Splicing type circulating box
Through the design of the horizontal and vertical body of the spliced circulation box and combined with Velcro packaging, the problems of easy loosening and poor compression resistance of traditional circulation boxes are solved, and the effect of firm packaging, strong compression resistance and easy recycling is achieved.
Patent Information
- Application Number
- CN202422195385.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-06
AI Technical Summary
The traditional circulation box structure is easy to loosen, has poor compressive resistance and is uneven after folding, making it inconvenient for recycling.
The splicing design of transverse and vertical bodies is combined with Velcro packaging to ensure a firm packaging, and a double-layer structure is provided on the top, bottom and sides of the box to enhance compression resistance.
It improves the firmness of the packaging, enhances the compressive resistance, and allows the box to be folded smoothly, easy to recycle and reduces material costs.
Smart Images

Figure CN223162195U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of circulation boxes and relates to a spliced circulation box. Background Technique
[0002] Traditional circulation box structures generally have three problems. First, the box is only sealed by bolts or buckles, which is prone to loosening. Second, the top, bottom, and sides of the box are generally single-layer structures, with poor compressive performance. Third, when folding, the bottom of the box generally folds inward, and the folded box is uneven, which is not conducive to recycling and reuse. Summary of the Invention
[0003] The purpose of the utility model is to provide a circulation box with stronger sealing, better compressive performance, and more convenient recycling to solve the problems existing in the prior art.
[0004] To achieve the above purpose, the utility model is realized through the following technical solutions: a spliced circulation box, which is composed of a horizontal body and a vertical body;
[0005] The horizontal body includes: a first horizontal surface, a second horizontal surface connected to the left side of the first horizontal surface, and a third horizontal surface connected to the left side of the second horizontal surface. The upper end of the first horizontal surface is connected with a first ear surface, and a socket is arranged at the upper right corner of the first ear surface. The lower end of the first horizontal surface is connected with a second ear surface. The lower end of the second horizontal surface is connected with a bottom lining surface, and a first hook surface of a magic tape and a second hook surface of a magic tape are pasted on the outside of the second horizontal surface. The upper end of the third horizontal surface is connected with a third ear surface, and a socket is arranged at the upper left corner of the third ear surface. The lower end of the third horizontal surface is connected with a fourth ear surface. The first horizontal surface is folded inward along the left crease, the third horizontal surface is folded inward along the right crease, and there is a gap between the first ear surface and the third ear surface and the second horizontal surface after folding inward along the crease;
[0006] The vertical body described above includes: a first vertical surface, a second vertical surface connected to the lower end of the first vertical surface, a third vertical surface connected to the lower end of the second vertical surface, a fourth vertical surface connected to the lower end of the third vertical surface, and a fifth vertical surface connected to the lower end of the fourth vertical surface. An inner folding surface is connected to the upper end of the first vertical surface. A third hook surface of Velcro and a fourth hook surface of Velcro are pasted on the outer side of the first vertical surface. Jacks are provided on the first vertical surface, and the jacks are close to the second vertical surface. A first splicing surface is connected to the left side of the second vertical surface, and a second splicing surface is connected to the right side of the second vertical surface. The first splicing surface is fixedly connected to the right inner side of the first horizontal surface, and the second vertical surface abuts against the first horizontal surface. The second splicing surface is fixedly connected to the left inner side of the third horizontal surface, and the second vertical surface abuts against the third horizontal surface. An insertion ear is connected to the lower end of the fifth vertical surface. A first loop surface of Velcro and a second loop surface of Velcro are pasted on the inner side of the fifth vertical surface. The insertion ears are respectively inserted and matched with the insertion openings and the jacks. The first loop surface of Velcro is respectively pasted and matched with the fourth hook surface of Velcro and the second hook surface of Velcro. The second loop surface of Velcro is respectively pasted and matched with the third hook surface of Velcro and the first hook surface of Velcro. The first ear surface and the third ear surface are folded inwards along the crease. The first vertical surface is folded inwards along the crease above the first ear surface and the third ear surface. The inner folding surface is folded inwards along the crease and inserted into the gap. The second ear surface and the fourth ear surface are folded inwards along the crease. The bottom lining surface is folded inwards along the crease below the second ear surface and the fourth ear surface. The third vertical surface is folded inwards along the crease below the bottom lining surface. The fourth vertical surface is folded inwards along the crease and closely adheres to the outer side of the second horizontal surface. The fifth vertical surface is folded inwards along the crease above the first vertical surface. The insertion ear is folded inwards along the crease and inserted into the jack. The first loop surface of Velcro is pasted with the fourth hook surface of Velcro, and the second loop surface of Velcro is pasted with the third hook surface of Velcro.
[0007] Further, when the insertion ears are pulled out of the jacks, the first loop surface of Velcro is separated from the fourth hook surface of Velcro, and the second loop surface of Velcro is separated from the third hook surface of Velcro. The recycling box can be folded. After folding, the second loop surface of Velcro is pasted with the first hook surface of Velcro.
[0008] Further, the encapsulation process of the recycling box of the present utility model is as follows: the second ear surface and the fourth ear surface are folded inwards along the crease. The bottom lining surface is folded inwards along the crease below the second ear surface and the fourth ear surface. The third vertical surface is folded inwards along the crease below the bottom lining surface. The fourth vertical surface is folded inwards along the crease and closely adheres to the outer side of the second horizontal surface. Items are placed. The first ear surface and the third ear surface are folded inwards along the crease. The first vertical surface is folded inwards along the crease above the first ear surface and the third ear surface. The inner folding surface is folded inwards along the crease and inserted into the gap. The fifth vertical surface is folded inwards along the crease above the first vertical surface. The insertion ear is folded inwards along the crease and inserted into the jack. The first loop surface of Velcro is pasted with the fourth hook surface of Velcro, and the second loop surface of Velcro is pasted with the third hook surface of Velcro. Thus, the encapsulation is completed and it enters the transportation process.
[0009] Furthermore, the opening and folding process of the recycling box of the present utility model is as follows: When it is necessary to open the recycling box, pull out the lugs from the jacks, separate the first hook-and-loop fastener's rough surface from the fourth hook-and-loop fastener's hook surface, and separate the second hook-and-loop fastener's rough surface from the third hook-and-loop fastener's hook surface. Take out the items. The recycling box is foldable. After folding, the second hook-and-loop fastener's rough surface is pasted to the first hook-and-loop fastener's hook surface.
[0010] The advantages of the present utility model are as follows: Compared with the prior art, the recycling box of the present utility model is encapsulated by hook-and-loop fasteners and is not prone to loosening. The top, bottom, and one side of the box are all double-layer structures, further enhancing the compressive performance. The box can be unfolded and folded flat, facilitating recycling and reuse. Compared with the recycling box with an integrated design of the same shape, the splicing design effectively improves the material utilization rate and reduces the cost.
[0011] For better understanding and implementation, the present utility model will be described in detail below with reference to the accompanying drawings. Description of the Drawings
[0012] Figure 1 is the perspective structure schematic diagram of the present utility model;
[0013] Figure 2 is the unfolded structure schematic diagram (inside) of the present utility model;
[0014] Figure 3 is the unfolded structure schematic diagram (outside) of the present utility model;
[0015] Figure 4 is the structure schematic diagram of the bottom of the present utility model after encapsulation;
[0016] Figure 5 is the structure schematic diagram of the top of the present utility model before encapsulation;
[0017] Figure 6 is the schematic diagram of the embodiment of the present utility model;
[0018] Figure 7 is the schematic diagram of the present utility model after folding;
[0019] Description of the Reference Numerals:
[0020] 1. Horizontal body, 2. Vertical body, 101. First horizontal surface, 102. Second horizontal surface, 103. Third horizontal surface, 104. First ear surface, 105. Socket, 106. Second ear surface, 107. Bottom lining surface, 108. First hook surface of Velcro, 109. Second hook surface of Velcro, 110. Third ear surface, 111. Fourth ear surface, 201. First vertical surface, 202. Second vertical surface, 203. Third vertical surface, 204. Fourth vertical surface, 205. Fifth vertical surface, 206. Inner folding surface, 207. Third hook surface of Velcro, 208. Fourth hook surface of Velcro, 209. Jack, 210. First splicing surface, 211. Second splicing surface, 212. Insert ear, 213. First loop surface of Velcro, 214. Second loop surface of Velcro Detailed implementation manners
[0021] In order to enable those skilled in the art to better understand the solution of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only one embodiment of the present utility model, rather than all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts shall fall within the protection scope of the present utility model.
[0022] It should be noted that when an element is referred to as being "connected" to another element, it can be directly connected to the other element or there may be an intermediate element at the same time; the upper, lower, left, right, inner, outer, upper end, lower end and other orientation terms mentioned or likely to be mentioned in this specification are defined for its structure, and they are relative concepts. Therefore, they may change accordingly according to their different positions and different usage states. Therefore, these or other orientation terms should not be interpreted as restrictive terms unless otherwise defined. All technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the technical field of the present utility model; the terms used in the specification of the present utility model herein are only for the purpose of describing specific embodiments and are not intended to limit the present utility model.
[0023] Such as Figures 1-7As shown in the figure, the utility model provides a spliced circulation box, which includes a horizontal body 1 and a vertical body 2. The second ear surface 106 and the fourth ear surface 111 of the horizontal body 1 are folded inward along the crease, the bottom lining surface 107 of the horizontal body 1 is folded inward along the crease, the third vertical surface 203 of the vertical body 2 is folded inward along the crease, and the fourth vertical surface 204 of the vertical body 2 is folded inward along the crease and closely adheres to the outside of the second horizontal surface 102. After putting items in, the first ear surface 104 and the third ear surface 110 of the horizontal body 1 are folded inward along the crease, the first vertical surface 201 of the vertical body 2 is folded inward along the crease, the inner folding surface 206 of the vertical body 2 is folded inward along the crease and then inserted into the gap, the fifth vertical surface 205 of the vertical body 2 is folded inward along the crease, the insertion ear 212 of the vertical body 2 is folded inward along the crease and inserted into the insertion hole 209, the first hook surface of Velcro 213 on the vertical body 2 is pasted with the fourth loop surface of Velcro 208, and the second loop surface of Velcro 214 is pasted with the third hook surface of Velcro 207, then the encapsulation is completed and it enters the transportation link.
[0024] Furthermore, a spliced circulation box is composed of a horizontal body 1 and a vertical body 2.
[0025] Furthermore, the horizontal body 1 includes: a first horizontal surface 101, a second horizontal surface 102 connected to the left side of the first horizontal surface 101, and a third horizontal surface 103 connected to the left side of the second horizontal surface 102. The upper end of the first horizontal surface 101 is connected with a first ear surface 104, and a socket 105 is arranged at the upper right corner of the first ear surface 104. The lower end of the first horizontal surface 101 is connected with a second ear surface 106. The lower end of the second horizontal surface 102 is connected with a bottom lining surface 107, and a first hook surface of Velcro 108 and a second hook surface of Velcro 109 are pasted on the outside of the second horizontal surface 102. The upper end of the third horizontal surface 103 is connected with a third ear surface 110, and a socket 105 is arranged at the upper left corner of the third ear surface 110. The lower end of the third horizontal surface 103 is connected with a fourth ear surface 111. The first horizontal surface 101 is folded inward along the left crease, the third horizontal surface 103 is folded inward along the right crease, and there is a gap between the first ear surface 104 and the third ear surface 110 and the second horizontal surface 102 after being folded inward along the crease.
[0026] Further, the vertical body 2 includes: a first vertical surface 201, a second vertical surface 202 connected to the lower end of the first vertical surface 201, a third vertical surface 203 connected to the lower end of the second vertical surface 202, a fourth vertical surface 204 connected to the lower end of the third vertical surface 203, and a fifth vertical surface 205 connected to the lower end of the fourth vertical surface 204. An inner folding surface 206 is connected to the upper end of the first vertical surface 201. A third hook surface of Velcro 207 and a fourth hook surface of Velcro 208 are pasted on the outer side of the first vertical surface 201. A jack 209 is provided on the first vertical surface 201, and the jack 209 is close to the second vertical surface 202. A first splicing surface 210 is connected to the left side of the second vertical surface 202, and a second splicing surface 211 is connected to the right side of the second vertical surface 202. The first splicing surface 210 is fixedly connected to the right inner side of the first horizontal surface 101, and the second vertical surface 202 abuts against the first horizontal surface 101. The second splicing surface 211 is fixedly connected to the left inner side of the third horizontal surface 103, and the second vertical surface 202 abuts against the third horizontal surface 103. An insertion lug 212 is connected to the lower end of the fifth vertical surface 205. A first loop surface of Velcro 213 and a second loop surface of Velcro 214 are pasted on the inner side of the fifth vertical surface 205. The insertion lug 212 is respectively inserted and matched with the socket 105 and the jack 209. The first loop surface of Velcro 213 is respectively pasted and matched with the fourth hook surface of Velcro 208 and the second hook surface of Velcro 109. The first ear surface 104 and the third ear surface 110 are folded inward along the crease. The first vertical surface 201 is folded inward along the crease and is located above the first ear surface 104 and the third ear surface 110. The inner folding surface 206 is folded inward along the crease and then inserted into the gap. The second ear surface 106 and the fourth ear surface 111 are folded inward along the crease. The bottom lining surface 107 is folded inward along the crease and is located below the second ear surface 106 and the fourth ear surface 111. The third vertical surface 203 is folded inward along the crease and is located below the bottom lining surface 107. The fourth vertical surface 204 is folded inward along the crease and is closely attached to the outer side of the second horizontal surface 102. The fifth vertical surface 205 is folded inward along the crease and is located above the first vertical surface 201. The insertion lug 212 is folded inward along the crease and inserted into the jack 209. The first loop surface of Velcro 213 is pasted with the fourth hook surface of Velcro 208, and the second loop surface of Velcro 214 is pasted with the third hook surface of Velcro 207.
[0027] Further, when the insertion lug 212 is pulled out of the jack 209, the first loop surface of Velcro 213 is separated from the fourth hook surface of Velcro 208, and the second loop surface of Velcro 214 is separated from the third hook surface of Velcro 207. The recycling box can be folded. After folding, the second loop surface of Velcro 214 is pasted with the first hook surface of Velcro 108, or the first loop surface of Velcro 213 is pasted with the second hook surface of Velcro 109.
[0028] Furthermore, the encapsulation process of the recycling box of the present utility model is as follows: the second ear surface 106 and the fourth ear surface 111 are folded inwards along the crease, the bottom lining surface 107 is folded inwards along the crease and is located below the second ear surface 106 and the fourth ear surface 111, the third vertical surface 203 is folded inwards along the crease and is located below the bottom lining surface 107, the fourth vertical surface 204 is folded inwards along the crease and is closely attached to the outer side of the second horizontal surface 102, items are placed, the first ear surface 104 and the third ear surface 110 are folded inwards along the crease, the first vertical surface 201 is folded inwards along the crease and is located above the first ear surface 104 and the third ear surface 110, the inner folding surface 206 is folded inwards along the crease and then inserted into the gap, the fifth vertical surface 205 is folded inwards along the crease and is located above the first vertical surface 201, the insertion ear 212 is folded inwards along the crease and inserted into the insertion hole 209, the first hook-and-loop fastener rough surface 213 is pasted with the fourth hook-and-loop fastener hook surface 208, and the second hook-and-loop fastener rough surface 214 is pasted with the third hook-and-loop fastener hook surface 207, thus completing the encapsulation and entering the transportation link.
[0029] Furthermore, the opening and folding process of the recycling box of the present utility model is as follows: when the recycling box needs to be opened, the insertion ear 212 is pulled out of the insertion hole 209, the first hook-and-loop fastener rough surface 213 is separated from the fourth hook-and-loop fastener hook surface 208, the second hook-and-loop fastener rough surface 214 is separated from the third hook-and-loop fastener hook surface 207, the items are taken out, the recycling box can be folded, and after folding, the second hook-and-loop fastener rough surface 214 is pasted with the first hook-and-loop fastener hook surface 108, or the first hook-and-loop fastener rough surface 213 is pasted with the second hook-and-loop fastener hook surface 109, thus completing the folding and entering the recycling link.
[0030] The advantages of the present utility model are as follows: compared with the prior art, the recycling box of the present utility model is not easily loosened through hook-and-loop fastener encapsulation; the top, bottom, and one side of the box are all double-layer structures, further enhancing the compressive performance; the box can be unfolded and folded flat, facilitating recycling and reuse; compared with the recycling box with the same shape and integrated design, the splicing design effectively improves the material utilization rate and reduces the cost.
[0031] The above-described embodiments only express the implementation manners of the present utility model, and the description thereof is relatively specific and detailed, but it should not be construed as a limitation to the scope of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, any deformation and improvement made to the present utility model in terms of shape, size, connection method, installation position, etc. belong to the protection scope of the present utility model. The embodiments of the present utility model can be used not only for recycling boxes but also for other devices, and should not be construed as a limitation to the scope of use of the present utility model.
Claims
1. A spliced circulation box, characterized by: It is composed of a horizontal body (1) and a vertical body (2); The said horizontal body (1) includes: a first horizontal surface (101), a second horizontal surface (102) connected to the left side of the first horizontal surface (101), and a third horizontal surface (103) connected to the left side of the second horizontal surface (102). The upper end of the first horizontal surface (101) is connected with a first ear surface (104), and a socket (105) is arranged at the upper right corner of the first ear surface (104). The lower end of the first horizontal surface (101) is connected with a second ear surface (106). The lower end of the second horizontal surface (102) is connected with a bottom lining surface (107), and a first hook surface of Velcro (108) and a second hook surface of Velcro (109) are pasted on the outer side of the second horizontal surface (102). The upper end of the third horizontal surface (103) is connected with a third ear surface (110), and a socket (105) is arranged at the upper left corner of the third ear surface (110). The lower end of the third horizontal surface (103) is connected with a fourth ear surface (111). The first horizontal surface (101) is folded inwards along the left crease, the third horizontal surface (103) is folded inwards along the right crease, and there is a gap between the first ear surface (104) and the third ear surface (110) and the second horizontal surface (102) after being folded inwards along the crease; The vertical body (2) described above includes: a first vertical surface (201), a second vertical surface (202) connected to the lower end of the first vertical surface (201), a third vertical surface (203) connected to the lower end of the second vertical surface (202), a fourth vertical surface (204) connected to the lower end of the third vertical surface (203), a fifth vertical surface (205) connected to the lower end of the fourth vertical surface (204). An inner folding surface (206) is connected to the upper end of the first vertical surface (201). A third hook surface of Velcro (207) and a fourth hook surface of Velcro (208) are pasted on the outer side of the first vertical surface (201). A jack (209) is provided on the first vertical surface (201), and the jack (209) is close to the second vertical surface (202). A first splicing surface (210) is connected to the left side of the second vertical surface (202), and a second splicing surface (211) is connected to the right side of the second vertical surface (202). The first splicing surface (210) is fixedly connected to the right inner side of the first horizontal surface (101), and the second vertical surface (202) abuts against the first horizontal surface (101). The second splicing surface (211) is fixedly connected to the left inner side of the third horizontal surface (103), and the second vertical surface (202) abuts against the third horizontal surface (103). An insertion ear (212) is connected to the lower end of the fifth vertical surface (205). A first loop surface of Velcro (213) and a second loop surface of Velcro (214) are pasted on the inner side of the fifth vertical surface (205). The insertion ear (212) is respectively inserted and matched with the socket (105) and the jack (209). The first loop surface of Velcro (213) is respectively pasted and matched with the fourth hook surface of Velcro (208) and the second hook surface of Velcro (109). The second loop surface of Velcro (214) is respectively pasted and matched with the third hook surface of Velcro (207) and the first hook surface of Velcro (108). The first ear surface (104) and the third ear surface (110) are folded inward along the crease. The first vertical surface (201) is folded inward along the crease and is located above the first ear surface (104) and the third ear surface (110). The inner folding surface (206) is folded inward along the crease and then inserted into the gap. The second ear surface (106) and the fourth ear surface (111) are folded inward along the crease. The bottom lining surface (107) is folded inward along the crease and is located below the second ear surface (106) and the fourth ear surface (111). The third vertical surface (203) is folded inward along the crease and is located below the bottom lining surface (107). The fourth vertical surface (204) is folded inward along the crease and closely adheres to the outer side of the second horizontal surface (102). The fifth vertical surface (205) is folded inward along the crease and is located above the first vertical surface (201). The insertion ear (212) is folded inward along the crease and inserted into the jack (209). The first loop surface of Velcro (213) is pasted with the fourth hook surface of Velcro (208), and the second loop surface of Velcro (214) is pasted with the third hook surface of Velcro (207).
2. The circulating box according to claim 1, wherein: The ear (212) is pulled out of the socket (209), the first Velcro fleece surface (213) is separated from the fourth Velcro hook surface (208), the second Velcro fleece surface (214) is separated from the third Velcro hook surface (207), and the circulation box is foldable. After folding, the second Velcro fleece surface (214) is attached to the first Velcro hook surface (108).