Rotary display gift box
By designing a rotating display gift box, the inner and outer boxes can be flipped by pulling the ribbon. The modular assembly structure and magnetic connection solve the problems of large usage space and easy disarray of the gift box, and realize interactive opening and exquisite display of the gift.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-03-10
AI Technical Summary
The existing gift boxes lack interactive effects when opened, take up a lot of space and are easily scattered and lost, the gift ribbons are not very usable, and the overall usability is not very convenient.
Design a rotating display gift box that allows the inner box to be flipped open or closed by pulling a ribbon. It adopts a modular assembly structure, with the inner and outer boxes connected by a supporting pivot and magnetic components. The inner tray panel is used for gift positioning and display.
It enables interactive opening of the gift box, saves space, has high connection stability, displays gifts beautifully and exquisitely, has a sense of ceremony, and is easy to disassemble and store.
Smart Images

Figure CN223982829U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of paper product packaging display boxes, in particular to a rotating display gift box. BACKGROUND
[0002] Most of the existing packaging gift boxes are composed of detachable and separated box body and cover, and then are packaged by winding and binding with decorative ribbons. The ribbons can be knotted into various gift knot shapes such as butterflies and flowers, so that the gift is properly packaged and the opening of the gift is also full of decorative ceremony. However, the existing gift box lacks surprise interaction effect. When the gift is displayed and taken, the detachable ribbon, cover and box body need to occupy a large use space, and are often lost due to scattered placement and cannot be properly placed. The ribbon is usually discarded randomly due to low use, so that the overall use effect of the gift box is low in convenience. SUMMARY
[0003] In view of the above technical problems, the purpose of the present application is to overcome the above technical defects, and provide a rotating display gift box which can realize interactive rotation opening of the gift box by pulling the ribbon to display or take the gift. The whole adopts a modular assembly and disassembly structure design, has high connection stability, is convenient to use and occupies small use space, and is rich in interactive opening surprise effect.
[0004] Based on the above purpose, the present application is realized by the following technical scheme:
[0005] A rotating display gift box comprises an outer box and an inner box. The outer box is provided with a first accommodating cavity. The first accommodating cavity is provided with a first opening along a first direction. The inner box is provided with a second accommodating cavity. The second accommodating cavity is provided with a second opening along the first direction. The inner box is connected to the inner side of the first accommodating cavity in a rotatable manner along a second direction. The outer box is provided with pull-through openings on opposite sides along a third direction. The inner box is provided with a traction belt on one side along the third direction. The first direction, the second direction and the third direction are perpendicular to each other.
[0006] The traction belt is fixedly connected to the inner box along the middle part and is respectively threaded through the two pull-through openings along the two ends. The traction belt is wound between the inner side of the outer box and the inner box. When the traction belt of one of the pull-through openings is pulled, the inner box is turned over to be opened or closed in the first accommodating cavity.
[0007] Optionally, the inner box is rotatably positioned and connected to the inner side wall of the first accommodating cavity along the second direction on opposite sides through a supporting pivot. The supporting pivot is embedded between the first accommodating cavity and the side wall of the inner box.
[0008] Optionally, support side plates are foldably connected to opposite sides of the first opening along the second direction, and abut the inner side of the first accommodating cavity, the support side plates are provided with first shaft access openings, and one end of the support rotating shaft is rotatably and fixedly connected between the first shaft access opening and the side wall of the first accommodating cavity.
[0009] Optionally, support side plates are foldably connected to opposite sides of the first opening along the second direction, and abut the inner side of the first accommodating cavity, the support side plates are provided with first shaft access openings, and one end of the support rotating shaft is rotatably and fixedly connected between the first shaft access opening and the side wall of the first accommodating cavity.
[0010] Optionally, second shaft access openings are provided in the inner box along the second direction and opposite sides, abutting side plates are foldably connected to opposite sides of the second opening along the second direction, and abut the inner side of the second accommodating cavity, and the other end of the support rotating shaft is rotatably and fixedly connected between the second shaft access opening and the end face of the abutting side plate.
[0011] Optionally, first magnetic members are embedded and connected between the support side plates and the side wall of the first accommodating cavity or between the abutting side plates and the side wall of the second accommodating cavity, the second magnetic member is arranged at the end of the support rotating shaft away from the clamping panel, and the first magnetic member and the second magnetic member are connected through mutual magnetic attraction.
[0012] Optionally, an inner supporting panel is detachably connected in the second accommodating cavity, the inner supporting panel abuts the inner side of the second accommodating cavity along the circumferential side, the inner supporting panel is provided with a clamping access opening along the middle part, the clamping access opening includes two symmetrically arranged inclined abutting edges, a pressing clamping groove is arranged between the two inclined abutting edges and extends along the relatively close end, an inclined slope panel is foldably connected between the two inclined abutting edges and extends along the relatively far end, and one side of the inclined slope panel abuts the end face of the inner side of the second accommodating cavity.
[0013] Optionally, a lifting side plate is foldably connected to the inner supporting panel along the circumferential side, the lifting side plate foldably abuts the side wall of the second accommodating cavity along the end face, and abuts the end face of the inner side of the second accommodating cavity along the side away from the inner supporting panel.
[0014] Optionally, an arc-shaped protrusion is arranged on the side of the pressing clamping groove away from the clamping access opening.
[0015] Optionally, a clamping protrusion is arranged on the middle part of the side of the inclined slope panel foldably connected to the clamping access opening, and the clamping protrusion extends along the direction of the clamping access opening.
[0016] Through the above technical solutions, the following beneficial effects can be achieved:
[0017] (1) The rotating display gift box, the inner box is rotatably positioned between the inner sides of the outer box, and the inner box can be brought into an open state or a mutual covering state with the outer box by pulling the traction belt (i.e., the packaging ribbon). The gift box is convenient to use as a whole, and the situation of occupying a large use space and being difficult to tidy up is avoided. When in the mutual covering state, the inner cavities of the inner box and the outer box are oppositely arranged along the opening sides, the outer box is covered on the inner box, the bottom side end surface of the inner box faces upward and is flush with the top opening side of the outer box, and the two ends of the traction belt pass through the pull-through holes and are located on the opposite two outer sides of the outer box. The traction belt can be wound around the two ends and tied on the top opening side of the outer box to realize mutual covering and fixing of the outer box and the inner box. Meanwhile, the traction belt can realize interactive tying to form a butterfly, a flower or other decorative shapes with aesthetic appearance, so that the packaging and display of the gift are elegant and have a sense of ceremony. When in the open state, the traction belt is in an untied state along the two ends, the inner box is rotatably positioned with the opening side of the outer box facing upward, and the gift is stored and displayed in the inner cavity of the inner box.
[0018] (2) The outer box and the inner box can be modularly assembled and disassembled. The supporting shaft is detachably embedded on the side surfaces of the outer box and the inner box. The supporting side plate and the abutting side plate are arranged on the side walls of the outer box and the inner box, respectively, corresponding to the connection of the supporting shaft, so that the supporting shaft is stably and conveniently detachably assembled and connected, and the rotating structure connection between the outer box and the inner box is stable.
[0019] (3) The inner box can hold and position the gift through the inner supporting panel, and can keep a certain angle for display, so that the gift will not fall during the rotation of the inner box, and the stability and protection of the gift are good. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 FIG. 1 is a structure diagram of an open state of a gift box according to an embodiment of the present application;
[0021] Figure 2 FIG. 2 is a structure diagram of a covering state of a gift box according to an embodiment of the present application;
[0022] Figure 3 FIG. 3 is a structure diagram of a second direction of a gift box according to an embodiment of the present application;
[0023] Figure 4 FIG. 4 is a structure diagram of a third direction of a gift box according to an embodiment of the present application;
[0024] Figure 5 FIG. 5 is a structure diagram of a rotating display gift box according to an embodiment of the present application;
[0025] Figure 6 FIG. 6 is a structure diagram of a rotating display gift box according to an embodiment of the present application;Figure 5 A magnified view of part A in the diagram.
[0026] Reference numerals: 11. Outer box; 110. First receiving cavity; 12. Inner box; 120. Second receiving cavity; 13. Support shaft; 111. Pull-out opening; 121. Traction belt; 112. Support side plate; 113. First shaft connection opening; 122. Abutment side plate; 123. Second shaft connection opening; 131. Holding panel; 101. First magnetic component; 132. Second magnetic component; 14. Inner support panel; 140. Lifting side plate; 141. Sloping abutment edge; 142. Clamping groove; 143. Sloping panel; 144. Holding protrusion; 15. Fastener;
[0027] Y, first direction; X, second direction; Z, third direction;
[0028] R represents the range of the rotational circumference. Detailed Implementation
[0029] The present invention will be further described in detail below with reference to the accompanying drawings, so that those skilled in the art can better understand and implement the present invention. However, the embodiments described are not intended to limit the present invention.
[0030] Combined with appendix Figures 1-6As shown, this application provides a rotating display gift box, including a gift box body. The gift box body includes an outer box 11 and an inner box 12 rotatably connected to the inner sides of the outer box 11. Preferably, the outer box 11 and the inner box 12 are rectangular cubes, each made of paper panels by cutting and folding. The outer box 11 has a first receiving cavity 110 with a first opening along a first direction Y. The inner box 12 has a second receiving cavity 120 with a second opening along the first direction Y. The inner box 12 is rotatably connected to the inner sidewalls of the first receiving cavity 110 on opposite sides along a second direction X. A circumferential range R is formed between the inner box 12 and the first accommodating cavity 110. The outer box 11 has pull-out openings 111 on both sides along the third direction Z. The inner box 12 has a corresponding traction strap 121 on one side along the third direction Z. The first direction Y, the second direction X and the third direction Z are perpendicular to each other. The traction strap 121 is fixedly connected to one side of the inner box 12 along the middle and passes through the two pull-out openings 111 at both ends. The traction strap 121 is wrapped around the inner side of the outer box 11 and between the inner box 12. When the traction strap 121 on one of the pull-out openings 111 is pulled, the inner box 12 can be flipped open or closed in the first accommodating cavity 110. Specifically, in this embodiment, the gift box body has its open side facing upwards. The first direction Y, the second direction X, and the third direction Z are respectively the up-down direction, the left-right direction, and the front-back direction of the gift box body. Of course, in other embodiments, the orientation of the open side of the gift box body can be set according to different orientations, and the first direction Y, the second direction X, and the third direction Z can also be converted to each other.
[0031] Furthermore, in this embodiment, the inner box 12 has a connection port on one side along the third direction Z. The connection port is opposite to the pull-out port 111. The traction strap 121 is folded along the middle and passes through the connection port, and is fixedly engaged and positioned on the connection port by a fastener 15. This allows for the removal and replacement of different traction straps 121 according to individual selection needs. In other embodiments, the traction strap 121 can also be glued to the opposite side of the inner box 12 along the third direction Z. The position where the traction strap 121 is fixedly connected to the inner box 12 is opposite to the pull-out port 111.
[0032] Furthermore, in this embodiment, in order to achieve a rotatable positioning connection between the inner box 12 and the first accommodating cavity 110, the inner box 12 is rotatably positioned and connected to the inner side wall of the first accommodating cavity 110 via a support shaft 13 on opposite sides along the second direction X. The support shaft 13 is embedded between the side wall of the first accommodating cavity 110 and the inner box 12.
[0033] Furthermore, in this embodiment, in order to achieve the supporting and stabilizing function of the detachable connection and rotatable positioning connection between the outer box 11 and the inner box 12, a support side plate 112 is foldably connected to the opposite sides of the first opening along the second direction X. The support side plate 112 can be folded and abutted against the inner side of the first accommodating cavity 110. The support side plate 112 is provided with a first shaft connection port 113. One end of the support shaft 13 is rotatably positioned and connected between the first shaft connection port 113 and the side wall of the first accommodating cavity 110, and the other end is correspondingly positioned and connected to the side of the inner box 12.
[0034] Specifically, as another embodiment, the support shaft 13 is elastically telescopic along one end, wherein the support shaft 13 is positioned and connected to the first shaft connection port 113 along the elastically telescopic end, and is fixedly connected to the side of the inner box 12 along the other end. When disassembling and connecting, the inner box 12 can move along the second direction X to compress one side of the support shaft 13 to achieve shrinkage, so that the support shaft on the other side of the inner box 12 can be disassembled and connected to the first shaft connection port 113. When assembling and connecting, the support shaft 13 is elastically stretched and positioned between the first shaft connection ports 113, so that the inner box 12 can be rotatably positioned and connected between the first accommodating cavity 110, thereby realizing convenient disassembly and assembly of the outer box 11 and the inner box 12, and the rotational positioning connection has high stability.
[0035] Furthermore, in this embodiment, the inner box 12 has a second shaft connection port 123 extending through both sides along the second direction X, and the second opening is foldably connected to an abutment side plate 122 along both sides along the second direction X. The abutment side plate 122 can be folded and abut against the inside of the second accommodating cavity 120. One end of the supporting shaft 13 is rotatably positioned and abuts against the side wall of the first shaft connection port 113 and the first accommodating cavity 110, and the other end is rotatably positioned and abuts against the end face of the second shaft connection port 123 and the abutment side plate 122. When the outer box 11 and the inner box 12 are disassembled and connected, the abutment side plate 122 can be folded along the side of the second opening. When unfolded, the support shaft can be disengaged along the direction of the second accommodating cavity 120 of the inner box 12, thereby enabling the outer box 11 and the inner box 12 to be disassembled and separated. When the outer box 11 and the inner box 12 are assembled and connected, the support shaft 13 passes through the second shaft connection port 123 and the first shaft connection port 113 along the second accommodating cavity, and one end abuts against the side wall of the first accommodating cavity 110. Then, the abutting side plate 122 is folded along the side of the second opening and abuts against the inner side wall of the second accommodating cavity 120. One end face of the abutting side plate 122 abuts against the other end of the support shaft 13, and the support shaft 13 is stably positioned and embedded between the outer box 11 and the inner box 12.
[0036] Furthermore, the support shaft 13 is formed by multiple paper circular panels that are fixedly stacked and connected along their end faces. One end of the support shaft 13 is provided with a retaining panel 131. The support shaft 13 is fixedly connected to the middle of the end face of the retaining panel 131. The support shaft 13 passes through the first shaft connection port 113 and the second shaft connection port 123 along the end away from the retaining panel 131, and is embedded in the retaining panel 131 between the abutting side plate 122 and the side wall of the second accommodating cavity 120 or between the supporting side plate 112 and the side wall of the first accommodating cavity 110. This ensures that the support shaft 13 will not fall off during the rotation, opening, or closing of the inner box 12, thus improving the connection stability.
[0037] Furthermore, a first magnetic element 101 is embedded and connected between the support side plate 112 and the side wall of the first accommodating cavity 110 or between the abutting side plate 122 and the side wall of the second accommodating cavity 120. The size of the first magnetic element 101 is adapted to the inner side wall of the first accommodating cavity 110 or the second accommodating cavity 120 along the second direction X. A second magnetic element 132 is provided at one end of the support shaft 13 away from the holding panel 131. The size of the second magnetic element 132 is adapted to the circular panel constituting the support shaft 13. The first magnetic element 101 and the second magnetic element 132 are magnetically attracted to each other. Specifically, the first magnetic element 101 is an iron panel or a magnetic panel, and the second magnetic element 132 is correspondingly set as a magnetic panel or an iron panel to achieve mutual magnetic attraction.
[0038] Furthermore, to achieve fixed placement and positioning display of the gift, an inner support panel 14 is detachably connected inside the second receiving cavity 120. The inner support panel 14 abuts against the inner side of the second receiving cavity 120 along its periphery via a lifting side plate 140. Specifically, the lifting side plate 140 is foldable and abuts against the side wall of the second receiving cavity 120 along its end face, and abuts against the bottom end face of the second receiving cavity 120 along its side away from the inner support panel 14, thus forming a certain gap between the inner support panel 14 and the bottom end face of the second receiving cavity 120. To achieve fixed connection of the inner support panel 14 to the second receiving cavity 120, the lifting panel can be fixedly connected to the side wall of the second receiving cavity 120 along its end face by means of adhesive bonding or other methods. The inner support panel 14 has a retaining opening along its center, wherein the retaining opening includes... The device includes two symmetrically arranged oblique abutments 141. An emergency locking groove 142 extends from the relatively close end between the two oblique abutments 141. An arc-shaped protrusion extends from the side of the emergency locking groove 142 away from the locking opening, which is conducive to locking and fixing one end of the gift. The two oblique abutments 141 are foldably connected to a ramp panel 143 from the relatively far end. One side of the ramp panel 143 abuts against the bottom end face of the second receiving cavity 120. The gift can be placed and displayed at a certain angle against the end face of the ramp panel 143. Specifically, a locking protrusion 144 is integrally formed by cutting along the middle of the side of the ramp panel 143 that is folded and connected to the locking opening. The locking protrusion 144 extends and protrudes along the direction of the locking opening, which is conducive to locking and fixing one end of the gift.
[0039] This specific embodiment is a preferred embodiment of the present utility model, and is not intended to limit the scope of protection of the present utility model. Therefore, all equivalent changes made to the structure, shape and principle of the present utility model should be included within the scope of protection of the present utility model.
Claims
1. A rotary display gift box comprising an outer box and an inner box, characterized in that, the outer box is provided with a first accommodating cavity, the first accommodating cavity is provided with a first opening along a first direction, the inner box is provided with a second accommodating cavity, the second accommodating cavity is provided with a second opening along the first direction, the inner box is connected to the inner side of the first accommodating cavity in a side direction and is rotatable, the outer box is provided with pull-through openings along the third direction relative to the two sides, the inner box is provided with a traction belt along the third direction relative to one side, the first direction, the second direction and the third direction are perpendicular to each other; wherein the traction belt is fixedly connected to the inner box along the middle part and is respectively threaded through the two pull-through openings along the two ends, the traction belt is arranged between the inner side of the outer box and the inner box, when the traction belt of one of the pull-through openings is pulled, the inner box is turned over and opened or closed in the first accommodating cavity.
2. A rotating display box according to claim 1, wherein the inner box is rotatably positioned and connected to the inner side wall of the first accommodating cavity along the second direction relative to the two sides through a supporting rotating shaft, the supporting rotating shaft is embedded between the first accommodating cavity and the side wall of the inner box.
3. A rotating display box according to claim 2, wherein, the first opening is foldably connected with a supporting side plate along the second direction relative to the two sides, the supporting side plate is foldably abutted to the inner side of the first accommodating cavity, the supporting side plate is provided with a first shaft connecting opening, one end of the supporting rotating shaft is rotatably positioned and connected between the first shaft connecting opening and the side wall of the first accommodating cavity.
4. A rotating display box according to claim 3, wherein the inner box is provided with a second shaft connecting opening along the second direction relative to the two sides, the second opening is foldably connected with an abutting side plate along the second direction relative to the two sides, the abutting side plate is foldably abutted to the inner side of the second accommodating cavity, the other end of the supporting rotating shaft is rotatably positioned and connected between the second shaft connecting opening and the end face of the abutting side plate.
5. A rotating display box according to claim 4, wherein, one end of the supporting rotating shaft is fixedly connected with a clamping panel, the supporting rotating shaft is threaded through the first shaft connecting opening and the second shaft connecting opening along the end away from the clamping panel, and is embedded between the abutting side plate and the side wall of the second accommodating cavity or between the supporting side plate and the side wall of the first accommodating cavity along the clamping panel.
6. A rotating display box according to claim 5, wherein, a first magnetic member is embedded and connected between the supporting side plate and the side wall of the first accommodating cavity or between the abutting side plate and the side wall of the second accommodating cavity, the end of the supporting rotating shaft away from the clamping panel is provided with a second magnetic member, the first magnetic member and the second magnetic member are magnetically attracted and matched connected with each other.
7. A rotating display box according to claim 1, wherein a inner supporting panel is detachably connected in the second accommodating cavity, the inner supporting panel is abutted to the inner side of the second accommodating cavity along the circumferential side, the inner supporting panel is provided with a clamping opening along the middle part, the clamping opening comprises two symmetrical inclined abutting edges, a pressing clamping groove is extended between the two inclined abutting edges along the relatively close end, a slope panel is foldably connected between the two inclined abutting edges along the relatively far end, one side of the slope panel is abutted to the inner side end face of the second accommodating cavity.
8. A rotating display box according to claim 7, wherein, a lifting side plate is foldably connected with the inner supporting panel along the circumferential side, the lifting side plate is foldably abutted to the side wall of the second accommodating cavity along the end face, and is abutted to the inner side end face of the second accommodating cavity along the side away from the inner supporting panel.
9. A rotating display box according to claim 7, wherein, an arc-shaped protrusion is extended on the side of the pressing clamping groove away from the clamping opening.
10. A rotating display box according to claim 7, wherein The slope panel is integrally provided with a clamping protrusion in the middle of the side connected with the clamping through hole.