Coiled material rack capable of preventing coiled material from overturning

By designing a roll frame that prevents roll overturning, the coil tilt is restricted by using limit rods and ground beam structures, the problem of steel coil shaking and impacting adjacent coils during lifting is solved, and safe production and cost-effectiveness are achieved.

CN223073080UActive Publication Date: 2025-07-08ZHEJIANG HUIWENMEI STOVE CO LTD
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Patent Information

Application Number
CN202422496725.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-07-08
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

When lifting the steel coil, the steel coil off the ground is prone to shake and impact the adjacent steel coil, resulting in an increase in the risk of safety production accidents.

Method used

A roll frame with anti-roll material overturning is designed, including a fixedly connected left wall panel, right wall panel, front roof panel and rear roof panel, equipped with a limiting rod and ground beam structure. The limiting rod is located between adjacent rolls to limit the inclination of the roll and prevent the entire row of rolls from pouring.

Benefits of technology

Effectively prevent the rolls from overturning due to accidental impact, ensure safe production, avoid the dumping accident of the entire row of rolls, ensure personnel safety, and reduce production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a coiled material frame for preventing coiled materials from overturning, which is used for placing coiled materials side by side at intervals and comprises a left wall plate, a right wall plate, a front top plate, a rear top plate and a plurality of limiting rods which are fixedly connected together, front limiting grooves are formed in the top edge of the front top plate at intervals, and rear limiting grooves are formed in the top edge of the rear top plate at intervals. Each limiting rod falls into the corresponding front limiting groove and the corresponding rear limiting groove and is located between the adjacent coiled materials, and a gap is reserved between each limiting rod and the coiled materials. After the technical scheme is adopted, the coiled materials are stored durably and reliably, adjacent coiled materials cannot be interfered when the coiled materials are hoisted, any coiled material in the coiled material rack cannot overturn due to accidental collision, and safety production is ensured.
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Description

Technical Field

[0001] The utility model relates to a coil rack for preventing coil overturning, belonging to the technical field of coil racks for storing, extracting and using metal coils in a processing workshop. Background Art

[0002] Steel coils are essential raw materials for manufacturing open-hearth furnaces. For local material supply, multiple steel coils with different widths are usually placed side by side and at intervals against the wall in the manufacturing workshop. When a certain specification of steel coil is needed during the production process, the steel coil of this specification is lifted from the storage position and transported to the corresponding work station.

[0003] Carefully analyzing the operation process, it is not difficult to find the following technical deficiencies:

[0004] During the lifting operation before the coil is lifted off the ground, the lifted steel coil will swing, and there is a chance that the steel coil will laterally impact the adjacent steel coil. Once the impact occurs, the impacted steel coil will successively impact the adjacent steel coils, resulting in accidents. In severe cases, it will lead to production safety accidents. Content of the Utility Model

[0005] The purpose of the utility model is to provide a coil rack for preventing coil overturning, which is durable and reliable during coil storage and does not interfere with adjacent coils during lifting and fetching. Any coil in the coil rack will not overturn due to accidental impact.

[0006] For this purpose, the utility model provides the following technical solutions:

[0007] A coil rack for preventing coil overturning, which is used for placing coils side by side and at intervals, includes a left wall panel, a right wall panel, a front top panel and a rear top panel fixedly connected together. The improvement lies in: it further includes a plurality of limiting rods. The top edge of the front top panel is provided with front limiting grooves at intervals, and the top edge of the rear top panel is provided with rear limiting grooves at intervals. Each limiting rod falls into the corresponding front limiting groove and rear limiting groove, and each limiting rod is located between adjacent coils and has a gap from the coils.

[0008] Preferably, the utility model further includes a front ground beam and a rear ground beam. The left end of the front ground beam is fixedly connected to the left wall panel, and its right end is fixedly connected to the right wall panel. The left end of the rear ground beam is fixedly connected to the left wall panel, and its right end is fixedly connected to the right wall panel; the coils are placed on the front ground beam and the rear ground beam.

[0009] Preferably, the above-mentioned front ground beam is further fixedly connected to the front top panel through a front support bracket, and the rear ground beam is fixedly connected to the rear top panel through a rear support bracket.

[0010] Preferably, the above-mentioned front top panel and the rear top panel can be interchangeable, the left wall panel and the right wall panel are respectively hollowed out and can be interchangeable, and the front ground beam and the rear ground beam can be interchangeable.

[0011] Preferably, the height of the above-mentioned limiting rod is greater than 1 / 2 of the placing height of the coil material and less than 4 / 5 of the placing height of the coil material.

[0012] The utility model has the following advantages and positive effects:

[0013] After adopting this technical solution, when any one of the first and last coils is accidentally subjected to a lateral impact force and tilts, it will quickly lean against the nearest limiting rod. Since the further tilting of the coil is restricted, the accident of the entire row of coils toppling over like "all being wiped out" can be avoided. If any one of the coils between the first and last coils is accidentally subjected to a lateral impact, the rest of the coils will not topple over along the impact direction, ultimately ensuring the purpose of safe production, preventing injury accidents to workshop personnel, and ensuring the long-term reliability of the coils placed side by side at intervals; there is a gap between the limiting rod and the coil, which is convenient for lifting the coil without being interfered by the limiting rod. Description of the Drawings

[0014] Figure 1 is the front view of the coil rack for preventing the coil from toppling over according to the utility model;

[0015] Figure 2 is the right view of the utility model;

[0016] Figure 3 is the three-dimensional view of the utility model. Detailed Implementation Manner

[0017] Please refer to Figure 1 、 2 As shown in FIGS. 2 and 3, a coil rack for preventing the coil from toppling over is provided for placing the coils 1 in a vertical state side by side at intervals, and includes a left wall panel 2L, a right wall panel 2R, a front top panel 2F, and a rear top panel 2P. The left wall panel 2L, the right wall panel 2R, the front top panel 2F, and the rear top panel 2P are fixedly connected and surrounded together. The improvement lies in that: it further includes a plurality of limiting rods 3. A plurality of front limiting grooves 20F are spacedly opened at the top edge of the front top panel 2F, and a plurality of rear limiting grooves 20P are spacedly opened at the top edge of the rear top panel 2P. The front end of each limiting rod 3 falls into the front limiting groove 20F, and the rear end of each limiting rod 3 falls into the rear limiting groove 20P. Each limiting rod 3 is located between adjacent coils 1, and there is a gap between each limiting rod 3 and the coil 1.

[0018] Refer to Figure 1 , the front limiting groove 20F and the rear limiting groove 20P have the same groove shape. The groove openings for the limiting rod to enter are both in an inverted V shape, and the groove bodies for accommodating the limiting rod are both in a truncated circular shape. The width at the connection between the groove opening and the groove body is adapted to the diameter of the limiting rod. When the limiting rod 3 is subjected to an impact, this groove shape design can prevent the limiting rod 3 from disengaging from the limiting groove.

[0019] To improve the stability of the coil rack and facilitate the overhead placement of coils, the utility model further includes a front ground beam 4F and a rear ground beam 4P. The left end of the front ground beam 4F is fixedly connected to the left wall panel 2L, and the right end of the front ground beam 4F is fixedly connected to the right wall panel 2R. The left end of the rear ground beam 4P is fixedly connected to the left wall panel 2L, and the right end of the rear ground beam 4P is fixedly connected to the right wall panel 2R. The coil 1 is placed on the front ground beam 4F and the rear ground beam 4P.

[0020] To enhance the strength of the relatively long front and rear top plates and avoid deformation, the front ground beam 4F is further fixedly connected to the front top plate 2F through a front brace 5F, and the rear ground beam 4P is further fixedly connected to the rear top plate 2P through a rear brace 5P.

[0021] To reduce the manufacturing cost of the coil rack and improve work efficiency, the front top plate 2F and the rear top plate 2P have the same specifications, the left wall panel 2L and the right wall panel 2R are respectively hollowed out and have the same specifications, and the front ground beam 4F and the rear ground beam 4P have the same specifications. After the left wall panel 2L and the right wall panel 2R are hollowed out, the self-weight of the coil rack can be reduced and costs can be saved.

[0022] Based on safety design considerations and taking into account the processing material cost of the coil rack, the height of the limit rod 3 from the ground is greater than 1 / 2 of the height of the top edge of the coil 1 from the ground and less than 4 / 5 of the height of the coil from the ground.

[0023] The coil 1 is a steel coil tape used for the manufacture of open-hearth furnaces.

Claims

1. A coil rack for preventing coil overturning, which is used for placing coils side by side at intervals, includes a left wall panel, a right wall panel, a front top panel and a rear top panel fixedly connected together, and is characterized in that: It further includes a plurality of limiting rods. The top edge of the front top plate is provided with front limiting grooves at intervals, and the top edge of the rear top plate is provided with rear limiting grooves at intervals. Each limiting rod falls into the corresponding front limiting groove and rear limiting groove, and each limiting rod is located between adjacent coils and has a gap from the coils.

2. The coiled material rack for preventing coiled material overturning according to claim 1, characterized in that: It further includes a front ground beam and a rear ground beam. The left end of the front ground beam is fixedly connected to the left wall panel, and its right end is fixedly connected to the right wall panel. The left end of the rear ground beam is fixedly connected to the left wall panel, and its right end is fixedly connected to the right wall panel; the coils are placed on the front ground beam and the rear ground beam.

3. The coil rack for preventing coil overturning according to claim 2, characterized in that: The front ground beam is further fixedly connected to the front top plate through a front support, and the rear ground beam is fixedly connected to the rear top plate through a rear support.

4. The coil rack for preventing the coil from toppling over according to claim 2, wherein: The front top plate and the rear top plate are interchangeable, the left wall panel and the right wall panel are respectively hollowed out and interchangeable, and the front ground beam and the rear ground beam are interchangeable.

5. The coil rack for preventing the coil from tipping over according to claim 1 or 2 or 3 or 4, characterized in that: The height of the limiting rod is greater than 1 / 2 of the placing height of the coil and less than 4 / 5 of the placing height of the coil.