Buffering shockproof structure of electronic product packaging material

Through multi-layered structural design and snap-fit ​​connection method, the problem of insufficient cushioning performance of existing electronic product packaging materials is solved, achieving all-round cushioning and shockproof protection and improved stability.

CN224159658UActive Publication Date: 2026-04-24HUIZHOU SHUNSHENGDA TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU SHUNSHENGDA TECH CO LTD
Filing Date
2025-04-24
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing electronic product packaging materials are insufficient in terms of cushioning performance and impact resistance, and cannot effectively protect electronic products, especially under complex vibration environments and high-intensity impacts, they are prone to breakage.

Method used

It adopts a multi-layer structure design, including a base layer, an inner lining layer, an outer lining layer, and a cushioning layer. The base layer is made of foam plastic, the inner lining layer is made of memory foam, the outer lining layer is made of plastic, and the cushioning layer is made of rubber. The connection stability is enhanced by snap-fit ​​and plug-in structures, and insert plates and positioning rods are set between the box lid and the box body to improve overall stability.

Benefits of technology

It provides comprehensive cushioning and shockproof protection, enhances the stability and impact resistance of the packaging structure, ensures that electronic products are not damaged during transportation, and improves the cushioning and shockproof effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a buffering shockproof structure of an electronic product packaging material. The buffering shockproof structure comprises a packaging box body and a packaging box cover detachably installed on the packaging box body. Wherein the packaging box body and the packaging box cover respectively comprise a base layer, the inner side of the base layer is provided with an inner lining layer used for attaching and installing an electronic product, the outer side of the base layer is provided with an outer lining layer, and the outer side of the outer lining layer is provided with a buffer layer. According to the utility model, the buffer layer firstly contacts and absorbs part of energy, the impact force is dispersed through the elastic deformation and damping effect of rubber, then the outer lining layer transmits the residual impact force to the base layer, the foamed plastic material of the base layer further buffers vibration, and the memory sponge of the inner lining layer is tightly attached to an electronic product, so that the electronic product is protected. Tiny vibration is absorbed in the final stage, the electronic product is protected in all directions, and the buffering and vibration-proof effects are improved.
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Description

Technical Field

[0001] This utility model relates to the field of electronic product technology, specifically to a cushioning and shockproof structure for electronic product packaging materials. Background Technology

[0002] In today's era of rapid technological advancement, electronic products such as smartphones, tablets, and laptops occupy a vital position in people's daily lives and work due to their powerful functions and user-friendly experience. These electronic products typically integrate a large number of sophisticated electronic components, such as chips, circuit boards, and displays. These components are extremely sensitive to vibration and impact; even slight external forces can cause damage, performance degradation, or even malfunction. Therefore, providing effective cushioning and shock protection for electronic products during transportation, storage, and sales has become a critical issue that the packaging industry urgently needs to address.

[0003] Currently, common electronic product packaging materials and structures on the market have many shortcomings. Some traditional packaging materials, such as ordinary cardboard boxes, while having a certain cost advantage, have poor cushioning performance and cannot effectively protect electronic products when subjected to significant impacts. While some packaging materials using single foam plastic as cushioning material can provide some cushioning effect, their cushioning performance is inadequate in the face of complex vibration environments and high-intensity impacts; they are prone to breakage upon impact, thus failing to protect electronic products. Utility Model Content

[0004] The purpose of this utility model is to provide a cushioning and shockproof structure for electronic product packaging materials, solving the problems of poor cushioning performance, easy breakage, and inability to effectively protect electronic products in existing electronic product packaging materials and structures.

[0005] To achieve the above objectives, the main technical solution adopted by this utility model includes: a cushioning and shockproof structure for electronic product packaging materials, comprising: a packaging box body and a packaging box cover detachably mounted on the packaging box body; wherein, the packaging box body and the packaging box cover each include a base layer, the inner side of the base layer is provided with an inner lining layer for fitting and mounting electronic products, the outer side of the base layer is provided with an outer lining layer, and the outer side of the outer lining layer is provided with a cushioning layer.

[0006] As a preferred technical solution, the inner lining layer is fitted and snapped onto the base layer, and the top of the inner lining layer is provided with a mounting groove for attaching and installing electronic products.

[0007] The outer lining layer has a hollow frame structure, the base layer is installed in the inner frame of the outer lining layer, and the buffer layer is fixedly installed on the outer frame wall of the outer lining layer;

[0008] The base layer is made of foam plastic.

[0009] The inner lining layer is made of memory foam.

[0010] The outer liner is made of plastic.

[0011] The buffer layer is made of rubber.

[0012] As a preferred technical solution, a slot is provided on the outer wall of the base layer, and a block is fixedly installed on the inner wall of the outer lining layer, the block being fitted and engaged inside the slot.

[0013] As a preferred technical solution, an insert plate is fixedly installed on the lower part of the outer liner on the packaging box cover, and a slot is provided on the upper part of the base layer on the packaging box body. When the packaging box body and the packaging box cover are assembled, the insert plate is fitted into the inside of the slot.

[0014] As a preferred technical solution, a positioning rod is fixedly installed on the upper part of the insert plate, and an overlapping plate is fixedly installed on the upper part of the outer lining layer on the packaging box body. A positioning groove is provided on the overlapping plate. When the packaging box body and the packaging box cover are assembled, the positioning rod is inserted into the positioning groove.

[0015] As a preferred technical solution, when the packaging box body and the packaging box lid are assembled, the upper part of the outer lining layer on the packaging box body abuts against the lower part of the outer lining layer on the packaging box lid.

[0016] As a preferred technical solution, the buffer layer is disposed on the sides and bottom of the packaging box body, and on the sides and top of the packaging box lid.

[0017] This utility model has at least the following beneficial effects:

[0018] This utility model provides a cushioning and shockproof structure for electronic product packaging materials. The cushioning layer first contacts and absorbs some of the energy, and the impact force is dispersed through the elastic deformation and damping effect of the rubber. Then, the outer liner transmits the remaining impact force to the base layer. The foam plastic material of the base layer further cushions the vibration, and the memory foam of the inner liner closely adheres to the electronic product, absorbing minor vibrations in the final stage, thus providing all-round protection for the electronic product and improving the cushioning and shockproof effect.

[0019] The interlocking and locking of the outer wall groove of the base layer and the inner wall of the outer liner enhances the stability of the connection between the base layer and the outer liner. During transportation or when subjected to impact, it can effectively prevent the base layer and the outer liner from separating, ensuring the integrity of the entire packaging structure, thereby ensuring the normal functioning of the cushioning and shock absorption function and avoiding the decline in cushioning performance due to structural loosening.

[0020] By using the insert plate at the bottom of the outer liner of the packaging box lid to cooperate with the slot at the top of the base layer of the packaging box body, when the box body and the lid are assembled, the insert plate is fitted into the slot, which not only achieves a tight connection between the box body and the lid, but also restricts the relative displacement of the two in the horizontal direction, enhancing the overall stability of the packaging. During handling or transportation, it can prevent the lid from being opened accidentally, and further improve the packaging's cushioning and shockproof protection effect for electronic products in all directions. Attached Figure Description

[0021] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0022] Figure 1 This is a three-dimensional first-view diagram of the overall cushioning and shock-absorbing structure of the electronic product packaging material of this utility model;

[0023] Figure 2 This is a three-dimensional second-view diagram of the overall cushioning and shock-absorbing structure of the electronic product packaging material of this utility model;

[0024] Figure 3 This is a schematic diagram of the packaging box installation structure of the cushioning and shockproof structure of the electronic product packaging material of this utility model;

[0025] Figure 4 An exploded view of the packaging box body of the cushioning and shockproof structure of the electronic product packaging material of this utility model;

[0026] Figure 5 This is a schematic diagram of the packaging box lid installation structure of the cushioning and shockproof structure of the electronic product packaging material of this utility model;

[0027] Figure 6 An exploded view of the packaging box lid of the cushioning and shockproof structure of the electronic product packaging material of this utility model.

[0028] Explanation of icon numbers:

[0029] 1. Packaging box body; 2. Packaging box lid; 3. Base layer; 301. Card slot; 4. Inner lining layer; 401. Mounting slot; 5. Outer lining layer; 501. Card block; 6. Buffer layer; 7. Slot; 8. Insert plate; 801. Positioning rod; 9. Overlap plate; 901. Positioning slot. Detailed Implementation

[0030] The following will describe in detail the implementation of this application with reference to the accompanying drawings and embodiments, so that the implementation process of how this application uses technical means to solve technical problems and achieve technical effects can be fully understood and implemented accordingly.

[0031] Example

[0032] Please refer to Figures 1 to 6 As shown, this embodiment provides a cushioning and shockproof structure for electronic product packaging materials, including: a packaging box body 1 and a packaging box cover 2 detachably installed on the packaging box body 1; wherein, the packaging box body 1 and the packaging box cover 2 each include a base layer 3, the inner side of the base layer 3 is provided with an inner liner layer 4 for attaching and installing electronic products, the outer side of the base layer 3 is provided with an outer liner layer 5, and the outer side of the outer liner layer 5 is provided with a cushioning layer 6. The inner liner layer 4 is used to tightly attach the electronic products, providing initial fixation and protection, the base layer 3 provides a certain strength support, the outer liner layer 5 plays the role of connecting and reinforcing the structure, and the cushioning layer 6 is on the outermost side, mainly used to absorb external vibration and impact, protecting the product in all directions. Different functional layers perform their respective functions, improving the overall cushioning and shockproof performance of the packaging.

[0033] The inner lining layer 4 is fitted and snapped onto the base layer 3, and the top of the inner lining layer 4 has an installation groove 401 for mounting electronic products. The outer lining layer 5 has a hollow frame structure, with the base layer 3 installed in the inner frame of the outer lining layer 5, and the buffer layer 6 fixedly installed on the outer frame wall of the outer lining layer 5. The base layer 3 is made of foam plastic; the inner lining layer 4 is made of memory foam; the outer lining layer 5 is made of plastic; and the buffer layer 6 is made of rubber. The use of memory foam in the inner lining layer 4 allows it to closely conform to the shape of the electronic product and has good resilience, effectively buffering vibrations. The snap-fit ​​installation method facilitates installation and replacement. The hollow frame structure of the outer lining layer 5, made of plastic, ensures a certain strength while reducing weight. The foam plastic material of the base layer 3 itself has a certain cushioning property, and its installation in the inner frame of the outer lining layer 5 via a snap-fit ​​method provides good stability. The buffer layer 6, made of rubber, is fixed to the outer frame wall of the outer lining layer 5. The good elasticity and damping properties of rubber effectively improve the impact resistance of the packaging. All parts work together to further optimize the cushioning and shockproof effect.

[0034] The outer wall of the base layer 3 has a slot 301, and the inner wall of the outer liner 5 has a locking block 501 fixedly installed. The locking block 501 is fitted and engaged inside the slot 301. The engagement of the slot 301 on the outer wall of the base layer 3 and the locking block 501 on the inner wall of the outer liner 5 enhances the stability of the connection between the base layer 3 and the outer liner 5. During transportation or when subjected to impact, it can effectively prevent the base layer 3 from separating from the outer liner 5, ensuring the integrity of the entire packaging structure, thereby ensuring the normal functioning of the cushioning and shock absorption function and avoiding the decrease in cushioning performance due to structural loosening.

[0035] Among them, an insert plate 8 is fixedly installed on the lower part of the outer liner 5 on the packaging box cover 2, and a slot 7 is opened on the upper part of the base layer 3 on the packaging box body 1. When the packaging box body 1 and the packaging box cover 2 are assembled, the insert plate 8 is fitted into the slot 7. Through the cooperation between the insert plate 8 at the lower part of the outer liner 5 on the packaging box cover 2 and the slot 7 at the upper part of the base layer 3 on the packaging box body 1, when the box body and the box cover are assembled, the insert plate 8 is fitted into the slot 7. This not only achieves a tight connection between the box body and the box cover, but also restricts the relative displacement of the two in the horizontal direction, enhances the overall stability of the packaging, prevents the box cover from being opened accidentally during handling or transportation, and further improves the cushioning and shockproof protection effect of the packaging for electronic products in all directions.

[0036] The upper part of the insert plate 8 is fixedly installed with a positioning rod 801, and the upper part of the outer liner 5 on the packaging box body 1 is fixedly installed with an overlapping plate 9. The overlapping plate 9 has a positioning groove 901. When the packaging box body 1 and the packaging box cover 2 are assembled, the positioning rod 801 is inserted into the positioning groove 901. Through the cooperation between the positioning rod 801 on the insert plate 8 and the positioning groove 901 on the overlapping plate 9 on the upper part of the outer liner 5, the positioning accuracy and stability of the packaging box body 1 and the packaging box cover 2 are further improved. The box body and the box cover are accurately positioned and restricted in the vertical direction to avoid misalignment of the box body and the box cover due to vibration or impact. This ensures that the packaging structure always remains tight and stable, thereby better playing the role of buffering and shock absorption.

[0037] When the packaging box body 1 and the packaging box lid 2 are assembled, the upper part of the outer lining layer 5 on the packaging box body 1 abuts against the lower part of the outer lining layer 5 on the packaging box lid 2. When the packaging box body 1 and the packaging box lid 2 are assembled, the outer lining layers 5 of the two abut against each other, which increases the overall sealing and integrity of the packaging. When subjected to external impact, the impact force can be transmitted and dispersed more evenly between the box body and the lid, avoiding the concentration of impact force due to weak connection parts, thereby improving the cushioning and shockproof performance of the entire packaging structure.

[0038] The cushioning layer 6 is installed on the sides and bottom of the packaging box body 1 and on the sides and top of the packaging box lid 2. By placing the cushioning layer 6 on the sides and bottom of the packaging box body 1 and the sides and top of the packaging box lid 2, comprehensive cushioning protection is achieved for the electronic product. Whether it is a horizontal collision or a vertical drop impact, the cushioning layer 6 can absorb energy in a timely manner, effectively reducing the impact force on the electronic product and providing comprehensive and reliable shockproof protection.

[0039] Working principle: During transportation and storage, when external vibration or impact occurs, the buffer layer 6 first contacts and absorbs some of the energy. The impact force is dispersed through the elastic deformation and damping effect of the rubber. Then, the outer liner 5 transmits the remaining impact force to the base layer 3. The foam plastic material of the base layer 3 further buffers the vibration. The memory foam of the inner liner 4 closely adheres to the electronic product and absorbs minor vibrations in the final stage, providing all-round protection for the electronic product and improving the cushioning and shockproof effect.

[0040] The foregoing description illustrates and describes several preferred embodiments of the present invention. However, as previously stated, it should be understood that the present invention is not limited to the forms disclosed herein and should not be construed as excluding other embodiments. It can be used in various other combinations, modifications, and environments, and can be altered within the scope of the inventive concept described herein through the foregoing teachings or techniques or knowledge in related fields. Any modifications and variations made by those skilled in the art that do not depart from the spirit and scope of the present invention should be within the protection scope of the appended claims.

Claims

1. A cushioning structure of an electronic product packaging material, characterized by, include: The packaging box body (1) and the packaging box cover (2) which is detachably installed on the packaging box body (1); The packaging box body (1) and the packaging box cover (2) respectively include a base layer (3), the inner side of the base layer (3) is provided with an inner lining layer (4) for attaching and installing electronic products, the outer side of the base layer (3) is provided with an outer lining layer (5), and the outer side of the outer lining layer (5) is provided with a buffer layer (6).

2. The shockproof structure of the electronic product packaging material according to claim 1, characterized in that: The inner lining layer (4) is fitted and snapped onto the base layer (3), and the top of the inner lining layer (4) is provided with an installation groove (401) for attaching and installing electronic products; The outer lining layer (5) has a hollow frame structure, the base layer (3) is installed in the inner frame of the outer lining layer (5), and the buffer layer (6) is fixedly installed on the outer frame wall of the outer lining layer (5); The base layer (3) is made of foam plastic. The inner lining layer (4) is made of memory foam. The outer liner (5) is made of plastic. The buffer layer (6) is made of rubber.

3. The cushioning structure of claim 2, wherein: A slot (301) is provided on the outer wall of the base layer (3), and a block (501) is fixedly installed on the inner wall of the outer lining layer (5). The block (501) is fitted and snapped into the inside of the slot (301).

4. The cushioning structure of claim 3, wherein: An insert plate (8) is fixedly installed on the lower part of the outer lining layer (5) on the packaging box cover (2), and a slot (7) is opened on the upper part of the base layer (3) on the packaging box body (1). When the packaging box body (1) and the packaging box cover (2) are assembled, the insert plate (8) is fitted into the inside of the slot (7).

5. The cushioning structure of claim 4, wherein: A positioning rod (801) is fixedly installed on the upper part of the insert plate (8), and an overlapping plate (9) is fixedly installed on the upper part of the outer liner (5) on the packaging box body (1). A positioning groove (901) is provided on the overlapping plate (9). When the packaging box body (1) and the packaging box cover (2) are assembled, the positioning rod (801) is inserted into the positioning groove (901).

6. The cushioning structure of claim 1, wherein: When the packaging box body (1) and the packaging box lid (2) are assembled, the upper part of the outer lining layer (5) on the packaging box body (1) abuts against the lower part of the outer lining layer (5) on the packaging box lid (2).

7. The cushioning structure of an electronic product packaging material according to any one of claims 1 to 6, characterized in that: The buffer layer (6) is provided on the side and bottom of the packaging box body (1) and on the side and top of the packaging box lid (2).