Cooling fan packaging assembly

By designing a cold fan packaging assembly of integrated bottom bracket assembly, middle lining assembly and top cover assembly, the problems of high cost and low production efficiency in the prior art are solved, and lower costs and higher production efficiency are achieved.

CN223031677UActive Publication Date: 2025-06-27GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202422019262.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-06-27
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The cooling fan packaging components are costly and inefficient, mainly due to the need to open multiple sets of tool molds and fix the packaging materials by manual pasting.

Method used

A cold fan packaging assembly including a bottom support assembly, a middle lining assembly and a top cover assembly is designed. These components are integrated molded structures and spaced apart to facilitate direct packaging of the cold fan, reducing the need for tool molding and manual pasting.

Benefits of technology

Through this design, the cost of cold fan packaging components is reduced, and the production efficiency is improved, avoiding multiple sets of tool molds and manual pasting steps.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a cooling fan packaging assembly, and belongs to the field of packaging. The cooling fan packaging assembly is used for packaging a cooling fan, the cooling fan comprises a machine body and a water tank, and the cooling fan packaging assembly comprises a bottom support assembly, a middle lining assembly and a top cover assembly; the bottom support assembly, the middle lining assembly and the top cover assembly are distributed at intervals, one end of the machine body is borne on the bottom support assembly, the middle lining assembly is arranged at the other end of the machine body, one end of the water tank is borne on the middle lining assembly, and the top cover assembly is arranged at the other end of the water tank; the bottom support assembly, the middle lining assembly and the top cover assembly are all of an integrally-formed structure.
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Description

Technical Field

[0001] This application belongs to the field of packaging, and particularly relates to a cold fan packaging assembly. Background Art

[0002] With the development of technology, cold fans are used more and more widely. Especially in the hot summer, cold fans become the primary choice for people to cool down. Generally, during the production and transportation of cold fans, the cold fans need to be packaged, and then the packaged cold fans are placed in a packing box for transportation. However, in the related art, when packaging a cold fan with a cold fan packaging assembly, multiple sets of die molds need to be opened for the cold fan packaging assembly. After cutting the packaging materials, they are fixed by manual pasting, resulting in high costs and low production efficiency of the cold fan packaging assembly. Utility Model Content

[0003] The purpose of the embodiments of this application is to provide a cold fan packaging assembly, which at least solves the problems of high cost and low production efficiency of the cold fan packaging assembly.

[0004] In a first aspect, the embodiments of this application provide a cold fan packaging assembly for packaging a cold fan, where the cold fan includes a body and a water tank, and the cold fan packaging assembly includes: a bottom support assembly, a middle lining assembly, and a top cover assembly;

[0005] The bottom support assembly, the middle lining assembly, and the top cover assembly are spaced apart. One end of the body is carried on the bottom support assembly, the middle lining assembly is arranged at the other end of the body, one end of the water tank is carried on the middle lining assembly, and the top cover assembly is arranged at the other end of the water tank;

[0006] Among them, the bottom support assembly, the middle lining assembly, and the top cover assembly are all integrally formed structures.

[0007] Optionally, the bottom support assembly includes a first base plate, a first bottom side plate, a second bottom side plate, a third bottom side plate, and a fourth bottom side plate;

[0008] The first base plate has a first bottom side edge, a second bottom side edge, a third bottom side edge, and a fourth bottom side edge that are sequentially connected along the circumferential direction of the first base plate. The first bottom side edge and the third bottom side edge are spaced apart and opposite in position, and both the second bottom side edge and the fourth bottom side edge are located between the first bottom side edge and the third bottom side edge;

[0009] The first bottom side plate is connected to the first bottom side edge, the second bottom side plate is connected to the second bottom side edge, the third bottom side plate is connected to the third bottom side edge, the fourth bottom side plate is connected to the fourth bottom side edge. The angles between the first bottom side plate, the second bottom side plate, the third bottom side plate, the fourth bottom side plate and the first substrate are all 90 degrees. The first substrate, the first bottom side plate, the second bottom side plate, the third bottom side plate and the fourth bottom side plate enclose a first accommodation cavity, and one end of the fuselage is carried in the first accommodation cavity;

[0010] Wherein, the first substrate, the first bottom side plate, the second bottom side plate, the third bottom side plate and the fourth bottom side plate are of an integrally formed structure.

[0011] Optionally, avoidance grooves are provided on the first bottom side plate, the second bottom side plate and the third bottom side plate, and the avoidance grooves extend in a direction perpendicular to the first substrate.

[0012] Optionally, the first substrate has a setting surface, and a first support assembly is provided on the setting surface. The first support assembly is located in the first accommodation cavity and abuts against one end of the fuselage.

[0013] Optionally, the first support assembly includes a first support member and a second support member;

[0014] The first support member and the second support member are spaced apart in the direction from the second bottom side plate to the fourth bottom side plate.

[0015] Optionally, the shape of the projection of the first support member on the setting surface is a first right triangle, and the shape of the projection of the second support member on the setting surface is a second right triangle;

[0016] Wherein, the first right triangle is the same as the second right triangle, and the hypotenuse of the first right triangle faces the hypotenuse of the second right triangle.

[0017] Optionally, the cold fan further includes an ice crystal box assembly, and the middle lining assembly includes a first lining plate and a second lining plate;

[0018] The first lining plate and the second lining plate are stacked, and the ice crystal box assembly is located between the first lining plate and the second lining plate. The size of the first lining plate is larger than that of the second lining plate, and the second lining plate covers a part of the ice crystal box assembly. The size of the ice crystal box assembly is smaller than that of the first lining plate, and there is a set distance between the edge of the ice crystal box assembly and the edge of the first lining plate;

[0019] The surface of the first lining plate facing away from the second lining plate abuts against the other end of the fuselage, and one end of the water tank contacts the second lining plate and the ice crystal box assembly respectively.

[0020] Optionally, the ice crystal box assembly includes a plurality of ice crystal boxes, and the plurality of ice crystal boxes are arranged around the center of the first lining plate.

[0021] Optionally, the ice crystal box assembly is fixed to the first lining plate by a packaging film.

[0022] Optionally, the cold air fan further includes an ice crystal box assembly, and the middle lining assembly includes a third lining plate and a middle support member;

[0023] The middle support member has a second accommodation cavity and an opening, the opening communicates with the second accommodation cavity, the third lining plate is arranged in the second accommodation cavity, and the ice crystal box assembly is arranged on the third lining plate;

[0024] The side of the middle support member facing away from the second accommodation cavity abuts against the other end of the fuselage, and one end of the water tank contacts the ice crystal box assembly respectively.

[0025] Optionally, the top cover assembly includes a second base plate, a first top side plate, a second top side plate, a third top side plate and a fourth top side plate;

[0026] The second base plate has a first top side edge, a second top side edge, a third top side edge and a fourth top side edge connected in sequence along the circumferential direction of the second base plate. The first top side edge and the third top side edge are spaced apart and opposite in position, and both the second top side edge and the fourth top side edge are located between the first top side edge and the third top side edge;

[0027] The first top side plate is connected to the first top side edge, the second top side plate is connected to the second top side edge, the third top side plate is connected to the third top side edge, the fourth top side plate is connected to the fourth top side edge. The angles between the first top side plate, the second top side plate, the third top side plate, the fourth top side plate and the second base plate are all 90 degrees, and the second base plate, the first top side plate, the second top side plate, the third top side plate and the fourth top side plate enclose a third accommodation cavity, and the other end of the water tank is located in the third accommodation cavity;

[0028] Wherein, the second base plate, the first top side plate, the second top side plate, the third top side plate and the fourth top side plate are of an integrally formed structure.

[0029] Optionally, a splash guard is provided on the surface of the second substrate facing away from the third accommodation cavity, and through holes are provided in the splash guard. The splash guard is used to prevent water from splashing onto the surface of the second substrate facing away from the third accommodation cavity when the water tank is moved.

[0030] Optionally, the top cover assembly further includes a first partition and a second partition;

[0031] Both the first partition and the second partition are fixed to the surface of the second substrate facing away from the third accommodation cavity, and both the first partition and the second partition are located in the through holes. The first partition and the second partition are spaced apart, and opposite ends of the first partition respectively abut against the hole walls of the through holes, and opposite ends of the second partition respectively abut against the hole walls of the through holes;

[0032] Wherein, the first partition and the second partition are arranged along the direction from the first top side plate to the third top side plate.

[0033] Optionally, the top cover assembly further includes a third partition and a fourth partition;

[0034] Both the third partition and the fourth partition are fixed to the surface of the second substrate facing away from the third accommodation cavity, and both the third partition and the fourth partition are located in the through holes. The third partition and the fourth partition are both located between the first partition and the second partition, and the third partition and the fourth partition are spaced apart along the direction from the second top side plate to the fourth top side plate;

[0035] The cold air fan further includes casters and a remote controller. The casters are located in the gap between the third partition and the fourth partition, the remote controller is located on the side of the fourth partition facing away from the third partition, and the remote controller is located in the through hole.

[0036] Optionally, a second support assembly is provided on the second substrate. The second support assembly is located in the third accommodation cavity and abuts against the other end of the water tank.

[0037] In the embodiments of the present application, since the bottom support component, the middle lining component, and the top cover component are spaced apart, there is a gap between the bottom support component and the middle lining component, and there is a gap between the middle lining component and the top cover component. Therefore, when the cold fan needs to be packaged, one end of the fuselage can be directly placed on the bottom support component, which is equivalent to one end of the fuselage being carried by the bottom support component. Then, the middle lining component is placed at the other end of the fuselage, which is equivalent to the fuselage being located between the bottom support component and the middle lining component. Then, one end of the water tank is placed on the middle lining component, and finally, the top cover component is placed at the other end of the water tank, which is equivalent to the water tank being located between the middle lining component and the top cover component, thereby packaging both the fuselage and the water tank of the cold fan, facilitating the subsequent transportation of the cold fan. In addition, the bottom support component, the middle lining component, and the top cover component are all integrally formed structures, which can avoid the problem of opening multiple sets of die-cutting molds for the cold fan packaging components and manually pasting and fixing them after cutting the packaging materials. That is, in the embodiments of the present application, by setting the bottom support component, the middle lining component, and the top cover component, when packaging the cold fan, the fuselage of the cold fan can be directly arranged between the bottom support component and the middle lining component, and the water tank of the cold fan can be arranged between the middle lining component and the top cover component, facilitating the packaging of the cold fan. Moreover, the bottom support component, the middle lining component, and the top cover component are all integrally formed structures, which can avoid opening multiple sets of die-cutting molds for the cold fan packaging components and can also avoid the problem of manually pasting and fixing after cutting the packaging materials, reducing the cost of the cold fan packaging components provided by the embodiments of the present application and eliminating the need for manual pasting, thereby improving the production efficiency of the cold fan packaging components. That is, in the embodiments of the present application, on the premise of facilitating the packaging of the cold fan, the cost of the cold fan packaging components can be effectively reduced, and the production efficiency of the cold fan packaging components can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0038] Figure 1 Shows an exploded view of a cold fan packaging component provided by an embodiment of the present application;

[0039] Figure 2 Shows one of the schematic diagrams of a cold fan packaging component provided by an embodiment of the present application;

[0040] Figure 3 Shows another schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0041] Figure 4 Shows a third schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0042] Figure 5 Shows a fourth schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0043] Figure 6Figure 5 showing a schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0044] Figure 7 Figure 6 showing a schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0045] Figure 8 Figure 7 showing a schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0046] Figure 9 Figure 8 showing a schematic diagram of a cold fan packaging component provided by an embodiment of the present application;

[0047] Figure 10 Figure 9 showing a schematic diagram of a cold fan packaging component provided by an embodiment of the present application.

[0048] Reference numerals:

[0049] 001: Packaging film; 100: Cold fan; 110: Body; 120: Water tank; 130: Ice crystal box assembly; 131: Ice crystal box; 140: Caster; 150: Remote control; 10: Bottom support assembly; 11: First substrate; 12: First bottom side plate; 13: Second bottom side plate; 14: Third bottom side plate; 15: Fourth bottom side plate; 111: First bottom side plate; 112: Second bottom side; 113: Third bottom side; 114: Fourth bottom side; 121: Avoidance groove; 20: Middle lining assembly; 21: First lining plate; 22: Second lining plate; 23: Third lining plate; 24: Middle support member; 30: Top cover assembly; 31: Second substrate; 32: First top side plate; 33: Second top side plate; 34: Third top side plate; 35: Fourth top side plate; 36: First partition; 37: Second partition; 38: Third partition; 39: Fourth partition; 311: First top side; 312: Second top side; 313: Third top side; 314: Fourth top side; 40: First support assembly; 41: First support member; 42: Second support member; 50: Anti-wave plate; 60: Second support assembly. Detailed implementation manners

[0050] The terms "first" and "second" in the description and claims of the present application may explicitly or implicitly include one or more of such features. In the description of the present application, unless otherwise specified, the meaning of "a plurality" is two or more. In addition, "and / or" in the description and claims means at least one of the connected objects, and the character " / " generally indicates an "or" relationship between the associated objects before and after.

[0051] In the description of the present application, it should be understood that the orientation or positional relationship indicated by terms such as "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present 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. Therefore, it should not be construed as a limitation to the present application.

[0052] In the description of the present application, it should be noted that unless otherwise clearly specified and defined, the terms "mounted", "connected", and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.

[0053] As Figures 1 to 10 shown, the cold fan 100 packaging assembly is used to package the cold fan 100. The cold fan 100 includes a body 110 and a water tank 120. The cold fan 100 packaging assembly includes: a bottom support assembly 10, a middle lining assembly 20, and a top cover assembly 30.

[0054] The bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30 are spaced apart. One end of the body 110 is carried on the bottom support assembly 10, the middle lining assembly 20 is arranged at the other end of the body 110, one end of the water tank 120 is carried on the middle lining assembly 20, and the top cover assembly 30 is arranged at the other end of the water tank 120; wherein, the bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30 are all integrally formed structures.

[0055] In the embodiment of the present application, since the bottom support assembly 10, the middle lining assembly 20 and the top cover assembly 30 are distributed at intervals, there is a gap between the bottom support assembly 10 and the middle lining assembly 20, and there is a gap between the middle lining assembly 20 and the top cover assembly 30. Therefore, when the cooling fan 100 needs to be packaged, one end of the fuselage 110 can be directly placed on the bottom support assembly 10, which is equivalent to one end of the fuselage 110 being supported by the bottom support assembly 10, and then the middle lining assembly 20 is placed on the other end of the fuselage 110, which is equivalent to the fuselage 110 being located between the bottom support assembly 10 and the middle lining assembly 20. Then, one end of the water tank 120 is placed on the middle lining assembly 20, and finally, the top cover assembly 30 is placed on the other end of the water tank 120, which is equivalent to the water tank 120 being located between the middle lining assembly 20 and the top cover assembly 30. In this way, the fuselage 110 and the water tank 120 of the cooling fan 100 are both packaged, which is convenient for subsequent transportation of the cooling fan 100. In addition, the base assembly 10, the middle lining assembly 20 and the top cover assembly 30 are all integrally formed structures, thereby avoiding the problem of preparing multiple sets of cutting dies for the cold fan 100 packaging assembly and manually pasting and fixing the packaging materials after cutting. That is, in the embodiment of the present application, by setting the bottom bracket component 10, the middle liner component 20 and the top cover component 30, when the cold fan 100 is packaged, the body 110 of the cold fan 100 can be directly set between the bottom bracket component 10 and the middle liner component 20, and the water tank 120 of the cold fan 100 can be set between the middle liner component 20 and the top cover component 30, so as to facilitate the packaging of the cold fan 100, and the bottom bracket component 10, the middle liner component 20 and the top cover component 30 are all integrally formed structures, which can avoid the need to issue multiple sets of cutting dies for the cold fan 100 packaging component, and can also avoid the problem of manually pasting and fixing the packaging material after cutting, so that the cost of the cold fan 100 packaging component provided by the embodiment of the present application is reduced, and there is no need to avoid manual pasting, so that the production efficiency of the cold fan 100 packaging component is improved. That is, in the embodiment of the present application, the cost of the cold fan 100 packaging component can be effectively reduced and the production efficiency of the cold fan 100 packaging component can be improved under the premise of facilitating the packaging of the cold fan 100.

[0056] It should be noted that in the embodiment of the present application, the base assembly 10, the middle lining assembly 20 and the top cover assembly 30 can all be made of honeycomb paper. Honeycomb paper is inspired by the honeycomb structure in nature. Honeycomb paper has become an ideal protective material for fragile products due to its unique cushioning performance and environmental advantages. Compared with traditional plastic bubble cloth and pearl cotton, honeycomb paper not only has a better cushioning effect, but is also more environmentally friendly.

[0057] In addition, in some embodiments, the base assembly 10 may include a first substrate 11, a first bottom side plate 11112, a second bottom side plate 13, a third bottom side plate 14, and a fourth bottom side plate 15; the first substrate 11 has a first bottom side edge, a second bottom side edge 112, a third bottom side edge 113, and a fourth bottom side edge 114 that are sequentially connected along the circumferential direction of the first substrate 11, the first bottom side edge and the third bottom side edge 113 are spaced apart and opposite in position, and both the second bottom side edge 112 and the fourth bottom side edge 114 are located between the first bottom side edge and the third bottom side edge 113; the first bottom side plate 11112 is connected to the first bottom side edge, the second bottom side plate 13 is connected to the second bottom side edge 112, the third bottom side plate 14 is connected to the third bottom side edge 113, and the fourth bottom side plate 15 is connected to the fourth bottom side edge 114. The angles between the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, the fourth bottom side plate 15 and the first substrate 11 are all 90 degrees, and the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 enclose a first accommodation cavity, and one end of the fuselage 110 is carried in the first accommodation cavity; wherein, the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 are of an integrally formed structure.

[0058] Since the first bottom side plate 11112 is connected to the first bottom side, the second bottom side plate 13 is connected to the second bottom side 112, the third bottom side plate 14 is connected to the third bottom side 113, and the fourth bottom side plate 15 is connected to the fourth bottom side 114, each side of the first substrate 11 is equivalent to being connected with a bottom side plate. Since the angles between the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 and the first substrate 11 are all 90 degrees, the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 can enclose and form a first accommodation cavity. That is, the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 are all the cavity walls of the first accommodation cavity, and there is an accommodation space inside the first accommodation cavity. Thus, when the cold fan 100 needs to be packaged, one end of the body 110 of the cold fan 100 can be directly placed in the first accommodation cavity, and one end of the body 110 can be made to contact the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 respectively, so that the bottom support assembly 10 can bear the weight of the body 110. That is, the first substrate 11 can bear the weight of the body 110, and the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 can protect the periphery of one end of the body 110. In addition, the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 are of an integrally formed structure, which can avoid opening multiple sets of cutting dies for the bottom support assembly 10 and avoid manually pasting each component, effectively reducing costs and improving the production efficiency of the bottom support assembly 10. That is to say, by connecting the first bottom side plate 11112 to the first bottom side, the second bottom side plate 13 to the second bottom side 112, the third bottom side plate 14 to the third bottom side 113, and the fourth bottom side plate 15 to the fourth bottom side 114, and the angles between the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 and the first substrate 11 are all 90 degrees, not only can a first accommodation cavity that can accommodate one end of the body 110 be formed, making it convenient to package one end of the body 110, but also one end of the body 110 can be protected, and since the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 are of an integrally formed structure, the cost of the bottom support assembly 10 can also be reduced.

[0059] It should be noted that when the bottom support assembly 10 is made of honeycomb cardboard, at this time, when processing and forming the bottom support assembly 10, the areas of the first substrate 11, the first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, and the fourth bottom side plate 15 can be demarcated on the whole piece of honeycomb cardboard. A first indentation line is provided between the first substrate 11 and the first bottom side plate 11112, a second indentation line is provided between the first substrate 11 and the second bottom side plate 13, a third indentation line is provided between the first substrate 11 and the third bottom side plate 14, and a fourth indentation line is provided between the first substrate 11 and the fourth bottom side plate 15. Then, a slot is cut between the first bottom side plate 11112 and the second bottom side plate 13 to separate the first bottom side plate 11112 from the second bottom side plate 13, a slot is cut between the second bottom side plate 13 and the third bottom side plate 14 to separate the second bottom side plate 13 from the third bottom side plate 14, a slot is cut between the third bottom side plate 14 and the fourth bottom side plate 15 to separate the third bottom side plate 14 from the fourth bottom side plate 15, and a slot is cut between the fourth bottom side plate 15 and the first bottom side plate 11112 to separate the fourth bottom side plate 15 from the first bottom side plate 11112. Finally, the first bottom side plate 11112 can be bent along the first indentation line, the second bottom side plate 13 can be bent along the second indentation line, the third bottom side plate 14 can be bent along the third indentation line, and the fourth bottom side plate 15 can be bent along the fourth indentation line, and the angle between the first bottom side plate 11112 and the first substrate 11 is 90 degrees, the angle between the second bottom side plate 13 and the first substrate 11 is 90 degrees, the angle between the third bottom side plate 14 and the first substrate 11 is 90 degrees, the angle between the fourth bottom side plate 15 and the first substrate 11 is 90 degrees. The first bottom side plate 11112, the second bottom side plate 13, the third bottom side plate 14, the fourth bottom side plate 15, and the first substrate 11 can then enclose to form a first accommodation cavity. In this process, there is no need to open multiple sets of tooling dies for the bottom support assembly 10, and there is no need for manual pasting.

[0060] In addition, in the embodiments of the present application, the first bottom side plate 11112 abuts against the second bottom side plate 13, the second bottom side plate 13 abuts against the third bottom side plate 14, the third bottom side plate 14 abuts against the fourth bottom side plate 15, and the fourth bottom side plate 15 abuts against the first bottom side plate 11112. Among them, the length of the region of the first bottom side plate 11112 can be greater than the length of the first substrate 11, the length of the region of the third bottom side plate 14 can be greater than the length of the first substrate 11, the length of the region of the second bottom side plate 13 can be less than the width of the first substrate 11, and the length of the region of the fourth bottom side plate 15 can be less than the width of the first substrate 11. The length of the region of the first bottom side plate 11112 can be equal to the length of the region of the third bottom side plate 14, and the length of the region of the first bottom side plate 11112 can be a, the length of the first substrate 11 can be b, and the difference between a and b can be the thickness of the honeycomb cardboard. The length of the region of the second bottom side plate 13 can be equal to the length of the region of the fourth bottom side plate 15, the length of the region of the second bottom side plate 13 can be c, the width of the first substrate 11 can be d, and the difference between d and c can be the thickness of the honeycomb cardboard.

[0061] In addition, in some embodiments, avoidance grooves 121 are provided on the first bottom side plate 11112, the second bottom side plate 13, and the third bottom side plate 14, and the avoidance grooves 121 extend in a direction perpendicular to the first substrate 11.

[0062] Since the avoidance grooves 121 are provided on the first bottom side plate 11112, the second bottom side plate 13, and the third bottom side plate 14, after the fuselage 110 is placed in the first accommodation cavity, the avoidance grooves 121 can avoid the protruding components on the fuselage 110. Moreover, the existence of the avoidance grooves 121 can also prevent the bottom support assembly 10 from transmitting external force to the buckle position of the protruding components on the fuselage 110 and the middle component of the front shell panel of the fuselage 110. That is, by providing the avoidance grooves 121 on the first bottom side plate 11112, the second bottom side plate 13, and the third bottom side plate 14, when packaging the cold fan 100, it can effectively protect the cold fan 100.

[0063] It should be noted that in the embodiments of the present application, the length of the avoidance groove 121 on the first bottom side plate 11112 may be equal to the height of the first bottom side plate 11112, where the height of the first bottom side plate 11112 is the distance between the opposite ends of the first bottom side plate 11112 along the direction perpendicular to the first substrate 11. Through such a setting, it is equivalent to that the avoidance groove 121 on the first side plate extends to the first substrate 11, so that the length of the avoidance groove 121 on the first side plate is sufficient, so that the first avoidance groove 121 can effectively block the force on the bottom support assembly 10 and avoid the force being transmitted to the protruding part catch position on the fuselage 110. Similarly, the length of the avoidance groove 121 on the second bottom side plate 13 may be equal to the height of the second bottom side plate 13, and the length of the avoidance groove 121 on the third bottom side plate 14 may be equal to the height of the third bottom side plate 14.

[0064] In addition, in the embodiments of the present application, the avoidance groove 121 on the first bottom side plate 11112 may be located in the middle of the first bottom side plate 11112, the avoidance groove 121 on the second bottom side plate 13 may be located in the middle of the second bottom side plate 13, and the avoidance groove 121 on the third bottom side plate 14 may be located in the middle of the third bottom side plate 14. Of course, the avoidance groove 121 on the first bottom side plate 11112 may also be located at other positions of the first bottom side plate 11112, the avoidance groove 121 on the second bottom side plate 13 may also be located at other positions of the second bottom side plate 13, and the avoidance groove 121 on the third bottom side plate 14 may also be located at other positions of the third bottom side plate 14. In this regard, the embodiments of the present application do not make any limitations here.

[0065] In addition, in some embodiments, the first substrate 11 has a setting surface, and a first support assembly 40 is arranged on the setting surface. The first support assembly 40 is located in the first accommodation cavity, and the first support assembly 40 abuts against one end of the fuselage 110.

[0066] Since the first support component 40 is provided on the setting surface and the first support component 40 is located in the first accommodation cavity, when packaging the cold fan 100, once one end of the cold fan 100 is placed in the first accommodation cavity, one end of the fuselage 110 can abut against the first support component 40, and one end of the fuselage 110 will also abut against the first substrate 11. Thus, both the first support component 40 and the first substrate 11 support the fuselage 110, improving the support effect on the fuselage 110. Moreover, with the first support component 40 provided on the setting surface, the first support component 40 can support the bottom of the fuselage 110 of the cold fan 100, effectively increasing the force-bearing area at the bottom of the fuselage 110, and the first support component 40 can increase the bearing capacity of the first substrate 11, enhancing the structural strength of the bottom support assembly 10 and avoiding the problem of possible stacking deformation of the bottom support assembly 10. That is, by providing the first support component 40 on the setting surface, the bottom support assembly 10 can effectively carry the fuselage 110 and improve the structural strength of the bottom support assembly 10.

[0067] It should be noted that in the embodiments of the present application, the first support component 40 can be fixed on the setting surface. For example, the first support component 40 is adhered to the setting surface by an adhesive, so that the first support component 40 is fixed on the setting surface. Another example is that the first support component 40 is adhered to the setting surface by double-sided tape, so that the first support component 40 is fixed on the setting surface. The specific manner of fixing the first support component 40 on the setting surface is not limited in the embodiments of the present application.

[0068] In addition, in some embodiments, the first support component 40 includes a first support member 41 and a second support member 42; the first support member 41 and the second support member 42 are spaced apart along the direction from the second bottom side plate 13 to the fourth bottom side plate 15.

[0069] Since the first support member 41 and the second support member 42 are spaced apart along the direction from the second bottom side plate 13 to the fourth bottom side plate 15, when packaging the cold fan 100, once one end of the fuselage 110 of the cold fan 100 is located in the first accommodation cavity, the first support member 41 and the second support member 42 can support different positions at the bottom of the fuselage 110, making the bottom of the fuselage 110 more stably supported and avoiding the problem of possible shaking of the bottom of the fuselage 110 in the first accommodation cavity. That is, by setting the first support member 41 and the second support member 42 to be spaced apart along the direction from the second bottom side plate 13 to the fourth bottom side plate 15, it can be ensured that the fuselage 110 is relatively stable in the first accommodation cavity and avoid the problem of possible shaking of the fuselage 110.

[0070] In addition, in some embodiments, the shape of the projection of the first support member 41 on the installation surface is a first right triangle, and the shape of the projection of the second support member 42 on the installation surface is a second right triangle; wherein, the first right triangle is the same as the second right triangle, and the hypotenuse of the first right triangle faces the hypotenuse of the second right triangle.

[0071] Since one end of the fuselage 110 has a special structure, after the fuselage 110 is placed in the first accommodation cavity, in order to facilitate the support of one end of the fuselage 110, in the embodiments of the present application, the shape of the projection of the first support member 41 on the installation surface is set as a first right triangle, and the shape of the projection of the second support member 42 on the installation surface is set as a second right triangle. Thus, after one end of the fuselage 110 is placed in the first accommodation cavity, the first support member 41 and the second support member 42 can effectively support one end of the fuselage 110. In addition, the first right triangle is the same as the second right triangle, and the hypotenuse of the first right triangle faces the hypotenuse of the second right triangle, thereby restricting the positions of the first support member 41 and the second support member 42, and ensuring that the first support member 41 and the second support member 42 effectively support the fuselage 110 of the cold fan 100.

[0072] Certainly, in the embodiments of the present application, the shapes of the first support member 41 and the second support member 42 can also be other shapes. For example, the shape of the projection of the first support member 41 on the installation surface is a rectangle, and the shape of the projection of the second support member 42 on the installation surface is a rectangle. For another example, the shape of the projection of the first support member 41 on the installation surface is a pentagon, and the shape of the projection of the second support member 42 on the installation surface is a pentagon. In this regard, the embodiments of the present application do not make any limitations here.

[0073] In addition, in some embodiments, the cold fan 100 further includes an ice crystal box assembly 130, and the middle lining assembly 20 includes a first lining plate 21 and a second lining plate 22; the first lining plate 21 and the second lining plate 22 are stacked, and the ice crystal box assembly 130 is located between the first lining plate 21 and the second lining plate 22. The size of the first lining plate 21 is larger than that of the second lining plate 22, and the second lining plate 22 covers a part of the ice crystal box assembly 130. The size of the ice crystal box assembly 130 is smaller than that of the first lining plate 21, and there is a set distance between the edge of the ice crystal box assembly 130 and the edge of the first lining plate 21; the surface of the first lining plate 21 facing away from the second lining plate 22 abuts against the other end of the fuselage 110, and one end of the water tank 120 contacts the second lining plate 22 and the ice crystal box assembly 130 respectively.

[0074] Since the first lining plate 21 and the second lining plate 22 are stacked, and the ice crystal box assembly 130 is located between the first lining plate 21 and the second lining plate 22, when the cold fan 100 is packaged, it is equivalent to placing the ice crystal box assembly 130 in the middle of the cold fan 100, avoiding the ice crystal box assembly 130 being arranged in the top cover assembly 30 or the bottom support assembly 10, thereby effectively reducing the packaging volume. Since the size of the first lining plate 21 is larger than that of the second lining plate 22, and the second lining plate 22 covers part of the ice crystal box assembly 130, when the body 110 and the water tank 120 of the cold fan 100 are packaged, one end of the water tank 120 can respectively contact the second lining plate 22 and the ice crystal box assembly 130, and the second lining plate 22 can play a certain protective role for the ice crystal box assembly 130. And part of the position at one end of the water tank 120 protrudes, so that the protruding part can abut against the ice crystal box 131, and the non-protruding part abuts against the second lining plate 22. Thus, the second lining plate 22 is equivalent to filling the non-protruding part at one end of the water tank 120, avoiding the problem that the water tank 120 may shake. In addition, the size of the ice crystal box assembly 130 is smaller than that of the first lining plate 21, and there is a set distance between the edge of the ice crystal box assembly 130 and the edge of the first lining plate 21, which can effectively prevent the ice crystal box 131 from being impacted on all sides.

[0075] In addition, in some embodiments, the ice crystal box assembly 130 may include a plurality of ice crystal boxes 131, and the plurality of ice crystal boxes 131 are arranged around the center of the first lining plate 21.

[0076] Since the plurality of ice crystal boxes 131 are arranged around the center of the first lining plate 21, the area of the first lining plate 21 can be fully utilized, and more ice crystal boxes 131 can be arranged on the first lining plate 21. And in the embodiments of the present application, two adjacent ice crystal boxes 131 can be in contact, so that it is equivalent to the plurality of ice crystal boxes 131 being connected end to end, making the ice crystal boxes 131 not easy to shake on the first lining plate 21.

[0077] In addition, in some embodiments, the ice crystal box assembly 130 is fixed to the first lining plate 21 through the packaging film 001. Through such a setting, the packaging film 001 can limit the ice crystal box assembly 130, avoiding the problem that the ice crystal box assembly 130 is easy to shake on the first lining plate 21, resulting in the ice crystal box assembly 130 may fall during subsequent transportation, causing the ice crystal box 131 may be damaged. That is, fixing the ice crystal box assembly 130 to the first lining plate 21 through the packaging film 001 can effectively protect the ice crystal box assembly 130.

[0078] It should be noted that in the embodiments of the present application, the materials of the first liner 21 and the second liner 22 can both be honeycomb paperboard. Of course, the materials of the first liner 21 and the second liner 22 can also be other materials, and the embodiments of the present application do not limit this here. In addition, both the first liner 21 and the second liner 22 can be in a flat plate structure.

[0079] In addition, in the embodiments of the present application, when the ice crystal box assembly 130 includes multiple ice crystal boxes 131, the packaging film 001 can cover multiple ice crystal boxes 131 at the same time, so as to fix multiple ice crystal boxes 131 on the first liner 21 at the same time.

[0080] In addition, in some embodiments, the cold fan 100 may further include an ice crystal box assembly 130. The middle liner assembly 20 includes a third liner 23 and a middle support 24; the middle support 24 has a second accommodation cavity and an opening, and the opening communicates with the second accommodation cavity. The third liner 23 is disposed in the second accommodation cavity, and the ice crystal box assembly 130 is disposed on the third liner 23; one side of the middle support 24 facing away from the second accommodation cavity abuts against the other end of the fuselage 110, and one end of the water tank 120 contacts the ice crystal box assembly 130 respectively.

[0081] Since the middle support 24 has a second accommodation cavity and an opening, and the opening communicates with the second accommodation cavity, items can be placed into the second accommodation cavity through the opening. Thus, the third liner 23 can be placed in the second accommodation cavity through the opening, and then the ice crystal box assembly 130 is disposed on the third liner 23, that is, the ice crystal box assembly 130 is disposed on the surface of the third liner 23 facing the opening. Therefore, the cavity wall of the second accommodation cavity can protect the ice crystal box assembly 130 from external forces and also avoid the problem that the ice crystal box assembly 130 is likely to fall during transportation. In addition, when packaging the cold fan 100, the side of the middle support 24 facing away from the second accommodation cavity can abut against the other end of the fuselage 110, and one end of the water tank 120 contacts the ice crystal box assembly 130 respectively, so as to facilitate the packaging of the cold fan 100.

[0082] It should be noted that in the embodiments of the present application, when the ice crystal box assembly 130 includes multiple ice crystal boxes 131, multiple ice crystal boxes 131 are all disposed on the third liner 23, that is, multiple ice crystal boxes 131 are all located in the second accommodation cavity.

[0083] In addition, in some embodiments, the top cover assembly 30 includes a second base plate 31, a first top side plate 32, a second top side plate 33, a third top side plate 34, and a fourth top side plate 35. The second base plate 31 has a first top side edge 311, a second top side edge 312, a third top side edge 313, and a fourth top side edge 314 that are sequentially connected along the circumferential direction of the second base plate 31. The first top side edge 311 and the third top side edge 313 are spaced apart and opposite in position. The second top side edge 312 and the fourth top side edge 314 are both located between the first top side edge 311 and the third top side edge 313. The first top side plate 32 is connected to the first top side edge 311, the second top side plate 33 is connected to the second top side edge 312, the third top side plate 34 is connected to the third top side edge 313, and the fourth top side plate 35 is connected to the fourth top side edge 314. The angles between the first top side plate 32, the second top side plate 33, the third top side plate 34, the fourth top side plate 35, and the second base plate 31 are all 90 degrees. The second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34, and the fourth top side plate 35 enclose a third accommodation cavity, and the other end of the water tank 120 is located in the third accommodation cavity. Among them, the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34, and the fourth top side plate 35 are an integrally formed structure.

[0084] Since the first top side plate 32 is connected to the first top side edge 311, the second top side plate 33 is connected to the second top side edge 312, the third top side plate 34 is connected to the third top side edge 313, and the fourth top side plate 35 is connected to the fourth top side edge 314, each side edge of the second base plate 31 is equivalently connected with a top side plate. Since the angles between the first top side plate 32, the second top side plate 33, the third top side plate 34, the fourth top side plate 35 and the second base plate 31 are all 90 degrees, the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34 and the fourth top side plate 35 can enclose to form a third accommodation cavity. That is, the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34 and the fourth top side plate 35 are all the cavity walls of the third accommodation cavity, and there is an accommodation space inside the third accommodation cavity. Thus, when the cooling fan 100 needs to be packaged, the other end of the water tank 120 of the cooling fan 100 can be directly placed in the third accommodation cavity, and the other end of the water tank 120 can be made to contact the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34 and the fourth top side plate 35 respectively. The first top side plate 32, the second top side plate 33, the third top side plate 34 and the fourth top side plate 35 can protect the periphery of one end of the water tank 120. In addition, the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34 and the fourth top side plate 35 are of an integrally formed structure, which can avoid opening multiple sets of cutting dies for the top cover assembly 30 and avoid manually pasting each component, effectively reducing the cost and improving the production efficiency of the top cover assembly 30. That is to say, by connecting the first top side plate 32 to the first top side edge 311, the second top side plate 33 to the second top side edge 312, the third top side plate 34 to the third top side edge 313, and the fourth top side plate 35 to the fourth top side edge 314, and the angles between the first top side plate 32, the second top side plate 33, the third top side plate 34, the fourth top side plate 35 and the second base plate 31 are all 90 degrees, not only can a third accommodation cavity for accommodating the other end of the water tank 120 be formed, facilitating the packaging of the other end of the water tank 120, but also the other end of the water tank 120 can be protected. Moreover, since the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34 and the fourth top side plate 35 are of an integrally formed structure, the cost of the top cover assembly 30 can also be reduced.

[0085] It should be noted that when the top cover assembly 30 is made of honeycomb paperboard, during the processing of forming the top cover assembly 30, the areas of the second base plate 31, the first top side plate 32, the second top side plate 33, the third top side plate 34, and the fourth top side plate 35 can be demarcated on the whole honeycomb paperboard. A first folding line is provided between the second base plate 31 and the first top side plate 32, a second folding line is provided between the second base plate 31 and the second top side plate 33, a third folding line is provided between the second base plate 31 and the third top side plate 34, and a fourth folding line is provided between the second base plate 31 and the fourth top side plate 35. Then, a groove is cut between the first top side plate 32 and the second top side plate 33 to separate the first top side plate 32 from the second top side plate 33, a groove is cut between the second top side plate 33 and the third top side plate 34 to separate the second top side plate 33 from the third top side plate 34, a groove is cut between the third top side plate 34 and the fourth top side plate 35 to separate the third top side plate 34 from the fourth top side plate 35, and a groove is cut between the fourth top side plate 35 and the first top side plate 32 to separate the fourth top side plate 35 from the first top side plate 32. Finally, the first top side plate 32 can be bent along the first folding line, the second top side plate 33 can be bent along the second folding line, the third top side plate 34 can be bent along the third folding line, and the fourth top side plate 35 can be bent along the fourth folding line, and the included angle between the first top side plate 32 and the second base plate 31 is 90 degrees, the included angle between the second top side plate 33 and the second base plate 31 is 90 degrees, the included angle between the third top side plate 34 and the second base plate 31 is 90 degrees, and the included angle between the fourth top side plate 35 and the second base plate 31 is 90 degrees. The first top side plate 32, the second top side plate 33, the third top side plate 34, the fourth top side plate 35, and the second base plate 31 can then enclose to form the third accommodation cavity. In this process, there is no need to open multiple sets of cutting dies for the top cover assembly 30, and there is no need for manual pasting.

[0086] In addition, in the embodiment of the present application, the first top side plate 32 abuts against the second top side plate 33, the second top side plate 33 abuts against the third top side plate 34, the third top side plate 34 abuts against the fourth top side plate 35, and the fourth top side plate 35 abuts against the first top side plate 32. Among them, the length of the area of the first top side plate 32 can be greater than the length of the second base plate 31, the length of the area of the third top side plate 34 can be greater than the length of the second base plate 31, the length of the area of the second top side plate 33 is less than the width of the second base plate 31, and the length of the area of the fourth top side plate 35 is less than the width of the second base plate 31. The length of the area of the first top side plate 32 can be equal to the length of the area of the third top side plate 34, and the length of the area of the first top side plate 32 can be f, the length of the second base plate 31 can be m, and the difference between f and m can be the thickness of the honeycomb paperboard. The length of the area of the second top side plate 33 can be equal to the length of the area of the fourth top side plate 35, the length of the area of the second top side plate 33 can be n, the width of the second base plate 31 can be e, and the difference between e and n can be the thickness of the honeycomb paperboard.

[0087] In addition, in some embodiments, a splash guard 50 is provided on the surface of the second substrate 31 facing away from the third receiving cavity, and through holes are provided in the splash guard 50. The splash guard 50 is used to prevent water from splashing onto the surface of the second substrate 31 facing away from the third receiving cavity when the mobile water tank 120 is moved.

[0088] Since the splash guard 50 is provided on the surface of the second substrate 31 facing away from the third receiving cavity, after the cold fan 100 is packaged, when the mobile water tank 120 is moved, the splash guard 50 can effectively prevent the water in the water tank 120 from splashing onto the surface of the second substrate 31 facing away from the second receiving cavity, thereby ensuring that the second substrate 31 is dry, and further ensuring that the second substrate 31 continuously maintains a certain strength, playing a protective role for the water tank 120. That is, by providing the splash guard 50 on the surface of the second substrate 31 facing away from the third receiving cavity, effective protection for the water tank 120 can be ensured.

[0089] It should be noted that the size of the splash guard 50 can be smaller than the size of the second substrate 31, so that there is a set distance between the edge of the splash guard 50 and the edge of the second substrate 31, which can avoid the problem that the splash guard 50 is easily damaged.

[0090] In addition, in some embodiments, the top cover assembly 30 further includes a first partition 36 and a second partition 37; both the first partition 36 and the second partition 37 are fixed to the surface of the second substrate 31 facing away from the third receiving cavity, and both the first partition 36 and the second partition 37 are located in the through holes. The first partition 36 and the second partition 37 are distributed at intervals, and the opposite ends of the first partition 36 respectively abut against the hole walls of the through holes, and the opposite ends of the second partition 37 respectively abut against the hole walls of the through holes; wherein, the first partition 36 and the second partition 37 are arranged along the direction from the first top side plate 32 to the third top side plate 34.

[0091] Since both the first partition 36 and the second partition 37 are fixed to the surface of the second substrate 31 facing away from the third receiving cavity, and both the first partition 36 and the second partition 37 are located in the through holes, and the opposite ends of the first partition 36 respectively abut against the hole walls of the through holes, and the opposite ends of the second partition 37 respectively abut against the hole walls of the through holes, therefore, the first partition 36 can play a limiting role on the splash guard 50 to avoid the problem that the splash guard 50 may shake, and the second partition 37 can also play a limiting role on the splash guard 50 to avoid the problem that the splash guard 50 may shake. In addition, the first partition 36 and the second partition 37 are arranged along the direction from the first top side plate 32 to the third top side plate 34, so that the splash guard 50 can be limited at more positions, effectively ensuring that the position of the splash guard 50 is fixed and avoiding the problem that the splash guard 50 may shake. That is, by providing the first partition 36 and the second partition 37, the position of the splash guard 50 can be effectively ensured to be fixed and the splash guard 50 can be prevented from shaking.

[0092] In addition, in some embodiments, the top cover assembly 30 further includes a third partition 38 and a fourth partition; both the third partition 38 and the fourth partition are fixed to the surface of the second substrate 31 facing away from the third accommodation cavity, and both the third partition 38 and the fourth partition are located in the through hole. The third partition 38 and the fourth partition are both located between the first partition 36 and the second partition 37, and the third partition 38 and the fourth partition are spaced apart along the direction from the second top side plate 33 to the fourth top side plate 35; the cold air fan 100 further includes casters 140 and a remote controller 150. The casters 140 are located in the gap between the third partition 38 and the fourth partition, and the remote controller 150 is located on the side of the fourth partition facing away from the third partition 38, and the remote controller 150 is located in the through hole.

[0093] Since both the third partition 38 and the fourth partition are located in the through hole, both the third partition 38 and the fourth partition are located between the first partition 36 and the second partition 37, and the third partition 38 and the fourth partition are spaced apart along the direction from the second top side plate 33 to the fourth top side plate 35. Therefore, there is a gap between the third partition 38 and the fourth partition, and there is a gap between the fourth partition and the hole wall of the through hole of the wave baffle 50. Thus, the casters 140 of the cold air fan 100 can be placed in the gap between the third partition 38 and the fourth partition, and the remote controller 150 can be placed on the side of the fourth partition facing away from the third partition 38, and the remote controller 150 is located in the through hole. That is, it is equivalent to placing the remote controller 150 in the gap between the fourth partition and the hole wall of the through hole of the wave baffle 50, so that the casters 140 and the remote controller 150 are separated, avoiding the problem that the casters 140 may damage the remote controller 150. In addition, both the third partition 38 and the fourth partition are located between the first partition 36 and the second partition 37, and can also limit the first partition 36 and the second partition 37, avoiding the problem that the first partition 36 and the second partition 37 may become loose, resulting in a reduction in the effect of limiting the wave baffle 50. That is, by providing the third partition 38 and the fourth partition, by placing the casters 140 in the gap between the third partition 38 and the fourth partition and placing the remote controller 150 in the gap between the fourth partition and the hole wall of the through hole of the wave baffle 50, the remote controller 150 can be effectively protected, and the complete packaging of the cold air fan 100 can be ensured.

[0094] It should be noted that the first partition 36, the second partition 37, the third partition 38, and the fourth partition can all be adhered to the second substrate 31 by an adhesive. Of course, the first partition 36, the second partition 37, the third partition 38, and the fourth partition can also be adhered to the second substrate 31 by double-sided tape. In this regard, the embodiments of the present application do not make any limitations here.

[0095] In addition, in the embodiments of the present application, the first partition 36, the second partition 37, the third partition 38, and the fourth partition can all be honeycomb paperboards.

[0096] In addition, in some embodiments, a second support assembly 60 is provided on the second substrate 31. The second support assembly 60 is located in the third accommodation cavity and abuts against the other end of the water tank 120.

[0097] Since a counterweight is usually provided at the other end of the water tank 120, in order to effectively package the other end of the water tank 120 when packaging the water tank 120, in the embodiments of the present application, by arranging the second support assembly 60 on the second substrate 31 and the second support assembly 60 being located in the third accommodation cavity, when packaging the water tank 120, the portion of the other end of the water tank 120 without the counterweight can be made to abut against the second support assembly 60, so that the second support assembly 60 fills the portion of the other end of the water tank 120 without the counterweight, thereby ensuring the force balance at the other end of the water tank 120.

[0098] It should be noted that the second support assembly 60 can be a block structure.

[0099] In addition, in the embodiments of the present application, the cold fan 100 packaging assembly may further include a packing box. After packaging the cold fan 100 through the bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30, the packaged cold fan 100 can be placed in the packing box for subsequent transportation of the cold fan 100.

[0100] In the embodiment of the present application, since the bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30 are spaced apart, there is a gap between the bottom support assembly 10 and the middle lining assembly 20, and there is a gap between the middle lining assembly 20 and the top cover assembly 30. Therefore, when the cooling fan 100 needs to be packaged, one end of the fuselage 110 can be directly placed on the bottom support assembly 10, which is equivalent to one end of the fuselage 110 being supported by the bottom support assembly 10. Then, the middle lining assembly 20 is placed at the other end of the fuselage 110, which is equivalent to the fuselage 110 being located between the bottom support assembly 10 and the middle lining assembly 20. Then, one end of the water tank 120 is placed on the middle lining assembly 20, and finally, the top cover assembly 30 is placed at the other end of the water tank 120, which is equivalent to the water tank 120 being located between the middle lining assembly 20 and the top cover assembly 30. Thus, both the fuselage 110 and the water tank 120 of the cooling fan 100 are packaged, which is convenient for subsequent transportation of the cooling fan 100. In addition, the bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30 are all integrally formed structures, which can avoid the problem of opening multiple sets of die molds for the packaging components of the cooling fan 100 and manually pasting and fixing them after cutting the packaging materials. That is, in the embodiment of the present application, by setting the bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30, when packaging the cooling fan 100, the fuselage 110 of the cooling fan 100 can be directly arranged between the bottom support assembly 10 and the middle lining assembly 20, and the water tank 120 of the cooling fan 100 can be arranged between the middle lining assembly 20 and the top cover assembly 30, which is convenient for packaging the cooling fan 100. Moreover, the bottom support assembly 10, the middle lining assembly 20, and the top cover assembly 30 are all integrally formed structures, which can avoid opening multiple sets of die molds for the packaging components of the cooling fan 100, and can also avoid the problem of manually pasting and fixing after cutting the packaging materials, reducing the cost of the packaging components of the cooling fan 100 provided in the embodiment of the present application, and eliminating the need for manual pasting, thereby improving the production efficiency of the packaging components of the cooling fan 100. That is, in the embodiment of the present application, on the premise of facilitating the packaging of the cooling fan 100, the cost of the packaging components of the cooling fan 100 can be effectively reduced, and the production efficiency of the packaging components of the cooling fan 100 can be improved.

[0101] In the description of this specification, the descriptions referring to the terms "one embodiment", "some embodiments", "illustrative embodiments", "examples", "specific examples", or "some examples", etc. 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 present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0102] Although embodiments of the present application have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present application. The scope of the present application is defined by the claims and their equivalents.

Claims

1. A cooling fan packaging assembly, characterized in that: Used for packaging a cooling fan, the cooling fan comprises a body and a water tank, and the cooling fan packaging assembly comprises: a bottom support assembly, a middle lining assembly and a top cover assembly; The bottom bracket assembly, the middle liner assembly and the top cover assembly are arranged at intervals, one end of the fuselage is supported by the bottom bracket assembly, the middle liner assembly is arranged at the other end of the fuselage, one end of the water tank is supported by the middle liner assembly, and the top cover assembly is arranged at the other end of the water tank; Wherein, the bottom support assembly, the middle lining assembly and the top cover assembly are all integrally formed structures.

2. The cooling fan packaging assembly according to claim 1, characterized in that: The bottom bracket assembly includes a first base plate, a first bottom side plate, a second bottom side plate, a third bottom side plate and a fourth bottom side plate; The first substrate has a first bottom side edge, a second bottom side edge, a third bottom side edge and a fourth bottom side edge connected in sequence along the circumferential direction of the first substrate, the first bottom side edge and the third bottom side edge are spaced apart and opposite to each other, and the second bottom side edge and the fourth bottom side edge are both located between the first bottom side edge and the third bottom side edge; The first bottom side panel is connected to the first bottom side edge, the second bottom side panel is connected to the second bottom side edge, the third bottom side panel is connected to the third bottom side edge, and the fourth bottom side panel is connected to the fourth bottom side edge. The angles between the first bottom side panel, the second bottom side panel, the third bottom side panel, and the fourth bottom side panel and the first substrate are all 90 degrees. The first substrate, the first bottom side panel, the second bottom side panel, the third bottom side panel, and the fourth bottom side panel are enclosed to form a first accommodating cavity. One end of the fuselage is carried in the first accommodating cavity. Wherein, the first substrate, the first bottom side plate, the second bottom side plate, the third bottom side plate and the fourth bottom side plate are an integrally formed structure.

3. The cooling fan packaging assembly according to claim 2, characterized in that: The first bottom side plate, the second bottom side plate and the third bottom side plate are all provided with avoidance grooves, and the avoidance grooves extend in a direction perpendicular to the first base plate.

4. The cooling fan packaging assembly according to claim 2, characterized in that: The first substrate has a setting surface, and a first supporting component is arranged on the setting surface. The first supporting component is located in the first accommodating cavity, and the first supporting component abuts against one end of the fuselage.

5. The cooling fan packaging assembly according to claim 4, characterized in that: The first support assembly includes a first support member and a second support member; The first supporting member and the second supporting member are spaced apart and distributed along a direction from the second bottom side plate to the fourth bottom side plate.

6. The cooling fan packaging assembly according to claim 5, characterized in that: The projection of the first support member on the setting surface is in the shape of a first right triangle, and the projection of the second support member on the setting surface is in the shape of a second right triangle; The first right triangle is identical to the second right triangle, and the hypotenuse of the first right triangle faces the hypotenuse of the second right triangle.

7. The cooling fan packaging assembly according to claim 1, characterized in that: The cooling fan further comprises an ice crystal box assembly, and the middle lining assembly comprises a first lining plate and a second lining plate; The first lining plate and the second lining plate are stacked, and the ice crystal box assembly is located between the first lining plate and the second lining plate, the size of the first lining plate is larger than the size of the second lining plate, and the second lining plate covers part of the ice crystal box assembly, the size of the ice crystal box assembly is smaller than the size of the first lining plate, and there is a set distance between the edge of the ice crystal box assembly and the edge of the first lining plate; The surface of the first lining plate facing away from the second lining plate abuts against the other end of the fuselage, and one end of the water tank contacts the second lining plate and the ice crystal box assembly respectively.

8. The cooling fan packaging assembly according to claim 7, characterized in that: The ice crystal box assembly includes a plurality of ice crystal boxes, and the plurality of ice crystal boxes are arranged around the center of the first lining plate.

9. The cooling fan package assembly according to claim 7, characterized in that: The ice crystal box assembly is fixed to the first lining plate through a packaging film.

10. The cooling fan package assembly according to claim 1, characterized in that: The cooling fan further comprises an ice crystal box assembly, and the middle lining assembly comprises a third lining plate and a middle support member; The middle support has a second accommodating cavity and an opening, the opening is communicated with the second accommodating cavity, the third lining plate is arranged in the second accommodating cavity, and the ice crystal box assembly is arranged on the third lining plate; The side of the middle support member facing away from the second accommodating cavity abuts against the other end of the fuselage, and one end of the water tank contacts the ice crystal box assembly respectively.

11. The cooling fan package assembly according to claim 1, characterized in that: The top cover assembly includes a second base plate, a first top side plate, a second top side plate, a third top side plate and a fourth top side plate; The second substrate has a first top side edge, a second top side edge, a third top side edge and a fourth top side edge connected in sequence along the circumferential direction of the second substrate, the first top side edge and the third top side edge are spaced apart and opposite to each other, and the second top side edge and the fourth top side edge are both located between the first top side edge and the third top side edge; The first top side plate is connected to the first top side edge, the second top side plate is connected to the second top side edge, the third top side plate is connected to the third top side edge, and the fourth top side plate is connected to the fourth top side edge. The angles between the first top side plate, the second top side plate, the third top side plate, and the fourth top side plate and the second base plate are all 90 degrees, and the second base plate, the first top side plate, the second top side plate, the third top side plate, and the fourth top side plate are enclosed to form a third accommodating cavity, and the other end of the water tank is located in the third accommodating cavity; Wherein, the second substrate, the first top side plate, the second top side plate, the third top side plate and the fourth top side plate are an integrally formed structure.

12. The cooling fan package assembly according to claim 11, characterized in that: A wave-breaking plate is provided on the surface of the second substrate away from the third accommodating cavity, and a through hole is provided on the wave-breaking plate. The wave-breaking plate is used to prevent water from splashing onto the surface of the second substrate away from the third accommodating cavity when the water tank is moved.

13. The cooling fan package assembly according to claim 12, characterized in that: The top cover assembly also includes a first baffle and a second baffle; The first partition plate and the second partition plate are both fixed to the surface of the second substrate away from the third accommodating cavity, and the first partition plate and the second partition plate are both located in the through hole, the first partition plate and the second partition plate are spaced apart, and opposite ends of the first partition plate respectively abut against the hole wall of the through hole, and opposite ends of the second partition plate respectively abut against the hole wall of the through hole; Wherein, the first partition plate and the second partition plate are arranged along the direction from the first top side plate to the third top side plate.

14. The cooling fan package assembly according to claim 13, characterized in that: The top cover assembly also includes a third baffle and a fourth baffle; The third partition plate and the fourth partition plate are both fixed to the surface of the second substrate away from the third accommodating cavity, and the third partition plate and the fourth partition plate are both located in the through hole, and the third partition plate and the fourth partition plate are both located between the first partition plate and the second partition plate, and the third partition plate and the fourth partition plate are spaced apart from each other in the direction from the second top side plate to the fourth top side plate; The cooling fan also includes a caster and a remote controller, wherein the caster is located in the gap between the third partition plate and the fourth partition plate, the remote controller is located on a side of the fourth partition plate away from the third partition plate, and the remote controller is located in the through hole.

15. The cooling fan package assembly according to claim 11, characterized in that: A second supporting assembly is disposed on the second substrate. The second supporting assembly is located in the third accommodating cavity, and the second supporting assembly abuts against the other end of the water tank.