A jam buffer structure for pharmaceutical products
The outer and inner box structure made of cardboard solves the problems of large space occupation and environmental pollution of pharmaceutical product packaging boxes, and achieves efficient and environmentally friendly transportation and user experience.
Patent Information
- Application Number
- CN202311018526.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-14
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2043-08-14
AI Technical Summary
Existing pharmaceutical product packaging boxes take up a lot of space, are difficult to fold, affect transportation efficiency, are not environmentally friendly, and foam boxes are prone to shedding, affecting user experience.
The outer and inner boxes are made of cardboard, with the inner box embedded inside the outer box. The inner box is folded from cardboard into a box structure and has a slot for placing pharmaceutical products. The outer and inner boxes are connected by tongues and slots to enhance structural stability and resistance to deformation.
It reduces mold manufacturing costs, decreases storage space requirements, improves transportation efficiency and user experience, and the materials are easy to recycle and have good environmental performance.
Smart Images

Figure CN116902343B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of buffer structure, and particularly relates to a card paper buffer structure suitable for medical product. BACKGROUND
[0002] Medical products usually need to be transported between manufacturers, distributors, hospitals and other medical institutions, and the medical products are usually high-value and easily damaged, so as to ensure that the medical products can safely and efficiently reach the target market and the hands of users, the packaging of medical products plays an important role in the transportation process.
[0003] In order to prevent the medical products from being collided, extruded or damaged in the transportation process, common medical product packaging structures are plastic boxes, foam boxes and the like, and EPE, EPS and EVA materials are usually used for protection.
[0004] The prior art has the following defects: the packaging of medical products made of EPE, EPS and EVA materials, plastic boxes, foam boxes and the like are difficult to fold in the transportation process, the packaging materials occupy a large warehouse space, which is not conducive to the storage and transportation of medical products, and affects the transportation efficiency of medical products; and the foam box is easy to drop in the use process, which affects the user's use experience, so there is room for improvement. SUMMARY
[0005] The application provides a card paper buffer structure suitable for medical product, which solves the problem that the packaging box of medical product occupies a large space and affects the transportation efficiency of medical product.
[0006] The purpose of the application can be achieved by the following technical scheme:
[0007] A card paper buffer structure suitable for medical product, comprising an outer box and an inner box which are independently arranged, the inner box is embedded in the outer box; the outer box is integrally folded by card paper, and the inner box is integrally folded by card paper; the outer box comprises a box body structure with an upper end opening and a cover plate covering the upper end of the box body structure, and an insertion tongue is integrally formed on the cover plate and inserted into the box body structure; the inner box is a box body structure, and an embedded groove integrally formed by folding is recessed on the upper end of the inner box; the medical product is placed in the embedded groove.
[0008] Preferably, the inner box comprises an inner bottom plate, an inner side plate surrounded by the edge of the inner bottom plate, and a folding plate covering the upper end of the inner side plate; the folding plate is provided with a folding strip which can be folded inward, and the folding strip is folded to form an embedded groove.
[0009] Preferably, the two side edges of the inner bottom plate are provided with frame structures, upper end faces and inner side walls of the frame structures are provided with insertion slots, and the folding plate is integrally formed with an insertion plate which is inserted into the two groups of insertion slots.
[0010] Preferably, the insertion plate is provided with a tab at a position close to an upper end of the insertion slot.
[0011] Preferably, the two sides of the inner side plate are integrally formed with vertical plates which are used to connect adjacent two groups of inner side plates.
[0012] Preferably, the upper end of the insertion plate is integrally formed with an extension piece at a position close to the inner side plate, and the extension piece is clamped in the insertion slot.
[0013] Preferably, the box body structure comprises outer bottom plates and outer side plates enclosed by edges of the outer bottom plates, and one group of the outer side plates is integrally formed with extension plates which are used to connect two groups of adjacent outer side plates.
[0014] Preferably, the two side edges of the folding plate at the connection position of the folding plate and the insertion plate are recessed with grooves which are clamped and matched with the insertion slots.
[0015] Preferably, the horizontal slot of the insertion slot does not completely penetrate the horizontal upper end face of the frame structure.
[0016] Preferably, two groups of parallel inner side plates are integrally formed with support plates, and the frame structure is folded by the support plates and the inner side plates.
[0017] The present application has the following advantages:
[0018] 1. The paper is used for packaging, which reduces the manufacturing cost of the mold compared with the plastic box, is used for most economical and practical medical products, and has the characteristics of not being easy to scatter compared with the foam box, avoids the trouble of cleaning the warehouse in the transportation process, and improves the user experience; at the same time, the paper box can be folded and placed in the transportation process, reduces the space occupied in storage, reduces the requirement for warehouse space capacity, reduces the transportation cost and improves the transportation efficiency; the material required by the paper box is relatively easy to obtain, which further reduces the manufacturing cost; compared with EPE, EPS and EVA materials, the paper box is more easily recycled and naturally decomposed to reduce environmental pollution, and improves the green environmental protection performance of the medical product packaging.
[0019] 2、In the upper end face and the inner side wall of the frame structure are provided with a slot, the plugboard is inserted into the slot, the folding plate abuts against the upper end face of the frame structure, the connection stability between the folding plate and the frame structure is increased; the extension piece is provided, the limiting of the plugboard is realized, the upper end of the extension piece is clamped with the inner wall of the slot, the plugboard is not easy to fall off from the slot during transportation and storage. BRIEF DESCRIPTION OF DRAWINGS
[0020] In order to facilitate the understanding of those skilled in the art, the present application will be further described below with reference to the drawings.
[0021] Figure 1 is the overall structure schematic diagram of the embodiment of the present application;
[0022] Figure 2 is Figure 1 is the enlarged view of A in the figure;
[0023] Figure 3 is the unfolded folding diagram of the inner box of the present application;
[0024] Figure 4 is Figure 3 is the enlarged view of B in the figure;
[0025] Figure 5 is the unfolded folding diagram of the outer box of the present application.
[0026] Legend: 1, outer box; 10, box structure; 101, outer bottom plate; 102, outer side plate; 103, extension plate; 12, cover plate; 13, plug tongue; 2, inner box; 21, inner bottom plate; 22, inner side plate; 23, folding plate; 24, folding strip; 25, plugboard; 26, extension piece; 27, groove; 3, embedding groove; 4, frame structure; 41, slot; 42, support plate; 5, tab; 6, vertical plate. DETAILED DESCRIPTION
[0027] In order to further illustrate the technical means and effects adopted by the present application to achieve the predetermined purpose, the specific embodiments, structures, features and effects according to the present application are described in detail as follows in combination with the drawings and preferred embodiments.
[0028] Please refer to Figures 1-5 In order to protect the medical products from collision, extrusion and other damage during transportation, the medical products are placed in a packaging box, and common packaging boxes include plastic boxes and foam boxes; the plastic boxes and foam boxes are made of EPE, EPS and EVA materials, which are difficult to fold during transportation, and the space occupied by the transportation packaging box is large, which increases the transportation cost and reduces the transportation efficiency; in addition, the mold customization cost of the plastic box is high, which is not conducive to reducing the manufacturing cost of the medical products, and the foam box is easy to fall off during transportation, which affects the user experience.
[0029] Based on this, the application provides a paperboard buffer structure suitable for medical product packaging. The buffer structure is formed by folding a paperboard box to package medical products, and the buffer structure protects the medical products. The buffer structure includes an outer box 1 and an inner box 2 arranged independently, and the inner box 2 is embedded in the outer box 1. The outer box 1 is integrally folded from paperboard, and the inner box 2 is integrally folded from paperboard. The outer box 1 includes a box body structure 10 with an opening at the upper end and a cover plate 12 covering the upper end of the box body structure 10. The cover plate 12 is integrally formed with a tongue 13, and the tongue 13 is inserted into the box body structure 10. The inner box 2 is a box structure, and the upper end of the inner box 2 is recessed with an embedding groove 3. The medical products are placed in the embedding groove 3.
[0030] In use, the inner box 2 is placed in the outer box 1, the medical products are placed in the embedding groove 3, and the cover plate 12 is covered and connected, and the tongue 13 is inserted into the gap between the outer box 1 and the inner box 2, so that the medical products are packaged and protected, and the packaging process is more convenient. The box structure with the embedding groove 3 forms a buffer structure, which protects the medical products placed in the embedding groove 3. The inner box 2 is placed in the outer box 1, the tongue 13 is inserted into the box body structure 10, and the cover plate 12 is tightly covered. Paperboard is used for packaging, which reduces the manufacturing cost of the mold compared with plastic boxes, is suitable for most affordable medical products, and has the characteristics of not being easy to scatter compared with foam boxes, avoiding the trouble of cleaning the warehouse during transportation, improving the user experience. At the same time, the paper box can be folded and placed during transportation, reducing the space occupied during storage, reducing the requirement for warehouse space capacity, reducing transportation cost and improving the transportation efficiency of medical products; the materials required for the paper box are relatively easy to obtain, further reducing the manufacturing cost; compared with EPE, EPS and EVA materials, the paper box is more easily recycled and naturally decomposed to reduce environmental pollution, and the green environmental protection performance of the medical product packaging is improved.
[0031] Referring to Figure 1 and Figure 3 , in order to further simplify the manufacturing method of the embedding groove 3, reduce the manufacturing cost of the inner box 2, and improve the assembly convenience of the inner box 2, the application sets the inner box 2 to include an inner bottom plate 21, an inner side plate 22 surrounding the edge of the inner bottom plate 21, and a folding plate 23 covering the upper end of the inner side plate 22. The folding plate 23 is provided with a folding strip 24 that can be folded inward, and the folding strip 24 is folded to form the embedding groove 3. Compared with the method of opening the upper end of the inner box 2 and fixing the groove-shaped mounting structure, the folding plate 23 and the folding strip 24 are folded to form the embedding groove 3, which is easy to operate, makes the assembly process more efficient and convenient, makes the embedding groove 3 and the inner box 2 more integrated, reduces the number of molds used in the manufacturing process, and reduces the storage space occupied during paper box transportation.
[0032] Referring toFigure 1 And Figure 2 Since the box structure of the inner box 2 is only composed of the inner bottom plate 21, the inner side wall and the folding plate 23, the structural strength of the inner box 2 is insufficient, and the inner box 2 is prone to deformation after being extruded in the transportation process, which is not conducive to protecting fragile or high-precision medical products. Based on this, the frame structure 4 is arranged on the two side edges of the inner bottom plate 21 which are parallel to each other, the upper end surface of the frame structure 4 and the inner side wall are jointly provided with the insertion slot 41, and the folding plate 23 is integrally formed with the insertion plate 25 which is inserted into the two groups of insertion slots 41. The arrangement of the frame structure 4 plays the role of a reinforcing rib in the inner box 2, increases the structural strength of the inner box 2, enables the structure of the inner box 2 to withstand greater load and external force, increases the anti-deformation ability of the inner box 2, enhances the anti-seismic ability of the inner box 2, and further realizes the protection of the medical products; the insertion slot 41 is arranged on the upper end surface of the frame structure 4 and the inner side wall, and the insertion plate 25 is inserted into the insertion slot 41, so that the folding plate 23 abuts against the upper end surface of the frame structure 4, and the connection stability between the folding plate 23 and the frame structure 4 is increased.
[0033] Referring to Figure 1 And Figure 2 Since there is no fixing structure for placing the medical products in the embedded groove 3, when a large-amplitude shock occurs, the medical products are prone to fall out of the embedded groove 3, and the stability of the medical products in the embedded groove 3 is insufficient. Based on this, the insertion plate 25 is provided with the tab 5 at the position of the upper end of the side close to the embedded groove 3; the arrangement of the tab 5 realizes the fixation of the medical products in the embedded groove 3, and when a shock occurs in the transportation process or the packaging box is accidentally dropped in the use process, the design makes it difficult for the medical products to slide out of the embedded groove 3, ensures the safety of the medical products in the transportation process and the use process, reduces the loss of the medical products in the transportation process, and improves the delivery efficiency.
[0034] Referring to Figure 3 Since the inner box 2 is folded from cardboard, the connection between the inner side plates 22 is insufficient, and there are gaps at the connection positions between the groups of inner side plates 22, which affects the structural strength of the inner box 2. Based on this, the vertical plate 6 is integrally formed on the two sides of the inner side plate 22, and the vertical plate 6 is used to connect the adjacent two groups of inner side plates 22. The arrangement of the vertical plate 6 enhances the connection stability between the adjacent two groups of inner side plates 22 and reduces the gaps between the adjacent two groups of inner side plates 22; at the same time, the vertical plate 6 plays a certain supporting role, the vertical plate 6 increases the overall strength and rigidity of the inner box 2, increases the compression resistance of the paper box, makes the inner box 2 more solid and stable, reduces the deformation or rupture of the inner box 2 in the transportation and stacking process, and protects the integrity of the medical products in the inner box 2.
[0035] Referring to Figure 1 And Figure 2Since the plug plate 25 is vertically plugged into the slot 41, the plug plate 25 is easy to slide out of the slot 41 during transportation, and the plug plate 25 can cause the inner box 2 to be loose, and further cause the inner box 2 to be scattered. Based on this, the extension piece 26 is arranged at the position of the upper end of the plug plate 25 close to the inner side plate 22, and the extension piece 26 is clamped in the slot 41. The extension piece 26 is arranged to limit the plug plate 25, and the upper end of the extension piece 26 is clamped with the inner wall of the slot 41. During transportation and storage, the plug plate 25 is not easy to fall out of the slot 41, which ensures the installation stability of the folding plate 23 and the overall structural stability of the inner box 2.
[0036] With reference to Figure 1 and Figure 5 The processing of the carton usually needs to go through the processes of cutting, folding and bonding. The box body structure 10 includes an outer bottom plate 101 and outer side plates 102 surrounding the edges of the outer bottom plate 101. In order to improve the manufacturing precision and structural stability of the carton and enhance the connection stability between the outer side plates 102, the extension plates 103 are integrally formed on one group of the outer side plates 102, and the extension plates 103 are used to connect two adjacent groups of the outer side plates 102. The extension plates 103 are bonded to the adjacent group of the outer side plates 102 after production, which improves the convenience of fixing between the side plates and ensures the structural stability of the vertical side wall of the box body structure 10. When the box body structure 10 is not needed to be used, the box body structure 10 is pressed and folded along the diagonal line, so that the storage space of the outer box 1 is reduced. When the box body structure 10 needs to be used, the box body structure 10 is unfolded along the diagonal line again, which ensures the reusability of the box body structure 10.
[0037] With reference to Figure 1 and Figure 3 Since the frame structure 4 is arranged on the two side edges of the inner bottom plate 21 parallel to each other, it is the basis for arranging the slot 41 and also the basis for ensuring the stable installation of the folding plate 23. If a model is used as the frame structure 4, a mold for producing the model needs to be additionally made, which increases the production cost. At the same time, the model needs to be bonded and fixed on the inner bottom plate 21, and the slot 41 of a suitable size needs to be formed on the model, so that the production process is relatively complex. Based on this, the integrally formed support plates 42 are arranged on the two groups of the inner side plates 22 parallel to each other, and the frame structure 4 is folded from the support plates 42 and the inner side plates 22. The integrated arrangement facilitates the production of the frame structure 4 by the workers, and only the position of the slot 41 needs to be cut in advance during the production of the cardboard, which simplifies the production process, reduces the production cost and ensures the environmental protection during the production process.
[0038] With reference to Figure 1 and Figure 3When the medical product is placed in the slot 3, the inner box 2 will be subjected to an inward concave force, and the setting of the slot 41 weakens the anti-concave ability of the inner box 2. Based on this, the horizontal slot of the slot 41 does not completely penetrate the horizontal upper end surface of the frame structure 4. The horizontal slot of the slot 41 does not completely penetrate the horizontal upper end surface of the frame structure 4, so that one side edge of the upper end surface of the frame structure 4 is completely penetrated, thereby improving the anti-deformation ability of the inner box 2. At the same time, if the horizontal slot of the slot 41 is horizontally penetrated, the slot of the slot 41 will be exposed, and the exposed slot will be easily torn and damaged under the action of pulling or other external forces during transportation and use, which is not conducive to subsequent use. The horizontal slot of the slot 41 does not completely penetrate the horizontal upper end surface of the frame structure 4, which avoids the exposure of the slot of the slot 41 to the outside of the inner box 2, and realizes the protection of the slot of the slot 41.
[0039] Referring to Figure 1 and Figure 2 Since the plug plate 25 is plugged into the slot 41, the plug plate 25 is easily rubbed with the slot of the slot 41 during transportation and use, which causes the wear of the slot of the slot 41 and the plug plate 25. Based on this, recesses 27 are recessed on both sides of the connection position of the folding plate 23 and the plug plate 25, and the recesses 27 are in clamping cooperation with the slot 41. The setting of the recesses 27 makes the connection gap between the plug plate 25 and the slot of the slot 41 surplus, reduces the wear caused by the friction of the contact position of the slot and the plug plate 25, realizes the protection of the plug plate 25 and the slot 41, prolongs the service life of the inner box 2, and increases the number of reusable times of the inner box 2.
[0040] The above is only a preferred embodiment of the present application, and does not limit the present application in any form. Although the present application has been disclosed as above, it is not intended to limit the present application. Any person skilled in the art can make some changes or modifications to the above disclosed technical content to obtain equivalent embodiments with equivalent changes, without departing from the technical solution of the present application. Any modification, change, equivalent change and modification of the above embodiments based on the technical essence of the present application are still within the scope of the technical solution of the present application.
Claims
1. A buffer structure for paperboard in pharmaceutical products, characterized in that: The device includes an outer box (1) and an inner box (2) that are independently set together. The inner box (2) is embedded inside the outer box (1). The outer box (1) is folded from cardboard in one piece, and the inner box (2) is folded from cardboard in one piece. The outer box (1) includes a box structure (10) with an opening on the upper end face and a cover plate (12) covering the upper end face of the box structure (10). The cover plate (12) has an integrally formed tongue (13) that is inserted into the box structure (10). The inner box (2) is a box structure. The upper end face of the inner box (2) is recessed with an integrally folded groove (3). The pharmaceutical product is placed in the groove (3). The inner box (2) includes an integrally folded inner bottom plate (21), an inner side plate (22) surrounding the edge of the inner bottom plate (21), and a folding plate (23) covering the upper end of the inner side plate (22); the folding plate (23) is provided with an inwardly folding strip (24), and the folding strip (24) is folded to form a groove (3); The inner bottom plate (21) has a frame structure (4) on its two parallel sides. The upper surface and inner sidewall of the frame structure (4) are provided with slots (41). The folding plate (23) has an integrally formed insert plate (25), which is inserted into the two sets of slots (41) at the same time.
2. The paper buffer structure for pharmaceutical products according to claim 1, characterized in that: A protrusion (5) is provided at the upper end of the side of the insert plate (25) near the groove (3).
3. The paper buffer structure for pharmaceutical products according to claim 2, characterized in that: The inner side plate (22) has vertical plates (6) integrally formed on both sides, and the vertical plates (6) are used to connect two adjacent sets of inner side plates (22).
4. A paper buffer structure suitable for pharmaceutical products according to claim 3, characterized in that: An extension piece (26) is integrally formed at the upper end of the insert plate (25) near the inner side plate (22), and the extension piece (26) is snapped into the slot (41).
5. A paper buffer structure suitable for pharmaceutical products according to claim 4, characterized in that: The box structure (10) includes an outer bottom plate (101) and an outer side plate (102) surrounding the edge of the outer bottom plate (101). An extension plate (103) is integrally formed on one set of the outer side plates (102), and the extension plate (103) is used to connect two sets of adjacent outer side plates (102).
6. A paper buffer structure for pharmaceutical products according to claim 5, characterized in that: The two sides of the connection position between the folding plate (23) and the insert plate (25) are recessed with grooves (27), and the grooves (27) are engaged with the slot (41).
7. A paper buffer structure for pharmaceutical products according to claim 6, characterized in that: The horizontal slot of the slot (41) does not completely penetrate the horizontal upper surface of the frame structure (4).
8. A paper buffer structure for pharmaceutical products according to claim 7, characterized in that: A support plate (42) is integrally formed on two sets of parallel inner side plates (22), and the frame structure (4) is formed by folding the support plate (42) and the inner side plates (22).
Citation Information
Patent Citations
Storing box
JP2003137271A