Coiled material placing rack

By installing anti-slip components and angle steel connectors on the support rods of the roll material placement rack, the problem of unstable roll material placement was solved, achieving both stability and convenient handling.

CN223736713UActive Publication Date: 2025-12-30JINGU LUOSI
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Patent Information

Application Number
CN202520346594.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2025-12-30
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing roll material placement racks are prone to slipping, falling, and rolling when placing heavy roll materials with smooth surfaces, which affects placement stability.

Method used

Anti-slip components, such as threaded rods or anti-slip plates, are installed on the support rods, and anti-slip rings are fixed with bolts to increase the friction between the roll material and the support rods. At the same time, angle steel connectors are used to restrict the movement of the support frame and the base.

Benefits of technology

It effectively prevents the roll material from slipping, falling or rolling during placement, improves placement stability, facilitates the handling of the roll material, and saves manpower.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fastener production and machining, in particular to a coiled material containing frame. Comprising a base and at least one supporting frame, the supporting frame is arranged on the base, the supporting frame comprises two supporting rods, the two supporting rods are arranged on the base in a spaced mode, and the supporting rods are provided with coiled material anti-skid pieces. According to the structural design, the phenomenon that the coiled materials slip or fall off or roll down in the placing process can be effectively prevented, and the placing stability of the coiled materials is improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of fastener production and processing, and in particular to a coiled material placing rack. BACKGROUND

[0002] Coiled materials are materials produced in the form of continuous strips and are widely used in industries such as construction, packaging and manufacturing. They can be made of various materials and have different properties and uses, such as metal coiled materials, plastic coiled materials and textile coiled materials. In order to improve storage efficiency and transportation safety, coiled materials usually need to be coiled into cylinders during the production process to facilitate management and use, avoiding bending or damage that may occur during coiled material handling. In particular, in the steel processing industry, steel coiled materials undergo a series of processes such as uncoiling and straightening, cold rolling, annealing, wire drawing and winding, and finally are transformed into steel wire coiled materials suitable for screw production.

[0003] In actual application, a large number of steel wire coiled materials need to be stored during the screw production process. In order to avoid placing coiled materials randomly, which leads to a messy workshop and affects the normal work of the workshop, the coiled materials need to be stored. During the storage process, a placing rack is usually used. The placing rack is usually assembled from multiple wooden strips or steel plates. When placing the coiled materials on the placing rack, the adjacent two wooden strips limit the coiled materials, allowing the coiled materials to be placed neatly.

[0004] However, although the above-mentioned placing rack can meet the storage needs of coiled materials to some extent, there are still obvious deficiencies in actual operation, especially for coiled materials that are heavy and have a smooth surface. During the placing process, the coiled materials are prone to slipping, falling and rolling, which affects the placing stability of the coiled materials. CONTENT OF THE INVENTION

[0005] In order to improve the placing stability of the coiled materials, the application provides a coiled material placing rack.

[0006] To achieve the above-mentioned purpose, the application provides a coiled material placing rack, which comprises a base and at least one support frame. The support frame is arranged on the base. The support frame comprises two support rods. The two support rods are arranged at intervals on the base. Each support rod is provided with a coiled material anti-slip member.

[0007] By adopting the above technical solution, the anti-slip member is arranged on the support rod supporting the coiled material, and the anti-slip member abuts against the coiled material. The anti-slip member can effectively prevent the coiled material from slipping, falling and rolling during the placing process, thereby improving the placing stability of the coiled material. At the same time, the structure is simple, easy to manufacture and maintain.

[0008] Preferably, the coiled material anti-slip member is a threaded rod arranged on the support rod in the direction of the support rod.

[0009] By adopting the technical scheme, the threaded rod surface is provided with threads, the threads can effectively increase the friction between the coiled material and the support rod, prevent the coiled material from slipping, falling, etc. during placement, and thus improve the placement stability of the coiled material.

[0010] Preferably, the coiled material anti-skid member is an anti-skid plate, which is arranged on the support rod in the direction of the support rod.

[0011] By adopting the technical scheme, the anti-skid plate is provided, which can effectively increase the contact area between the coiled material and the support rod and thus increase the friction, prevent the coiled material from slipping, falling, or rolling during placement, and thus improve the placement stability of the coiled material. Preferably, the surface of the anti-skid plate is provided with anti-skid lines. By adopting the technical scheme, the anti-skid lines provided on the surface of the anti-skid plate can significantly increase the friction between the coiled material and the anti-skid plate, effectively prevent the coiled material from slipping, falling, or rolling during placement, and improve the placement stability of the coiled material. At the same time, the design of the anti-skid lines can also adapt to coiled materials of different materials and surface states, and ensure that they can maintain good anti-skid performance under various working conditions. Preferably, the vertical central axis of the anti-skid plate and the vertical central axis of the support rod form an included angle towards the base. By adopting the technical scheme, the inclined design of the anti-skid plate can increase the contact area and friction between the coiled material and the anti-skid plate, effectively prevent the coiled material from slipping, falling, or rolling during placement, and thus improve the placement stability of the coiled material. Preferably, each anti-skid plate is provided with an anti-skid groove in abutment with the coiled material. By adopting the technical scheme, each anti-skid plate is provided with an anti-skid groove in abutment with the coiled material, which can increase the contact area and friction between the coiled material and the anti-skid plate, effectively prevent the coiled material from slipping, falling, or rolling during placement, and improve the placement stability of the coiled material. Preferably, each anti-skid unit includes an anti-skid ring and a bolt, the bolt being used to selectively fix the anti-skid ring to the support rod or make the anti-skid ring slide relative to the support rod. By adopting the technical scheme, the coiled material placing rack is provided with an anti-skid unit including an anti-skid ring and a bolt on the support rod. This design enables the anti-skid ring to adjust the fastening position of the anti-skid ring on the support rod by means of the bolt according to the placement position of the coiled material, so that the anti-skid ring can abut against the bottom of the coiled material, effectively prevent the coiled material from slipping, falling, or rolling on the support rod, and improve the placement stability of the coiled material. At the same time, the use of the bolt facilitates the installation and replacement of the anti-skid ring, and increases the flexibility and practicability of the device.

[0012] Preferably, the support frame further comprises at least one load-bearing member, both ends of the load-bearing member being fixed to the two support rods respectively. By adopting the above technical scheme, the setting of the load-bearing member can effectively enhance the overall structural strength of the support frame, ensuring that no deformation or fracture occurs when placing a relatively heavy roll, thereby improving the carrying capacity and stability of the roll placing frame. Preferably, the support frame further comprises two connecting members, both ends of the connecting member being fixed to the two support rods respectively, and the connecting member being mounted to the base.

[0013] By adopting the above technical scheme, the setting of the connecting member can effectively prevent the roll from moving in the width direction between the support frame and the base during placement, thereby improving the stability of the roll placement. Preferably, the connecting member is an angle steel, and the groove surface of the angle steel abuts against the base. By adopting the above technical scheme, the connecting member is an angle steel, and the groove surface of the angle steel abuts against the base, which can effectively improve the overall structural stability of the roll placing frame and prevent the support frame from moving in the width direction relative to the base. At the same time, the structural design of the angle steel can achieve complete separation of the support frame from the base, facilitating the carrying of the roll, saving manpower, and improving the carrying efficiency of the roll.

[0014] In summary, the present application has at least one of the following beneficial technical effects:

[0015] 1. The anti-skid member is arranged on the support rod of the placing frame to prevent the roll from slipping, effectively preventing the roll from slipping, falling or rolling during placement, and improving the stability of the roll placement;

[0016] 2. The connecting member not only limits the movement of the support frame in the width direction on the base, but also achieves the separation of the support frame from the base, thereby enhancing the stability of the support frame and facilitating the carrying of the roll, improving the carrying efficiency of the roll and saving manpower. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 is a structural schematic diagram of Example 1.

[0018] Figure 2 is another structural schematic diagram of Example 1.

[0019] Figure 3 is a structural schematic diagram of Example 2.

[0020] Figure 4 is a structural schematic diagram of Example 3.

[0021] BRIEF DESCRIPTION OF DRAWINGS DETAILED DESCRIPTION

[0022] The following is in conjunction with the appendix Figures 1-4 This application will be described in further detail.

[0023] Example 1

[0024] This application provides a roll material placement rack, referring to... Figure 1 The system includes a base 1 and at least one support frame 2, each support frame 2 mounted on the base 1. The number of support frames 2 can be one, two, three, five, etc., but one is preferred in this embodiment. Each support frame 2 includes two support rods 21, two roll anti-slip parts, and at least one load-bearing component 23. The two support rods 21 are spaced apart on the base 1, and each support rod 21 is equipped with a roll anti-slip part. The load-bearing component 23 is fixed at both ends to the two support rods 21, and is located between the two support rods 21. Specifically, the base 1 is a rectangular frame structure welded from four angle steels, providing high rigidity and stability. In this embodiment, a reinforcing rib is fixed in the middle of the rectangular base 1 to increase the load-bearing capacity. The load-bearing component 23 is fixed at both ends to the two support rods 21 with angle brackets, and the load-bearing component 23 abuts against the reinforcing rib. The load-bearing component 23 can be an I-beam or a channel steel, and its position can be adjusted as needed to increase the overall load-bearing capacity of the support frame 2. The support rod 21 can be made of steel or aluminum alloy, possessing good strength and corrosion resistance. The anti-slip component for the roll material can be designed as a threaded rod 221 or an anti-slip plate 222, both of which can be fixed to the support rod 21 by welding or nuts, helping to increase friction with the roll material and prevent slippage. In this embodiment, the threaded rod 221 is preferred, as its structure is simple and readily available, effectively reducing costs.

[0025] Furthermore, referring to Figure 2 The anti-slip plate 222 has anti-slip texture on the side away from the support rod 21. This anti-slip texture increases the roughness of the anti-slip plate 222. When the roll material is placed, the roll material comes into contact with the anti-slip texture, thereby increasing the friction between the roll material and the anti-slip plate 222, reducing the possibility of the roll material sliding, and improving the stability of the roll material placement.

[0026] Further, the vertical central axis of the anti-skid plate 222 and the vertical central axis of the support rod 21 form an included angle towards the base 1, the anti-skid plate 222 is inclinedly arranged on the support rod 21, the included angle can be 15°, 30°, 45°, etc., and the embodiment preferably is 30°, which increases the contact area of the coiled material with the plate surface of the anti-skid plate 222 and enhances the anti-skid effect. Further, each anti-skid plate 222 is provided with an anti-skid groove abutting against the coiled material, which can increase the contact area and friction force of the coiled material with the plate surface of the anti-skid plate 222 and prevent the coiled material from sliding off. The anti-skid groove is a concave arc-shaped anti-skid groove, which can be customized according to the diameter and shape of the coiled material, increases the contact area and friction force of the coiled material with the plate surface of the anti-skid plate 222, and prevents the coiled material from sliding. The implementation principle of the embodiment is that the rectangular base 1 is provided with a support frame 2 for placing the coiled material, two support rods 21 for supporting the coiled material are arranged at intervals on the support frame 2, a load-bearing member 23 for increasing the load-bearing force of the coiled material is fixed between the two support rods 21, and a connecting member is arranged on the base 1 and abuts against the load-bearing member 23, which can achieve the effect of increasing the double load-bearing, and a coiled material anti-skid member abutting against the bottom of the coiled material is arranged on each support rod 21. The coiled material anti-skid member of the embodiment is a threaded rod 221. When the coiled material is placed on the threaded rod 221, the friction force generated between the surface threads of the threaded rod 221 and the coiled material can effectively prevent the coiled material from slipping, sliding or rolling off during the placement process, and improve the placement stability of the coiled material.

[0027] The difference between the embodiment 2 and the above-mentioned embodiment 1 is that, referring to Figure 3 , the coiled material anti-skid member is at least one anti-skid unit, which includes an anti-skid ring 223 and a bolt 224. The anti-skid ring 223 is sleeved on the support rod 21, and the bolt 224 is used to selectively fix the anti-skid ring 223 on the support rod 21 or make the anti-skid ring 223 slide relative to the support rod 21. For example, in the embodiment, six anti-skid units are arranged on the support rod 21, which is conducive to placing a large number of coiled materials and avoiding the coiled materials from sliding off, but in other embodiments, three anti-skid units or ten anti-skid units can be arranged, and the number of anti-skid units can be customized according to the size of the placed coiled material (the rest is the same as that of the embodiment 1).

[0028] The implementation principle of the embodiment is that the coiled material is placed on the support rod 21, the bolt 224 is loosened to move the anti-skid ring 223 towards the coiled material, and when the anti-skid ring 223 abuts against the bottom of the coiled material, the bolt 224 is tightened to fix the anti-skid ring 223 on the support rod 21, which can prevent the coiled material from sliding off. This design of the anti-skid ring 223 and the bolt 224 is not only simple and easy to implement, but also low in cost and suitable for mass production (the rest is the same as that of the embodiment 1).

[0029] Embodiment 3

[0030] The embodiment 3 is different from the above embodiment 1 in that referring to Figure 4 The support frame 2 further comprises two connecting pieces 3, the connecting pieces 3 are installed on the base 1, two ends of one connecting piece 3 are respectively fixed with one end of the two support rods 21, two ends of the other connecting piece 3 are respectively fixed with the other end of the two support rods 21, and the two connecting pieces 3 and the two support rods 21 form a quadrilateral frame.

[0031] Further, the connecting pieces 3 are angle steels, the angle steels abut against the base 1, preventing the support frame 2 from shaking when under stress, and ensuring the stability of the overall structure. The angle steels of the embodiment are right angle steels, the groove surfaces of the two angle steels are right angles, and the angle steels are completely sleeved on the outer side edges of the base 1, so that the movement of the support frame 2 along the width direction of the base 1 can be limited, and the design of the right angle steels enables the support frame 2 to move upward along the vertical direction, facilitating the carrying of the coiled material (the rest is the same as embodiment 1).

[0032] The implementation principle of the embodiment is that when the coiled material is placed on the support frame 2, under the influence of the weight of the coiled material and external pressure, the support frame 2 is prone to move, thereby causing the coiled material to easily slide off, and the connecting pieces 3 arranged between the support rods 21 and the base 1 can limit the movement of the support frame 2 along the width direction of the base 1, avoiding the coiled material from sliding off due to the loosening of the support frame 2 and the base 1, and the connecting pieces 3 designed in the angle steel structure abut against the base 1, which also enables the support frame 2 to be easily taken out of the base 1, facilitating the carrying of the coiled material, saving manpower and saving cost (the rest is the same as embodiment 1).

[0033] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape, principle of the present application shall be covered within the protection scope of the present application.

Claims

1. A roll placement stand comprising a base and at least one support stand, said support stand being provided to said base, characterized in that, The support frame comprises two support rods, which are arranged on the base in a spaced manner, and each of the support rods is provided with a roll anti-skid member.

2. A roll holder according to claim 1, characterized in that The roll anti-skid member is a threaded rod, which is arranged on the support rod in the direction of the support rod.

3. A roll holder according to claim 1, wherein The roll anti-skid member is an anti-skid plate, which is arranged on the support rod in the direction of the support rod.

4. A roll holder according to claim 3, wherein The surface of the anti-skid plate is provided with anti-skid lines.

5. A roll holder according to claim 3, wherein The central axis of the anti-skid plate in the vertical direction and the central axis of the support rod in the vertical direction form an included angle towards the base.

6. A roll holder according to claim 3, wherein Each of the anti-skid plates is provided with an anti-skid groove, which abuts against the roll.

7. A roll holder according to claim 1, wherein The roll anti-skid member comprises at least one anti-skid unit, each of which comprises an anti-skid ring and a bolt, which is used to selectively fix the anti-skid ring to the support rod or make the anti-skid ring slide relative to the support rod.

8. A roll holder according to claim 1, wherein The support frame further comprises at least one load-bearing member, both ends of which are fixed to the two support rods.

9. A roll holder according to claim 1, wherein The support frame further comprises two connecting members, both ends of which are fixed to the two support rods, and the connecting members are installed on the base.

10. A roll holder according to claim 9, wherein The connecting member is an angle steel, and the groove surface of the angle steel abuts against the base.