A winding package assembly

By designing a winding packaging component, the space occupation and entanglement problems of fiber-reinforced mesh flat packaging are solved, achieving compact packaging, increased loading capacity and convenient transportation, and reduced construction costs.

CN224530166UActive Publication Date: 2026-07-21DEXTRA BUILDING PRODUCTS (GUANGDONG) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DEXTRA BUILDING PRODUCTS (GUANGDONG) CO LTD
Filing Date
2025-07-17
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In existing technologies, the flat packaging of fiber-reinforced mesh occupies a large space, limits the loading capacity of containers, and the mesh is prone to tangling, making it inconvenient to handle and costly to construct.

Method used

The winding packaging assembly includes a packaging sheet and a constraint. The packaging sheet forms multiple winding layers and winding gaps, the constraint fixes the outermost layer, and the groove restricts the circumferential movement of the reinforcing material, forming a compact winding structure.

Benefits of technology

It reduces the entanglement of reinforcing mesh, saves space, increases loading capacity, simplifies handling, reduces construction costs, and improves transportation convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of winding packaging assemblies, for packaging equipment technical field.The utility component includes: packaging sheet, packaging sheet winding forms the winding structure with multiple layers of winding turns, winding gap for placing rib net is formed between adjacent winding turns, the thickness of winding gap is matched with the rib material diameter of rib net;Restraint, restraint is connected with packaging sheet, restraint is used to detachably fix the winding turn layer located outermost on the outer surface of adjacent inner side winding turn layer.Carry out packaging when rib net, since the thickness of winding gap is matched with the rib material diameter of the rib net, can greatly reduce the situation that long size especially small diameter rib material on rib net is mutually entangled when winding packaging;And the whole winding type occupied space of well-packaged rib net is less, can maximumly reach container allowable load, simultaneously rib net structure can be prevented from being damaged in transportation process;And the packaging is simple to remove, user is convenient to use.
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Description

Technical Field

[0001] This utility model relates to the field of packaging equipment technology, and in particular to a winding packaging component. Background Technology

[0002] Currently, most fiber-reinforced ribs are packaged in a straight, flat-lay manner. This packaging method is fine for individual ribs; however, it presents the following problems for prefabricated and connected rib mesh structures in the factory: First, it occupies a large amount of space, thus limiting the loading capacity of shipping containers; second, the ribs in the mesh may become entangled during packaging, affecting the installation and use; third, on-site application requires multiple people to move a single flat-lay packaged rib mesh, resulting in high construction costs and inconvenience in handling. Utility Model Content

[0003] This invention provides a winding packaging assembly, which aims to solve the technical problems mentioned in the background art.

[0004] This utility model provides a winding packaging assembly, including:

[0005] A packaging sheet, wherein the packaging sheet is wound to form a winding structure having multiple winding layers, and a winding gap for placing a reinforcing mesh is formed between two adjacent winding layers, the thickness of the winding gap being matched with the diameter of the reinforcing mesh.

[0006] A constraint member is connected to the packaging sheet, and the constraint member is used to detachably fix the outermost winding layer to the outer surface of the adjacent inner winding layer.

[0007] In one embodiment, the surface of the packaging sheet is provided with a plurality of protrusions, the plurality of protrusions being arranged along the winding direction of the packaging sheet, and a groove being formed between two adjacent protrusions on the same surface, the groove being used to restrict the circumferential movement of the reinforcing mesh.

[0008] In one embodiment, a plurality of the grooves are provided on the outer winding surface of the packaging sheet.

[0009] In one embodiment, a plurality of the grooves are provided on the inner winding surface of the packaging sheet.

[0010] In one embodiment, a plurality of the grooves are provided on the inner winding surface of the packaging sheet and the outer winding surface of the packaging sheet;

[0011] The grooves between adjacent winding layers are arranged opposite each other.

[0012] In one embodiment, the groove is an arc-shaped groove, the diameter of which matches the diameter of the reinforcing mesh.

[0013] In one embodiment, the packaging sheet is an elastically deformable packaging sheet.

[0014] In one embodiment, the packaging sheet is one of paper, metal, or plastic.

[0015] In one embodiment, the constraint is a cable tie, one end of which is connected and fixed to the end of the outermost winding layer, and the other end of which is adhered to the outer surface of the adjacent inner winding layer.

[0016] In one embodiment, the constraint is a cable tie, which is tied to the outer periphery of the packaging sheet.

[0017] As can be seen from the above technical solutions, this utility model has the following advantages:

[0018] This embodiment provides a winding packaging assembly, including a packaging sheet and a restraining member. Because the packaging sheet has a winding structure, a winding gap is formed between adjacent winding layers on the packaging sheet. When packaging the reinforcing mesh, the reinforcing mesh is placed into this winding gap. Since the thickness of the winding gap matches the diameter of the reinforcing mesh, it can greatly reduce the entanglement of long-length, especially small-diameter, reinforcing mesh during winding packaging. The restraining member can fix the outermost winding layer to the outer surface of the adjacent inner winding layer to prevent the reinforcing mesh from falling out of the winding gap. The entire winding assembly with the reinforcing mesh packaged occupies little space, maximizing the container's allowable loading capacity while preventing damage to the reinforcing mesh structure during transportation. Furthermore, the packaging is easy to remove and convenient for users. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 A schematic diagram of the structure of a winding packaging assembly provided in Embodiment 1 of this utility model;

[0021] Figure 2 This is a schematic diagram of the structure of a winding packaging assembly provided in Embodiment 3 of the present invention.

[0022] Figure label:

[0023] 1. Packaging sheet; 10. Winding layer; 11. Winding gap; 12. Protrusion; 13. Groove; 14. Outer winding surface; 15. Inner winding surface; 2. Constraint. Detailed Implementation

[0024] This utility model provides a winding packaging assembly, which aims to solve the technical problems of existing ribbed packaging, such as large space occupation, tangling of ribs, and inconvenience in handling the ribbed mesh.

[0025] To make the utility model's objectives, features, and advantages more apparent and understandable, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present utility model.

[0026] Currently, most fiber-reinforced ribs are packaged in a straight, flat-lay manner. This packaging method is fine for individual ribs; however, it presents the following problems for prefabricated and connected rib mesh structures in the factory: First, it occupies a large amount of space, thus limiting the loading capacity of shipping containers; second, it limits the number of ribs that can be used in a single rib mesh, and the ribs may become entangled during packaging, affecting their use; third, on-site application requires multiple people to move a single rib mesh, resulting in high construction costs and inconvenience in handling. Several embodiments of this utility model will be provided below for illustration.

[0027] Example 1

[0028] Please see Figure 1 The present invention provides a winding packaging assembly, comprising:

[0029] Packaging sheet 1, the packaging sheet 1 is wound to form a winding structure with multiple winding layers 10, and a winding gap 11 is formed between two adjacent winding layers 10 for placing the reinforcing mesh, the thickness of the winding gap 11 is matched with the diameter of the reinforcing mesh.

[0030] Constraint 2 is connected to packaging sheet 1 and is used to detachably fix the outermost winding layer 10 to the outer surface of the adjacent inner winding layer 10.

[0031] Among them, the winding layer 10 refers to the unit that wraps around once in the winding structure, while multiple winding layers 10 are the parts that are distributed radially from the center outward in the winding structure formed by continuously winding the single sheet material 1 of the packaging sheet 1, and do not refer to independent, separate sheet-like layers. Each winding layer 10 is seamlessly connected through the continuous extension of the sheet material to form multiple radially superimposed winding layers 10.

[0032] It should be noted that the total winding size of the winding gap 11 is matched with the length of the reinforcing mesh so that the reinforcing mesh can be fully wrapped by the winding gap 11. Therefore, those skilled in the art can equip several sets of winding and packaging components according to common reinforcing mesh lengths for packaging purposes.

[0033] In the packaging process of this embodiment, the user arranges the reinforcing mesh along the winding path of the winding gap 11. The user can insert the winding gap 11 from the end of the packaging sheet 1 to the side, or gradually insert the winding gap 11 from the gap between the outermost winding layer 10 of the packaging sheet 1 and the adjacent inner winding layer 10 until the reinforcing mesh is packaged. Then, the user uses the constraint member 2 to detachably fix the outermost winding layer 10 to the outer surface of the adjacent inner winding layer 10 to complete the packaging of the reinforcing mesh.

[0034] Compared with the prior art, the advantages of this embodiment are as follows: First, the possibility of the reinforcing mesh tangling during packaging is low. Since the thickness of the winding gap 11 is precisely matched with the diameter of one of the reinforcing mesh ribs, the reinforcing mesh ribs will enter one by one in sequence when entering along the winding gap 11. Moreover, after the constraint member 2 fixes the packaging piece 1, the probability of the reinforcing mesh tangling is quite low. Second, the winding packaging component adopts a winding structure, which can package the reinforcing mesh into a roll structure. The roll structure occupies less space and can maximize the container's allowable loading capacity, avoiding the situation where the reinforcing mesh is packaged into a flat structure, which occupies a lot of space. Third, the reinforcing mesh is convenient to transport. Because the reinforcing mesh is packaged into a roll structure, it is more convenient to transport in batches, and fewer manpower is needed for manual transportation.

[0035] In one specific embodiment, a feasible structure for the packaging sheet 1 is further provided. The packaging sheet 1 is an elastically deformable packaging sheet 1. When packaging the rib mesh, the elastically deformable packaging sheet 1 can provide good protection, adaptability and convenience for the packaged items, and can make the rib mesh fit more tightly with the adjacent winding layers 10.

[0036] In this embodiment, the packaging sheet 1 is a paper sheet, which can be corrugated paper, kraft paper or composite paper. The paper sheet is made of recyclable paper material, which is safe and environmentally friendly. Those skilled in the art can select a suitable paper as the material of the packaging sheet 1 according to the required strength of the rib mesh.

[0037] In this embodiment, the packaging sheet 1 can be a metal sheet in addition to a paper sheet. The metal sheet can be a copper sheet, an iron sheet, or an aluminum sheet. The metal sheet has higher structural strength and can support heavier ribs.

[0038] In this embodiment, the packaging sheet 1 can be a paper sheet, a metal sheet, or a plastic sheet. The plastic sheet can be a polyethylene sheet, a polyvinyl chloride sheet, etc., and those skilled in the art can choose according to actual production needs.

[0039] In one specific embodiment, such as Figure 1 As shown, a feasible structure for the constraint member 2 is further provided. The constraint member 2 is a binding strap. One end of the binding strap is connected and fixed to the end of the outermost winding layer 10. The other end of the binding strap is detachably bonded to the outer surface of the adjacent inner winding layer 10. The detachable bonding can be Velcro, magnetic assisted bonding, tape bonding or water-soluble adhesive bonding. In specific implementation, when the packaging of the reinforcing mesh begins, the binding strap can be opened to allow the reinforcing mesh to be inserted. When the packaging of the reinforcing mesh is finished, the binding strap can be bonded to the outer surface of the adjacent inner winding layer 10 so that the outermost winding layer 10 is fixed to the outer surface of the adjacent inner winding layer 10.

[0040] In another specific embodiment, a feasible structure for the constraint member 2 is further provided. The constraint member 2 is a binding strap, which is bound to the outer periphery of the packaging sheet 1. In specific implementation, the binding strap can bind the rolled packaging sheet 1 to fix the outermost rolled layer 10 to the outer surface of the adjacent inner rolled layer 10.

[0041] As can be seen from the above embodiment 1, the winding packaging assembly in embodiment 1 uses the winding gap 11 between two adjacent winding layers 10 to supply the reinforcing mesh for installation. After the constraint member 2 is fixed, the two adjacent winding layers 10 can effectively clamp the reinforcing mesh and prevent it from moving circumferentially.

[0042] Example 2

[0043] The second embodiment of this utility model is basically the same as the first embodiment, except that there are multiple protrusions 12 on the surface of the packaging sheet 1. The multiple protrusions 12 are arranged along the winding direction of the packaging sheet 1, and the length direction of the multiple protrusions 12 is parallel to the winding axis direction of the packaging sheet 1. A groove 13 is formed between two adjacent protrusions 12 on the same surface. The groove 13 is used to restrict the circumferential movement of the reinforcing mesh. Specifically, when the reinforcing mesh is installed, the reinforcing mesh is installed into the groove 13, and the connecting mesh of the reinforcing mesh is installed into the winding gap 11 between the protrusion 12 and the winding layer 10. After the constraint member 2 is fixed, the reinforcing mesh is clamped and fixed by the groove 13 and the winding layer 10 on the side adjacent to the center of the winding axis. The groove 13 can restrict the circumferential movement of the reinforcing mesh and prevent the reinforcing mesh from coming out of the winding gap 11.

[0044] In this embodiment, multiple grooves 13 are provided on the outer winding surface 14 of the packaging sheet 1. The outer winding surface 14 of the packaging sheet 1 refers to the surface of the packaging sheet 1 located on the outer side of the winding. That is, the grooves 13 in the winding gap 11 will be arranged on the winding turn layer 10 on the side adjacent to the center of the winding shaft. Multiple grooves 13 can effectively restrict the circumferential movement of multiple reinforcing bars of the reinforcing mesh.

[0045] Specifically, the groove 13 is an arc-shaped groove 13, and the diameter of the arc-shaped groove 13 matches the diameter of the reinforcing mesh. When the reinforcing mesh is installed into the arc-shaped groove 13, the upper part of the reinforcing mesh will fit tightly in the arc-shaped groove 13, thereby achieving the limiting and fixing of the reinforcing mesh.

[0046] Example 3

[0047] Please refer to Figure 2 The third embodiment of this utility model is basically the same as the second embodiment, except that the multiple grooves 13 are not all provided on the outer winding surface 14 of the packaging sheet 1, but are all provided on the inner winding surface 15 of the packaging sheet 1. When the rib mesh is installed, the ribs of the rib mesh are installed into the grooves 13, and the connecting mesh of the rib mesh is installed into the winding gap 11 between the protrusion 12 and the winding turn 10. After the constraint member 2 is fixed, the ribs of the rib mesh are clamped and fixed by the grooves 13 and the winding turn 10 on the side away from the center of the winding shaft. The grooves 13 can restrict the circumferential movement of the ribs and prevent the ribs from coming out of the winding gap 11.

[0048] In this embodiment, multiple grooves 13 are provided on the inner winding surface 15 of the packaging sheet 1. The inner winding surface 15 of the packaging sheet 1 refers to the surface of the packaging sheet 1 located on the inner side of the winding. That is, the grooves 13 in the winding gap 11 are arranged on the winding turn layer 10 on the side away from the center of the winding shaft. Multiple grooves 13 can effectively restrict the circumferential movement of multiple reinforcing bars of the reinforcing mesh.

[0049] Example 4

[0050] The fourth embodiment of this utility model is basically the same as the second embodiment, except that, in addition to being provided on the outer winding surface 14 of the packaging sheet 1, multiple grooves 13 are also provided on the inner winding surface 15 of the packaging sheet 1, and the grooves 13 between adjacent winding layers 10 are arranged opposite to each other. That is, the grooves 13 on both sides of the winding gap 11 will form a circular hole structure to package the entire reinforcing mesh. In specific implementation, the reinforcing mesh is installed into the grooves 13 on both sides of the winding gap 11, while the connecting mesh of the reinforcing mesh is installed into the winding gap 11 between the protrusion 12 and the winding layer 10. When the constraint member 2 is fixed, the grooves 13 on both sides of the winding gap 11 will form a circular hole that perfectly matches the shape of the reinforcing mesh. The reinforcing mesh is clamped and fixed by the circular hole, effectively restricting the circumferential movement of the reinforcing material and preventing the reinforcing material from coming off the winding gap 11.

[0051] In this embodiment, a plurality of grooves 13 are provided on the inner winding surface 15 and the outer winding surface 14 of the packaging sheet 1. That is, the grooves 13 are arranged on the winding layer 10 on the side away from the center of the winding shaft and on the winding layer 10 adjacent to the center of the winding shaft in the winding gap 11. The circular holes formed by the grooves 13 on both sides clamp and fix the reinforcing material of the mesh, effectively restricting the circumferential movement of the reinforcing material and preventing the reinforcing material from coming out of the winding gap 11.

[0052] As can be seen from the above embodiments 2, 3 and 4, embodiments 2, 3 and 4 are all based on the winding gap 11, with the addition of a groove 13 for restricting the circumferential movement of the reinforcing mesh, so as to enhance the limiting and fixing ability of the reinforcing mesh. The only difference is the arrangement position of the groove 13, which can be selected by those skilled in the art according to actual needs.

[0053] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0054] The above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

[0055] Finally, it should be noted that in this paper, relational terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations.

Claims

1. A winding packaging assembly, characterized in that, include: A packaging sheet, wherein the packaging sheet is wound to form a winding structure having multiple winding layers, and a winding gap for placing a reinforcing mesh is formed between two adjacent winding layers, the thickness of the winding gap being matched with the diameter of the reinforcing mesh. A constraint member is connected to the packaging sheet, and the constraint member is used to detachably fix the outermost winding layer to the outer surface of the adjacent inner winding layer.

2. The winding packaging assembly according to claim 1, characterized in that, The packaging sheet has multiple protrusions on its surface, which are arranged along the winding direction of the packaging sheet. A groove is formed between two adjacent protrusions on the same surface, which is used to restrict the circumferential movement of the reinforcing mesh.

3. The winding packaging assembly according to claim 2, characterized in that, Multiple grooves are provided on the outer winding surface of the packaging sheet.

4. The winding packaging assembly according to claim 2, characterized in that, The plurality of grooves are provided on the inner winding surface of the packaging sheet.

5. The winding packaging assembly according to claim 2, characterized in that, Multiple grooves are provided on the inner winding surface of the packaging sheet and the outer winding surface of the packaging sheet; The grooves between adjacent winding layers are arranged opposite each other.

6. The winding packaging assembly according to any one of claims 2 to 5, characterized in that, The groove is an arc-shaped groove, and the diameter of the arc-shaped groove matches the diameter of the reinforcing bar of the mesh.

7. The winding packaging assembly according to claim 1, characterized in that, The packaging sheet is an elastically deformable packaging sheet.

8. The winding packaging assembly according to claim 7, characterized in that, The packaging sheet is one of paper, metal, or plastic.

9. The winding packaging assembly according to claim 1, characterized in that, The constraint is a cable tie, one end of which is connected and fixed to the end of the outermost winding layer, and the other end of which is detachably attached to the outer surface of the adjacent inner winding layer.

10. The winding packaging assembly according to claim 1, characterized in that, The restraint is a cable tie, which is tied to the outer periphery of the packaging sheet.