Buffer structure and lamp packaging assembly

Through the buffer structure formed by cutting and folding of cardboard, corrugated paper is used as an environmentally friendly material, the problem of poor environmental protection of foam or pearl cotton in lamp transportation is solved, and environmentally friendly and stable buffer protection effect is achieved.

CN223267286UActive Publication Date: 2025-08-26SUZHOU OPPLE LIGHTING
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Patent Information

Application Number
CN202422580351.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-08-26
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

The use of foam or pearl cotton as cushioning materials during the transportation of existing lamps has poor environmental protection, resulting in environmental pollution.

Method used

The buffer structure consisting of cardboard cutting and folding is adopted, and corrugated paper is used as an environmentally friendly material. It can be assembled and fixed through slot and crease design, avoiding the use of adhesives, and combining reinforcements to enhance structural strength and stability.

Benefits of technology

It reduces environmental pollution, reduces production costs, improves the environmental protection and stability of the buffer structure, and effectively protects the safety of the packaging parts to be packaged during transportation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a buffer structure and lamp package subassembly, the buffer structure includes first paperboard, first paperboard includes first board body, second board body and third board body, first board body includes bottom board, first side board and second side board, first side board and second side board are connected to bottom board both ends along the first direction respectively, the folding plates are folded towards the same side of the bottom plate; the second plate body and the third plate body are connected to the two ends, in the second direction, of the bottom plate respectively, the first side plate and the second side plate are provided with a first inserting groove and a second inserting groove respectively, the second plate body can be inserted into the first inserting groove after being folded, and the third plate body can be inserted into the second inserting groove after being folded. The paperboard as an environment-friendly material has the advantage of being easy to degrade, and the buffer structure can be assembled through insertion without additionally using an adhesive, so that the pollution to the environment can be reduced to a certain extent.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, in particular to a buffer structure and a lamp packaging component. Background Art

[0002] As living standards improve, the styles of lamps are becoming more diverse. During transportation, lamps need to be packaged in boxes. To prevent the lamps from shaking and being damaged inside the boxes, conventional packaging materials such as foam or pearl cotton are often used as cushioning materials. However, foam or pearl cotton are difficult to degrade and have poor environmental performance. Excessive use of these cushioning materials inevitably causes environmental pollution. Utility Model Content

[0003] The utility model discloses a buffer structure and a lamp packaging component, which solves the problem of poor environmental protection in the related art of filling foam or pearl cotton in a packaging box as a buffer material.

[0004] In order to solve the above technical problems, the utility model is achieved as follows:

[0005] In a first aspect, the technical solution of the present utility model discloses a buffer structure, which is formed by cutting and folding cardboard, and the buffer structure includes: a first cardboard, the first cardboard includes a first plate body, a second plate body and a third plate body;

[0006] The first plate body includes a bottom plate, a first side plate, and a second side plate. The first side plate and the second side plate are respectively connected to two ends of the bottom plate along a first direction and folded toward the same side of the bottom plate. A first fold is respectively provided at the connection between the first side plate and the bottom plate and at the connection between the second side plate and the bottom plate.

[0007] The second plate and the third plate are respectively connected to two ends of the bottom plate along the second direction, and a second fold is respectively provided at the connection between the second plate and the bottom plate and at the connection between the third plate and the bottom plate;

[0008] The second plate and the third plate are respectively provided with a third fold extending along the first direction, and the first side plate and the second side plate are respectively provided with a first slot and a second slot, so that the second plate is inserted into the first slot after being folded along the second fold and the third fold, and the third plate is inserted into the second slot after being folded along the second fold and the third fold;

[0009] The first direction is the width direction of the bottom plate, and the second direction is the length direction of the bottom plate.

[0010] Optionally, the first side plate and the second side plate are respectively provided with a third slot, and the third slot is located between the first slot and the second slot;

[0011] The buffer structure further includes a reinforcement member, which is inserted into the third slot.

[0012] Optionally, the reinforcement is formed by folding a second paperboard, the second paperboard includes a fourth plate, a fifth plate, and a sixth plate, the fifth plate and the sixth plate are respectively connected to opposite ends of the fourth plate and folded toward the same side of the fourth plate, and a fourth fold is respectively provided at the connection between the fifth plate and the fourth plate and at the connection between the sixth plate and the fourth plate;

[0013] The first side plate is provided with two third slots at intervals along the second direction, the second side plate is provided with two third slots at intervals along the second direction, and the fifth plate body and the sixth plate body are respectively inserted into the corresponding third slots.

[0014] Optionally, the fifth board and the sixth board are respectively provided with a fourth slot, and the fourth slot is plugged into the third slot accordingly.

[0015] Optionally, the bottom plate, the first side plate and the second side plate form a receiving space, and the receiving space is used to place items to be packaged;

[0016] The reinforcement member is provided with a first limiting groove, and the first limiting groove is used for limiting cooperation with the to-be-packaged item.

[0017] Optionally, the second plate body is provided with a second limiting groove, which is arranged opposite to the first limiting groove and is used for limiting cooperation with the item to be packaged.

[0018] Optionally, the second plate is provided with two third folds extending along the first direction, and the two third folds are arranged at intervals along the second direction to divide the second plate into a first folding portion, a second folding portion, and a third folding portion that are folded in sequence, the first folding portion is connected to the bottom plate through the second fold, and the third folding portion is provided with a fifth slot, and the fifth slot is correspondingly plugged into the first slot;

[0019] The third plate body is provided with two third folds extending along the first direction, and the two third folds are arranged at intervals along the second direction to divide the third plate body into a fourth folding portion, a fifth folding portion and a sixth folding portion folded in sequence, the fourth folding portion is connected to the bottom plate through the second fold, and the sixth folding portion is provided with a sixth slot, and the sixth slot is correspondingly plugged into the second slot.

[0020] Optionally, the surface of the bottom plate facing away from the receiving space has a first contact plane, and the first contact plane is used to fit with the surface of the to-be-packaged item.

[0021] In a second aspect, the technical solution of the present utility model discloses a lamp packaging assembly, comprising: an outer packaging and the above-mentioned buffer structure;

[0022] The outer packaging is provided with an inner cavity, and the inner cavity is used to place the items to be packaged;

[0023] The buffer structure is provided in the inner cavity and is used for elastically supporting between the outer package and the item to be packaged.

[0024] Optionally, the second plate body and the third plate body respectively have a second contact plane, and the second contact plane is used to fit with the inner surface of the outer packaging.

[0025] The technical solution adopted by the utility model can achieve the following technical effects:

[0026] The buffer structure disclosed in the technical solution of the utility model is composed of cardboard that is cut and folded. The buffer structure includes a first cardboard, the first cardboard includes a first plate body, a second plate body and a third plate body, the first plate body includes a bottom plate, a first side plate and a second side plate, the first side plate and the second side plate are respectively connected to the two ends of the bottom plate along the first direction, and are folded toward the same side of the bottom plate, and the connection between the first side plate and the bottom plate and the connection between the second side plate and the bottom plate are respectively provided with a first fold; the second plate body and the third plate body are respectively connected to the two ends of the bottom plate along the second direction, and the connection between the second plate body and the bottom plate and the connection between the third plate body and the bottom plate are respectively provided with a second fold, and the second plate body and the third plate body are respectively provided with a third fold extending along the first direction. Since cardboard is an environmentally friendly material with the advantage of being easily degradable, it can reduce pollution to the environment to a certain extent; in addition, the first side panel and the second side panel are respectively provided with a first slot and a second slot, and the second panel can be folded along the second crease and the third crease and then inserted into the first slot, and the third panel can be folded along the second crease and the third crease and then inserted into the second slot, so that the buffer structure can be assembled and fixed without the use of additional adhesive, further reducing environmental pollution. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 This is a schematic structural diagram of the first paperboard disclosed in an embodiment of the utility model;

[0028] Figure 2 A schematic diagram of a buffer structure disclosed in an embodiment of the present utility model;

[0029] Figure 3 This is a schematic diagram of the assembly structure of the buffer structure and the items to be packaged disclosed in an embodiment of the present utility model;

[0030] Figure 4 An exploded view of the buffer structure disclosed in an embodiment of the present utility model;

[0031] Figure 5 This is a schematic structural diagram of a reinforcement member disclosed in an embodiment of the present utility model;

[0032] Figure 6 This is a schematic structural diagram of the second paperboard disclosed in an embodiment of the utility model;

[0033] Figure 7 This is a schematic structural diagram of a lamp packaging assembly disclosed in an embodiment of the present utility model.

[0034] Description of reference numerals:

[0035] 100-buffer structure, 101-first direction, 102-second direction, 110-first paperboard, 111-first board, 1111-bottom board, 1112-first side board, 1113-second side board, 1114-first fold, 1115-first slot, 1116-second slot, 1117-third slot, 112-second board, 1121-first folding portion, 1122-second folding portion, 1123-third folding portion, 1124 - second limiting slot, 1125 - fifth slot, 113 - third plate, 1131 - fourth folding portion, 1132 - fifth folding portion, 1133 - sixth folding portion, 1134 - sixth slot, 114 - second fold, 115 - third fold, 120 - second paperboard, 121 - fourth plate, 122 - fifth plate, 123 - sixth plate, 124 - fourth fold, 125 - fourth slot, 126 - first limiting slot;

[0036] 200-outer packaging;

[0037] 300-Pieces to be packed. DETAILED DESCRIPTION

[0038] To make the objectives, technical solutions, and advantages of the present invention more clearly apparent, the following will provide a clear and complete description of the technical solutions of the present invention in conjunction with specific embodiments of the present invention and the corresponding drawings. Obviously, the embodiments described are only some of the embodiments of the present invention, not all of them. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without inventive effort are also within the scope of protection of the present invention.

[0039] The terms "first," "second," and the like in the specification and claims of the present invention are used to distinguish similar objects, and are not intended to describe a particular order or precedence. It should be understood that such terms are interchangeable where appropriate, such that the embodiments of the present invention can be implemented in an order other than that illustrated or described herein. Furthermore, the terms "first," "second," and the like generally distinguish objects of a class and do not limit the number of objects. For example, the first object may be one or more.

[0040] The technical solutions disclosed in various embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0041] Please refer to Figures 1 to 7 The present embodiment of the utility model discloses a buffer structure 100. The buffer structure 100 is formed by cutting and folding cardboard. The cardboard can be made of corrugated paper. Due to its strong plasticity and support properties, corrugated paper can provide good support and protection for the package 300. Corrugated paper is also easy to degrade and is not prone to environmental pollution. Corrugated paper can be further divided into single-faced corrugated paper, double-faced corrugated paper, triple-layer corrugated paper, etc. The specific type can be selected according to actual packaging needs, and the present embodiment of the utility model does not limit this.

[0042] The above-mentioned buffer structure 100 may include a first paperboard 110, such as Figures 1 to 2 As shown, the first paperboard 110 may include a first board 111 , a second board 112 and a third board 113 . The first board 111 , the second board 112 and the third board 113 may be formed by cutting and folding the same paperboard. Figure 1The directions indicated by the two arrows in the figure respectively represent the first direction 101 and the second direction 102. The first plate body 111 may include a bottom plate 1111, a first side plate 1112, and a second side plate 1113. The first side plate 1112 and the second side plate 1113 are respectively connected to the ends of the bottom plate 1111 along the first direction 101, and the first side plate 1112 and the second side plate 1113 are folded toward the same side of the bottom plate 1111. To facilitate folding of the first side plate 1112 and the second side plate 1113, first folds 1114 may be provided at the connection between the first side plate 1112 and the bottom plate 1111 and at the connection between the second side plate 1113 and the bottom plate 1111. The first folds 1114 may be formed by stamping or cutting. After being folded, the bottom plate 1111, the first side plate 1112, and the second side plate 1113 may enclose a three-dimensional support structure. The items to be packaged 300 are usually placed in cartons or wooden boxes for transportation. Since there is inevitably a fitting gap between the inner wall of the carton or wooden box and the items to be packaged 300, this will cause the items to be packaged 300 to shake in the carton or wooden box. The above-mentioned three-dimensional support structure can be used to fill the fitting gap to support the items to be packaged 300 and prevent them from shaking.

[0043] The second plate 112 and the third plate 113 are respectively connected to the two ends of the bottom plate 1111 along the second direction 102. The connection between the second plate 112 and the bottom plate 1111 and the connection between the third plate 113 and the bottom plate 1111 are respectively provided with a second fold 114. Similarly, the second fold 114 can be formed by punching or cutting. By providing the second fold 114, the second plate 112 and the third plate 113 can be folded toward the first plate 111. Figure 1 As shown, the first direction 101 and the second direction 102 are explained in combination with the specific shape of the bottom plate 1111. For example, the bottom plate 1111 can be a rectangle, the first direction 101 can be the width direction of the bottom plate 1111, and the second direction 102 can be the length direction of the bottom plate 1111. The first side plate 1112 and the second side plate 1113 are respectively connected to the two longer sides of the bottom plate 1111, and the second plate body 112 and the third plate body 113 are respectively connected to the two shorter sides of the bottom plate 1111.

[0044] In order to facilitate the folding of the second plate 112 and the third plate 113 toward the first plate 111 respectively, third folds 115 extending along the first direction 101 can be further provided on the second plate 112 and the third plate 113 respectively. The number of third folds 115 on the second plate 112 and the third plate 113 can be provided according to the specific folding method of the second plate 112 and the third plate 113, as long as the second plate 112 and the third plate 113 can be folded toward the first plate 111 respectively.

[0045] The purpose of folding the second plate 112 and the third plate 113 is to cooperate with the first plate 111 to form a stable three-dimensional support structure. After folding, the second plate 112 and the third plate 113 can be fixed to the first plate 111 by bonding. Considering that the use of adhesives will also cause certain pollution and increase production costs, based on this situation, a first slot 1115 and a second slot 1116 can be respectively provided at the edge of the first side panel 1112 and the edge of the second side panel 1113, so that the second plate 112 can be inserted into the first slot 1115 after folding along the second fold 114 and the third fold 115, and the third plate 113 can be inserted into the second slot 1116 after folding along the second fold 114 and the third fold 115, thereby realizing the combined fixation between the first plate 111, the second plate 112 and the third plate 113. Since no adhesive is required, environmental protection is further improved.

[0046] Furthermore, for the three-dimensional support structure formed by folding the bottom plate 1111, the first side plate 1112 and the second side plate 1113, since the second plate body 112 and the third plate body 113 are respectively connected to the two ends of the bottom plate 1111 along the second direction 102, the three-dimensional support structure can be respectively clamped and fixed from the two ends along the second direction 102, thereby improving the structural strength and stability of the three-dimensional support structure to a certain extent, making it less likely for the buffer structure 100 to deform, thereby improving the buffer protection effect of the buffer structure 100.

[0047] From the above description, it can be seen that the buffer structure 100 disclosed in the embodiment of the present invention improves the relevant technology. Since cardboard has the advantage of being easily degradable as an environmentally friendly material, it can reduce the pollution caused to the environment to a certain extent; and the first side panel 1112 and the second side panel 1113 are respectively provided with a first slot 1115 and a second slot 1116. The second plate body 112 can be folded along the second fold 114 and the third fold 115 and then inserted into the first slot 1115. The third plate body 113 can be folded along the second fold 114 and the third fold 115 and then inserted into the second slot 1116. The combination and fixation of the buffer structure 100 can be achieved without the use of additional adhesives, thereby further reducing environmental pollution.

[0048] like Figures 2 to 7As shown, considering that the first plate 111 may have insufficient strength when its extension is relatively long, the buffer structure 100 may further include a reinforcement member. The reinforcement member may be in the form of a plate, column, or other structure. The reinforcement member may be disposed on the first plate 111 to provide structural reinforcement for the first plate 111. The reinforcement member may be connected to the first plate 111 by bonding, snapping, riveting, or the like. In an optional embodiment of the present application, a third slot 1117 may be provided on each of the first side plate 1112 and the second side plate 1113. The third slot 1117 is located between the first slot 1115 and the second slot 1116. The reinforcement member may be installed by inserting into the third slot 1117. The number of third slots 1117 may be at least two. For example, one third slot 1117 may be provided on each of the first side plate 1112 and the second side plate 1113. Alternatively, more than one third slot 1117 may be provided on each of the first side plate 1112 and the second side plate 1113 to enhance the stability of the reinforcement member installation.

[0049] By using the above-mentioned reinforcement member in combination with the second plate 112 and the third plate 1133 , the three-dimensional support structure described above can be clamped and fixed at three positions, further improving the structural strength and stability of the buffer structure 100 .

[0050] The reinforcement member can be formed by folding the second paperboard 120, and the second paperboard 120 can also be cut from corrugated paper. Specifically, Figures 2 to 6 As shown, the second paperboard 120 may include a fourth plate 121, a fifth plate 122, and a sixth plate 123. The fifth plate 122 and the sixth plate 123 are respectively connected to opposite ends of the fourth plate 121. The fifth plate 122 and the sixth plate 123 are folded toward the same side of the fourth plate 121 to form a U-shaped reinforcement. To facilitate folding of the fifth plate 122 and the sixth plate 123, fourth folds 124 may be provided at the connection between the fifth plate 122 and the fourth plate 121 and at the connection between the sixth plate 123 and the fourth plate 121. The fourth folds 124 may be formed by stamping or cutting.

[0051] Regarding the specific structure of the reinforcement formed by folding the second cardboard 120, the first side panel 1112 is provided with two third slots 1117 spaced apart along the second direction 102, and the second side panel 1113 is also provided with two third slots 1117 spaced apart along the second direction 102. The fifth plate 122 and the sixth plate 123 can be respectively inserted into the corresponding third slots 1117 to realize the assembly of the reinforcement and the first plate 111.

[0052] like Figures 2 to 6As shown, the fifth plate 122 and the sixth plate 123 are each provided with a fourth slot 125. The number of the fourth slots 125 and the third slots 1117 can be equal and correspond one to one. The corresponding insertion of the fourth slots 125 and the third slots 1117 can achieve stable assembly of the reinforcement member and the first plate 111. Furthermore, the mutual limiting action of the third slots 1117 and the fourth slots 125 can also prevent relative sliding between the reinforcement member and the first plate 111.

[0053] Considering that the lighting fixture has many parts and components, in order to improve the space utilization rate in the inner cavity, the buffer structure 100 can not only play an elastic buffering role, but also have a certain storage function. Specifically, the bottom plate 1111, the first side plate 1112 and the second side plate 1113 together form a storage space, which can be used to place the items to be packaged 300. It should be noted that the items to be packaged 300 mentioned here are different from the placement positions of the items to be packaged 300 described above. Figure 3 and Figure 7 As shown, the package 300 is located below the buffer structure 100. The buffer structure 100 is mainly used to buffer between the package 300 and the outer package 200. Figure 2 The item to be packaged 300 shown in FIG is placed in the accommodation space, and the buffer structure 100 is mainly used to receive the item to be packaged 300 .

[0054] Further, if Figure 2 、 Figure 5 and Figure 6 As shown, taking the item 300 to be packaged as an example of being placed in the accommodation space, in order to prevent the item 300 to be packaged from shaking in the accommodation space, a first limiting groove 126 can be provided on the reinforcement member, and the end of the item 300 to be packaged can be extended into the first limiting groove 126 to achieve limitation. The first limiting groove 126 cooperates with the limiting function of the item 300 to be packaged, so that the item 300 to be packaged is in a relatively stable state in the accommodation space.

[0055] In addition, if Figure 1 and Figure 2 As shown, the second plate body 112 is provided with a second limiting groove 1124, and the second limiting groove 1124 is arranged opposite to the first limiting groove 126. The first limiting groove 126 and the second limiting groove 1124 are respectively located at both ends of the item to be packaged 300. The end of the item to be packaged 300 can be extended into the first limiting groove 126 to achieve limitation, and the second limiting groove 1124 can also cooperate with the item to be packaged 300 for limitation. By utilizing the dual limiting effect of the first limiting groove 126 and the second limiting groove 1124, the stability of the item to be packaged 300 in the accommodating space can be further improved.

[0056] like Figures 1 to 4As shown, the second plate 112 is provided with two third folds 115 extending along the first direction 101, and the two third folds 115 are arranged at intervals along the second direction 102, dividing the second plate 112 into a first folded portion 1121, a second folded portion 1122, and a third folded portion 1123, which are folded in sequence. The first folded portion 1121, the second folded portion 1122, and the third folded portion 1123 are connected to each other via the third folds 115. In addition, the first folded portion 1121 is connected to the bottom plate 1111 via the second fold 114, and the third folded portion 1123 is provided with a fifth slot 1125. When the second plate 112 is folded onto the first plate 111, the fifth slot 1125 can be plugged into the first slot 1115, thereby further improving the reliability of the connection between the first plate 111 and the second plate 112.

[0057] Likewise, if Figures 1 to 4 As shown, the third plate 113 is also provided with two third folds 115 extending along the first direction 101. The two third folds 115 are arranged at intervals along the second direction 102, dividing the third plate 113 into a fourth folded portion 1131, a fifth folded portion 1132, and a sixth folded portion 1133, which are folded in sequence. The fourth folded portion 1131, the fifth folded portion 1132, and the sixth folded portion 1133 are connected to each other via the third folds 115. In addition, the fourth folded portion 1131 is connected to the bottom plate 1111 via the second fold 114, and the sixth folded portion 1133 is provided with a sixth slot 1134. When the third plate 113 is folded onto the first plate 111, the sixth slot 1134 can be plugged into the second slot 1116, thereby further improving the reliability of the connection between the first plate 111 and the third plate 113.

[0058] In an optional embodiment of the present application, taking the case where the item to be packaged 300 is placed under the buffer structure 100 as an example, the surface of the bottom plate 1111 facing away from the accommodating space has a first contact plane, and the first contact plane is used to fit with the surface of the item to be packaged 300, thereby avoiding shaking between the buffer structure 100 and the item to be packaged 300.

[0059] Please refer to Figure 7 The present invention also discloses a lamp packaging assembly. The disclosed lamp packaging assembly may include an outer packaging 200 and the aforementioned buffer structure 100. The outer packaging 200 has an inner cavity for accommodating items 300 to be packaged. The items 300 to be packaged may include lighting fixtures such as desk lamps, spotlights, and streetlights, as well as related parts and accessories. The outer packaging 200 may be made of corrugated paper, wood, or the like, and may be shaped like a cuboid or a cube.

[0060] The buffer structure 100 is arranged in the inner cavity of the outer packaging 200. When the item to be packaged 300 is placed in the inner cavity of the outer packaging 200, the buffer structure 100 can be located between the item to be packaged 300 and the outer packaging 200. The buffer structure 100 can play the role of elastic support between the outer packaging 200 and the item to be packaged 300 to prevent the item to be packaged 300 from shaking or being damaged in the inner cavity.

[0061] To enhance the stability of the cushioning structure 100, the outer packaging 200, and the item to be packaged 300, the second plate 112 and the third plate 113 each have a second contact surface. This second contact surface is designed to mate with the inner surface of the outer packaging 200, thereby preventing any shaking between the cushioning structure 100 and the outer packaging 200. Furthermore, a contact surface can also be provided on the reinforcement member, allowing the reinforcement member to mate with the inner surface of the outer packaging 200. This design ensures that the cushioning structure 100 provides stable support and protection between the item to be packaged 300 and the outer packaging 200, further enhancing the safety of the item to be packaged 300 during transportation.

[0062] The above embodiments of the present invention focus on the differences between the various embodiments. As long as the different optimization features between the various embodiments are not contradictory, they can be combined to form a better embodiment. Considering the simplicity of the text, they will not be repeated here.

[0063] The embodiments of the present invention are described above in conjunction with the accompanying drawings, but the present invention is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of the present invention, ordinary technicians in this field can also make many forms without departing from the scope of protection of the purpose of the present invention and the claims, all of which are within the protection of the present invention.

Claims

1. A buffer structure, made of cardboard by cutting and folding, characterized in that: The buffer structure includes: a first paperboard, the first paperboard including a first plate body, a second plate body and a third plate body; The first plate body includes a bottom plate, a first side plate, and a second side plate. The first side plate and the second side plate are respectively connected to two ends of the bottom plate along a first direction and folded toward the same side of the bottom plate. A first fold is respectively provided at the connection between the first side plate and the bottom plate and at the connection between the second side plate and the bottom plate. The second plate and the third plate are respectively connected to two ends of the bottom plate along the second direction, and a second fold is respectively provided at the connection between the second plate and the bottom plate and at the connection between the third plate and the bottom plate; The second plate and the third plate are respectively provided with a third fold extending along the first direction, and the first side plate and the second side plate are respectively provided with a first slot and a second slot, so that the second plate is inserted into the first slot after being folded along the second fold and the third fold, and the third plate is inserted into the second slot after being folded along the second fold and the third fold; The first direction is the width direction of the bottom plate, and the second direction is the length direction of the bottom plate.

2. The buffer structure according to claim 1, characterized in that: The first side plate and the second side plate are respectively provided with a third slot, and the third slot is located between the first slot and the second slot; The buffer structure further includes a reinforcement member, which is inserted into the third slot.

3. The buffer structure according to claim 2, characterized in that: The reinforcement is formed by folding a second paperboard, the second paperboard including a fourth plate, a fifth plate, and a sixth plate, the fifth plate and the sixth plate being connected to opposite ends of the fourth plate, respectively, and folded toward the same side of the fourth plate, and a fourth fold is respectively provided at the connection between the fifth plate and the fourth plate, and at the connection between the sixth plate and the fourth plate; The first side plate is provided with two third slots at intervals along the second direction, the second side plate is provided with two third slots at intervals along the second direction, and the fifth plate body and the sixth plate body are respectively inserted into the corresponding third slots.

4. The buffer structure according to claim 3, characterized in that: The fifth plate body and the sixth plate body are respectively provided with a fourth slot, and the fourth slot is plugged into the third slot correspondingly.

5. The buffer structure according to claim 2, characterized in that: The bottom plate, the first side plate and the second side plate form a receiving space, and the receiving space is used to place items to be packaged; The reinforcement member is provided with a first limiting groove, and the first limiting groove is used for limiting cooperation with the to-be-packaged item.

6. The buffer structure according to claim 5, characterized in that: The second plate body is provided with a second limiting groove, which is arranged opposite to the first limiting groove and is used for limiting cooperation with the to-be-packaged item.

7. The buffer structure according to claim 1, characterized in that: The second plate is provided with two third folds extending along the first direction, and the two third folds are arranged at intervals along the second direction to divide the second plate into a first folding portion, a second folding portion, and a third folding portion that are folded in sequence, the first folding portion is connected to the bottom plate through the second fold, and the third folding portion is provided with a fifth slot, and the fifth slot is correspondingly plugged into the first slot; The third plate body is provided with two third folds extending along the first direction, and the two third folds are arranged at intervals along the second direction to divide the third plate body into a fourth folding portion, a fifth folding portion and a sixth folding portion folded in sequence, the fourth folding portion is connected to the bottom plate through the second fold, and the sixth folding portion is provided with a sixth slot, and the sixth slot is correspondingly plugged into the second slot.

8. The buffer structure according to claim 5, characterized in that: The surface of the bottom plate facing away from the receiving space has a first contact plane, and the first contact plane is used to fit with the surface of the to-be-packaged object.

9. A lamp packaging assembly, characterized in that: include: An outer packaging and a buffer structure according to any one of claims 1 to 8; The outer packaging is provided with an inner cavity, and the inner cavity is used to place the items to be packaged; The buffer structure is provided in the inner cavity and is used for elastically supporting between the outer package and the item to be packaged.

10. The lamp packaging assembly according to claim 9, characterized in that: The second plate body and the third plate body respectively have a second contact plane, and the second contact plane is used to fit with the inner surface of the outer packaging.