Buffering supporting structure, buffering packaging system and packaging product

By designing the buffer support structure of elastic cushioning parts and buffer slots, the problem of poor protection effect of special-shaped products in the prior art is solved, and all-round protection of special-shaped and regular-shaped products is achieved, which reduces production costs.

CN223073090UActive Publication Date: 2025-07-08HUIZHOU NVC OPTOELECTRONICS TECH CO LTD
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Patent Information

Application Number
CN202421993346.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-07-08
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

When existing buffer packaging systems protect products with special shapes or irregular shapes, they have problems such as poor versatility, limited protection effect or high production costs.

Method used

A buffer support structure including an elastic buffer member and a buffer slot is designed that can fit the packaging profile through the buffer slot and fill the buffer support member to achieve full protection of special-shaped or regular-shaped products.

Benefits of technology

It achieves a buffer effect of strong versatility, wide application scope, good protection effect and reduced production costs for special-shaped and regular-shaped products.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a buffering supporting structure, buffering packaging system and packaging product, buffering supporting structure includes elastic buffering piece and at least one buffering supporting piece, the elastic buffering piece is in the shape of plate or band, the elastic buffering piece has a plurality of buffering slotted holes, the plurality of buffering slotted holes are distributed along the length direction of the elastic buffering piece, and the buffering supporting piece is arranged on the buffering supporting piece. The buffering groove hole extends in the width direction of the elastic buffering piece, and the buffering supporting piece can be selectively filled in the buffering groove hole. The buffering packaging system comprises the buffering supporting structure, the packaging product comprises the buffering packaging system, and the buffering supporting structure has the advantages of being high in usability and good in protection effect.
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Description

Technical Field

[0001] The utility model relates to the technical field of packaging, and specifically, to a buffer support structure, a buffer packaging system provided with the buffer support structure, and a packaged product provided with the buffer packaging system. Background Art

[0002] When packaging products, a buffer support structure (such as an elastic buffer member (such as EPE), a special-shaped cardboard, a special-shaped foamed foam, a plastic blister tray, etc.) is usually arranged in a packaging container (such as a packing box or a packing case) to buffer and support (or hold up) the product, so as to avoid physical damage to the product during transportation, storage and sales. Some existing electrical products (such as lamps, monitors, etc.) often use the combination of a packing box and EPE to package the product. For example:

[0003] As Figure 1 (a) shows, one of the existing conventional processing methods usually processes the EPE 91 into a solid plate shape. As Figure 1 (b) shows, when packaging the product 92, the EPE 91 is cut into a solid plate with corresponding size according to the size of the space in the packaging container, and is laid on the inner wall of the packaging container to buffer and support the product 92; however, the disadvantage of this processing method is that when the product 92 is a special-shaped non-square structure, there is a large gap 910 between the EPE 91 and the product 92, so that the EPE 91 cannot fit the surface of the product 92 to wrap the product 92 more comprehensively, resulting in the product 92 being extremely easy to shake or move during transportation and handling, so the protection effect is poor.

[0004] As Figure 1 (c) shows, another existing conventional processing method processes the EPE into a corner protection structure 93. When packaging the product, the corner protection structure 93 is padded at the corners of the product to buffer and support the product; however, the disadvantage of this processing method is that it can only buffer and support the protection of products with a square structure, has strong use limitations, and there is a large range of gaps between the product and the packaging container, so the protection effect is extremely limited.

[0005] As Figure 1 (d) shows, the third existing conventional processing method processes the EPE into a special-shaped structure 94 matching the contour of the product. As Figure 1 (e) shows, when packaging the product 95, the special-shaped structure 94 is padded on the outer periphery of the product 95 to buffer and support the product 95; however, the disadvantage of this processing method is that the special-shaped structure 94 is only applicable to products 95 with a specific shape, resulting in strong use limitations, and there is still a large range of gaps between the product 95 and the packaging container, so the protection effect is limited.

[0006] As shown Figure 1 In FIGS. (f) and (g), for the fourth of the existing conventional processing methods, the EPE 96 is processed into a block having the same contour as the internal space of the packaging container, and a receiving position 961 substantially the same as the contour of the product 97 is processed on the block-shaped EPE 96; when packaging the product 97, the product 97 is placed into the matching receiving position 961 on the block-shaped EPE 96; although this processing method can comprehensively wrap and protect the product 97, the disadvantages of this processing method are: strong use limitations, poor versatility, and only applicable to products 97 with specific shapes. When the shape of the product 97 is different, it is necessary to re-customize the special block-shaped EPE 96, increasing the production cost.

[0007] It can be seen that the existing buffer packaging systems (including packaging containers, buffer support structures, etc.) are either poor in versatility, limited in protection effect, or prone to increasing production costs. Summary of the Invention

[0008] In order to solve the above problems, the main object of the present utility model is to provide a buffer support structure with strong versatility and good protection effect.

[0009] Another object of the present utility model is to provide a buffer packaging system provided with the above buffer support structure.

[0010] A further object of the present utility model is to provide a packaged product provided with the above buffer packaging system.

[0011] In order to achieve the main object of the present utility model, the present utility model provides a buffer support structure, which includes an elastic buffer member and at least one buffer support member. The elastic buffer member is in a plate shape or a strip shape, the elastic buffer member has a plurality of buffer slots, the plurality of buffer slots are distributed along the length direction of the elastic buffer member, the buffer slots extend along the width direction of the elastic buffer member, and the buffer support member can be selectively filled in the buffer slots.

[0012] As can be seen from the above, through the design of the buffer support structure, when the buffer support structure buffers and supports the object to be packaged, the elastic buffer member can elastically deform to fit the contour of the object to be packaged through the buffer slots, and the buffer support member can be selectively filled in the buffer slots to perform fixed-point buffering and support on certain parts of the object to be packaged according to the contour of the object to be packaged, so that the buffer support structure can better wrap and protect the object to be packaged. At the same time, the elastic buffer member can also force local elastic deformation of the elastic buffer member to buffer and support certain parts of the object to be packaged that are concave with respect to the buffer support structure. The buffer support structure provided by the present utility model can buffer and support both the object to be packaged with a square shape and the object to be packaged with a special-shaped (irregular shape), has strong versatility, a wide application range, can reduce production costs, and has a better protection effect.

[0013] A preferred solution is that the elastic buffer includes a first plate body, a second plate body and multiple partition plates. The second plate body is disposed opposite to the first plate body in the thickness direction of the elastic buffer. The partition plates are located between the first plate body and the second plate body. The multiple partition plates are distributed along the length direction, and the partition plates extend along the width direction. Buffer slot holes are formed among the first plate body, the second plate body and the multiple partition plates.

[0014] As can be seen from the above, through the design of the elastic buffer, the production of the elastic buffer is made simpler and more convenient.

[0015] A further solution is that a first tear line is provided at the junction of the first plate body and the partition plate; and / or a second tear line is provided at the junction of the second plate body and the partition plate.

[0016] As can be seen from the above, the above design enables users to cut and intercept the elastic buffer according to the dimensional requirements during use by means of the first tear line and the second tear line, and it can be completed by hand without the aid of special tools (such as knives, scissors, etc.), thereby making the use of the elastic buffer more convenient and flexible, which is conducive to improving the packaging efficiency.

[0017] A further solution is that the first tear line penetrates into the first plate body in the thickness direction, and the first depth of the first tear line is less than or equal to one half of the first thickness of the first plate body; the second tear line penetrates into the second plate body in the thickness direction, and the second depth of the second tear line is less than or equal to one half of the second thickness of the second plate body.

[0018] As can be seen from the above, through the design of the depth of the tear line, it can not only ensure that users can cut and intercept the elastic buffer by hand, but also prevent the elastic buffer from being non-demandingly broken due to the existence of the tear line during use, thereby effectively ensuring the buffering and supporting effects of the buffer support structure.

[0019] A further solution is that the sum of the first thickness, the second thickness and the first width of the partition plate in the thickness direction is less than or equal to the second width of the buffer slot hole in the length direction.

[0020] As can be seen from the above, this design enables the elastic buffer to form a corner protection structure by tearing off the part between two adjacent partition plates on the first plate body or the second plate body and then bending the elastic buffer, and enables the elastic buffer to be bent at a right angle, thereby making the use of the elastic buffer more flexible and enabling it to be better arranged around the side wall of the storage cavity of the packaging container to closely fit between the side wall of the storage cavity and the object to be packaged, enhancing the buffering and supporting effects of the buffer support structure.

[0021] Another preferred solution is that the buffer support is an air column bag, cardboard, paper, sponge or foam; when the buffer support is cardboard, the cardboard is bent and filled into the buffer slot; when the buffer support is paper, the paper is crumpled into a ball and filled into the buffer slot.

[0022] It can be seen from the above that, through the design of the buffer support, the buffer support can have both buffering and supporting functions, so as to better cooperate with the buffer slot holes on the elastic buffer to buffer and support the packaged objects.

[0023] A further solution is that the buffer slot penetrates the elastic buffer along the width direction of the elastic buffer; and the elastic buffer is made of EPE, EVA or EPP.

[0024] As can be seen from the above, the elastic buffer made of EPE, EVA or EPP can have excellent buffering performance and good elastic deformation ability, so that the buffer support structure can better fit the packaged object.

[0025] In order to achieve another purpose of the utility model, the utility model provides a cushioning packaging system, including a packaging container, the packaging container having a storage cavity, wherein the cushioning packaging system also includes the above-mentioned cushioning support structure, the cushioning support structure is arranged in the storage cavity; the cushioning support structure itself forms a accommodating position, and / or the cushioning support structure and the packaging container form a accommodating position.

[0026] As can be seen from the above, in the buffer packaging system provided with the above-mentioned buffer support structure, when packaging the packaged objects, the elastic buffer member of the buffer support structure can be elastically deformed to fit the contour of the packaged objects through the buffer slot hole, and can be selectively filled in the buffer slot hole in cooperation with the buffer support member, so as to perform fixed-point buffering and support on certain parts of the packaged objects according to the contour of the packaged objects, so that the buffer support structure can better wrap and protect the packaged objects. At the same time, the elastic buffer member can also force the elastic buffer member to undergo local elastic deformation, so as to perform buffering and support on certain parts of the packaged objects that are concave relative to the buffer support structure. As a result, the buffer packaging system can not only buffer and support square-shaped packaged objects, but also buffer and support special-shaped (irregular-shaped) packaged objects, and has the advantages of strong versatility, wide range of application, reduced production costs and excellent protection effect.

[0027] A further solution is that the cushioning packaging system further includes a first cushion and / or a second cushion, the first cushion is placed at the bottom of the accommodating position, and the second cushion is placed at the top of the accommodating position.

[0028] It can be seen from the above that this design can further cushion and support the packaged objects, thereby improving the protective effect of the cushioning packaging system on the packaged objects.

[0029] To achieve another object of the present utility model, the present utility model provides a packaging product, including an object to be packaged. Among them, it further includes the above-mentioned buffer packaging system, and the object to be packaged is placed in a receiving position and abuts against an elastic buffer member.

[0030] As can be seen from the above, for the packaging product adopting the above buffer packaging system, its buffering and supporting effects on the object to be packaged are good, the production cost can be reduced, and the protection effect is better. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is a schematic diagram of the existing packaging treatment of products using the combination of a packaging box and EPE.

[0032] Figure 2 It is a reference diagram of the first use state of an embodiment of the buffer support structure of the present utility model.

[0033] Figure 3 It is Figure 2 The enlarged view at position H in

[0034] Figure 4 It is Figure 2 The enlarged view at position I in

[0035] Figure 5 It is the structure diagram of the elastic buffer member of an embodiment of the buffer support structure of the present utility model.

[0036] Figure 6 It is the exploded view of the elastic buffer member of an embodiment of the buffer support structure of the present utility model.

[0037] Figure 7 It is the schematic diagram of the tear line setting of the elastic buffer member of an embodiment of the buffer support structure of the present utility model.

[0038] Figure 8 It is the partial structure diagram of the elastic buffer member of an embodiment of the buffer support structure of the present utility model.

[0039] Figure 9 It is the reference diagram of the second use state of an embodiment of the buffer support structure of the present utility model.

[0040] Figure 10 It is the reference diagram of the use state when the buffer support member of an embodiment of the buffer support structure of the present utility model is an air column bag.

[0041] Figure 11 It is the reference diagram of the use state when the buffer support member of an embodiment of the buffer support structure of the present utility model is a hard paper card.

[0042] Figure 12 It is the reference diagram of the first use state of an embodiment of the buffer guarantee system of the present utility model.

[0043] Figure 13 It is the second usage state reference diagram of the buffer guarantee system embodiment of the present utility model.

[0044] Figure 14 It is the third usage state reference diagram of the buffer guarantee system embodiment of the present utility model.

[0045] Figure 15 It is the fourth usage state reference diagram of the buffer guarantee system embodiment of the present utility model.

[0046] Figure 16 It is the fifth usage state reference diagram of the buffer guarantee system embodiment of the present utility model.

[0047] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments. Specific embodiments

[0048] Embodiment of the buffer support structure

[0049] Referring to Figures 2 to 4 , the buffer support structure 100 includes an elastic buffer member 1 and a support buffer member; wherein, the elastic buffer member 1 can be arranged in a plate shape or a strip shape. For example, the elastic buffer member 1 can be made into a plate shape with a fixed length for easy transportation, storage, etc.; or for another example, the elastic buffer member 1 can be made into a coiled strip shape, so that the user can cut out the required length of the elastic buffer member 1 according to their own usage needs, thereby reducing the waste of the elastic buffer member 1 and improving the utilization rate of the elastic buffer member 1.

[0050] Combining Figure 5 , the elastic buffer member 1 has a plurality of buffer slots 10, and the plurality of buffer slots 10 are distributed along the length direction X of the elastic buffer member 1, and the buffer slots 10 extend along the width direction Y of the elastic buffer member 1; preferably, the buffer slots 10 penetrate the elastic buffer member 1 in the width direction Y of the elastic buffer member 1, so that the elastic buffer member 1 can undergo a large degree of elastic deformation through the buffer slots 10, and different parts of the elastic buffer member 1 itself can undergo different degrees of elastic deformation through the buffer slots 10, thereby enabling the elastic buffer member 1 to better fit the packaged object; of course, as another alternative solution, in other embodiments, the buffer slots 10 may not penetrate the elastic buffer member 1, that is, the buffer slots 10 are in the shape of blind (slots) at this time.

[0051] Combining Figure 6, the elastic buffer 1 preferably includes a first plate body 11, a second plate body 12 and multiple partition plates 13; wherein, the first plate body 11 and the second plate body 12 are oppositely arranged in the thickness direction Z of the elastic buffer 1, that is, when the elastic buffer 1 is in a non-extruded and wound state, its first plate body 11 and second plate body 12 can be basically parallel. The partition plates 13 are located between the first plate body 11 and the second plate body 12, and the multiple partition plates 13 are distributed along the length direction X; preferably, the distance between any two adjacent partition plates 13 is basically the same. In addition, the partition plates 13 also extend along the width direction Y, and preferably, in the width direction Y, the two ends of the partition plates 13 are flush with the two sides of the first plate body 11, and the two ends of the partition plates 13 are flush with the two sides of the second plate body 12. Furthermore, the partition plates 13 are preferably bonded and fixed to the first plate body 11 and the second plate body 12 through an adhesive. A buffer slot hole 10 is formed between the first plate body 11, the second plate body 12 and the multiple partition plates 13. Specifically, a buffer slot hole 10 is formed between every two adjacent partition plates 13 and the first plate body 11 and the second plate body 12. Through the above design of the elastic buffer 1, the production of the elastic buffer 1 is made simpler, and it is convenient for the elastic buffer 1 to be produced automatically or semi-automatically, which is beneficial to improving the production effect and finished product quality of the elastic buffer 1.

[0052] Combined with Figure 7 and Figure 8 , at the junction of the first plate body 11 and the partition plate 13, a first easy tear line 111 is provided; and / or, at the junction of the second plate body 12 and the partition plate 13, a second easy tear line 121 is provided. As in this embodiment, a first easy tear line 111 is provided at the junction of the first plate body 11 and the partition plate 13, and a second easy tear line 121 is provided at the junction of the second plate body 12 and the partition plate 13. This design enables the user to cut and intercept the elastic buffer 1 according to the required length during use by means of the first easy tear line 111 and the second easy tear line 121, and only need to use bare hands to complete the cutting and interception of the elastic buffer 1, so that there is no need to rely on special tools (such as knives, scissors, etc.), making the use of the elastic buffer 1 more convenient and flexible, and beneficial to improving the packaging efficiency. In addition, the user can also tear off a part of the first plate body 11 between two adjacent partition plates 13 through the first easy tear line 111, or tear off a part of the second plate body 12 between two adjacent partition plates 13 through the second easy tear line 121, so that the elastic buffer 1 can be better bent and the elastic buffer 1 can form a corner guard structure (see Figure 9 ).

[0053] Preferably, the first tear line 111 penetrates into the first plate body 11 in the thickness direction Z, and the first depth H1 of the first tear line 111 is less than or equal to one-half of the thickness W1 of the first plate body 11; more preferably, the first depth H1 of the first tear line 111 is one-third of the thickness W1 of the first plate body 11. Through the depth design of the first tear line 111, it can be ensured that the user can cut and intercept the elastic buffer 1 only by manual operation, and it can be avoided that the elastic buffer 1 breaks non-demandingly due to the existence of the first tear line 111, effectively ensuring the buffering and supporting effects of the buffer support structure 100. Among them, the first tear line 111 is preferably a continuous straight line segment; of course, as another alternative, the first tear line 111 can also be a darning line, and setting the first tear line 111 as a darning line can appropriately increase the non-demand-breaking resistance of the first plate body 11 at the first tear line 111.

[0054] Similarly, the second tear line 121 penetrates into the second plate body 12 in the thickness direction Z, and the second depth H2 of the second tear line 121 is less than or equal to one-half of the thickness W2 of the second plate body 12; more preferably, the second depth H2 of the second tear line 121 is one-third of the thickness W2 of the second plate body 12. Through the depth design of the second tear line 121, it can be ensured that the user can cut and intercept the elastic buffer 1 only by manual operation, and it can be avoided that the elastic buffer 1 breaks non-demandingly due to the existence of the second tear line 121, effectively ensuring the buffering and supporting effects of the buffer support structure 100. Among them, the second tear line 121 is preferably a continuous straight line segment; of course, as another alternative, the second tear line 121 can also be a darning line, and setting the second tear line 121 as a darning line can appropriately increase the non-demand-breaking resistance of the second plate body 12 at the second tear line 121.

[0055] In addition, the sum of the first thickness W1 of the first plate body 11, the second thickness W2 of the second plate body 12, and the first width W3 of the partition 13 in the thickness direction Z is less than or equal to the second width W4 of the buffer slot 10 in the length direction X, that is, W1 + W2 + W3 ≤ W4; among them, the first thickness W1 is preferably equal to the second thickness W2, that is, W1 = W2. More preferably, the sum of the first thickness W1 of the first plate body 11, the second thickness W2 of the second plate body 12, and the first width W3 of the partition 13 in the thickness direction Z is equal to the second width W4 of the buffer slot 10 in the length direction X, that is, W1 + W2 + W3 = W4; this design is beneficial to the elastic buffer 1 not rebounding and unfolding easily after being bent at a right angle, so that the elastic buffer 1 can better maintain the right-angle bending state.

[0056] Such as Figure 9As shown, by tearing off the part between two adjacent partitions 13 on the first plate body 11 or the second plate body 12, and then bending the elastic buffer 1, the elastic buffer itself can form a corner protection structure, and the elastic buffer 1 can be bent at a right angle, so that the use of the elastic buffer 1 is more flexible, and it can be better arranged around the side wall of the storage cavity of the packaging container to closely fit between the side wall of the storage cavity and the object to be packaged, improving the buffering and supporting effects of the buffer support structure 100.

[0057] In this embodiment, the elastic buffer 1 is preferably made of EPE (ethylene vinyl acetate foam) material, so that it has excellent buffering performance and good elastic deformation ability, so that the buffer support structure 100 can better fit the object to be packaged. Of course, in other alternative solutions, the elastic buffer 1 can also be made of EVA (ethylene-vinyl acetate copolymer) material or EPP (high foaming polypropylene) material.

[0058] The number of buffer supports 2 is at least one; preferably, the number of buffer supports 2 is more than two; and the buffer supports 2 can be selectively filled in the buffer slots 10. Combining Figure 10 and Figure 11 , the buffer support 2 can be an air column bag 21, a hard paper card 22, paper, sponge or foamed foam. Among them, when the buffer support 2 is an air column bag 21, the number of air columns included in the air column bag 21 can be selected according to the size of the buffer slot 10, the contour of the object to be packaged, the deformation amount of the elastic buffer 1, etc., and the air column bag 21 is folded and filled into the buffer slot 10 at the relevant part of the elastic buffer 1; when the buffer support 2 is a hard paper card 22, after cutting or tearing the hard paper card 22 into the corresponding size according to the requirement, the hard paper card 22 is bent and filled into the buffer slot 10 at the relevant part of the elastic buffer 1; when the buffer support 2 is paper (such as newspaper, wrapping paper, printing paper, etc.), the paper is kneaded into a ball and filled into the buffer slot 10 at the relevant part of the elastic buffer 1; when the buffer support 2 is a sponge or foamed foam, a sponge or foamed foam of the corresponding size is selected according to the requirement and filled into the buffer slot 10 at the relevant part of the elastic buffer 1. It can be seen that the buffer slot 10 is both used to cooperate with the buffer support 2 to make the elastic buffer 1 better fit the contour of the object to be packaged, and the elastic buffer 1 can elastically deform to fit the contour of the object to be packaged through the buffer slot 10, rather than for accommodating the object to be packaged.

[0059] It should be noted that when the number of the buffer supports 2 is more than two, the buffer supports 2 can include more than two types. For example, some of the buffer supports 2 are air column bags 21, some are hard paper cards 22, some are paper, some are sponges, some are foamed foams, etc. Through the design of the buffer supports 2, the buffer supports 2 can have both buffering and supporting functions, so as to better cooperate with the buffer slots 10 on the elastic buffer 1 to buffer and support the packaged object.

[0060] When the buffer support structure 100 buffers and supports the packaged object, the elastic buffer 1 can undergo elastic deformation to conform to the contour of the packaged object through the buffer slots 10, and the buffer supports 2 can be selectively filled in the buffer slots 10, so that the elastic buffer 1 can better conform to the contour of the packaged object, and can perform fixed-point buffering and supporting on some parts of the packaged object, enabling the buffer support structure 100 to better wrap and protect the packaged object. In addition, through the buffer supports 2, local elastic deformation of the elastic buffer 1 can also be forced to buffer and support some parts of the packaged object that are concave relative to the buffer support structure 100. Moreover, the buffer supports 2 can also appropriately increase the strength of the elastic buffer 1, thereby enhancing the buffering and supporting effect of the buffer support structure 100.

[0061] In summary, through the design of the buffer support structure 100, the buffer support structure 100 can buffer and support both square-shaped and irregular-shaped packaged objects, with the advantages of strong versatility, wide application range, reduced production costs, and good protection effect. In addition, compared with the existing solid plate-shaped buffer support structure, the buffer support structure 100 has a 30% to 45% increase in material utilization rate and a cost reduction of about 30% under the same volume. Moreover, for some usage scenarios, the packaged object can also be buffered and supported only by the elastic buffer.

[0062] Embodiment of the buffer packaging system

[0063] Combined with Figures 12 to 16 , the buffer packaging system includes a packaging container 3 and the buffer support structure 100 described in the above embodiment of the buffer support structure 100. The packaging container 3 can be a packing box, a packaging box, etc. The packaging container 3 has a storage cavity 31 for storing the packaged object 4 and the buffer support structure 100. Among them, the buffer support structure 100 itself encloses a placement position, and / or a placement position is enclosed between the buffer support structure 100 and the packaging container 3. Preferably, as in this embodiment, the packaging container 3 is a packing box, and the buffer support structure 100 itself encloses a placement position to provide more comprehensive protection for the packaged object 4.

[0064] When using a buffer packaging system to package the object to be packaged 4, the elastic buffer member 1 is laid in the storage cavity 31 so that the elastic buffer member 1 encloses a receiving position; then the object to be packaged 4 is placed in the receiving position. At this time, the elastic buffer member 1 can undergo elastic deformation to fit the contour of the object to be packaged 4 through the buffer slots 10; then, an appropriate buffer support member 2 is selected and selectively filled into the buffer slots 10 according to the contour of the object to be packaged 4, so that the buffer support structure 100 can better wrap and protect the object to be packaged 4, and perform fixed-point buffering and support on the special parts and important parts of the object to be packaged 4. At the same time, the buffer support member 2 can also force specific local parts of the elastic buffer member 1 to undergo elastic deformation to buffer and support certain parts of the object to be packaged 4 that are concave relative to the buffer support structure 100.

[0065] Preferably, the buffer packaging system further includes a first buffer pad and / or a second buffer pad; more preferably, the buffer packaging system includes a first buffer pad and a second buffer pad. The first buffer pad is placed at the bottom of the receiving position, and the second buffer pad is placed at the top of the receiving position. The first buffer pad and the second buffer pad can cooperate with the buffer support structure 100 to further buffer and support the object to be packaged 4, thereby improving the protection effect of the buffer packaging system on the object to be packaged 4. Among them, the first buffer pad can be a solid buffer pad and can be made of EPE material, EVA material, EPP material, foamed foam or sponge. Of course, as other alternative solutions, the buffer support structure 100 can also be used as the first buffer pad; similarly, the second buffer pad can be a solid buffer pad and can be made of EPE material, EVA material, EPP material, foamed foam or sponge. Of course, as other alternative solutions, the buffer support structure 100 can also be used as the second buffer pad.

[0066] In summary, this buffer packaging system can buffer and support objects to be packaged 4 with regular shapes (such as Figure 12 , Figure 13 , Figure 16 shown), and can also buffer and support objects to be packaged 4 with irregular shapes (such as Figure 14 , Figure 15 shown). It has the advantages of strong versatility, wide application range, low production cost and excellent protection effect.

[0067] Packaging Product Embodiment

[0068] Reference Figures 12 to 16, the packaged product includes the object 4 to be packaged and the buffer packaging system described in the above buffer packaging system. When packaging the object 4 to be packaged, the object 4 to be packaged is placed in the accommodating position so that the object 4 to be packaged abuts against the buffer support structure 100, thereby buffering and supporting the object 4 to be packaged. By using the above buffer packaging system, the packaged product has a better effect of buffering and supporting the object 4 to be packaged, can reduce the production cost, and improve the protection effect.

[0069] Finally, it should be emphasized that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. Buffer support structure, characterized in that, Comprising: An elastic buffer member, the elastic buffer member being in a plate shape or a strip shape, the elastic buffer member having a plurality of buffer slots, the plurality of buffer slots being distributed along the length direction of the elastic buffer member, and the buffer slots extending along the width direction of the elastic buffer member; At least one buffer support member, the buffer support member being selectively fillable in the buffer slots.

2. The buffer support structure according to claim 1, wherein: The elastic buffer member includes: A first plate body; A second plate body, the second plate body being oppositely disposed relative to the first plate body in the thickness direction of the elastic buffer member; Multiple partition plates, the partition plates being located between the first plate body and the second plate body, the multiple partition plates being distributed along the length direction, the partition plates extending along the width direction, and the buffer slots being formed by enclosing between the first plate body, the second plate body and the multiple partition plates.

3. The buffer support structure according to claim 2, wherein: A first easily tearable line is provided at the junction of the first plate body and the partition plate; and / or A second easily tearable line is provided at the junction of the second plate body and the partition plate.

4. The buffer support structure according to claim 3, wherein: The first easily tearable line penetrates into the first plate body in the thickness direction, and a first depth of the first easily tearable line is less than or equal to one half of a first thickness of the first plate body; The second easily tearable line penetrates into the second plate body in the thickness direction, and a second depth of the second easily tearable line is less than or equal to one half of a second thickness of the second plate body.

5. The buffer support structure according to claim 4, wherein: The sum of the first thickness, the second thickness and a first width of the partition plate in the thickness direction is less than or equal to a second width of the buffer slot in the length direction.

6. The buffer support structure according to claim 1, wherein: The buffer support member is an air column bag, a hard paper card, paper, sponge or foamed foam; When the buffer support member is a hard paper card, the hard paper card is filled in the buffer slot in a bent shape; When the buffer support member is paper, the paper is filled in the buffer slot in a crumpled shape.

7. The buffer support structure according to any one of claims 1 to 6, wherein: The buffer slots penetrate through the elastic buffer member along the width direction of the elastic buffer member; The elastic buffer member is made of EPE, EVA or EPP.

8. A buffer packaging system, including a packaging container, the packaging container having a storage cavity, wherein: The buffer packaging system further includes the buffer support structure according to any one of claims 1 to 7, the buffer support structure being disposed in the storage cavity; The buffer support structure encloses an accommodation position by itself, and / or An accommodation position is enclosed between the buffer support structure and the packaging container.

9. The buffer packaging system according to claim 8, wherein: The buffer packaging system further includes: A first buffer pad, the first buffer pad being placed at the bottom of the accommodation position; and / or A second buffer pad, the second buffer pad being placed at the top of the accommodation position.

10. A packaged product, including the object to be packaged, characterized in that, It further includes the buffer packaging system as described in claim 8 or 9, wherein the object to be packaged is placed in the accommodating position and abuts against the elastic buffer member.