A plug-in type steel coil saddle

By designing a plate-type steel coil saddle, and utilizing the combined structure of the main channel steel and the saddle, the problems of low warehouse space utilization and inconvenient steel coil replacement were solved, achieving efficient space utilization and convenient steel coil replacement.

CN224492144UActive Publication Date: 2026-07-14SICHUAN GUOXIN MACHINERY MFG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SICHUAN GUOXIN MACHINERY MFG CO LTD
Filing Date
2025-07-30
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

Existing technologies are difficult to effectively improve warehouse space utilization, and the operation is cumbersome and maintenance costs are high when changing steel coils of different diameters.

Method used

Design a plate-type steel coil saddle, which uses two parallel main channel steels and several saddles that are limited on the main channel steels. The saddle is composed of an inclined surface and a vertical plate, equipped with a baffle and a slot structure. The saddle spacing is adjusted by the cooperation of the baffle and the slot, and the steel coil is stabilized by a detachable pad and a limiting structure.

Benefits of technology

It enables stable placement of steel coils of different sizes, improves space utilization, simplifies the replacement process, and reduces production costs and maintenance difficulty.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model discloses a plate-type steel coil saddle, which includes two parallel main channel steels and several saddles positioned on the main channel steels. Several baffles are arranged at intervals in the grooves of the main channel steels. The bottom of the saddle is provided with a slot that engages with the baffles. The top surface of the saddle is an inclined surface at a certain angle to the extension direction of the main channel steel. A pad for supporting the steel coil is detachably provided on the inclined surface. The several saddles on the two main channel steels are symmetrically arranged, and any two adjacent saddles on any one main channel steel are arranged opposite or back to back. This solution, through the cooperation of the baffles and the slots, can realize the equal-interval adjustment of the saddle positions in the extension direction of the main channel steel, thereby adjusting the spacing between two adjacent saddles to facilitate the stable placement of steel coils of different sizes, while improving the spatial flexibility and space utilization of steel coil placement. In addition, the pads on the two opposite saddles are in an inverted V-shape, which can effectively prevent the steel coils placed on them from rolling.
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Description

Technical Field

[0001] This utility model relates to the field of steel coil storage technology, specifically to a plate-type steel coil saddle. Background Technology

[0002] There are various ways to store steel coils, but frequent replacement of coils with different diameters often makes it difficult to improve warehouse space utilization. For warehouses with large steel coil transport volumes, there are also disadvantages such as difficulty in maintenance, troublesome replacement, and high costs. Therefore, researching a saddle that can improve warehouse space utilization while also facilitating maintenance and replacement has high practicality and economic value. Utility Model Content

[0003] To address the aforementioned shortcomings of existing technologies, this utility model provides a plate-type steel coil saddle that makes more rational use of storage space to store steel coils of various sizes.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0005] A plate-type steel coil saddle is provided, comprising two parallel main channel steels and a plurality of saddles limited on the main channel steels. A plurality of baffles are arranged at intervals in the grooves of the main channel steels. The bottom of the saddle is provided with a slot that engages with the baffles. The top surface of the saddle is an inclined surface that forms a certain angle with the extension direction of the main channel steels. A pad for supporting the steel coil is detachably provided on the inclined surface. The plurality of saddles on the two main channel steels are arranged symmetrically. Two adjacent saddles on any one main channel steel are arranged opposite or back to back.

[0006] Furthermore, the saddle includes two vertical plates and an inclined plate set on top of the two vertical plates. The slot is set at the bottom of the two vertical plates. Side rails and bottom rails for limiting the pad are respectively set on both sides and the lower end of the inclined plate.

[0007] Furthermore, each of the two side bars has an inwardly extending baffle at one end near the bottom bar, and the bottom of both sides of the pad has a protruding ridge, the side and top of which are respectively fitted with the side bars and the baffle.

[0008] Furthermore, the two main channel steels are connected by several supporting channel steels perpendicular to the main channel steels, and reinforcing ribs are provided at the connection between the main channel steels and the supporting channel steels. The supporting channel steels are fixedly connected to the ground by expansion bolts.

[0009] Furthermore, several lifting lugs are provided on the outer side wall of the main channel steel.

[0010] Furthermore, the pad is made of polyurethane material.

[0011] The beneficial effects of this utility model are as follows:

[0012] 1. This solution, through the cooperation of baffles and slots, enables the saddles to be adjusted at equal intervals along the extension direction of the main channel steel, thereby adjusting the distance between two adjacent saddles to facilitate the stable placement of steel coils of different sizes, while improving the spatial flexibility and space utilization of steel coil placement; in addition, the pads on the two oppositely set saddles are in an inverted V-shape, which can effectively prevent the steel coils placed on them from rolling.

[0013] 2. The saddle of this design is integrally formed from an inclined plate and two vertical plates, which has strong support, saves materials, and reduces production costs. Through the coordinated cooperation of the side baffles, bottom baffles, and baffle plates, the pad plate can be limited and fixed. At the same time, the pad plate can be disassembled and installed by a pull-out method, which is conducive to the convenient replacement of the pad plate. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of a plate-type steel coil saddle.

[0015] Figure 2 This is a schematic diagram of the saddle.

[0016] Figure 3 This is a side view of the saddle.

[0017] Figure 4 This is a schematic diagram of the pad's structure.

[0018] Among them, 1. Main channel steel, 2. Support channel steel, 3. Reinforcing rib plate, 4. Lifting lug, 5. Saddle, 6. Vertical plate, 7. Inclined plate, 8. Baffle, 9. Slot, 10. Pad plate, 11. Side baffle, 12. Bottom baffle, 13. Baffle plate, 14. Protruding ridge. Detailed Implementation

[0019] The specific embodiments of this utility model are described below to enable those skilled in the art to understand this utility model. However, it should be understood that this utility model is not limited to the scope of the specific embodiments. For those skilled in the art, as long as various changes are within the spirit and scope of this utility model as defined and determined by the appended claims, these changes are obvious. All utility model creations utilizing the concept of this utility model are within the scope of protection.

[0020] like Figures 1 to 4As shown, the insert-plate type steel coil saddle of this scheme includes two parallel main channel steels 1, which are connected by three support channel steels 2 perpendicular to the main channel steels 1. The three support channel steels 2 are located in the middle and at both ends of the main channel steels 1, respectively. Reinforcing ribs 3 are provided at the connection between the main channel steels 1 and the support channel steels 2. The three support channel steels 2 are provided with mounting holes and are fixed to the ground by expansion bolts, so that the two main channel steels 1 and the three support channel steels 2 form an integral frame and are stable on the ground. Several lifting lugs 4 are provided on the outer wall of the main channel steels 1 to facilitate the lifting of the integral frame.

[0021] The main channel steel 1 is provided with several saddles 5 at its upper limit. Each saddle 5 includes two vertical plates 6 and an inclined plate 7 on top of the two vertical plates 6. Several baffles 8 are arranged at intervals in the groove of the main channel steel 1, and the baffles 8 are arranged at equal intervals. The bottom of each of the two vertical plates 6 is provided with a slot 9 that engages with the baffle 8. The inclined plate 7 forms a certain angle with the extension direction of the main channel steel 1. A pad 10 for supporting the steel coil is detachably provided on the inclined plate 7. The several saddles 5 on the two main channel steels 1 are arranged symmetrically. Two adjacent saddles 5 on any one main channel steel 1 are arranged opposite or back to back, so that the pads 10 on the two opposite saddles 5 are in an inverted V-shape, which can effectively prevent the steel coil placed on them from rolling.

[0022] This solution, through the cooperation of baffle 8 and slot 9, enables the saddle 5 to be adjusted at equal intervals in the extension direction of the main channel steel 1, thereby adjusting the distance between two adjacent saddles 5 to facilitate the stable placement of steel coils of different sizes, while improving the spatial flexibility and space utilization of steel coil placement; the saddle 5 is integrally formed by inclined plate 7 and two vertical plates 6, which has strong support, saves materials, and reduces production costs.

[0023] As an optional implementation, the inclined plate 7 is provided with side bars 11 and bottom bars 12 for limiting the pad 10 on both sides and the lower inclined end, respectively. Each of the two side bars 11 is provided with a baffle 13 extending inward at the end near the bottom bar 12. The bottom of both sides of the pad 10 is provided with a protruding rib 14. The side and top surfaces of the protruding rib 14 are respectively fitted with the side bars 11 and the baffle 13 with a clearance, preferably with a clearance of not less than 3mm. This solution can limit and fix the pad 10 through the coordinated cooperation of the side bars 11, bottom bars 12 and baffle 13. At the same time, the pad 10 can be disassembled and installed by a pull-in method, which is conducive to the convenient replacement of the pad 10.

[0024] As an optional implementation, the pad 10 is made of polyurethane material, which gives the pad 10 high strength, high toughness, high wear resistance and tear resistance; at the same time, it has low thermal conductivity and good thermal performance.

Claims

1. A type insert-plate steel coil saddle, characterized in that, It includes two parallel main channel steels and several saddles that are limited on the main channel steels. Several baffles are arranged at intervals in the grooves of the main channel steels. The bottom of the saddles is provided with a slot that engages with the baffles. The top surface of the saddles is an inclined surface that forms a certain angle with the extension direction of the main channel steels. A pad for supporting the steel coil is detachably provided on the inclined surface. The several saddles on the two main channel steels are arranged symmetrically. Two adjacent saddles on any one main channel steel are arranged opposite or back to back.

2. The insert-plate type steel coil saddle according to claim 1, characterized in that, The saddle includes two vertical plates and an inclined plate set on top of the two vertical plates. The slot is set at the bottom of the two vertical plates. Side rails and bottom rails for limiting the pad are respectively provided on both sides and the lower inclined end of the inclined plate.

3. A plate-type steel coil saddle according to claim 2, characterized in that, Both side bars have inwardly extending baffles at one end near the bottom bar. The bottom of both sides of the pad has protruding ridges, and the sides and top surfaces of the protruding ridges are respectively fitted with the side bars and baffles.

4. The insert-plate type steel coil saddle according to claim 1, characterized in that, The two main channel steels are connected by several supporting channel steels perpendicular to the main channel steels, and a reinforcing rib is provided at the connection between the main channel steels and the supporting channel steels. The several supporting channel steels are fixedly connected to the ground by expansion bolts.

5. A plate-type steel coil saddle according to claim 1, characterized in that, Several lifting lugs are provided on the outer side wall of the main channel steel.

6. A plate-type steel coil saddle according to claim 1, characterized in that, The pad is made of polyurethane material.