the mounting groove, and a wire in the air conditioner box body enters the mounting groove through the wiring hole; a first wire pressing groove is formed in the side plate, and at least part of the first wire pressing groove is arranged in the mounting groove; the wire clamp assembly is formed in the mounting groove, and a wire can penetrate through the wire clamp assembly and penetrate out of the mounting groove through the first wire pressing groove; the buckling cover assembly is detachably connected with the side plate so as to seal the mounting groove; the buckling cover assembly can press the wire into the first wire pressing groove. The installation groove and the first wire pressing groove are formed in the side plate, the wire clamp assembly is formed in the installation groove, intervention of screws is avoided, the assembling complexity is simplified, the number of parts is effectively reduced, the assembling difficulty is reduced, the production efficiency is improved, screw holes do not need to be punched in the installation groove to be matched with the screws, the overall strength of the side plate is effectively enhanced, and the service life of the side plate is prolonged. And the crimping quality is improved.
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Description

Technical Field

[0001] This application relates to the technical field of household appliances, and particularly to an air conditioner housing and an air conditioner device. Background Art

[0002] In the current air conditioner manufacturing industry, the design and assembly process of the electrical box assembly of the air conditioner outdoor unit face many challenges, which are directly related to production efficiency, product safety, and the optimization of manufacturing costs. The design of traditional electrical box assemblies generally uses the method of connecting the terminal lugs and the side plates by screwing them tightly. Although this design meets the basic electrical connection requirements to a certain extent, its deficiencies in production practice are becoming increasingly prominent.

[0003] First of all, from the perspective of production efficiency, the existing assembly process of the electrical box assembly - including multiple steps such as installing side plates, installing terminal lugs, installing wire clamps, and installing wiring boards - significantly increases the complexity of the production process and the number of required parts. This not only prolongs the assembly time but also increases the possibility of errors, which is not conducive to the rapid flow of the production line and the improvement of the overall efficiency.

[0004] Secondly, the hardness problem of the wiring bracket in the electrical box assembly cannot be ignored. Due to deficiencies in the material or structural design of some wiring brackets, it is easy to collide with the pipelines and devices inside the unit when fixing components such as magnetic rings. This not only may damage the internal structure of the unit but also may pose a potential threat to the electrical safety of the unit, such as an increase in risks of short circuits and electric leakage, thereby affecting the reliability of the product and the use safety of users.

[0005] Furthermore, considering that the side plates of the air conditioner outdoor unit usually need to be spray-coated to improve their corrosion resistance and aesthetics, this process also brings additional challenges during the installation of the wiring bracket. Especially regarding the issue of grounding continuity, since the spray coating will hinder the smooth flow of current, when installing the wiring bracket, it is necessary to ensure that the screw can penetrate the spray coating to achieve effective grounding between the housing and the wiring bracket. This requires the use of special screws with paint scraping functions and precise control of the force and angle during the installation process to avoid unnecessary damage to the side plates while ensuring the reliability of the grounding effect.

[0006] In summary, there are problems in the design and assembly process of the wiring bracket in the existing air conditioner outdoor unit electrical box assembly, such as complex operation, low production efficiency, high safety hazards, and difficulty in ensuring grounding continuity. Therefore, it is necessary to improve the existing wiring bracket design to simplify the assembly process, improve production efficiency, enhance the hardness of the wiring bracket, and optimize grounding continuity, so as to meet the requirements of modern air conditioner manufacturing for efficient, safe, and reliable production. Utility Model Content

[0007] The present application provides an air-conditioning box and air-conditioning equipment, which can simplify assembly, improve its hardness, and meet the needs of air-conditioning equipment.

[0008] In a first aspect, the present application provides an air conditioning box, comprising:

[0009] The side plate is formed with a mounting groove, the mounting groove is provided with a wiring hole, and the wires in the air conditioner box enter the mounting groove through the wiring hole; the side plate is formed with a first wire pressing groove, and at least a part of the first wire pressing groove is arranged in the mounting groove;

[0010] a wire clamp assembly formed in the installation groove, the wire being able to pass through the wire clamp assembly and pass out of the installation groove through the first wire pressing groove; and

[0011] A buckle cover assembly is detachably connected to the side plate to close the installation groove; wherein the buckle cover assembly can press the wire into the first wire pressing groove.

[0012] In a possible implementation, the side panel includes a main body, a mounting bottom plate, a first folding plate and two second folding plates, and the main body is connected to the first folding plate and the two second folding plates respectively;

[0013] The two second folding plates are symmetrically arranged, and the second folding plates are bent relative to the main body, so that a first angle is formed between the second folding plates and the main body;

[0014] The first folding plate, the two second folding plates and the main body are respectively connected to the mounting base plate, and the main body, the mounting base plate, the first folding plate and the two second folding plates are enclosed to jointly construct the mounting groove.

[0015] In a possible implementation, the first folding plate includes a wiring plate and a first transition plate, and the wiring plate is connected to the main body through the first transition plate;

[0016] The first transition plate is bent relative to the main body, so that a second angle is formed between the first transition plate and the main body, and the first angle is the same as or different from the second angle;

[0017] The wiring plate is bent relative to the first transition plate, so that the wiring plate and the first transition plate form a third angle, and the third angle is greater than the second angle;

[0018] The wiring hole is arranged on the wiring board, and the wiring board is provided with two magnetic ring holes, and the two magnetic ring holes are arranged on both sides of the wiring hole.

[0019] In a possible implementation, the mounting base plate includes a first part and a second part connected to each other, and the first part is bent relative to the second part; the first part is respectively connected to the first folding plate and the two second folding plates, and the second part is connected to the main body;

[0020] Wherein, the wire clip assembly is formed on the first part, and at least part of the first wire pressing groove is formed on the second part.

[0021] In a possible implementation, the side plate includes a second transition plate, and the second part is connected to the main body through the second transition plate.

[0022] In a possible implementation, the second part is provided with a first positioning portion, and the second part is positioned and connected to the buckle cover assembly through the positioning portion.

[0023] In a possible implementation, the second part is provided with a first connecting portion, and the buckle cover assembly is fixedly connected to the second part through the first connecting portion.

[0024] In a possible implementation, the side plate includes a baffle, the baffle is arranged along the circumference of the installation groove, and the baffle protrudes from the main body.

[0025] In a possible implementation, a diversion groove is formed between the baffle and the main body.

[0026] In a possible implementation, the buckle cover assembly includes a cover body and a second positioning portion formed on the cover body, and the cover body is buckled to the side plate through the second positioning portion to close the installation groove.

[0027] In a possible implementation, the cover body is provided with a buckle groove.

[0028] In a possible implementation, the cover body is provided with a plurality of reinforcing ribs, and the reinforcing ribs are arranged around the buckle groove.

[0029] In a possible implementation, the cover body is provided with a second wire pressing groove, and the second wire pressing groove and the first wire pressing groove are arranged correspondingly.

[0030] In a possible implementation, the cover body is provided with a second connecting portion, and the cover body is connected to the side plate through the second connecting portion.

[0031] In a second aspect, the present application provides an air conditioning device, including the air conditioning box body as described in the first aspect, the air conditioning box body includes side plates and a plurality of shielding plates, and the plurality of shielding plates are enclosed and connected with the side plates.

[0032] The above technical solutions provided by the embodiments of the present application have the following advantages compared with the prior art:

[0033] The air conditioner cabinet and the air conditioner equipment provided by the embodiments of the present application form an installation groove and a first wire pressing groove on the side plate, and form a wire clamping assembly in the installation groove, avoiding the intervention of screws, simplifying the complexity of assembly, effectively reducing the number of parts, reducing the assembly difficulty, improving the production efficiency, and not requiring screw holes to be drilled in the installation groove to cooperate with the screws, effectively enhancing the overall strength of the side plate and improving the crimping quality. Description of the Drawings

[0034] The drawings herein are incorporated into the specification and form a part of this specification, showing embodiments consistent with the present invention and, together with the specification, are used to explain the principles of the present invention.

[0035] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0036] One or more embodiments are exemplarily illustrated by the pictures in the corresponding drawings. These exemplary illustrations do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings represent similar elements, unless otherwise stated, and the drawings in the figures do not constitute a proportional limitation.

[0037] Figure 1 It is a schematic structural diagram of an air conditioner cabinet provided by an embodiment of the present application;

[0038] Figure 2 It is a schematic structural diagram of a side plate provided by an embodiment of the present application;

[0039] Figure 3 It is a schematic structural diagram of a side plate provided by an embodiment of the present application;

[0040] Figure 4 It is a schematic structural diagram of a side plate provided by an embodiment of the present application;

[0041] Figure 5 It is a schematic structural diagram of a buckle cover assembly provided by an embodiment of the present application;

[0042] Figure 6 It is a schematic structural diagram of a buckle cover assembly provided by an embodiment of the present application.

[0043] Explanation of the Reference Numerals in the Drawings:

[0044] 1. Side plate; 11. Installation groove; 12. Wire clamp assembly; 13. Installation base plate; 131. First part; 132. Second part; 1321. First wire pressing groove; 13211. First rib; 1322. First positioning part; 1323. First connecting part; 1324. Protrusion; 14. First folding plate; 141. Wire routing plate; 1411. Wire routing hole; 1412. Ferrite core hole; 142. First transition plate; 15. Second folding plate; 16. Main body; 17. Second transition plate; 18. Baffle; 19. Flow guiding groove;

[0045] 2. Shading baffle; 21. Top plate of the box body; 22. Bottom plate of the box body; 23. First auxiliary side plate; 24. Second auxiliary side plate; 25. Third auxiliary side plate;

[0046] 3. Buckle cover assembly; 31. Cover body; 311. Buckle hand groove; 312. Reinforcing rib; 313. Second wire pressing groove; 3131. Second rib; 314. Second connecting part; 32. Second positioning part. Detailed implementation manners

[0047] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts shall fall within the scope of protection of the present application.

[0048] 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 only 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. This repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed.

[0049] For ease of description, spatial relative relationship terms may be used in the text to describe the relative positional relationship or movement of one element or feature shown in the figure with respect to another element or feature. These relative relationship terms are, for example, "inside", "outside", "inner side", "outer side", "below", "beneath", "above", "over", "front", "rear", etc. Such spatial relative relationship terms are intended to include different orientations of the device during use or operation other than the orientations depicted in the figure. For example, if the device in the figure undergoes a position flip, attitude change, or motion state change, then these directional indications will change accordingly. For example, an element described as "below other elements or features" or "beneath other elements or features" will subsequently be oriented as "above other elements or features" or "over other elements or features". Therefore, the exemplary term "below" can include both the upper and lower orientations. The device can be oriented otherwise (rotated 90 degrees or in other directions) and the spatial relative relationship descriptors used in the text are interpreted accordingly.

[0050] In the related art, the design of traditional wiring brackets often faces multiple challenges. From the perspective of operation complexity, the existing wiring bracket structure is complex in design, and multiple steps and tools are required to complete the assembly process. This not only increases the labor intensity of workers but also prolongs the assembly time and reduces production efficiency. Such a complex assembly process also brings safety hazards. For example, improper operation may cause worker injuries or equipment damage.

[0051] In addition, regarding the problem of wire crimping, the existing crimping box design also has limitations. The crimping box usually needs to be fixed by means of fasteners such as screws, which not only increases the number of components and the assembly process but also makes the entire assembly process more cumbersome. At the same time, the screw fixing method also increases the maintenance difficulty. Once the wire needs to be replaced or repaired, the disassembly and reinstallation processes are complex and time-consuming. More importantly, this fixing method may result in poor crimping effects due to uneven tightening force, affecting the connection stability and electrical performance of the wire.

[0052] In summary, the existing wiring bracket and its crimping box design in the external machine electrical box assembly of air conditioners can no longer meet the requirements of modern air conditioner manufacturing for efficient, safe, and reliable production.

[0053] Therefore, the present application provides an air conditioner housing, which addresses industry challenges and enhances product competitiveness by simplifying the assembly process, improving production efficiency, enhancing the hardness of the wiring bracket, and optimizing the grounding continuity. By forming an installation groove and a first wire groove on the side plate, and forming a wire clip assembly in the installation groove, the intervention of screws is avoided, simplifying the assembly complexity, effectively reducing the number of parts, lowering the assembly difficulty, improving production efficiency, and eliminating the need to drill screw holes in the installation groove to cooperate with screws, effectively enhancing the overall strength of the side plate and improving the crimping quality.

[0054] In some exemplary embodiments, as Figures 1-5 shown, an air conditioner housing is installed in an air conditioning device, such as an outdoor unit of an air conditioner, and is intended to provide a structurally stable and reasonably arranged internal space to accommodate electronic components.

[0055] The air conditioner housing, for example, includes a side plate 1 and a plurality of shielding plates 2, and the plurality of shielding plates 2 are enclosed and connected to the side plate 1. Among them, the shielding plate 2, for example, includes a housing top plate 21, a housing bottom plate 22, a first secondary side plate 23, a second secondary side plate 24, and a third secondary side plate 25. The side plate 1, the first secondary side plate 23, the second secondary side plate 24, and the third secondary side plate 25 are connected in sequence, the housing top plate 21 is respectively connected to the side plate 1, the first secondary side plate 23, the second secondary side plate 24, and the third secondary side plate 25, and the housing bottom plate 22 is respectively connected to the side plate 1, the first secondary side plate 23, the second secondary side plate 24, and the third secondary side plate 25. The settings of the above-mentioned housing top plate 21, housing bottom plate 22, first secondary side plate 23, second secondary side plate 24, third secondary side plate 25, and side plate 1 not only enhance the overall strength of the air conditioner housing but also define the internal space of the air conditioner housing, enabling it to accommodate electronic components such as circuit boards, fans, and sensors.

[0056] The side plate 1 is integrally formed by using a high-strength metal material (such as cold-rolled steel plate). The side plate 1 uses the entire side plate, so that there is no need for splicing during the manufacturing process, reducing stress concentration and strength loss caused by processes such as welding or riveting. The integrally formed side plate 1 has higher structural integrity and stronger load-bearing capacity.

[0057] The side plate 1, as the main support structure of the air conditioner housing, is first installed in place. An installation groove 11 is formed on the side plate 1, and the installation groove 11 facilitates the layout and management of subsequent wires. Among them, the size of the installation groove 11 is, for example, 160mmX190mm. The side plate 1 is designed with a flanging structure by using a precision stamping process to form the installation groove 11 by recessing downward. The above-mentioned flanging not only increases the edge strength of the side plate 1 but also provides additional fixing points and support surfaces for directly fixing wires or other components without additional wiring terminals and screws. The shape and size of the stamping flanging can be precisely controlled according to actual needs to ensure the firmness and reliability of the fixation.

[0058] A wiring hole 1411 is provided in the installation groove 11 of the side panel 1, and the wires in the air-conditioning cabinet (not shown in the figure) can pass through the wiring hole 1411 and enter the installation groove 11 for centralized management.

[0059] The side panel 1 is formed with a first wire pressing groove 1321, and at least a portion of the first wire pressing groove 1321 is arranged in the installation groove 11. For example, the upper half of the first wire pressing groove 1321 is located in the installation groove 11, and the lower half of the first wire pressing groove 1321 is located on the main structure of the side panel 1, which not only ensures that the wire can smoothly pass through the installation groove 11 and be guided to the desired position, but also facilitates the wire to finally pass through the installation groove 11 and connect with other components. Among them, in order to improve the structural strength of the first wire pressing groove 1321, a plurality of first ribs 13211 can be arranged in the first wire pressing groove 1321, and the plurality of first ribs 13211 are arranged in sequence along the first wire pressing groove 1321. The shape and size of the first rib 13211 shall be subject to actual conditions.

[0060] The wire clamp assembly 12 is formed in the installation groove 11. After the wire enters the installation groove 11, the wire can pass through the wire clamp assembly 12. The wire clamp assembly 12 preliminarily fixes the wire through its structural characteristics to ensure that the wire will not get loose or entangled with each other during movement or vibration. After the wire passes through the wire clamp assembly 12, it passes through the installation groove 11 through the first wire pressing groove 1321.

[0061] The buckle cover assembly 3 and the side plate 1 are connected in a detachable manner, such as screw fixing, buckle connection, etc., to facilitate subsequent maintenance and inspection. When the buckle cover assembly 3 is installed in place, it can not only close the installation groove 11, but also protect the internal circuit from the external environment. The wire can also be further pressed into the first wire pressing groove 1321 through its structural design to achieve a stable fixation of the wire.

[0062] The side panel 1 in this embodiment adopts the design of integrally forming and stamping the mounting groove 11, so during the assembly process, the wire or other components can be fixed by simply pressing or clamping them into the folded edge, which greatly simplifies the assembly process and improves the assembly efficiency. At the same time, this design also reduces the risk of loosening or damage caused by the use of fasteners such as screws.

[0063] By adopting high-strength materials and precision stamping technology, the hardness and stability of the side panel 1 are significantly improved. Such side panel 1 can maintain better stability when subjected to external impact or vibration, thereby extending the service life of the air conditioner box and improving its overall performance.

[0064] In some exemplary embodiments, Figures 1-3As shown, the side plate 1 adopts a precise stamping process to design a flanging structure, forming a downwardly concave mounting groove 11, which improves the overall strength and stability of the side plate 1, simplifies the installation process, and facilitates the fixing and installation of components.

[0065] The side plate 1 includes, for example, a main body 16, a mounting base plate 13, a first folding plate 14, and two second folding plates 15. The main body 16 is respectively connected to the first folding plate 14 and the two second folding plates 15, and is tightly combined through precise stamping processes and connection techniques to jointly form a solid and functional side plate structure.

[0066] The main body 16 is the main structure and the main load-bearing part of the side plate 1, providing a stable support foundation. The shape and size of the main body 16 are designed according to specific application scenarios to ensure the overall strength and stiffness of the side plate 1.

[0067] The mounting base plate 13 is tightly connected to the main body 16, providing additional support and stability for the side plate 1. The design of the mounting base plate 13 takes into account the connection requirements with the main body 16, the first folding plate 14, and the second folding plates 15 to ensure seamless connection between components.

[0068] The first folding plate 14 extends from the edge of the main body 16 and bends downward to connect with the mounting base plate 13. This design not only enhances the edge strength of the side plate 1 but also provides the necessary structural support for the formation of the mounting groove 11.

[0069] The two second folding plates 15 are symmetrically arranged and bend inward relative to the main body 16, forming a first included angle between the second folding plates 15 and the main body 16. The first included angle is, for example, but not limited to, 90°. This design of the first included angle takes into account both the structural stability and the convenience of inserting and fixing components.

[0070] The first folding plate 14, the two second folding plates 15, and the main body 16 are respectively connected to the mounting base plate 13, and the main body 16, the mounting base plate 13, the first folding plate 14, and the two second folding plates 15 enclose to jointly construct the mounting groove 11.

[0071] Through the precise connection and bending of the above components, the main body 16, the mounting base plate 13, the first folding plate 14, and the two second folding plates 15 jointly enclose a downwardly concave mounting groove 11. The mounting groove 11 has clear boundaries and sufficient depth to stably accommodate and fix various components. The design of the mounting groove 11 fully considers the installation requirements and spatial layout of components, making the installation process more simple and fast.

[0072] The flanging structure designed for the side plate 1 in this embodiment through precision stamping process and the formed mounting groove 11 not only improve the overall strength and stability of the side plate, but also simplify the installation process of components and reduce the types of materials. While enhancing the product performance, it also reduces the production cost and installation difficulty, having high practical value and promotion prospects.

[0073] In some exemplary embodiments, such as Figures 1-3 shown, the first folding plate 14 can enhance the stability. The first folding plate 14 includes a wiring plate 141 and a first transition plate 142. After first stamping to form the first transition plate 142, stamping is carried out again to form the wiring plate 141, ensuring that it can maintain a stable form after bending. The wiring plate 141 is fixedly connected to the main body 16 through the first transition plate 142.

[0074] In the step of stamping on the main body 16 to form the first transition plate 142, through a precise bending process, the first transition plate 142 is bent relative to the main body 16, so that the first transition plate 142 forms a second included angle relative to the main body 16. The first included angle and the second included angle are the same or different. Among them, the second included angle can be, for example but not limited to, 75°. The selection of the second included angle can be based on the optimization consideration of the internal space of the mounting groove 11, ensuring both the structural compactness between the main body 16 and the first folding plate 14 and leaving enough space for the layout of wires or other components.

[0075] Then continue stamping, so that the wiring plate 141 is bent relative to the first transition plate 142. Through further bending operations, the wiring plate 141 forms a larger third included angle relative to the first transition plate 142. The third included angle is greater than the second included angle. Among them, the third included angle is, for example but not limited to, 100°, so that the wiring plate 141 can provide a more open wiring space, facilitating the arrangement and fixation of wires and avoiding mutual interference and compression between wires.

[0076] A wiring hole 1411 is provided on the wiring plate 141, and the wiring plate 141 is provided with two magnetic ring holes 1412, and the two magnetic ring holes 1412 are respectively arranged on both sides of the wiring hole 1411. Among them, the diameter of the magnetic ring hole 1412 is, for example, 6 mm.

[0077] On the wiring board 141, wiring holes 1411 are precisely formed. The inner diameter size of the wiring holes 1411 shall be determined according to the actual situation, and parameters such as the number and outer diameter of the wires can be referred to for the reference design. The wiring holes 1411 are used to pass the wires to achieve the electrical connection between the wires and other electronic components. In addition, in order to enhance the fixing effect of the wires, the wiring board 141 is also designed with two magnetic ring holes 1412, which are respectively located on both sides of the wiring hole 1411. By inserting wiring magnetic rings and other similar fixing parts into these two magnetic ring holes 1412, the wires passing through the wiring hole 1411 can be firmly tied together to prevent them from loosening or scattering, and eliminate or reduce electromagnetic interference.

[0078] In this embodiment, by carefully designing the structure of the first folding plate 14, including the wiring board 141 and the first transition plate 142 inside it, as well as the specific angles formed between them and the layout of the wiring holes 1411 and the magnetic ring holes 1412, the internal layout efficiency of the installation groove 11 and the convenience of wire management are effectively improved. This design not only optimizes the internal structure of the installation groove 11 but also improves its overall stability and reliability.

[0079] In some exemplary embodiments, as Figures 1-3 shown, the mounting base plate 13 includes a first part 131 and a second part 132. These two parts are bent by a precise bending process, so that the first part 131 is bent relative to the second part 132, and the first part 131 forms a predetermined angle relative to the second part 132 to adapt to the complex spatial layout requirements inside the installation groove 11. Among them, the depth of the second part 132 is, for example, 2 mm - 5 mm. The depth of the deepest position of the first part 131 is 50 mm.

[0080] The first part 131 is respectively connected to the first folding plate 14 and the two second folding plates 15, and the second part 132 is connected to the main body 16. Among them, the lower end of the first part 131 slopes forward, so that an angle formed between the first part 131 and the wiring board 141 of the first folding plate 14, and the angle is, for example, but not limited to, 150°. The second part 132 extends downward, for example, so that the angle between the second part 132 and the first part 131 is, for example, 135°, or the first part 131 is parallel to the main body 16, and then the angle between the second part 132 and the first part 131 is deduced.

[0081] As the key connection point of the mounting base plate 13, the design of the first part 131 takes into account both structural stability and functional diversity. First, the first part 131 is firmly connected to the first folding plate 14 and the two second folding plates 15 respectively. The stamping method is adopted to ensure that the mounting base plate 13 will not loosen or break.

[0082] In addition, the first part 131 also integrates a wire clamp assembly 12 for fixing and managing the wires passing through the mounting base plate 13, improving the aesthetics and safety of the wiring. The wire clamp assembly 12 is used, for example, to fix the power distribution board and the communication wiring board, and rivets the grounding nut to realize the fixation of the engineering and internal ground wires. The wire clamp assembly 12 includes, for example, a plurality of wire hole channels to facilitate the passing of the corresponding wires.

[0083] The second part 132 is responsible for connecting to the main body 16. The stamping method can ensure that the mounting base plate 13 can stably support the structures within the entire mounting groove 11. It should be noted that at least part of the first wire groove 1321 is formed in the second part 132, that is, the upper half of the first wire groove 1321 is located in the second part 132. The design of this first wire groove 1321 fully considers the need for wire management, enabling the wires to be effectively guided and fixed when passing through the mounting base plate 13.

[0084] The uniqueness of the first wire groove 1321 lies in that it spans two components, namely the second part 132 of the mounting base plate 13 and the main body 16. Specifically, the upper half of the first wire groove 1321 is located on the second part 132, while the lower half extends cleverly to the main body 16. This design not only increases the length of the first wire groove 1321, providing more wire management space, but also enables the wires to remain stable and orderly when passing through different components.

[0085] In this embodiment, through the structural design of the mounting base plate 13, especially the bent connection between the first part 131 and the second part 132 and the cross-component design of the first wire groove 1321, the utilization rate of the internal space of the mounting groove 11 and the convenience of wiring management are effectively improved. This design not only enhances the structural stability of the mounting groove 11, but also improves the aesthetics and safety of the wire layout, laying a solid foundation for the overall performance improvement of the mounting groove 11.

[0086] In this embodiment, as Figure 2 shown, the side plate 1 includes a second transition plate 17. The second part 132 is connected to the main body 16 through the second transition plate 17 to achieve a stable and flexible connection, enhancing the stability and maintainability of the overall structure.

[0087] The second transition plate 17, as a bridge between the mounting groove 11 and the main body 16, has its shape and size carefully considered. For example, the second transition plate 17 is made smooth to reduce sharp parts and improve safety. The second transition plate 17 ensures that it can not only withstand the forces from the mounting groove 11, but also transfer these forces smoothly to the main body 16 while maintaining the stability and flexibility of the connection.

[0088] The second transition plate 17 is formed by stamping to ensure that there is no looseness or breakage between the second part 132 and the second transition plate 17, so as to ensure the stability of the overall structure. And the second transition plate 17 can stably support the installation groove 11 and effectively transmit the force of the installation groove 11 to the main body 16.

[0089] In this embodiment, the structural design of the installation groove 11 significantly improves the structural stability and maintainability while maintaining the overall aesthetics. The flexibility and adaptability of the second transition plate 17 make the connection between the installation groove 11 and the main body 16 more stable and reliable, and also provide convenience for subsequent maintenance and upgrading.

[0090] In some exemplary embodiments, such as Figures 2-6 shown, a first positioning portion 1322 is provided on the second part 132 of the installation base plate 13. The second part 132 is positioned and connected to the buckle cover assembly 3 through the first positioning portion 1322, achieving precise positioning and stable connection to improve the overall assembly efficiency and structural stability.

[0091] The first positioning portion 1322, as a preliminary positioning device between the installation base plate 13 and the buckle cover assembly 3, has its shape, size and position precisely calculated and designed to ensure that the buckle cover assembly 3 can be quickly and accurately positioned to the designated position during installation. The first positioning portion 1322 may adopt forms such as protrusions, grooves, pin holes, etc., and match with the corresponding structures on the buckle cover assembly 3 to form a preliminary positioning lock.

[0092] During the assembly process, first align the buckle cover assembly 3 with the second part 132 of the installation base plate 13, and use the first positioning portion 1322 and the corresponding structures on the buckle cover assembly 3 for preliminary positioning. This process ensures the stability and accuracy of the buckle cover assembly 3 during installation, and avoids assembly difficulties or structural instability problems caused by position deviation.

[0093] In this embodiment, such as Figures 2-4 shown, the second part 132 is provided with a first connecting portion 1323, for example. The buckle cover assembly 3 is fixedly connected to the second part 132 through the first connecting portion 1323. Among them, in order to increase the structural strength and the effect of secondary positioning, the first connecting portion 1323 is provided on the protrusion 1324, for example, and the protrusion 1324 is rectangular, circular, irregular, etc.

[0094] After the preliminary positioning is completed, the cover assembly 3 is fixedly connected to the second part 132 of the mounting base plate 13 by the first connecting part 1323. The first connecting part 1323 may adopt various connection methods such as screw holes and buckles, and the specific selection depends on the design requirements and material characteristics of the cover assembly 3. Through the stable connection of the first connecting part 1323, a firm combination is formed between the cover assembly 3 and the mounting base plate 13, ensuring the overall structural stability and durability of the device. And due to the setting of the protrusion 1324, if the first connecting part 1323 adopts a structure such as a screw hole, it will not damage the overall strength of the mounting base plate 13.

[0095] After the assembly is completed, a series of tests and verification work are carried out to ensure that the connection between the mounting base plate 13 and the cover assembly 3 meets the design requirements. The test contents include but are not limited to connection strength test, stability test, durability test, etc., to ensure that the connection part can maintain stability and reliability under various working conditions.

[0096] In this embodiment, by designing two key components, the first positioning part 1322 and the first connecting part 1323, the accurate positioning and stable connection between the mounting base plate 13 and the cover assembly 3 are realized. This design not only improves the assembly efficiency between the side plate 1 and the cover assembly 3, but also enhances the overall structural stability and durability, providing strong support for the manufacturing and maintenance of the side plate 1 and the cover assembly 3.

[0097] In some exemplary embodiments, as Figures 2-4 shown, the side plate 1 includes a baffle 18, and the baffle 18 is arranged along the circumference of the mounting groove 11, and the baffle 18 protrudes from the main body 16. To optimize the fluid flow path, improve the overall performance of the mounting groove 11 or protect the internal components from the external environment.

[0098] As the main load-bearing part of the side plate 1, the main body 16 adopts an integrated design, having good structural strength and stability. Its shape and size are customized according to specific application requirements to adapt to different installation environments and functional requirements.

[0099] The baffle 18 is, for example, annular, so that the baffle 18 is carefully arranged along the circumference of the mounting groove 11, which not only enhances the protection performance of the side plate 1, but also realizes a specific fluid management function through its special design. The baffle 18 protrudes from the surface of the main body 16, forming a series of barriers that can effectively guide or block the flow of fluid.

[0100] In this embodiment, as Figures 2-4 shown, a diversion groove 19 is formed between the baffle 18 and the main body 16. The bottom wall of the diversion groove 19 is lower than the height of the baffle 18, and the baffle 18 serves as a barrier between the diversion groove 19 and the mounting groove 11. Among them, the depth of the diversion groove 19 can be, for example, 1 mm - 3 mm.

[0101] The drain channel 19 is carefully planned based on the principles of fluid dynamics, capable of guiding the fluid to flow along a predetermined path, reducing turbulence and eddy currents. Meanwhile, the drain channel 19 can effectively collect and discharge the liquid or impurities that may accumulate on the surface of the side plate 1, maintaining the cleanliness of the installation groove 11 and preventing them from entering the installation groove 11, thus affecting safety.

[0102] The position and shape of the baffle 18 are precisely calculated and optimized to ensure that while meeting the protection requirements, the utility of the drain channel 19 is maximized. The width, inclination angle, and protruding height of the baffle 18 are adjusted according to the fluid characteristics in the actual application scenario.

[0103] The shape and size of the drain channel 19 are designed according to the fluid flow direction and speed to ensure that the fluid can flow smoothly through and along the predetermined path. Drain holes or collection devices can be provided at the bottom of the drain channel 19 to timely discharge the accumulated liquid or impurities.

[0104] Through the design of the baffle 18 and the drain channel 19 in this embodiment, the fluid management efficiency of the air conditioner housing is significantly improved, effectively preventing the accumulation of liquid or impurities on the surface of the side plate 1, extending the service life of the air conditioner housing, improving the rainproof performance of the unit, as well as the overall operation safety and reliability.

[0105] In some exemplary embodiments, as Figures 2-6 shown, in order to elaborate in detail on the specific implementation manner of how the cover assembly 3 is combined with the side plate 1 to close the installation groove 11, a specific embodiment is provided below.

[0106] The side plate 1, as the main structural member, is designed with an installation groove 11 for installing or accommodating other components. The shape, size, and position of the installation groove 11 are designed according to actual needs to ensure the matching and stability with the components to be installed. For details, refer to the foregoing embodiments.

[0107] The cover assembly 3 includes a cover body 31 and a second positioning portion 32 formed on the cover body 31. The cover body 31 is snap - connected to the side plate 1 through the second positioning portion 32 to close the installation groove 11.

[0108] The cover body 31 is the main part of the cover assembly 3, and its shape and size match the installation groove 11 so as to be able to closely cover the installation groove 11. The material selection of the cover body 31 needs to consider its strength, corrosion resistance, and appearance aesthetics to meet the requirements of different application scenarios.

[0109] The second positioning portion 32 is a structure formed at the edge or a specific position of the cover body 31 for realizing the snap connection between the cover body 31 and the side plate 1. The specific form of the second positioning portion 32 can be a snap, a bump, a groove, etc., and its design needs to ensure tight cooperation with the corresponding structure on the side plate 1 (such as the first positioning portion 1322, although not directly mentioned in this embodiment, but can be understood as the structure on the side plate 1 for cooperating with the second positioning portion 32) to achieve a stable snap connection effect.

[0110] First, ensure that the side plate 1 is correctly installed and fixed in the required position, and the installation groove 11 is in an open state, ready to receive the covering of the cover body 31. Bring the cover body 31 of the snap cover assembly 3 close to the side plate 1 so that the second positioning portion 32 is aligned with the first positioning portion 1322 on the side plate 1. This step requires careful operation to ensure precise cooperation between the two.

[0111] After confirming the correct alignment, gently apply an external force to move the cover body 31 in a certain direction until the second positioning portion 32 is completely snapped with the first positioning portion 1322 on the side plate 1. At this time, the cover body 31 should firmly cover the installation groove 11 to form a closed state.

[0112] After completing the snap connection, check the assembly effect of the snap cover assembly 3 to confirm whether it is stable, without looseness, and has a neat and beautiful appearance. At the same time, check whether the installation groove 11 is completely closed to ensure effective protection of the internal components.

[0113] Through the combination method of the snap cover assembly 3 and the side plate 1 in this embodiment, the rapid and stable closing of the installation groove 11 is realized. This design not only simplifies the assembly process, improves the production efficiency, but also enhances the overall structural strength and sealing performance of the product. At the same time, the ingenious design of the second positioning portion 32 ensures the accuracy and reliability of the snap connection process, reducing the error rate and rework rate during the assembly process.

[0114] In some exemplary embodiments, such as Figures 2-6 As shown, one or more handle grooves 311 are designed on the side surface of the cover body 31. The shape and position of the handle grooves 311 are carefully considered to provide a convenient opening and closing operation experience for users. Users can easily insert their fingers or palms into the handle grooves 311 and apply force to push or lift the cover body 31, thereby realizing the closing or opening of the installation groove 11. The design of the handle grooves 311 not only improves the user-friendliness of the product, but also makes the operation more labor-saving and efficient.

[0115] In this embodiment, such as Figures 2-6As shown, in order to enhance the structural strength of the cover 31 and prevent it from deforming or being damaged during long-term use or under a large external force, multiple reinforcing ribs 312 are provided on the cover 31 in this embodiment. These reinforcing ribs 312 are arranged around the handle groove 311 to form an effective support structure. The shape and size of the reinforcing ribs 312 are designed according to the overall structure and stress conditions of the cover 31 to ensure that while enhancing the structural strength, it does not affect the appearance and assembly performance of the cover 31. Through the arrangement of the reinforcing ribs 312, the load-bearing capacity of the cover 31 has been significantly improved, enabling it to better adapt to various complex usage environments.

[0116] In this embodiment, through the design of the handle groove 311 and the reinforcing ribs 312, a comprehensive optimization of the cover 31 is achieved. The setting of the handle groove 311 improves the user-friendliness of the product, making the operation more convenient and labor-saving; while the arrangement of the reinforcing ribs 312 enhances the structural strength of the cover 31, improving its durability and reliability. These improvements not only enhance the overall performance of the product but also meet the needs of modern consumers for high-quality and highly reliable products.

[0117] In some exemplary embodiments, as Figures 2-6 shown, in order to further ensure the stable connection between the cover 31 and the side plate 1, as well as improve the overall aesthetics and sealing performance of the product, a second wire groove 313 is designed on the cover 31 in this embodiment and is correspondingly arranged with the first wire groove 1321 on the side plate 1.

[0118] The inner edge or a specific position of the cover 31 is designed with a second wire groove 313. The shape, size, and position of the second wire groove 313 are precisely calculated to ensure complete correspondence with the first wire groove 1321 on the side plate 1. The design of the second wire groove 313 aims to tightly press the edges of the cover 31 and the side plate 1 together through a wire pressing process to form a smooth and strong connection line, thereby enhancing the connection strength between the two. Among them, in order to enhance the structural strength of the second wire groove 313, multiple second rib strips 3131 can be provided in the second wire groove 313, and the multiple second rib strips 3131 are arranged in sequence along the second wire groove 313. The shape and size of the second rib strips 3131 are subject to the actual situation.

[0119] During the assembly process, when the cover 31 is placed above the installation groove 11 of the side plate 1 and is preliminarily positioned with the side plate 1 through the second positioning portion 32, a wire pressing tool or machine is used to perform wire pressing on the edges of the cover 31 and the side plate 1. During this process, the second wire groove 313 and the first wire groove 1321 cooperate closely to guide the wire pressing tool to perform pressing along a predetermined path to form a continuous and uniform wire pressing. After the wire pressing is completed, the connection between the cover 31 and the side plate 1 is more firm, and at the same time, the appearance is more beautiful and tidy.

[0120] By introducing the second wire pressing groove 313 and arranging it corresponding to the first wire pressing groove 1321, the connection strength and sealing performance between the cover body 31 and the side plate 1 are significantly improved in this embodiment. The implementation of the wire pressing process not only ensures a firm connection between the two, but also avoids problems such as water seepage caused by loose connection. In addition, the connecting line formed by wire pressing also has a certain decorative effect, enhancing the overall aesthetic appearance of the product. These improvements make the product more reliable and durable during use, and also solve the limitations existing in the wire pressing box design in related technologies.

[0121] In some exemplary embodiments, such as Figures 2-6 shown, in order to provide a more stable and flexible connection method, a second connecting portion 314 is designed on the cover body 31 in this embodiment to achieve an effective connection between the cover body 31 and the side plate 1.

[0122] The second connecting portion 314 is integrated into the structure at the edge or bottom of the cover body 31. The shape, size, and position of the second connecting portion 314 are designed according to the first connecting portion 1323 of the side plate 1 to ensure that the two can be closely fitted. The second connecting portion 314 can be designed as a card slot, a plug, a threaded hole, a magnetic adsorption surface, or any other form suitable for connecting with the side plate 1. Importantly, the second connecting portion 314 should have sufficient strength and durability to withstand various forces and torques that the cover body 31 may be subjected to during use. The second connecting portion 314 can also be provided with structures similar to reinforcing ribs to enhance its strength.

[0123] First, ensure that the side plate 1 is installed in place, and the connection interfaces (such as card slots, slots, threads, etc.) on it are clean and undamaged. At the same time, check whether the second connecting portion 314 of the cover body 31 is intact and can be normally connected to the side plate 1. Move the cover body 31 above the side plate 1 so that the second connecting portion 314 is aligned with the connection interface on the side plate 1. During this process, it may be necessary to finely adjust the position and angle of the cover body 31 to ensure the accuracy and stability of the connection.

[0124] Once the alignment is completed, corresponding fixing measures are taken according to the specific design of the second connecting portion 314. For example, if the second connecting portion 314 is in the form of a card slot, the cover body 31 is simply pressed down gently to make its card slot closely combined with the protruding part of the side plate 1; if it is in the form of a plug, the plug is inserted into the corresponding jack and rotated to lock; if it is in the form of a threaded hole, a screw is used for fastening.

[0125] After the connection is completed, check the connection part to confirm whether it is firm and without looseness. At the same time, check whether the cover body 31 completely covers the installation groove 11 on the side plate 1 to ensure the sealing performance and aesthetic appearance.

[0126] By introducing the second connecting portion 314, this embodiment provides a more stable, flexible and easy-to-operate solution for the connection between the cover 31 and the side plate 1. This connection method not only simplifies the assembly process, improves production efficiency, but also enhances the overall structural strength and durability of the product. At the same time, the design of the second connecting portion 314 also takes into account the requirements of easy disassembly and maintenance, making the product more convenient and efficient during use.

[0127] This application also provides an air conditioning device, which not only integrates efficient refrigeration / heating functions, but also improves the overall aesthetics and usability through a unique structural design. Specifically, this air conditioning device includes the air conditioning box body in any of the above embodiments, and this box body incorporates the enclosure connection technology of the side plate and multiple shielding plates.

[0128] As the main support structure of the air conditioning box body, the side plate is made of high-strength and corrosion-resistant materials such as cold-rolled steel plates or aluminum alloys. The side plate not only has sufficient stiffness to bear the weight of the internal components of the air conditioner and the pressure of the external environment, but also is carefully processed to ensure a smooth surface and no sharp corners, improving user safety.

[0129] To enhance the overall aesthetics and dust-proof effect of the air conditioning box body, multiple shielding plates are added to the side plate in this embodiment. These shielding plates are tightly enclosed with the side plate by means of welding, screw connection or snap connection to form a closed or semi-closed space. The number, shape and position of the shielding plates are adjusted according to specific design requirements to optimize air flow to the greatest extent, reduce noise leakage, and shield the internal complex pipelines and components.

[0130] The connection method between the shielding plate and the side plate needs to ensure the firmness and tightness of the connection. In this embodiment, one or a combination of the following methods can be adopted:

[0131] For example, adopt the welding method for connection. The shielding plate and the side plate are firmly welded together through welding technology to form an integrated structure. For example, adopt the screw method for connection. Preset screw holes on the shielding plate and the side plate, and then use screws and nuts for fastening connection. This method is convenient for on-site installation and adjustment, but attention should be paid to the anti-rust treatment of the screws and the control of the tightening torque. For example, adopt the snap connection method. Design a special snap structure so that the shielding plate can be easily snapped into the card slot of the side plate. This method has fast installation and is convenient for later disassembly and maintenance.

[0132] Adopt the sealing method for treatment. In order to ensure the tightness of the air conditioning box body and prevent dust from entering, the connection between the shielding plate and the side plate should be sealed. Materials such as sealing strips, sealants or sealing foams can be used for filling and sealing.

[0133] By adopting the above-mentioned design of the enclosing and connecting baffle plates, the air-conditioning equipment of this embodiment has achieved remarkable effects in the following aspects. For example, in terms of aesthetics, the addition of the baffle plates effectively blocks the complex structures and pipelines inside the air-conditioning box body, making the overall appearance more concise and beautiful. For example, in terms of dust prevention effect, the enclosed baffle plate structure effectively prevents the entry of dust and foreign objects, extending the service life of the air-conditioning equipment. For example, in terms of noise reduction, the reasonable layout and sealing treatment of the baffle plates help reduce the noise leakage during the operation of the air-conditioning, improving the user experience. For example, in terms of the convenience of installation and maintenance, according to the selection of specific connection methods, this design not only ensures the connection strength but also considers the convenience of installation and subsequent maintenance.

[0134] It should be understood that the terms used herein are for the purpose of describing specific example embodiments only and are not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" as used herein may also include the plural forms. The terms "comprising", "including", "containing" and "having" are inclusive and thus specify the presence of the stated features, steps, operations, elements and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or combinations thereof. The method steps, processes, and operations described herein are not to be construed as necessarily requiring them to be performed in the particular order described or illustrated, unless the order of performance is explicitly stated. It should also be understood that additional or alternative steps may be used.

[0135] Although the terms first, second, third, etc. may be used herein to describe multiple elements, components, regions, layers, and / or sections, these elements, components, regions, layers, and / or sections should not be limited by these terms. These terms may be used only to distinguish one element, component, region, layer, or section from another. Unless the context clearly indicates otherwise, terms such as "first", "second", and other numerical terms do not imply an order or sequence when used herein. Thus, the first element, component, region, layer, or section discussed below may be referred to as the second element, component, region, layer, or section without departing from the teachings of the example embodiments.

[0136] The above description is only the specific embodiments of the present invention, enabling those skilled in the art to understand or implement the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but rather will be accorded the widest scope consistent with the principles and novel features claimed herein.

Claims

1. An air conditioner housing, characterized in that, include: The side plate is formed with a mounting groove, the mounting groove is provided with a wiring hole, and the wires in the air conditioner box enter the mounting groove through the wiring hole; the side plate is formed with a first wire pressing groove, and at least a part of the first wire pressing groove is arranged in the mounting groove; A wire clamp assembly is formed in the installation groove, and the wire can pass through the wire clamp assembly and pass out of the installation groove through the first wire pressing groove; as well as A buckle cover assembly is detachably connected to the side plate to close the installation groove; wherein the buckle cover assembly can press the wire into the first wire pressing groove.

2. The air conditioner casing according to claim 1, wherein The side plate comprises a main body, a mounting bottom plate, a first folding plate and two second folding plates, and the main body is connected to the first folding plate and the two second folding plates respectively; The two second folding plates are symmetrically arranged, and the second folding plates are bent relative to the main body, so that a first angle is formed between the second folding plates and the main body; The first folding plate, the two second folding plates and the main body are respectively connected to the mounting base plate, and the main body, the mounting base plate, the first folding plate and the two second folding plates are enclosed to jointly construct the mounting groove.

3. The air conditioner cabinet according to claim 2, wherein The first folding plate includes a wiring plate and a first transition plate, and the wiring plate is connected to the main body through the first transition plate; The first transition plate is bent relative to the main body, so that a second angle is formed between the first transition plate and the main body, and the first angle is the same as or different from the second angle; The wiring plate is bent relative to the first transition plate, so that the wiring plate and the first transition plate form a third angle, and the third angle is greater than the second angle; The wiring hole is arranged on the wiring board, and the wiring board is provided with two magnetic ring holes, and the two magnetic ring holes are arranged on both sides of the wiring hole.

4. The air conditioner casing according to claim 2, characterized in that, The mounting base plate comprises a first part and a second part connected to each other, the first part is bent relative to the second part; the first part is respectively connected to the first folding plate and the two second folding plates, and the second part is connected to the main body; The wire clamp assembly is formed on the first portion, and at least a portion of the first wire pressing groove is formed on the second portion.

5. The air conditioner housing according to claim 4, characterized in that, The side plate includes a second transition plate, and the second portion is connected to the main body through the second transition plate.

6. The air-conditioning box according to claim 4, wherein, The second part is provided with a first positioning portion, and the second part is positioned and connected to the buckle cover assembly through the positioning portion.

7. The air conditioner housing according to claim 4, characterized in that, The second part is provided with a first connecting portion, and the buckle cover assembly is fixedly connected to the second part via the first connecting portion.

8. The air conditioner casing according to claim 2, wherein, The side plate includes a baffle, which is arranged along the circumference of the mounting groove and protrudes from the main body.

9. The air conditioner casing according to claim 8, wherein, A guide groove is formed between the baffle and the main body.

10. The air conditioner casing according to claim 1, characterized in that, The buckle cover assembly includes a cover body and a second positioning portion formed on the cover body, and the cover body is buckled to the side plate through the second positioning portion to close the installation groove.

11. The air conditioner casing according to claim 10, characterized in that, The cover body is provided with a hand-gripping groove.

12. The air conditioner housing according to claim 11, characterized in that, The cover body is provided with a plurality of reinforcing ribs, and the reinforcing ribs are arranged around the hand buckle groove.

13. The air conditioner casing according to claim 10, characterized in that, The cover body is provided with a second wire pressing groove, and the second wire pressing groove is arranged corresponding to the first wire pressing groove.

14. The air conditioner cabinet according to claim 10, characterized in that, The cover body is provided with a second connecting portion, and the cover body is connected to the side plate through the second connecting portion.

15. An air conditioning device, characterized in that, It includes an air conditioner casing according to any one of claims 1-14, the air conditioner casing including a side plate and a plurality of shielding plates, and the plurality of shielding plates are enclosed and connected to the side plate.