Anti-deformation stainless steel coil

By designing an anti-deformed stainless steel coil structure, using components such as fixed base, support frame and anti-slip pads, the problem of stainless steel coils being easily worn and deformed during transportation is solved, and the stability and protection effect during transportation is achieved.

CN223174746UActive Publication Date: 2025-08-01JIANGSU MINGPU NEW MATERIAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422452502.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-10
Publication Date
2025-08-01
Estimated Expiration
2034-10-10

AI Technical Summary

Technical Problem

Stainless steel coils are prone to surface wear and deformation due to vibration and collision during transportation.

Method used

An anti-deformed stainless steel coil structure is designed, including a fixed base, support frame, semi-ring, slot, coiling tube, insert ring, auxiliary support plate and anti-slip pad. Through the combination of these components, the stainless steel coil remains stable during transportation, avoid direct contact with the transportation device, and reduce wear and deformation.

Benefits of technology

It improves the transportation stability of stainless steel coils, avoids surface wear and deformation, and enhances the protection effect during transportation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223174746U_ABST
    Figure CN223174746U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of stainless steel coils, in particular to an anti-deformation stainless steel coil. According to the technical scheme, the stainless steel coil comprises a fixed base, a stainless steel coil body and a winding pipe, supporting frames are symmetrically welded to the two sides of the upper surface of the fixed base, semicircular rings are welded to the upper surfaces of the two supporting frames, inserting grooves are formed in the upper surfaces of the two semicircular rings, and the stainless steel coil body is wound on the outer surface of the winding pipe. Inserting rings are welded to the two ends of the winding pipe correspondingly, the two inserting rings are located in the two inserting grooves correspondingly, an auxiliary supporting plate is fixedly installed at the position, located below the stainless steel coil body, of the upper surface of the fixing base, and installing grooves are formed in the positions, close to the four corners, of the lower surface of the fixing base correspondingly; and anti-skid cushion blocks are fixedly mounted in the four mounting grooves. The stability of the stainless steel coil in the transportation process can be improved, the stainless steel coil does not make direct contact with a transportation device, and surface abrasion or deformation is avoided.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of stainless steel coils, in particular to an anti-deformation stainless steel coil. Background Art

[0002] Stainless steel coil refers to a finished product made by rolling stainless steel sheets. Stainless steel sheets are steel made of iron and its alloys as the main raw materials, and elements such as chromium, nickel, molybdenum, as well as appropriate amounts of rare earth elements and zirconium are added to them. Because stainless steel coils are not easy to oxidize and are corrosion-resistant, they are widely used in construction, manufacturing and other fields.

[0003] Currently, stainless steel coils are usually placed directly on transport devices during transportation, so they are prone to surface wear and deformation due to vibration and collision during transportation. Therefore, we propose an anti-deformation stainless steel coil. Utility Model Content

[0004] The purpose of the utility model is to provide a deformation-resistant stainless steel coil, which has the advantages of improving the stability of the stainless steel coil during transportation and not being in direct contact with the transportation device, thereby avoiding surface wear or deformation. It solves the problem that the current stainless steel coil is usually placed directly on the transportation device during transportation, and is prone to surface wear and deformation due to vibration and collision during transportation.

[0005] To achieve the above-mentioned objectives, the present invention provides the following technical solutions: an anti-deformation stainless steel coil, comprising a fixed base, a stainless steel coil body and a winding tube, support frames are symmetrically welded at both sides of the upper surface of the fixed base, and two semicircular rings are welded on the upper surfaces of the support frames, and slots are provided on the upper surfaces of the two semicircular rings, the stainless steel coil body is wound on the outer surface of the winding tube, and plug rings are welded at both ends of the winding tube, and the two plug rings are respectively located inside the two slots, an auxiliary support plate is fixedly installed on the upper surface of the fixed base below the stainless steel coil body, and installation grooves are provided on the lower surface of the fixed base near the four corners, and anti-slip pads are fixedly installed inside the four installation grooves.

[0006] Preferably, a separation ring is welded on the outer surface of the winding tube near the inner sides of the two inserting rings.

[0007] Preferably, an arc-shaped groove is provided on the upper surface of the auxiliary support plate.

[0008] Preferably, a fixing ring is welded to the outer side of the two support frames.

[0009] Preferably, through sockets are provided on the outer sides of both of the semi-circular rings, and a plurality of locking threaded holes are equidistantly arranged in an annular array on the outer sides of both of the insertion rings. A locking screw rod is movably inserted into the locking threaded hole, and the locking screw rod passes through the through socket.

[0010] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0011] 1. By providing a fixed base, an anti-slip cushion block, a support frame, a semi-circular ring, a slot, a winding tube, an insertion ring, an auxiliary support plate and a stainless steel coil body, the present utility model achieves the effect of improving the stability of the stainless steel coil during transportation, and it does not directly contact the transportation device, avoiding surface wear or deformation. Before transporting the stainless steel coil body, the fixed base is placed on the transportation device, and the anti-slip cushion block plays an anti-slip role for the fixed base. Then, the insertion rings at both ends of the winding tube are respectively inserted into the two slots, and the winding tube plays a main supporting role for the stainless steel coil body, while the auxiliary support plate plays an auxiliary supporting role for the stainless steel coil body, improving the stability of the stainless steel coil body during transportation, and it does not directly contact the transportation device, avoiding surface wear or deformation.

[0012] 2. By providing an arc-shaped groove, the present utility model can increase the contact area between the auxiliary support plate and the stainless steel coil body, improving the auxiliary support effect on the stainless steel coil body.

[0013] 3. By providing a locking threaded hole, a through socket and a locking screw rod, the present utility model further achieves the effect of improving the stability of the stainless steel coil body. After the locking screw rod passes through the through socket, its end is screwed into the locking threaded hole, restricting the rotation of the stainless steel coil body and preventing the insertion ring from slipping out of the slot. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a three-dimensional schematic diagram of the present utility model;

[0015] Figure 2 is a partial three-dimensional schematic diagram of the auxiliary support plate of the present utility model;

[0016] Figure 3 is a partial three-dimensional schematic diagram of the winding tube of the present utility model;

[0017] Figure 4 is a schematic diagram of the main cross-sectional structure of the present utility model.

[0018] Reference numerals: 1, fixed base; 2, mounting groove; 3, anti-slip cushion block; 4, auxiliary support plate; 5, stainless steel coil body; 6, winding tube; 7, slot; 8, semi-circular ring; 9, through socket; 10, locking screw; 11, fixing ring; 12, support frame; 13, arc groove; 14, inserting ring; 15, separating ring; 16, locking threaded hole. Detailed implementation mode

[0019] The technical solution of the present utility model will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0020] Embodiment 1

[0021] As Figures 1 - 4 shown, a deformation-proof stainless steel coil proposed by the present utility model includes a fixed base 1, a stainless steel coil body 5 and a winding tube 6. Support frames 12 are symmetrically welded at both sides of the upper surface of the fixed base 1, and semi-circular rings 8 are welded on the upper surfaces of the two support frames 12. Slots 7 are arranged on the upper surfaces of the two semi-circular rings 8. The stainless steel coil body 5 is wound on the outer surface of the winding tube 6. Inserting rings 14 are welded at both ends of the winding tube 6, and the two inserting rings 14 are respectively located inside the two slots 7. Separating rings 15 are welded at positions close to the inner sides of the two inserting rings 14 on the outer surface of the winding tube 6. The separating rings 15 make the distance between the two support frames 12 and the two semi-circular rings 8 greater than the width of the stainless steel coil body 5, which is convenient for the stainless steel coil body 5 to be inserted between the two semi-circular rings 8 and the two support frames 12, and at the same time, it also avoids abrasion on both sides of the stainless steel coil body 5. An auxiliary support plate 4 is fixedly installed at the position below the stainless steel coil body 5 on the upper surface of the fixed base 1. An arc groove 13 is arranged on the upper surface of the auxiliary support plate 4. The arc groove 13 can increase the contact area between the auxiliary support plate 4 and the stainless steel coil body 5, and improve the auxiliary support effect on the stainless steel coil body 5. Mounting grooves 2 are arranged at positions close to the four corners of the lower surface of the fixed base 1, and anti-slip cushion blocks 3 are fixedly installed inside the four mounting grooves 2.

[0022] Before the transportation of the stainless steel coil body 5 of the present utility model, the fixed base 1 is placed on the transportation device, and the anti-slip cushion blocks 3 play an anti-slip role for the fixed base 1. Then, the inserting rings 14 at both ends of the winding tube 6 are respectively inserted into the two slots 7. The winding tube 6 plays a main supporting role for the stainless steel coil body 5, and the auxiliary support plate 4 plays an auxiliary supporting role for the stainless steel coil body 5, improving the stability of the stainless steel coil body 5 during transportation, and it does not directly contact the transportation device, avoiding surface abrasion or deformation.

[0023] Embodiment 2

[0024] As Figures 1 - 3As shown in the figure, a deformation-proof stainless steel coil proposed by the present utility model, compared with the first embodiment, this embodiment further includes fixing rings 11 welded to the outer sides of two support frames 12. After the ropes pass through the fixing rings 11, the fixing base 1 can be fixed on the transportation device, further improving the stability of the fixing base 1 and preventing it from sliding. Through sockets 9 are provided on the outer sides of two semi-circular rings 8. A number of locking threaded holes 16 are equidistantly arranged in a circular array on the outer sides of two inserting rings 14. Locking screws 10 are movably inserted into the locking threaded holes 16, and the locking screws 10 pass through the through sockets 9.

[0025] In this embodiment, after the locking screw 10 passes through the through socket 9, its end is screwed into the locking threaded hole 16, which restricts the rotation of the stainless steel coil body 5 and prevents the inserting ring 14 from slipping out of the slot 7, further improving the stability of the stainless steel coil body 5.

[0026] The above specific embodiments are only several preferred embodiments of the present utility model. Based on the technical solution of the present utility model and the relevant inspirations of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.

Claims

1. A deformation-proof stainless steel coil, comprising a fixed base (1), a stainless steel coil main body (5) and a winding tube (6), characterized in that: On both sides of the upper surface of the fixed base (1), support frames (12) are symmetrically welded, and on the upper surfaces of the two support frames (12), semi-circular rings (8) are welded. Slots (7) are provided on the upper surfaces of the two semi-circular rings (8). The stainless steel coil body (5) is wound around the outer surface of the winding tube (6). Insert rings (14) are welded to both ends of the winding tube (6), and the two insert rings (14) are respectively located inside the two slots (7). An auxiliary support plate (4) is fixedly installed on the upper surface of the fixed base (1) at a position below the stainless steel coil body (5). Installation grooves (2) are provided at positions close to the four corners on the lower surface of the fixed base (1), and anti-slip pads (3) are fixedly installed inside the four installation grooves (2).

2. The anti-deformation stainless steel coil according to claim 1, characterized in that: Partition rings (15) are welded to the outer surface of the winding tube (6) at positions close to the inner sides of the two insert rings (14).

3. A stainless steel coil resistant to deformation according to claim 1, characterized in that: An arc-shaped groove (13) is provided on the upper surface of the auxiliary support plate (4).

4. The anti-deformation stainless steel coil according to claim 1, characterized in that: Fixed rings (11) are welded to the outer sides of the two support frames (12).

5. A stainless steel coil resistant to deformation according to claim 1, characterized in that: Through sockets (9) are provided on the outer sides of the two semi-circular rings (8). A number of locking threaded holes (16) are equidistantly arranged in an annular array on the outer sides of the two insert rings (14). Locking screws (10) are movably inserted into the locking threaded holes (16), and the locking screws (10) pass through the through sockets (9).