Television packaging structure

The TV packaging structure designed with all paper-plastic materials and the use of buckles and snap-in slots of paper-plastic parts solves the problems of TV packaging being environmentally unfriendly and lacking strength, and achieves an environmentally friendly and durable cushioning protection effect.

CN120736089APending Publication Date: 2025-10-03MYS GRP CO LTD
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Patent Information

Application Number
CN202511161248.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-19
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

The existing packaging structure of televisions is not environmentally friendly and the packaging strength is insufficient, resulting in waste of resources and easy damage during transportation.

Method used

The packaging structure is designed entirely from paper-plastic materials, including paper-plastic parts and honeycomb cardboard that are symmetrically snapped onto the four sides of the TV. Buckles and snap-on slots are used to provide cushioning protection and enhance packaging strength. The folding design of the paper-plastic parts matches the shape of the TV to provide seamless cushioning.

Benefits of technology

This achieves environmentally friendly and durable packaging, improves the safety of televisions during transportation, and reduces resource waste and transportation damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a packaging structure of a television. Comprising a television, first paper-plastic parts symmetrically clamped on the left side and the right side of the television, a second paper-plastic part clamped at the lower end of the television, third paper-plastic parts symmetrically clamped at the top corner of the television, fourth paper-plastic parts symmetrically clamped at the bottom corner of the television, a fifth paper-plastic part clamped at the upper end of the television and a honeycomb paperboard, the honeycomb paperboard is tightly attached to the front end of the television, one end of the first paper-plastic part is connected with the third paper-plastic part, the other end of the first paper-plastic part is connected with the fourth paper-plastic part, the end of the second paper-plastic part is connected with the fourth paper-plastic part, and the end of the fifth paper-plastic part is connected with the third paper-plastic part. The package is made of full-paper-plastic materials, buffering protection is carried out on fragile parts of the edges of the televisions through the package, the safety of the televisions in the transportation process is guaranteed, and the buffering strength of the package is improved.
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Description

Technical Field

[0001] The present invention relates to the field of electronic product packaging, and in particular to a packaging structure for a television. Background Art

[0002] Currently, EPS foam is the most commonly used cushioning packaging for televisions. However, EPS foam is non-biodegradable, causing significant white pollution. Furthermore, EPS itself emits a pungent odor, which can be harmful to the human body. With the advancement of plastic bans, EPS has been gradually replaced by paper-plastic cushioning packaging. However, because paper-plastic and cardboard packaging lack the resilience of EPS, current television packaging on the market is typically larger and heavier, requiring a significant cushioning space between the package and the outer packaging. Furthermore, the bulk of paper-plastic packaging results in a waste of cost and raw material resources. Summary of the Invention

[0003] The present invention provides a packaging structure for a television set, aiming to solve the problems that the existing television set packaging is not environmentally friendly and has insufficient packaging strength.

[0004] The present invention provides a packaging structure for a television, comprising a television, a first paper-molded piece symmetrically snapped onto the left and right sides of the television, a second paper-molded piece snapped onto the lower end of the television, a third paper-molded piece symmetrically snapped onto the top corners of the television, a fourth paper-molded piece symmetrically snapped onto the bottom corners of the television, a fifth paper-molded piece snapped onto the upper end of the television, and a honeycomb paperboard, wherein the honeycomb paperboard is tightly attached to the front end of the television, one end of the first paper-molded piece is connected to the third paper-molded piece, the other end of the first paper-molded piece is connected to the fourth paper-molded piece, an end portion of the second paper-molded piece is connected to the fourth paper-molded piece, and an end portion of the fifth paper-molded piece is connected to the third paper-molded piece.

[0005] As a further improvement of the present invention, the front of the first paper plastic part is provided with a plurality of interconnected first T-shaped slots, and on the back of the first paper plastic part, a first snap-in slot for snapping into the side of the TV is formed between the first T-shaped slot and the first paper plastic part, and first plug-in parts are provided at both ends of the first paper plastic part, which respectively cooperate with the third paper plastic part and the fourth paper plastic part, and a first snap-in slot is provided in the first plug-in part.

[0006] As a further improvement of the present invention, the second paper-molded component includes a first assembly and a second assembly, both the first assembly and the second assembly are provided with a second T-slot, one end of the first assembly is provided with a second buckle slot, one end of the second assembly is inserted into the second buckle slot, and the back of the second paper-molded component is provided with a second snap-fitting slot that cooperates with the end edge of the TV, and the second snap-fitting slot is arranged linearly.

[0007] As a further improvement of the present invention, the third paper-molded component includes a first buffer component, a second buffer component, a third buffer component, a fourth buffer component, a fifth buffer component and a sixth buffer component. When unfolded, one end of the first buffer component is connected to one end of the second buffer component, the third buffer component and the fourth buffer component are connected on both sides of the first buffer component, the fifth buffer component and the sixth buffer component are connected on both sides of the second buffer component, a V-shaped groove is formed between the third buffer component and the fifth buffer component and between the fourth buffer component and the sixth buffer component, and the other end of the first buffer component and the other end of the second buffer component are both provided with a first fixing groove.

[0008] As a further improvement of the present invention, when the third paper-molded part is assembled, the third paper-molded part is L-shaped, the third buffer part and the fourth buffer part are arranged perpendicularly to the first buffer part, the fifth buffer part and the sixth buffer part are arranged perpendicularly to the second buffer part, the third buffer part is in contact with the fifth buffer part, the fourth buffer part is in contact with the sixth buffer part, and the first protrusion provided on the first buffer part is engaged with the first groove provided on the second buffer part.

[0009] As a further improvement of the present invention, the fourth paper-molded component includes a seventh buffer component, an eighth buffer component, a ninth buffer component and a tenth buffer component. When unfolded, one end of the seventh buffer component is connected to one end of the eighth buffer component, the ninth buffer component and the tenth buffer component are symmetrically arranged on both sides of the seventh buffer component, and the other end of the seventh buffer component and the other end of the eighth buffer component are both provided with a second fixing groove.

[0010] As a further improvement of the present invention, when the fourth paper-molded component is assembled, the fourth paper-molded component is L-shaped, the ninth buffer component and the tenth buffer component are arranged perpendicular to the seventh buffer component, and the second protrusion arranged on the seventh buffer component is engaged with the second groove arranged on the eighth buffer component.

[0011] As a further improvement of the present invention, the fifth paper-molded component includes a third assembly and a fourth assembly, one end of the third assembly is provided with a third buckle slot, one end of the fourth assembly is inserted into the third buckle slot, and the back of the fifth paper-molded component is provided with a third snap-fitting slot that cooperates with the end edge of the TV, and the third snap-fitting slot is arranged linearly. The third assembly and the fourth assembly are both provided with a placement slot for placing accessories, and a plurality of partition blocks are provided in the placement slot.

[0012] As a further improvement of the present invention, it further comprises a bottom paper card, in which the second paper-molded part and the fourth paper-molded part are placed.

[0013] As a further improvement of the present invention, it further comprises an outer box, wherein the television set is assembled with the first, second, third, fourth and fifth paper-molded parts and then placed inside the outer box.

[0014] The beneficial effects of the present invention are: the packaging is made of all paper-plastic materials, which are more environmentally friendly and durable, and the packaging provides cushioning protection for the fragile edge parts of the TV, ensuring the safety of the TV during transportation and improving the cushioning strength of the packaging. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is an exploded view of the packaging of the present invention; Figure 2 is a schematic diagram of the combination of the television set of the present invention and the buffer components; Figure 3 It is a front view of the final packaging of the present invention; Figure 4 It is a rear view of the final package of the present invention; Figure 5 This is a front view of the first paper plastic part of the present invention; Figure 6 This is a back view of the first paper plastic part of the present invention; Figure 7 This is a schematic diagram of the disassembly of the second paper-molded component of the present invention; Figure 8 This is a schematic diagram of the assembly of the second paper-molded component of the present invention; Figure 9 This is a schematic diagram of the back side of the second paper plastic part of the present invention; Figure 10 This is an expanded view of the third paper-molded component of the present invention; Figure 11 This is a schematic diagram of the third paper-plastic component assembly of the present invention; Figure 12 This is an overall diagram of the third paper-molded component of the present invention; Figure 13 is an expanded view of the fourth paper-molded component of the present invention; Figure 14 This is a schematic diagram of the fourth paper-plastic component assembly of the present invention; Figure 15 This is an overall diagram of the fourth paper plastic part of the present invention; Figure 16 is a schematic diagram of the bottom paper card of the present invention; Figure 17 This is a schematic diagram of the disassembly of the fifth paper-molded component of the present invention; Figure 18 This is a schematic diagram of the assembly of the fifth paper-plastic component of the present invention; Figure 19 It is a schematic diagram of the back side of the fifth paper-molded article of the present invention.

[0016] Description of the drawings: 1-TV, 2-outer box, 3-bottom paper card, 4-first paper plastic part, 5-second paper plastic part, 6-third paper plastic part, 7-fourth paper plastic part, 8-honeycomb paperboard, 9-fifth paper plastic part, 10-bracket, 41-first T-slot, 42-first buckle part, 43-first buckle slot, 44-first snap-on slot, 50-first assembly part, 51-second assembly part, 52-second T-slot, 53-second buckle slot, 54-second snap-on slot, 60-first fixing groove, 61-first buffer Parts, 62-second buffer part, 63-third buffer part, 64-fourth buffer part, 65-fifth buffer part, 66-sixth buffer part, 67-first protrusion, 68-first groove, 70-seventh buffer part, 71-eighth buffer part, 72-ninth buffer part, 73-tenth buffer part, 74-second protrusion, 75-second groove, 76-second fixing groove, 90-third assembly part, 91-fourth assembly part, 92-third buckle slot, 93-third snap-on slot, 94-placement slot, 95-partition block. DETAILED DESCRIPTION

[0017] In order to make the objectives, technical solutions, and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be noted that the terms "front," "rear," "left," "right," "upper," and "lower" used in the following description refer to directions in the accompanying drawings, and the terms "bottom," "top," "inner," and "outer" refer to directions toward or away from the geometric center of a specific component, respectively.

[0018] The present invention provides a packaging structure for a television, comprising a television 1, a first paper-molded part 4 symmetrically snapped onto the left and right sides of the television 1, a second paper-molded part 5 snapped onto the lower end of the television 1, a third paper-molded part 6 symmetrically snapped onto the top corners of the television 1, a fourth paper-molded part 7 symmetrically snapped onto the bottom corners of the television 1, a fifth paper-molded part 9 snapped onto the upper end of the television 1, and a honeycomb paperboard 8, wherein the honeycomb paperboard 8 is closely attached to the front end of the television 1, one end of the first paper-molded part 4 is connected to the third paper-molded part 6, the other end of the first paper-molded part 4 is connected to the fourth paper-molded part 7, an end of the second paper-molded part 5 is connected to the fourth paper-molded part 7, and an end of the fifth paper-molded part 9 is connected to the third paper-molded part 6. The television 1 is wrapped and protected on all sides by the first paper-molded part 4, the second paper-molded part 5, the third paper-molded part 6, the fourth paper-molded part 7 and the fifth paper-molded part 9, so that the television 1 is less likely to be damaged by collision during transportation. All packaging structures are made of paper-molded materials, which not only have good buffering strength but are also recyclable materials, making the use of this packaging more environmentally friendly.

[0019] As an embodiment of the present invention, a plurality of interconnected first T-shaped slots 41 are provided on the front of the first paper-molded component 4 , and a first engaging slot 44 for engaging with the side of the television 1 is formed between the first T-shaped slots 41 and the first paper-molded component 4 on the back of the first paper-molded component 4 .

[0020] As another embodiment of the present invention, first fasteners 42 are provided at both ends of the first paper-molded component 4 to respectively engage with the third paper-molded component 6 and the fourth paper-molded component 7 . A first fastener groove 43 is provided in the first fastener 42 .

[0021] During packaging, the first paper-molded component 4 is secured to both sides of the television 1 using the linear grooves formed by the bottom of the first T-slot 41 and the edge of the first paper-molded component 4, i.e., the first snap-fitting grooves 44. This provides cushioning and protection for the sides of the television 1. Small accessories for the television 1, such as instruction manuals, screws, and key covers, can also be placed in the first T-slot 41. Furthermore, the first latching member 42 connects with the third paper-molded component 6 at the top corner and the fourth paper-molded component 7 at the bottom corner, enhancing the connection strength between the first paper-molded component 4 and the third and fourth paper-molded components 6 and 7, and improving cushioning strength.

[0022] As another embodiment of the present invention, the second paper-molded component 5 includes a first assembly 50 and a second assembly 51. The first assembly 50 and the second assembly 51 are both provided with a second T-slot 52. One end of the first assembly 50 is provided with a second buckle groove 53. One end of the second assembly 51 is inserted into the second buckle groove 53. The back of the second paper-molded component 5 is provided with a second snap-fit ​​groove 54 that cooperates with the end edge of the TV 1. The second snap-fit ​​groove 54 is arranged linearly.

[0023] The second paper-molded component 5 is positioned at the lower end of the television 1. Compared to the left and right sides of the television 1, its upper and lower ends are longer. Therefore, packaging requires combining the first assembly 50 with the second assembly 51. One end of the second assembly 51 is inserted into the second latching slot 53. The first and second assemblies 50 and 51 share the same structure. When combined, they form a linear second snap-in slot 54 on the back. This second snap-in slot 54 snaps into the edge of the television 1 to achieve packaging. The second T-slot 52 also accommodates the honeycomb paperboard 8. In practical applications, a larger number of assemblies can be selected based on the length of the television 1. The ends of the second paper-molded component 5 seamlessly contact the fourth paper-molded component 7, providing seamless protection for the edges of the television 1. The first and second assemblies 50 and 51 are designed to be shared, allowing them to be produced separately to increase production yield and enable standard models to be produced. Their shared use simplifies assembly and reduces storage space.

[0024] As another embodiment of the present invention, the third paper plastic part 6 includes a first buffer part 61, a second buffer part 62, a third buffer part 63, a fourth buffer part 64, a fifth buffer part 65 and a sixth buffer part 66. When unfolded, one end of the first buffer part 61 is connected to one end of the second buffer part 62, the third buffer part 63 and the fourth buffer part 64 are connected on both sides of the first buffer part 61, the fifth buffer part 65 and the sixth buffer part 66 are connected on both sides of the second buffer part 62, and a V-shaped groove is formed between the third buffer part 63 and the fifth buffer part 65 and between the fourth buffer part 64 and the sixth buffer part 66. The other end of the first buffer part 61 and the other end of the second buffer part 62 are both provided with a first fixing groove 60.

[0025] As another embodiment of the present invention, when the third paper-molded part 6 is assembled, the third paper-molded part 6 is L-shaped, the third buffer part 63 and the fourth buffer part 64 are arranged perpendicular to the first buffer part 61, the fifth buffer part 65 and the sixth buffer part 66 are arranged perpendicular to the second buffer part 62, the third buffer part 63 is in contact with the fifth buffer part 65, the fourth buffer part 64 is in contact with the sixth buffer part 66, and the first protrusion 67 provided on the first buffer part 61 is engaged with the first groove 68 provided on the second buffer part 62.

[0026] like Figure 10 As shown, the third paper plastic part 6 is shaped like a butterfly after being unfolded. When assembled, the three buffer parts and the fourth buffer part 64 are folded to be perpendicular to the first buffer part 61, and the fifth buffer part 65 and the sixth buffer part 66 are folded to be perpendicular to the second buffer part 62. Figure 11As shown in the figure, the third buffer 63, the fourth buffer 64, the fifth buffer 65 and the sixth buffer 66 are all provided with raised blocks made of paper plastic material. The raised blocks engage with the grooves in the first buffer 61 and the second buffer 62 to form a stable structure. Then, the first buffer 61 is folded toward the second buffer 62, so that the third buffer 63 contacts the fifth buffer 65, and the fourth buffer 64 contacts the sixth buffer 66, so that the third paper plastic part 6 is formed as shown. Figure 12 The illustrated L-shaped structure perfectly fits the top corners of the television 1, protecting them. The first fixing groove 60 prevents the first paper-molded component 4 from falling loose when inserted. The third paper-molded component 6 includes multiple folding structures that match the shape of the television 1. The folding reinforces the structure and further protects the television 1. The third paper-molded component 6 is positioned symmetrically at both top corners of the television 1.

[0027] As another embodiment of the present invention, the fourth paper plastic component 7 includes a seventh buffer component 70, an eighth buffer component 71, a ninth buffer component 72 and a tenth buffer component 73. When unfolded, one end of the seventh buffer component 70 is connected to one end of the eighth buffer component 71, and the ninth buffer component 72 and the tenth buffer component 73 are symmetrically arranged on both sides of the seventh buffer component 70. The other end of the seventh buffer component 70 and the other end of the eighth buffer component 71 are both provided with a second fixing groove 76.

[0028] As another embodiment of the present invention, when the fourth paper-molded component 7 is assembled, the fourth paper-molded component 7 is L-shaped, the ninth buffer component 72 and the tenth buffer component 73 are arranged perpendicular to the seventh buffer component 70, and the second protrusion 74 provided on the seventh buffer component 70 is engaged with the second groove 75 provided on the eighth buffer component 71.

[0029] like Figure 13 As shown, the fourth paper plastic part 7 is similar to a "convex" shaped structure after being unfolded. When assembled, the ninth buffer part and the tenth buffer part 73 are folded to be perpendicular to the seventh buffer part 70, that is, attached. Figure 14 As shown in the figure, the ninth and tenth buffer members 73 are provided with raised blocks made of paper plastic material, which are engaged with the grooves in the seventh buffer member 70 to form a stable structure. Then, the seventh buffer member 70 is folded toward the eighth buffer member 71 so that the seventh buffer member 70 contacts the eighth buffer member 71, so that the fourth paper plastic member 7 is formed as shown. Figure 15The L-shaped design shown here perfectly fits the bottom corners of the TV 1, protecting them. The second fixing groove 76 prevents the first paper-molded member 4 from falling loose when inserted. The fourth paper-molded member 7 includes multiple folding structures that match the shape of the TV 1. These folding structures strengthen the structure and provide better protection for the TV 1. The fourth paper-molded member 7 is positioned symmetrically at both bottom corners of the TV 1.

[0030] As another embodiment of the present invention, the fifth paper-molded component 9 includes a third assembly 90 and a fourth assembly 91. One end of the third assembly 90 is provided with a third latching slot 92, into which one end of the fourth assembly 91 is inserted. The back of the fifth paper-molded component 9 is provided with a third engaging slot 93 that engages with the edge of the television 1. The third engaging slots 93 are arranged linearly. Both the third assembly 90 and the fourth assembly 91 are provided with a placement slot 94 for accessories, each of which is provided with a plurality of partitions 95. Inserting one end of the fourth assembly 91 into the third latching slot 92 completes the assembly of the fifth paper-molded component 9. During packaging, the fifth paper-molded component 9 is inserted into the top of the television 1, so that the third engaging slot 93 engages with the upper end of the television 1, and both ends of the fifth paper-molded component 9 seamlessly contact the third paper-molded component 6. Some accessories of the television 1, such as the bracket 10, wires, etc., can be placed in the placement groove 94 to fully utilize the packaging space. At the same time, a number of partition blocks 95 are protruding from the placement groove 94 to prevent accessories from colliding with each other and being damaged.

[0031] Another embodiment of the present invention further includes a bottom paper card 3, in which the second paper-molded part 5 and the fourth paper-molded part 7 are placed. The purpose of providing the bottom paper card 3 is to regularize the cushioning component at the bottom end of the television 1. When packaging, the bottom paper card 3 is placed first, which not only provides an extra layer of cushioning protection, but also makes it easier to remove the television 1 from the packaging later, reducing the storage and transportation volume.

[0032] As another embodiment of the present invention, it also includes an outer box 2, and the television 1 is combined with the first paper-molded part 4, the second paper-molded part 5, the third paper-molded part 6, the fourth paper-molded part 7 and the fifth paper-molded part 9 and placed inside the outer box 2.

[0033] The present invention provides a packaging structure for a television. By rationally arranging and designing a paper support structure, four folding paper supports are specially provided at the corner positions, and the left and right paper supports are made into a common structure, so that the paper and plastic sizes remain unchanged as a whole after the paper and plastic sizes are combined, but the individual sizes become smaller, so that the paper and plastic sizes can be produced on standard models on the market, solving the problem that standard production models on the market cannot produce customized models; the paper and plastic structure is designed to share the force according to the force-bearing parts of the television 1, so as to avoid damage caused by collision during transportation or when falling, and at the same time compress the overall volume of the package, and rationally control the number and structure of ribs to achieve the purpose of minimizing material consumption; in view of the fact that the panel of the television 1 is easily damaged, a whole piece of honeycomb cardboard 8 is added in front of the paper and plastic in front of the screen for protection, so as to prevent the operator from directly contacting the screen of the television 1 during transportation, and increase the force-bearing area during packaging, so as to prevent accidental trampling and dangerous objects from contacting the screen and damaging the screen.

[0034] When assembling the package, first assemble the first paper molded part 4, the second paper molded part 5, the third paper molded part 6, the fourth paper molded part 7 and the fifth paper molded part 9, clamp the back of the first paper molded part 4 to both sides of the TV 1, clamp the back of the second paper molded part 5 to the lower end of the TV 1, clamp the back of the fifth paper molded part 9 to the upper end of the TV 1, clamp the third paper molded part 6 at the two top corners of the TV 1, and at the same time, the two ends of the third paper molded part 6 pass through the first fixing groove 60, respectively, and fit into the first paper molded part 4 and the second paper molded part 5. Insert, clamp the fourth paper molded part 7 at the two bottom corners of the TV 1, and at the same time, the two ends of the fourth paper molded part 7 are respectively embedded in the first paper molded part 4 and the second paper molded part 5 through the second fixing groove 76, so as to provide seamless buffer protection for the edge of the TV 1. Then, put the bottom paper card 3 on the second paper molded part 5 and the fourth paper molded part 7, and press the honeycomb paperboard 8 against the front end of the TV 1 to prevent the operator from directly contacting the TV 1 screen during transportation, increase the force-bearing area, and prevent accidental trampling and dangerous objects from contacting the screen and damaging the screen. Finally, put the assembled package into the outer box 2 for sealing.

[0035] The above is a further detailed description of the present invention in conjunction with specific preferred embodiments, and the specific implementation of the present invention should not be considered to be limited to these descriptions. For those skilled in the art of the present invention, without departing from the concept of the present invention, several simple deductions or substitutions can be made, which should be considered to fall within the scope of protection of the present invention.

Claims

1. A packaging structure for a television, characterized in that: The invention comprises a television, a first paper-molded part symmetrically connected to the left and right sides of the television, a second paper-molded part connected to the lower end of the television, a third paper-molded part symmetrically connected to the top corners of the television, a fourth paper-molded part symmetrically connected to the bottom corners of the television, a fifth paper-molded part connected to the upper end of the television, and a honeycomb paperboard, wherein the honeycomb paperboard is closely attached to the front end of the television, one end of the first paper-molded part is connected to the third paper-molded part, the other end of the first paper-molded part is connected to the fourth paper-molded part, an end of the second paper-molded part is connected to the fourth paper-molded part, and an end of the fifth paper-molded part is connected to the third paper-molded part.

2. The packaging structure of a television set according to claim 1, characterized in that: The front of the first paper plastic part is provided with a plurality of interconnected first T-shaped slots. On the back of the first paper plastic part, a first snap-in slot for snapping into the side of the TV is formed between the first T-shaped slot and the first paper plastic part. First buckles are provided at both ends of the first paper plastic part, which are respectively plugged into the third paper plastic part and the fourth paper plastic part. A first buckle slot is provided in the first buckle part.

3. The packaging structure of a television set according to claim 2, characterized in that: The second paper-molded component includes a first assembly and a second assembly, both of which are provided with a second T-shaped slot. One end of the first assembly is provided with a second buckle slot, and one end of the second assembly is inserted into the second buckle slot. The back of the second paper-molded component is provided with a second snap-fitting slot that cooperates with the end edge of the TV, and the second snap-fitting slot is arranged linearly.

4. The packaging structure of a television set according to claim 1, characterized in that: The third paper-molded component includes a first buffer component, a second buffer component, a third buffer component, a fourth buffer component, a fifth buffer component and a sixth buffer component. When unfolded, one end of the first buffer component is connected to one end of the second buffer component, the third buffer component and the fourth buffer component are connected on both sides of the first buffer component, the fifth buffer component and the sixth buffer component are connected on both sides of the second buffer component, a V-shaped groove is formed between the third buffer component and the fifth buffer component and between the fourth buffer component and the sixth buffer component, and the other end of the first buffer component and the other end of the second buffer component are both provided with a first fixing groove.

5. The packaging structure of a television set according to claim 4, characterized in that: When the third paper-molded component is assembled, the third paper-molded component is L-shaped, the third buffer component and the fourth buffer component are arranged perpendicularly to the first buffer component, the fifth buffer component and the sixth buffer component are arranged perpendicularly to the second buffer component, the third buffer component is in contact with the fifth buffer component, the fourth buffer component is in contact with the sixth buffer component, and the first protrusion provided on the first buffer component is engaged with the first groove provided on the second buffer component.

6. The packaging structure of a television set according to claim 1, characterized in that: The fourth paper-molded component includes a seventh buffer component, an eighth buffer component, a ninth buffer component and a tenth buffer component. When unfolded, one end of the seventh buffer component is connected to one end of the eighth buffer component, the ninth buffer component and the tenth buffer component are symmetrically arranged on both sides of the seventh buffer component, and the other end of the seventh buffer component and the other end of the eighth buffer component are both provided with a second fixing groove.

7. The packaging structure of a television set according to claim 6, characterized in that: When the fourth paper-molded component is assembled, the fourth paper-molded component is L-shaped, the ninth and tenth buffer components are arranged perpendicular to the seventh buffer component, and the second protrusion arranged on the seventh buffer component is plugged into the second groove arranged on the eighth buffer component.

8. The packaging structure of a television set according to claim 1, characterized in that: The fifth paper-molded component includes a third assembly and a fourth assembly. One end of the third assembly is provided with a third buckle slot, and one end of the fourth assembly is inserted into the third buckle slot. The back of the fifth paper-molded component is provided with a third snap-fitting slot that cooperates with the end edge of the TV. The third snap-fitting slot is arranged linearly. The third assembly and the fourth assembly are both provided with a placement slot for placing accessories, and a plurality of partition blocks are provided in the placement slot.

9. The packaging structure of a television set according to claim 1, characterized in that: It also includes a bottom paper card, in which the second paper-molded part and the fourth paper-molded part are placed.

10. The packaging structure of a television set according to claim 1, characterized in that: The device further comprises an outer box, wherein the television set is assembled with the first paper-molded part, the second paper-molded part, the third paper-molded part, the fourth paper-molded part and the fifth paper-molded part and then placed inside the outer box.