A pullable, rotatable and pop-up packaging box
By designing a pullable and rotatable packaging box structure, the inner box and the display box rotate in a coordinated manner to display products, solving the problem of poor display effect of existing drawer boxes and improving consumers' box opening experience and product display effect.
Patent Information
- Application Number
- CN202211001995.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-20
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2042-08-20
AI Technical Summary
The existing drawer box has a simple structure and a single function, resulting in poor product display results and a single experience for consumers to open the box.
A packaging box that can be pulled and rotated and ejected is designed. Through the rotation structure linkage between the inner box and the display box, the display box is driven to rotate when the inner box is pulled out, so that the product is displayed during the rotation process, combining the locking slot and the locking component to ensure stable display and removal of the product.
It improves the display effect of the packaging box and the opening experience of consumers, enhances the display level of the product, and ensures the stability of the product during the display and removal process.
Smart Images

Figure CN115352737B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of packaging boxes, and in particular to a packaging box that can be pulled, rotated, and popped out. Background Art
[0002] Today, with the development of the economy, people's quality of life has been continuously improved, and their life concepts and consumption patterns have undergone major changes. As a bridge of communication between products and consumers, packaging not only protects goods, facilitates transportation and storage, but also promotes the sales of goods and the development of the economy.
[0003] The drawer box is a typical representative of the packaging box. The drawer box includes an inner box and an outer box. The goods are placed in the inner box, and the storage and removal of the goods are realized by pulling the inner box.
[0004] In the process of implementing this application, the inventor found that there are at least the following problems in this technology: The structure of the drawer box in the related technology is simple and the function is single, only playing a role of bearing, resulting in poor display effect of the goods and a single opening experience for consumers, which needs to be improved. Summary of the Invention
[0005] In order to improve the display effect of the packaging box and the opening experience of consumers, this application provides a packaging box that can be pulled, rotated, and popped out.
[0006] The packaging box that can be pulled, rotated, and popped out provided by this application adopts the following technical solutions:
[0007] A packaging box that can be pulled, rotated, and popped out includes an inner box and an outer box. An inner cavity with an opening is provided on the outer box, and the inner box is slidably arranged in the inner cavity. It also includes a display box and a rotating structure arranged on the display box. A rotating cavity with an opening is provided on the inner box, and the display box is rotatably arranged in the rotating cavity. A display cavity with an opening is provided on the display box, and the display box is linked and connected to the outer box through the rotating structure. When the inner box moves towards the opening of the inner cavity, the rotating structure drives the display box to rotate so that the opening of the display cavity moves towards the opening of the rotating cavity.
[0008] By adopting the above technical solutions, when using the application packaging box to pack goods, the goods are loaded into the display cavity. When taking out the goods, the inner box is pulled out of the outer box towards the opening of the inner cavity. Since the display box is linked and connected to the outer box through the rotating structure, the rotating structure drives the display box to rotate so that the opening of the display box cavity rotates towards the opening of the rotating cavity, thereby driving the goods to rotate towards the opening of the rotating cavity. That is, during the process of pulling out the inner box, the user can see the process of the goods rotating and rising through the opening of the rotating cavity, effectively improving the display effect of the packaging box and the opening experience of consumers, enhancing the grade of the goods, and contributing to the sales of the goods.
[0009] Optionally, the rotating structure includes a hinge rod, a linkage block, and a linkage groove. The hinge rod is connected to the display box, the hinge rod is rotatably arranged on the inner box, the linkage block is arranged on the display box and is eccentrically arranged with the hinge rod, the linkage groove is opened on the wall of the inner cavity, the linkage groove is inclined along the sliding direction of the inner box, and the end of the linkage block is slidably arranged in the linkage groove;
[0010] When the inner box moves towards the opening of the inner cavity, the end of the linkage block moves from one end of the linkage groove towards the other end of the linkage groove, and the display box rotates until the opening of the display cavity faces the opening of the rotating cavity.
[0011] By adopting the above technical solution, when the inner box is pulled out of the outer box towards the opening of the inner cavity, the linkage block slides in the linkage groove and moves from one end of the linkage groove towards the other end of the linkage groove. The linkage block connected to the display box and eccentrically arranged with the hinge rod drives the hinge rod and the display box to rotate, so that the display box rotates until the opening of the display cavity faces the opening of the rotating cavity. The rotating structure arranged in this way is simple, the rotating box rotates stably, and it does not affect the appearance of the packaging box of the present application.
[0012] Optionally, the rotating structure further includes a linkage piece, and the hinge rod and the linkage block are respectively connected to both ends of the linkage piece.
[0013] By adopting the above technical solution, compared with directly fixing the linkage block on the display box, a groove for the rotatable arrangement of the linkage block needs to be opened on the inner box. However, connecting the linkage block to the hinge rod through the linkage piece eliminates the need to open a groove on the inner box, simplifies the structure of the inner box, and helps with production and processing. Moreover, the linkage block helps to increase the force arm, and the distance between the linkage block and the hinge rod can be enlarged through the linkage block, reducing the force consumed during pulling, and improving the smoothness and experience of pulling the inner box.
[0014] Optionally, the inner box includes a box body provided with a rotating cavity and a lining plate arranged in the rotating cavity. The hinge rod passes through and is rotatably arranged on the lining plate. A relief groove communicating with the rotating cavity is opened on the outer wall of the box body, and the end of the hinge rod extends into the relief groove.
[0015] By adopting the above technical solution, due to the provision of the relief groove, the end of the hinge rod can be located in the relief groove, so that when the inner box slides, the outer wall of the box body abuts against the wall of the inner cavity. Compared with the hinge rod directly abutting against the wall of the inner cavity, the contact area between the inner box and the wall of the inner cavity during sliding is increased through the relief groove, the stability of the inner box during pulling and sliding is improved, and it helps the user to pull the inner box.
[0016] Optionally, the hinge rod includes a fixing portion connected to the display box and a limiting portion connected to the fixing portion. A limiting groove is opened on the linkage piece, and the limiting portion is inserted into the limiting groove.
[0017] By adopting the above technical solution, when installing the display box, first place the display box into the rotating cavity, then pass the hinge rod through the inner lining plate and fixedly connect it to the display box. Then sleeved the linkage piece onto the hinge rod so that the limiting block is inserted into the limiting groove. With such a setting, the relative rotation between the hinge rod and the linkage piece is restricted, and there is no need for additional fixation between the hinge rod and the linkage piece directly, which improves the simplicity during the assembly of the packaging box of the present application.
[0018] Optionally, the linkage block includes a fixed block connected to the linkage piece and a sliding block slidably disposed in the linkage groove, and the fixed block and the sliding block attract each other by magnetic attraction.
[0019] By adopting the above technical solution, when installing the linkage block, first install the sliding block into the linkage groove and connect the fixed block to the linkage piece. Then install the inner box into the inner cavity and make the fixed block and the sliding block attract each other. Since the linkage groove is provided on the cavity wall of the inner cavity, the linkage block set in this way improves the simplicity of installing the linkage block.
[0020] Optionally, a front locking groove extending along the sliding direction of the inner box is provided on the cavity wall of the inner cavity, and the front locking groove communicates with one end of the linkage groove close to the opening of the inner cavity, and the front locking groove is used for the end part of the linkage block to slide and be arranged.
[0021] By adopting the above technical solution, as the inner box is pulled out of the opening of the inner cavity, the end part of the linkage block moves from the linkage groove into the front locking groove, and the display box rotates to make the opening of the display cavity move towards the opening of the rotating cavity, so as to display the goods in the display cavity. Since the front locking groove extends along the sliding direction of the inner box, the display box in the display state plays a locking role, restricting the display box from rotating under the action of its own weight and the weight of the goods at this time, and ensuring the display effect of the goods.
[0022] Optionally, a rear locking groove extending along the sliding direction of the inner box is provided on the cavity wall of the inner cavity, and the rear locking groove communicates with one end of the linkage groove far from the opening of the inner cavity, and the rear locking groove is used for the end part of the linkage block to slide and be arranged.
[0023] By adopting the above technical solution, after the inner box is completely installed in the inner cavity, the end part of the linkage block moves from the linkage groove into the rear locking groove. Since the rear locking groove extends along the sliding direction of the inner box, it plays a locking role for the display box in the storage state.
[0024] Optionally, it further includes a locking component. A sliding groove communicating with the display cavity is provided on the outer wall of the display box, and the locking component includes a locking block slidably disposed in the sliding groove, and an unlocking groove for the end part of the locking block to be inserted is provided on the inner lining plate;
[0025] When one end of the locking block abuts against the adjacent inner lining plate, the other end of the locking block extends into the display cavity; when the end of the linkage block moves into the front locking groove, the sliding groove is aligned with the unlocking groove, one end of the locking block is inserted into the unlocking groove, and the other end of the locking block is located in the sliding groove.
[0026] By adopting the above technical solution, when loading the commodity into the display cavity, first pull out the inner box from the inner cavity until the end of the linkage block moves into the front locking groove. At this time, the sliding groove is aligned with the unlocking groove. Slide the locking block so that one end of the locking block is inserted into the unlocking groove. At this time, the other end of the locking block is located in the sliding groove. Then load the commodity into the display cavity, and then push the inner box into the inner cavity. During the rotation of the display box, the end of the locking block is driven to move out of the sliding groove, so that the other end of the locking block presses against the inner lining plate. At this time, the other end of the locking block extends into the display cavity and presses against the commodity, thereby restricting the commodity from moving out of the display cavity. Through the above structure, it not only ensures that the commodity can be taken out normally, but also makes it difficult for the commodity to fall out of the display cavity when the display box rotates.
[0027] Optionally, the locking block includes a connecting block, a semi-circular head connected to one end of the connecting block, and a rubber pad connected to the other end of the connecting block. The unlocking groove is used for the end of the semi-circular head to extend into;
[0028] The locking assembly further includes a spring seat connected to the connecting block and an unlocking spring arranged on the spring seat. An expansion slot communicating with the sliding groove is formed on the outer wall of the display box. The spring seat is slidably arranged in the expansion slot, and the unlocking spring is arranged in the expansion slot and is used to drive the spring seat to move away from the display cavity.
[0029] By adopting the above technical solution, through the design of the semi-circular head, it helps the locking block to move out of or into the unlocking groove. Through the rubber pad, on the one hand, the friction between the locking block and the commodity is increased, and on the other hand, the rubber pad has elasticity and can deform, thus playing a role in protecting the commodity. Through the unlocking spring and the spring seat, a force in the direction away from the display cavity is applied to the locking block, restricting the rubber pad from extending into the display cavity when the sliding groove is aligned with the unlocking groove, which is convenient for the staff to load the commodity into the display cavity.
[0030] In summary, the present application includes at least one of the following beneficial technical effects:
[0031] 1. By rotating the display box arranged on the inner box and the rotating structure connecting the display box and the outer box, when the user pulls the inner box out of the outer box towards the opening of the inner cavity, the display box can drive the commodity placed in the display cavity to rotate, so that the user can see the process of the commodity rotating and lifting through the opening of the rotating cavity, effectively improving the display effect of the packaging box and the opening experience of consumers;
[0032] 2. Through the front locking groove, the rear locking groove and the linkage block, the display box in the display state and the storage state is locked respectively;
[0033] 3. Through the locking component, the goods during the rotation process and the goods in the display box in the storage state are locked, restricting the goods from sliding out of the display cavity, and ensuring that the goods can be taken out normally when the display box is in the display state. Brief Description of the Drawings
[0034] Figure 1 is a schematic structural diagram of Embodiment 1 of the present application.
[0035] Figure 2 is an exploded schematic diagram of Embodiment 1 of the present application.
[0036] Figure 3 is an exploded schematic diagram highlighting the hinge rod, the linkage piece and the linkage block in Embodiment 1 of the present application.
[0037] Figure 4 is a schematic cross-sectional view when the sliding block is located in the front locking groove in Embodiment 1 of the present application.
[0038] Figure 5 is an exploded schematic diagram highlighting the locking component in Embodiment 2 of the present application.
[0039] Figure 6 is a schematic cross-sectional view of Embodiment 2 of the present application.
[0040] Figure 7 is a schematic cross-sectional view when the sliding block is located in the front locking groove in Embodiment 2 of the present application.
[0041] Description of the Reference Numerals:
[0042] 1. Inner box; 11. Box body; 111. Relief groove; 12. Cover plate; 13. Inner lining plate; 131. Unlocking groove; 14. Rotation cavity; 2. Outer box; 21. Inner cavity; 22. Crescent groove; 23. Front locking groove; 24. Rear locking groove; 3. Display box; 31. Display cavity; 32. Sliding groove; 33. Telescopic groove; 4. Rotation structure; 41. Hinge rod; 411. Fixed part; 412. Limiting part; 42. Linkage piece; 421. Limiting groove; 422. Installation groove; 43. Linkage block; 431. Fixed block; 432. Sliding block; 44. Linkage groove; 5. Locking component; 51. Locking block; 511. Connecting block; 512. Semi-circular head; 513. Rubber pad; 52. Spring seat; 53. Unlocking spring. Detailed Description of the Embodiment
[0043] The following is a further detailed description of the present application in conjunction with the attached Figure 1-7 drawings.
[0044] An embodiment of the present application discloses a pull-out, rotatable and pop-up packaging box.
[0045] Embodiment 1:
[0046] Referring to Figure 1 、 Figure 2 The pull-out, rotatable and pop-up packaging box includes an inner box 1, an outer box 2, a display box 3, and a rotating structure 4 connecting the display box 3 and the outer box 2.
[0047] Referring to Figure 1 An inner cavity 21 with an opening on one side is formed in the outer box 2, and the inner box 1 is slidably arranged in the inner cavity 21. A crescent groove 22 penetrates through the side wall of the outer box 2, and the crescent groove 22 communicates with the inner cavity 21 and the side wall of the outer box 2 where the inner cavity 21 opens. Through the crescent groove 22, it is convenient for the user to pull out the inner box 1.
[0048] Referring to Figure 1 The inner box 1 includes a box body 11, a cover plate 12, and two symmetrically arranged inner lining plates 13, and both inner lining plates 13 are fixed on the cover plate 12. The cover plate 12 covers the box body 11, and the box body 11 and the cover plate 12 enclose a rotating cavity 14. The opening of the rotating cavity 14 is formed on the cover plate 12 and penetrates through the cover plate 12, and the opening direction of the rotating cavity 14 is perpendicular to the opening direction of the inner cavity 21. Both inner lining plates 13 are inserted into the rotating cavity 14, and both inner lining plates 13 are attached to the adjacent cavity walls of the rotating cavity 14. Relief grooves 111 communicating with the rotating cavity 14 are formed on the two opposite outer walls of the box body 11, and the two inner lining plates 13 respectively shield the openings of different relief grooves 111 facing the rotating cavity 14.
[0049] Referring to Figure 2 、 Figure 3 A display cavity 31 with an opening on one side is formed in the display box 3, and the display cavity 31 is used for placing goods. The rotating structure 4 includes a hinge rod 41, two linkage pieces 42, two linkage blocks 43, and two linkage grooves 44. The hinge rod 41 penetrates through the two display boxes 3 and the two inner lining plates 13. The hinge rod 41 includes a fixing portion 411 and two limiting portions 412 integrally formed at both ends of the fixing portion 411. The fixing portion 411 is fixedly connected to the display box 3, and the fixing portion 411 is rotatably arranged on the inner lining plate 13, so that the display box 3 is rotatably arranged on the inner lining plate 13, and the two limiting portions 412 respectively extend into different relief grooves 111.
[0050] Referring to Figure 2 、 Figure 3, two linkage pieces 42 are respectively rotatably arranged in different relief grooves 111. A limiting groove 421 penetrates through the linkage piece 42, and the two limiting parts 412 are respectively inserted into the limiting grooves 421 of different linkage pieces 42, so that the linkage piece 42 can rotate together with the hinge rod 41. The linkage block 43 includes a fixed block 431 and a sliding block 432, and the fixed block 431 and the sliding block 432 attract each other by magnetic attraction. In the embodiment of the present application, both the fixed block 431 and the sliding block 432 are magnet blocks. In other embodiments, the fixed block 431 and the sliding block 432 can also be set such that one is a magnet block and the other is an iron block. An installation groove 422 is formed on the linkage piece 42, and the fixed block 431 is inserted into the installation groove 422. The installation groove 422 and the limiting groove 421 are respectively located at both ends of the linkage piece 42, so that the linkage block 43 and the hinge rod 41 are respectively located at both ends of the linkage piece 42, and the linkage block 43 and the hinge rod 41 are eccentrically arranged.
[0051] Referring to Figure 4 , two linkage grooves 44 are respectively formed on two opposite cavity walls of the inner cavity 21, and the two linkage grooves 44 are symmetrically arranged. The linkage grooves 44 are inclined along the sliding direction of the inner box 1. The sliding blocks 432 of the two linkage blocks 43 are respectively slidably arranged in different linkage grooves 44. When the inner box 1 moves towards the opening of the inner cavity 21, the sliding block 432 moves from one end of the linkage groove 44 towards the other end of the linkage groove 44, and the display box 3 rotates until the opening of the display cavity 31 faces the opening of the rotating cavity 14.
[0052] Referring to Figure 2 , Figure 4 , front locking grooves 23 and rear locking grooves 24 are formed on the two groove walls of the cavity wall of the inner cavity 21 where the linkage grooves 44 are located. The front locking grooves 23 and the rear locking grooves 24 both extend along the sliding direction of the inner box 1 and are both used for the adjacent sliding blocks 432 to be slidably arranged. The front locking groove 23 communicates with one end of the linkage groove 44 close to the opening of the inner cavity 21, and the rear locking groove 24 communicates with the other end of the linkage groove 44 far from the opening of the inner cavity 21. When the sliding block 432 moves into the front locking groove 23, the opening of the display cavity 31 faces the opening of the rotating cavity 14; when the sliding block 432 moves into the rear locking groove 24, the opening of the display cavity 31 faces perpendicular to the opening direction of the rotating cavity 14.
[0053] The implementation principle of Embodiment 1 is as follows: When using the application packaging box to package goods, the goods are loaded into the display cavity 31. When taking out the goods, first insert two fingers into the crescent groove 22 and pinch the inner box 1 tightly, then pull out the inner box 1. The sliding block 432 moves from the rear locking groove 24 into the linkage groove 44. The sliding block 432 drives the articulated rod 41 to rotate through the fixing block 431 and the linkage piece 42, thereby driving the display box 3 to rotate so that the opening of the display cavity 31 rotates towards the direction close to the opening of the rotating cavity 14 until the sliding block 432 moves from the linkage groove 44 into the front locking groove 23. At this time, the opening of the display cavity 31 faces the opening of the rotating cavity 14. Bottled goods are loaded into the display cavity 31 so that the end of the goods can extend out of the rotating cavity 14 and the inner cavity 21.
[0054] Through the above structure, when the user pulls out the inner box 1, the process of the goods rotating and lifting can be seen through the opening of the rotating cavity 14, effectively improving the display effect of the packaging box and the opening experience of consumers.
[0055] Embodiment 2:
[0056] Referring to Figure 5 、 Figure 6 This embodiment is different from Embodiment 1 in that it further includes two sets of locking components 5. Telescopic grooves 33 and sliding grooves 32 with the same extending direction are opened on the two opposite outer walls of the display box 3. The telescopic groove 33 is connected and slid with the adjacent sliding groove 32, and the sliding groove 32 is communicated with the display cavity 31.
[0057] Referring to Figure 5 、 Figure 6 The locking component 5 includes a locking block 51, a spring seat 52 and an unlocking spring 53. The locking block 51 includes a connecting block 511, a semi-circular head 512 fixed at one end of the connecting block 511 and a rubber pad 513 fixed at the other end of the connecting block 511. The spring seat 52 is sleeved and fixed on the connecting block 511. The spring seat 52 is slidably arranged in the telescopic groove 33, and the locking block 51 is slidably arranged in the sliding groove 32. The unlocking spring 53 is arranged in the telescopic groove 33 and sleeved on the locking block 51. The two ends of the unlocking spring 53 respectively abut against the bottom of the telescopic groove 33 and the spring seat 52 to drive the spring seat 52 to move away from the display cavity 31. Unlocking grooves 131 are opened on both inner lining plates 13 for the ends of the adjacent semi-circular heads 512 to be inserted.
[0058] Referring to Figure 5 、 Figure 7 When the end of the semi-circular head 512 abuts against the adjacent inner lining plate 13, the rubber pad 513 extends into the display cavity 31. When the sliding block 432 moves into the front locking groove 23, the sliding groove 32 is aligned with the unlocking groove 131, the end of the semi-circular head 512 is inserted into the unlocking groove 131, and the rubber pad 513 is located in the sliding groove 32.
[0059] The implementation principle of Embodiment 2 is as follows: When loading the commodity into the packaging box of the present application, first pull the inner box 1 to move the sliding block 432 into the front locking groove 23. At this time, the sliding groove 32 is aligned with the unlocking groove 131. Under the action of the unlocking spring 53, the end of the semi-circular head 512 extends into the unlocking groove 131 and the rubber pad 513 moves into the sliding groove 32. That is, when the sliding block 432 moves into the front locking groove 23, the commodity can be normally loaded into the display cavity 31. After the commodity is loaded into the display cavity 31, push the inner box 1 back into the inner cavity 21. Under the action of the rotating structure 4, the display box 3 rotates relative to the inner lining plate 13, thereby driving the locking block 51 to rotate. The semi-circular head 512 moves out of the unlocking groove 131 and presses against the inner lining plate 13, and the rubber pad 513 presses against the commodity and deforms, thereby restricting the commodity from falling out of the display cavity 31.
[0060] Through the locking component 5, when the display box 3 rotates or is in the storage state, the commodity is not easily dropped out of the display cavity 31. When the display box 3 is in the display state, the commodity can be normally taken out.
[0061] The above are all the preferred embodiments of the present application. The protection scope of the present application is not limited hereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.
Claims
1. A pullable, rotatable and pop-up packaging box, comprising an inner box (1) and an outer box (2). An inner cavity (21) with an opening is formed in the outer box (2), and the inner box (1) is slidably arranged in the inner cavity (21), characterized in that: The display box (3) further comprises a display box (3) and a rotating structure (4) arranged on the display box (3); the inner box (1) is provided with a rotating cavity (14) having an opening; the display box (3) is rotatably arranged in the rotating cavity (14); the display box (3) is provided with a display cavity (31) having an opening; the display box (3) is linked to the outer box (2) via the rotating structure (4); when the inner box (1) moves toward the opening of the inner cavity (21), the rotating structure (4) drives the display box (3) to rotate so that the opening of the display cavity (31) moves toward the opening of the rotating cavity (14); The rotating structure (4) comprises a hinge rod (41), a linkage block (43) and a linkage groove (44); the hinge rod (41) is connected to the display box (3); the hinge rod (41) is rotatably arranged on the inner box (1); the linkage block (43) is arranged on the display box (3) and is eccentrically arranged with respect to the hinge rod (41); the linkage groove (44) is provided on the cavity wall of the inner cavity (21); the linkage groove (44) is inclined along the sliding direction of the inner box (1); and the end of the linkage block (43) is slidably arranged in the linkage groove (44); When the inner box (1) moves toward the opening of the inner cavity (21), the end of the linkage block (43) moves from one end of the linkage groove (44) toward the other end of the linkage groove (44), and the display box (3) rotates until the opening of the display cavity (31) faces the opening of the rotating cavity (14); A front locking groove (23) extending along the sliding direction of the inner box (1) is provided on the wall of the inner cavity (21), the front locking groove (23) being connected to an end of the linkage groove (44) close to the opening of the inner cavity (21), and the front locking groove (23) being used for the sliding setting of the end of the linkage block (43); A rear locking groove (24) extending along the sliding direction of the inner box (1) is provided on the wall of the inner cavity (21). The rear locking groove (24) is communicated with an end of the linkage groove (44) away from the opening of the inner cavity (21). The rear locking groove (24) is used for the sliding arrangement of the end of the linkage block (43).
2. The pull-out, rotatable and pop-up packaging box according to claim 1, characterized in that: The rotating structure (4) further comprises a linkage piece (42), and the hinge rod (41) and the linkage block (43) are respectively connected to the two ends of the linkage piece (42).
3. The pull-out, rotatable and pop-up packaging box according to claim 2, characterized in that: The inner box (1) comprises a box body (11) provided with a rotating cavity (14) and an inner lining plate (13) arranged in the rotating cavity (14); the hinge rod (41) passes through and is rotatably arranged on the inner lining plate (13); a clearance groove (111) communicating with the rotating cavity (14) is provided on the outer wall of the box body (11); the end of the hinge rod (41) extends into the clearance groove (111).
4. A pull-out, rotatable and pop-up packaging box according to claim 2, wherein: The hinge rod (41) comprises a fixing portion (411) connected to the display box (3) and a limiting portion (412) connected to the fixing portion (411); a limiting slot (421) is provided on the linkage piece (42); and the limiting portion (412) is inserted into the limiting slot (421).
5. The pull-out, rotatable and pop-up packaging box according to claim 2, wherein: The linkage block (43) includes a fixed block (431) connected to the linkage piece (42) and a sliding block (432) slidably disposed in the linkage groove (44). The fixed block (431) and the sliding block (432) attract each other by magnetic attraction.
6. The pullable, rotatable and pop-up packaging box according to claim 3, characterized in that: It further includes a locking assembly (5). A sliding groove (32) communicating with the display cavity (31) is formed on the outer wall of the display box (3). The locking assembly (5) includes a locking block (51) slidably disposed in the sliding groove (32). An unlocking groove (131) for inserting the end of the locking block (51) is formed on the inner lining plate (13). When one end of the locking block (51) abuts against the adjacent inner lining plate (13), the other end of the locking block (51) extends into the display cavity (31). When the end of the linkage block (43) moves into the pre-locking groove (23), the sliding groove (32) is aligned with the unlocking groove (131). One end of the locking block (51) is inserted into the unlocking groove (131), and the other end of the locking block (51) is located in the sliding groove (32).
7. A pull-out, rotatable and pop-up packaging box according to claim 6, characterized in that: The locking block (51) includes a connecting block (511), a semi-circular head (512) connected to one end of the connecting block (511), and a rubber pad (513) connected to the other end of the connecting block (511). The unlocking groove (131) is for the end of the semi-circular head (512) to extend into. The locking assembly (5) further includes a spring seat (52) connected to the connecting block (511) and an unlocking spring (53) disposed on the spring seat (52). An expansion groove (33) communicating with the sliding groove (32) is formed on the outer wall of the display box (3). The spring seat (52) is slidably disposed in the expansion groove (33). The unlocking spring (53) is disposed in the expansion groove (33) and is used to drive the spring seat (52) to move away from the display cavity (31).
Citation Information
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