Packaging assembly for indoor unit of air conditioner

By designing the avoidance area on the packaging body of the packaging component, the problem of the air guide plate and panel in the transportation of the air conditioner indoor unit is solved, and a more effective protection effect is achieved.

CN223031789UActive Publication Date: 2025-06-27CHONGQING MIDEA REFRIGERATION EQUIP CO LTD +1
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Patent Information

Application Number
CN202422243533.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-12
Publication Date
2025-06-27
Estimated Expiration
2034-09-12

AI Technical Summary

Technical Problem

During transportation of air conditioning indoor units, fragile parts such as air guide plates and panels are easily deformed or damaged due to the extrusion of packaging components.

Method used

A packaging assembly is designed, wherein the packaging body has a first receiving cavity to accommodate the air conditioning indoor unit and to form a barrier area by at least a portion of the wall recesses to avoid the air guide plate and panel of the air conditioning indoor unit.

Benefits of technology

By avoiding the existence of the area, external force is reduced or eliminated to the air guide plate and panel, reducing the risk of deformation or damage, and improving the protective effect of the packaging.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a packaging assembly for an air conditioner indoor unit, the packaging assembly comprises a packaging main body, the packaging main body is provided with a first containing cavity, and at least part of the air conditioner indoor unit is contained in the first containing cavity. Wherein at least part of the wall body of the packaging main body is sunken to form an avoiding area, and the avoiding area faces an air deflector and / or a panel of the air conditioner indoor unit. The first containing cavity is formed in the packaging body, the air conditioner indoor unit is arranged in the first containing cavity, and the packaging body plays a role in protecting the air conditioner indoor unit. At least part of the wall body of the packaging main body is sunken to form the avoiding area used for avoiding fragile parts such as an air deflector and a panel of the air conditioner indoor unit, so that when the packaging main body is subjected to external force and deforms, the existence of the avoiding area is beneficial to reducing or eliminating the fragile parts such as the air deflector and the panel which are transmitted by the external force; therefore, the problem that fragile parts such as the air deflector and the panel are prone to deformation or damage can be solved.
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Description

Technical Field

[0001] This application relates to the field of air conditioners, and particularly to a packaging assembly for an air conditioner indoor unit. Background Art

[0002] During the transportation and storage of an air conditioner indoor unit, a packaging assembly is often used to wrap and protect the air conditioner indoor unit. The wrapping area of the packaging assembly can be nested with the structure of the air conditioner indoor unit to be wrapped, so as to achieve comprehensive fastening of the packaging assembly. However, during actual transportation and storage, external collisions can cause the foam to deform, resulting in the packaging assembly squeezing vulnerable components inside the air conditioner, such as the air deflector and the panel, causing deformation and damage. Utility Model Content

[0003] In view of this, the embodiments of this application are expected to provide a packaging assembly for an air conditioner indoor unit, which is used to solve the problem that vulnerable components such as the air deflector and the panel are prone to deformation or damage during the transportation of the air conditioner indoor unit.

[0004] To achieve the above object, the technical solution adopted in the embodiments of this application is as follows:

[0005] This application provides a packaging assembly for an air conditioner indoor unit. The packaging assembly includes a packaging main body, and the packaging main body has a first accommodation cavity, and at least a part of the air conditioner indoor unit is accommodated in the first accommodation cavity;

[0006] Wherein, at least a part of the wall of the packaging main body is recessed to form an avoidance area, and the avoidance area faces the air deflector and / or the panel of the air conditioner indoor unit.

[0007] In one embodiment, the air deflector is spaced apart from the wall of the packaging main body.

[0008] In one embodiment, the panel includes a first area and a second area. The first area is connected to the front frame of the air conditioner indoor unit, and the panel is at least spaced apart from the wall of the packaging main body in the second area.

[0009] In one embodiment, the panel is spaced apart from the wall of the packaging main body.

[0010] In one embodiment, the distance between the air deflector and the wall of the packaging main body in the avoidance area is greater than or equal to 5 mm and less than or equal to 20 mm; and / or,

[0011] The distance between the panel and the inner wall of the packaging main body in the avoidance area is greater than or equal to 5 mm and less than or equal to 20 mm.

[0012] In one embodiment, the shape of the first accommodation cavity is adapted to the external contour of the indoor air conditioner, and at least a part of the wall of the packaging body is in contact with the front frame of the indoor air conditioner.

[0013] In one embodiment, a part of the wall of the packaging body is recessed to form a weight-reducing hole; and / or,

[0014] A holding portion is provided on the outer wall of the packaging body.

[0015] In one embodiment, the packaging body has a second accommodation cavity for accommodating the remote control device of the indoor air conditioner.

[0016] In one embodiment, the packaging body has an opening communicating with the first accommodation cavity, and the indoor air conditioner can be placed in the first accommodation cavity through the opening.

[0017] In one embodiment, the direction of entering the first accommodation cavity along the opening is defined as the first direction, and the packaging assembly includes two packaging bodies symmetrically arranged along the first direction.

[0018] In this application, by providing a first accommodation cavity on the packaging body for placing the indoor air conditioner in the first accommodation cavity, the packaging body plays a protective role for the indoor air conditioner. By recessing at least a part of the wall of the packaging body to form an avoidance area for avoiding fragile components such as the air deflector and the front panel of the indoor air conditioner. In this way, when the packaging body is subjected to an external force and deforms, the existence of the avoidance area is beneficial to reducing or eliminating the transmission of the external force to fragile components such as the air deflector and the front panel, thereby improving the problem that fragile components such as the air deflector and the front panel are prone to deformation or damage. Moreover, this structure is simple and has a low production cost. Description of the Drawings

[0019] Figure 1 It is a schematic diagram of the cooperation between the indoor air conditioner and the packaging assembly in an embodiment of this application;

[0020] Figure 2 It is a schematic diagram of the structure of the packaging assembly in an embodiment of this application;

[0021] Figure 3 It is a schematic diagram of the structure of the avoidance area avoiding the air deflector in an embodiment of this application;

[0022] Figure 4 It is a schematic diagram of the structure of the avoidance area avoiding the front panel in an embodiment of this application.

[0023] Description of the Reference Numerals

[0024] 10. Packaging assembly; 1. Main body; 11. First accommodating cavity; 12. Avoidance area; 13. Weight reduction hole; 14. Holding part; 15. Second accommodating cavity; 16. Opening; 20. Air conditioner indoor unit; 21. Air deflector; 22. Panel; 221. First area; 222. Second area. Detailed implementation manners

[0025] It should be noted that, without conflict, the embodiments and the technical features in the embodiments in this application can be combined with each other. The detailed description in the specific implementation manners should be understood as an explanatory illustration of the purpose of this application and should not be regarded as an improper limitation to this application.

[0026] In the description of the embodiments of this application, it should be noted that the orientation or positional relationship indicated by terms such as "top" and "bottom" is based on the orientation or positional relationship shown in the drawings. Among them, the "height direction" refers to Figure 2 the "top-bottom direction" shown. These orientation terms are only for the convenience of describing the embodiments of this application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the embodiments of this application. The following further elaborates on this application in conjunction with the drawings and specific embodiments.

[0027] This application provides a packaging assembly 10 for an air conditioner indoor unit 20. Please refer to Figures 1 to 4 , the packaging assembly 10 includes a packaging main body 1. The packaging main body 1 has a first accommodating cavity 11, and at least part of the air conditioner indoor unit 20 is accommodated in the first accommodating cavity 11. Among them, at least part of the wall body of the packaging main body 1 is recessed to form an avoidance area 12, and the avoidance area 12 faces the air deflector 21 and / or the panel 22 of the air conditioner indoor unit 20.

[0028] The packaging main body 1 is a structure that wraps the outside of the air conditioner indoor unit 20 and is used to protect the air conditioner indoor unit 20 during transportation and handling. The external force first acts on the packaging main body 1. Through the buffering effect of the packaging main body 1, the external force is reduced, so that the external force transmitted to the air conditioner indoor unit 20 is weakened, thereby reducing the risk of damage to the air conditioner indoor unit 20 caused by external forces.

[0029] The packaging main body 1 is made of a material with good buffering performance or has a good buffering structure.

[0030] The specific manufacturing material of the packaging main body 1 is not limited herein. For example, it can be polystyrene foam (EPS), polyethylene foam (EPE), polyurethane foam (PU), expanded polypropylene (EPP) or polyethylene foam plastic, etc. It can also be sponge material or pearl cotton material, etc.

[0031] The specific structure of the packaging main body 1 is not limited herein. For example, it can be a honeycomb structure, an air column bag structure, etc.

[0032] The first accommodation cavity 11 is set according to the outer shape structure of the air conditioner indoor unit 20. The specific structure is not limited herein. After the air conditioner indoor unit 20 is installed in the first accommodation cavity 11, the gap with the inner cavity wall should be minimized as much as possible to reduce the sway of the air conditioner indoor unit 20 caused by the vibration during transportation.

[0033] In some embodiments, the packaging main body 1 is integrally formed, and the first accommodation cavity 11 is a complete cavity, which is beneficial to the stability of the installation of the air conditioner indoor unit 20 in the first accommodation cavity 11. In some embodiments, the packaging main body 1 is manufactured and assembled separately, and the first accommodation cavity 11 is also composed of various parts, which is beneficial to the accommodation of the air conditioner indoor unit 20 in the first accommodation cavity 11.

[0034] Here, at least part of the air conditioner indoor unit 20 is accommodated in the first accommodation cavity 11. It can be the part of the air conditioner indoor unit 20 that is easily impacted during transportation and handling, such as the corners, or the part with weak structural strength of the air conditioner indoor unit 20 is accommodated in the first accommodation cavity 11 and protected by the packaging main body 1 to save the manufacturing materials of the packaging assembly 10. Of course, the air conditioner indoor unit 20 can also be entirely placed in the first accommodation cavity 11 to improve the protection effect.

[0035] The wall body refers to the inner side part of the packaging main body 1 that forms the first accommodation cavity 11, which plays a role in supporting and protecting the internal product.

[0036] Since the connection part of the air deflector 21 of the air conditioner indoor unit 20 is relatively fragile, and the panel 22 has a large area and most of its structure lacks support at the bottom, during transportation and handling, external forces are likely to cause damage to the air deflector 21 and the panel 22. The wall body part of the packaging main body 1 is designed in a concave shape to form an avoidance area 12. In this way, even if the packaging main body 1 deforms under the action of external forces, the possibility of external forces directly transmitting to the air deflector 21 and the panel 22 is reduced, or through the weakening effect of the deformed packaging main body 1 on the external forces, the forces transmitted to the air deflector 21 and the panel 22 are not sufficient to cause damage.

[0037] Here, the avoidance area 12 faces the air deflector 21 and / or the panel 22 of the air conditioner indoor unit 20, that is to say, the avoidance area 12 is used to avoid at least part of the air deflector 21 and / or at least part of the panel 22. The avoidance area 12 can face the areas with relatively low structural strength on the air deflector 21 and / or the panel 22, such as the connection part of the air deflector 21 and / or the middle area of the panel 22. Of course, it can also be that the avoidance area 12 faces the entire air deflector 21 and / or the panel 22.

[0038] The specific structure of the avoidance area 12 is not limited, and is specifically determined according to factors such as the magnitude of the external force, the deformation of the packaging main body 1 under force, and the bearing capacity of the air deflector 21, etc., so that the force transmitted to the air deflector 21 and the panel 22 is not sufficient to cause damage.

[0039] In this application, a first accommodation cavity 11 is provided on the packaging main body for arranging the air conditioner indoor unit 20 in the first accommodation cavity 11, and the packaging main body 1 plays a protective role for the air conditioner indoor unit. By recessing at least part of the wall body of the packaging main body 1 to form an avoidance area 12 for avoiding vulnerable components such as the air deflector 21 and the panel 22 of the air conditioner indoor unit. In this way, when the packaging main body 1 is subjected to an external force and deforms, the existence of the avoidance area 12 is beneficial to reducing or eliminating the transmission of the external force to vulnerable components such as the air deflector 21 and the panel 22, thereby improving the problem that vulnerable components such as the air deflector 11 and the panel 22 are prone to deformation or damage, and the structure is simple and the production cost is low.

[0040] In some embodiments, please refer to Figures 1 to 4 , the air deflector 21 is arranged at an interval from the wall body of the packaging main body 1.

[0041] The air deflector 21 being arranged at an interval from the wall body of the packaging main body 1 means that a certain distance is deliberately maintained between the air deflector 21 and the packaging main body 1, rather than direct contact. It can be understood that this refers to the air deflector 21 not being in direct contact with the packaging main body 1 in the avoidance area 12 and there being a certain distance. Such a design can provide additional protection for the air deflector 21 and prevent damage during transportation and handling.

[0042] The size of the interval distance is not specifically limited here, and is specifically determined according to factors such as the magnitude of the external force, the deformation of the packaging main body 1 under force, and the bearing capacity of the air deflector 21, etc., so that the force transmitted to the air deflector 21 is not sufficient to cause damage.

[0043] The interval arrangement can reduce the friction and impact that the air deflector 21 receives due to direct contact with the wall body of the packaging main body 1 during transportation, thereby reducing the risk of damage.

[0044] In some embodiments, please refer to Figures 1 to 4 , the panel 22 includes a first area 221 and a second area 222. The first area 221 is connected to the front frame of the air conditioner indoor unit 20, and the panel 22 is arranged at an interval from the wall body of the packaging main body 1 at least in the second area 222.

[0045] The first region 221 is the part on the panel 22 that is connected to the front frame of the air conditioner indoor unit 20. Since the first region 221 is connected to the front frame of the air conditioner indoor unit 20 and the front frame has a certain strength to support the first region 221, the panel 22 in the first region 221 has a certain force-bearing capacity and can withstand greater external forces compared to other unsupported parts on the panel 22.

[0046] The second region 222 refers to the part on the panel 22 that is not connected to the front frame. This part is used to shield the structure of the air conditioner indoor unit 20 and is not stressed in the overall structure of the air conditioner indoor unit 20. Therefore, when designing, it is not necessary to design a very strong structural strength, so as to reduce the production materials of the air conditioner indoor unit 20 and thus reduce the production cost of the air conditioner indoor unit 20.

[0047] Since the second region 222 does not have a very strong structural strength, it needs to be protected during transportation. By keeping a gap from the wall of the packaging main body 1 here, a buffer space can be provided for the panel 22 to reduce the risk of damage caused by impact and vibration during transportation.

[0048] The panel 22 is at least spaced from the wall of the packaging main body 1 in the second region 222, which means that a certain distance is specifically maintained between the second region 222 of the panel 22 and the packaging main body 1, rather than direct contact. It can be understood that here it means that the second region 222 of the panel 22 does not directly contact the packaging main body 1 on the avoidance region 12 and there is a certain distance. Such a design can provide additional protection for the second region 222 of the panel 22 and prevent it from being damaged during transportation and handling.

[0049] The size of the spacing distance is not specifically limited here and is jointly determined according to factors such as the magnitude of the external force, the deformation of the packaging main body 1 under force, and the bearing capacity of the second region 222 of the panel 22, so that the force transmitted to the second region 222 of the panel 22 is not sufficient to cause damage.

[0050] The spaced arrangement can reduce the friction and impact that the second region 222 of the panel 22 suffers from directly contacting the wall of the packaging main body 1 during transportation, thereby reducing the risk of damage.

[0051] In some embodiments, please refer to Figures 1 to 4 , the panel 22 is spaced from the wall of the packaging main body 1.

[0052] Here, the panel 22 is spaced from the wall of the packaging body 1, that is to say, both the first region 221 and the second region 222 of the panel 22 are spaced from the wall of the packaging body 1. That is to say, neither the first region 221 nor the second region 222 of the panel 22 is in direct contact with the wall of the packaging body 1 on the avoidance region 12, and there is a certain distance. In this way, the friction and impact on the panel 22 during transportation due to not directly contacting the wall of the packaging body 1 are reduced, thereby reducing the risk of damage.

[0053] In some embodiments, refer to Figures 1 to 4 , the distance between the air deflector 21 and the wall of the packaging body 1 in the avoidance region 12 is greater than or equal to 5 mm and less than or equal to 20 mm.

[0054] The distance between the air deflector 21 and the wall of the packaging body 1 in the avoidance region 12 is greater than or equal to 5 mm and less than or equal to 20 mm. The specific distance is not limited here. For example, it can be 5 mm, 7 mm, 9 mm, 11 mm, 13 mm, 15 mm, 17 mm, 19 mm, 20 mm, and so on.

[0055] By setting the distance between the air deflector 21 and the wall of the packaging body 1 in the avoidance region 12 within the above range, in this way, enough space is provided for the deformation of the packaging body 1. In this way, when the packaging body 1 undergoes the maximum deformation, it does not contact the air deflector 21, reducing the possibility of external force being directly transmitted to the air deflector 21. When the packaging body 1 comes into contact with the air deflector 21 after deformation, through the weakening effect of the deformed packaging body 1 on the external force, the force transmitted to the air deflector 21 is not sufficient to cause damage.

[0056] In some embodiments, refer to Figures 1 to 4 , the distance between the panel 22 and the inner wall of the packaging body 1 in the avoidance region 12 is greater than or equal to 5 mm and less than or equal to 20 mm.

[0057] The distance between the panel 22 and the inner wall of the packaging body 1 in the avoidance region 12 is greater than or equal to 5 mm and less than or equal to 20 mm. The specific distance is not limited here. For example, it can be 5 mm, 7 mm, 9 mm, 11 mm, 13 mm, 15 mm, 17 mm, 19 mm, 20 mm, and so on.

[0058] By setting the distance between the panel 22 and the inner wall of the packaging body 1 in the avoidance region 12 within the above range, in this way, enough space is provided for the deformation of the packaging body 1. In this way, when the packaging body 1 undergoes the maximum deformation, it does not contact the panel 22, reducing the possibility of external force being directly transmitted to the panel 22. When the packaging body 1 comes into contact with the panel 22 after deformation, through the weakening effect of the deformed packaging body 1 on the external force, the force transmitted to the panel 22 is not sufficient to cause damage.

[0059] In some embodiments, see Figures 1 to 4 The shape of the first accommodating cavity 11 is adapted to the outer contour of the air conditioner indoor unit 20 , and the wall of the packaging body 1 is in contact with at least part of the surface frame of the air conditioner indoor unit 20 .

[0060] The shape of the first accommodating chamber 11 is adapted to the outer contour of the air-conditioning indoor unit 20, which means that the first accommodating chamber 11 is precisely matched with the outer shape of the air-conditioning indoor unit 20 in terms of size, shape and contour, and the specific structure of the first accommodating chamber 11 is determined according to the outer shape structure of the air-conditioning indoor unit 20 to be accommodated. The shape of the first accommodating chamber 11 is adapted to the outer contour of the air-conditioning indoor unit 20, which can provide precise protection for each corner and edge of the air-conditioning indoor unit 20, and reduce the impact and damage that may be suffered during transportation and handling.

[0061] The customized first accommodating chamber 11 can be designed as a structure that is convenient for quick loading and unloading, which can improve the efficiency of packaging and unpacking and reduce the time and labor costs of logistics and warehousing.

[0062] The wall of the package body 1 is in contact with at least part of the face frame of the air-conditioning indoor unit 20, that is, the face frame is in contact with the wall of the package body 1 in the first accommodating chamber 11. Since the face frame is a structural component of the air-conditioning indoor unit 20, most of the components of the air-conditioning indoor unit 20 are directly or indirectly fixed on the face frame, and the face frame has a certain structural strength. Therefore, through the contact between the face frame and the wall of the package body 1, on the one hand, the air-conditioning indoor unit 20 can be fixed as a whole in the first accommodating chamber 11 through the face frame, reducing the shaking of the air-conditioning indoor unit 20 in the first accommodating chamber 11 during transportation and handling. On the other hand, when the package body 1 is subjected to external force, the external force is first transmitted to the face frame, reducing the transmission of the external force to the rest of the air-conditioning indoor unit 20, thereby improving the protection effect of the air-conditioning indoor unit 20.

[0063] By designing the first accommodating cavity 11 adapted to the outer contour of the air conditioner indoor unit 20, the wall of the packaging body 1 is in contact with at least part of the surface frame of the air conditioner indoor unit 20, thereby reducing the shaking of the air conditioner indoor unit 20 in the first accommodating cavity 11 and improving the protection effect of the air conditioner indoor unit 20. Customized protection maximizes the use of packaging space, reduces the manufacturing materials of the protection body 1, and also improves the packaging efficiency of the packaging body 1.

[0064] In some embodiments, see Figures 1 to 4 Part of the wall of the packaging body 1 is recessed to form a weight-reducing hole 13.

[0065] The weight-reducing holes 13 refer to the areas on the packaging body 1 where the assembly and protection effects of the air conditioner indoor unit 20 are not affected. Dents are provided on the walls of the packaging body 1 in these areas to reduce the wall thickness. In this way, the weight of the packaging can be reduced by reducing the material usage of the packaging body 1, while not affecting the protection function and structural integrity of the packaging.

[0066] The specific structure of the weight-reducing holes 13 is not limited herein. The weight-reducing holes 13 can be designed into different shapes, such as circular, oval, star-shaped, etc., and their distribution can be optimized according to the structure and stress conditions of the packaging body 1. The size and quantity of the weight-reducing holes 13 can be determined according to the thickness and strength of the packaging material and the protection requirements of the product.

[0067] Here, it should be noted that the weight-reducing holes 13 can be through-hole structures or non-penetrating recessed areas formed by the depression of some walls of the packaging body 1.

[0068] The design of the weight-reducing holes 13 may cause a decrease in the overall strength of the packaging body 1. In some embodiments, reinforcing ribs or support structures are added to some key parts of the packaging body 1 corresponding to protecting the air conditioner indoor unit 20 to ensure the overall stability and load-bearing capacity of the packaging body 1.

[0069] By providing the weight-reducing holes 13 on the walls of the packaging body 1, while reducing the weight of the packaging body 1, the manufacturing materials of the packaging body 1 are reduced, thereby reducing the production cost. The reasonably designed weight-reducing holes 13 can provide additional buffer space, which helps to protect the product from impact and vibration. Furthermore, the weight-reducing holes 13 can be used as part of the packaging design to improve the aesthetics and market attractiveness of the product.

[0070] In some embodiments, please refer to Figures 1 to 4 , a gripping portion 14 is provided on the outer wall of the packaging body 1.

[0071] The gripping portion 14 refers to a structure provided on the outer wall of the packaging body 1 for facilitating the application of a gripping force by hand during handling.

[0072] The specific structure of the gripping portion 14 is not limited herein. The shape of the gripping portion 14 can be raised textures, grooves or specially designed contours to adapt to the human hand grip. Soft or elastic materials can be selected to increase the comfort during gripping. The size of the gripping portion 14 is determined according to the overall design of the packaging and ergonomics to ensure the convenience for users during use.

[0073] The position of the gripping portion 14 should be considered for the overall stability during handling. Generally, the center of gravity of the packaging body 1 should be located at or near the bottom as much as possible to increase stability and prevent the packaging body 1 from tipping over during stacking or placement. At this time, the gripping portion 14 should be designed near the center of gravity for easy application of force by the user.

[0074] Generally, the packaging main body 1 is provided with two stacking surfaces in the same direction, which facilitates the stacking of products during transportation and storage. In some embodiments, the holding part 14 is arranged on the non-stacking surface of the packaging main body 1, which is beneficial to improving the stacking stability of the packaging main body 1.

[0075] It should be noted that the function of the holding part 14 here is not limited to the handling function of human hands. The holding part 14 can also be designed to suit different handling methods, such as hand-held, shoulder-carried, forklift insertion, etc., to meet different logistics and handling requirements.

[0076] By providing the holding part, a region is provided that facilitates the user to hold and carry the packaging, which can increase the comfort of the user during handling and make the handling process easier. At the same time, the setting of the holding part can help the user better control the packaging and reduce the risk of damage caused by slipping or tilting.

[0077] In some embodiments, refer to Figures 1 to 4 , the second accommodating cavity 15 is used to accommodate the remote control device of the air conditioner indoor unit 20.

[0078] The second accommodating cavity 15 refers to a space provided on the packaging main body 1 that is specifically used to place specific items. Here, it refers to the space for storing the remote control device of the air conditioner indoor unit 20.

[0079] The specific structure of the second accommodating cavity 15 is not limited herein. Exemplarily, the shape of the second accommodating cavity 15 can be adapted to the shape of the remote control device to closely match the shape of the remote control device and reduce the movement of the remote control device during transportation. The second accommodating cavity 15 has a placement opening to facilitate the user to access the remote control device.

[0080] It should be noted that the function of the second accommodating cavity 15 is not limited to accommodating the remote control device. The structure of the second accommodating cavity 15 can be changed according to the device to be accommodated. For example, the second accommodating cavity 15 can accommodate the power cord, instruction manual, etc. of the air conditioner indoor unit 20.

[0081] By providing the second accommodating cavity 15 to accommodate accessory devices such as the remote control device of the air conditioner indoor unit 20, the functional range of the packaging assembly 10 is expanded, additional packaging design is reduced, and the air conditioner indoor unit 20 is transported and handled as a whole under the protection of the packaging assembly 10, reducing the possibility of small devices falling during transportation and handling.

[0082] In some embodiments, refer to Figures 1 to 4 , the packaging main body 1 has an opening 16 communicating with the first accommodating cavity 11, and the air conditioner indoor unit 20 can be placed in the first accommodating cavity 11 through the opening 16.

[0083] The opening 16 is a structure that communicates with the first accommodation cavity 11 provided on the packaging main body 1, facilitating the placement or removal of the product into or from the first accommodation cavity 11.

[0084] The structure of the opening 16 is not limited herein, as long as it is convenient for the air conditioner indoor unit 20 to be placed in the first accommodation cavity 11. The size of the opening 16 can be customized according to the size of the air conditioner indoor unit 20 to ensure that the air conditioner indoor unit 20 can be smoothly placed in and removed.

[0085] It should be noted here that the air conditioner indoor unit 20 is placed in the first accommodation cavity 11 through the opening 16. The air conditioner indoor unit 20 can be connected to the packaging main body 1 by interference fit. Of course, it can also be connected to the packaging main body 1 through auxiliary fixing structures such as magic tapes or tie straps, which are not limited herein.

[0086] In some embodiments, a protective edge is designed at the opening 16 to reduce the damage caused when placing and removing the air conditioner indoor unit 20.

[0087] In some embodiments, clear markings and instructions are provided on the packaging to guide the user on how to correctly place the air conditioner indoor unit 20.

[0088] By providing an opening 16 on the packaging main body 1 that communicates with the first accommodation cavity 11, the air conditioner indoor unit 20 can be more easily placed in the packaging through the opening 16 and is also convenient for removal, improving the loading and unloading efficiency. At the same time, through the precise design of the opening 16 and the accommodation cavity, the stability of the cooperation between the air conditioner indoor unit and the packaging main body 1 is improved, reducing the relative shaking of the air conditioner indoor unit 20 within the packaging main body 1 during transportation and reducing the risk of damage.

[0089] In some embodiments, please refer to Figures 1 to 4 , the direction along which the opening 16 enters the first accommodation cavity 11 is defined as the first direction, and the packaging assembly 10 includes two packaging main bodies 1 symmetrically arranged along the first direction.

[0090] Here, the first direction refers to the length direction of the air conditioner indoor unit 20. The packaging assembly 10 including two packaging main bodies 1 symmetrically arranged along the first direction means that one packaging main body 1 is provided on each side of the air conditioner indoor unit 20 along its length direction. Since the packaging main body 1 wraps the outside of the air conditioner indoor unit 20, in this way, the two relatively arranged packaging main bodies 1 can comprehensively wrap the air conditioner indoor unit 20 on both sides, and when the air conditioner indoor unit 20 is placed at any angle, it contacts the placement surface with the packaging main bodies 1 on both sides.

[0091] In this way, damage caused by contact between external objects and the air conditioner indoor unit 20 is reduced. At the same time, the packaging bodies 1 provided on both sides, while ensuring the packaging effect, also help to reduce the production materials of the packaging components 10 and reduce the production cost. The packaging components 10 formed by the packaging bodies 1 symmetrically arranged on both sides also facilitate the easier placement of the air conditioner indoor unit 20 in the packaging and are also convenient for removal, improving the loading and unloading efficiency.

[0092] In the description of the present application, the descriptions referring to terms such as "in one embodiment", "in some embodiments", "in other embodiments", "in still other embodiments", or "exemplary" mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the embodiments of the present application. In the present application, the schematic expressions of the above terms are not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art can combine the different embodiments or examples described in the present application and the features of the different embodiments or examples.

[0093] The above are only the preferred embodiments of the present application and are not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application are included in the protection scope of the present application.

Claims

1. A packaging assembly for an air conditioner indoor unit, characterized in that: The packaging assembly comprises a packaging body, the packaging body having a first accommodating cavity, and at least a part of the air conditioner indoor unit is accommodated in the first accommodating cavity; Wherein, at least a portion of the wall of the packaging body is recessed to form a avoidance area, and the avoidance area faces the air guide plate and / or panel of the air conditioner indoor unit.

2. The packaging assembly according to claim 1, characterized in that: The air guide plate is spaced apart from the wall of the packaging body.

3. The packaging assembly according to claim 1, characterized in that: The panel includes a first area and a second area, the first area is connected to the surface frame of the air conditioner indoor unit, and the panel is spaced apart from the wall of the package body at least in the second area.

4. The packaging assembly according to claim 3, characterized in that: The panel is spaced apart from the wall of the packaging body.

5. The packaging assembly according to any one of claims 1 to 4, characterized in that: The distance between the air guide plate and the wall of the packaging body located in the avoidance area is greater than or equal to 5 mm and less than or equal to 20 mm; and / or, The distance between the panel and the inner wall of the packaging body in the avoidance area is greater than or equal to 5 mm and less than or equal to 20 mm.

6. The packaging assembly according to claim 1, characterized in that: The shape of the first accommodating cavity is adapted to the outer contour of the air conditioner indoor unit, and the wall of the packaging body is in contact with at least a portion of the surface frame of the air conditioner indoor unit.

7. The packaging assembly according to any one of claims 1 to 4, characterized in that: Part of the wall of the packaging body is recessed to form a weight-reducing hole; and / or, The outer wall of the packaging body is provided with a holding portion.

8. The packaging assembly according to any one of claims 1 to 4, characterized in that: The packaging body has a second accommodating cavity, and the second accommodating cavity is used to accommodate the remote control device of the air conditioner indoor unit.

9. The packaging assembly according to any one of claims 1 to 4, characterized in that: The packaging body has an opening communicating with the first accommodating cavity, and the air conditioner indoor unit can be placed in the first accommodating cavity through the opening.

10. The packaging assembly according to claim 9, characterized in that: A direction from the opening into the first accommodating cavity is defined as a first direction, and the packaging assembly includes two packaging bodies symmetrically arranged along the first direction.

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