Double-channel steel feeding system applied to input end of cooling bed

By designing a dual-channel steel feeding system, and utilizing the alternating operation of motor-driven support blocks and the adjustable spacing of sliders, the low efficiency of traditional steel feeding systems at the input end of cooling beds is solved. This enables continuous feeding and adaptive conveying of steel bars, improving the working efficiency and practicality of the cooling bed.

CN223591807UActive Publication Date: 2025-11-25GUANGDONG TAIDU STEEL CO LTD
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Patent Information

Application Number
CN202423043574.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-10
Publication Date
2025-11-25
Estimated Expiration
2034-12-10

AI Technical Summary

Technical Problem

Traditional steel loading systems at the input end of cooling beds use a single-channel feeding method, resulting in a large time interval between two adjacent steel bars entering the cooling bed, leading to low efficiency.

Method used

The system employs a dual-channel steel feeding system. The first motor on each side of the support alternately drives the support blocks to achieve continuous feeding of steel bars. The second motor adjusts the slider spacing to accommodate steel bars of different diameters. The semi-circular arc-shaped liner made of cast iron reduces wear, while rollers and telescopic rods improve the flexibility and stability of the device.

Benefits of technology

It shortens the steel bar feeding interval, improves work efficiency, and can adapt to steel bars of different diameters, enhancing the practicality and stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of steel production, and discloses a double-channel steel feeding system applied to an input end of a cooling bed, which comprises a support, and feeding components are arranged on two sides of the middle of the support; the feeding assembly comprises supporting blocks, front supporting plates, rear supporting plates, first motors and a speed reducer, the number of the supporting blocks is two, the front supporting plates are rotationally connected to the front sides of the two supporting blocks, the rear supporting plates are rotationally connected to the rear sides of the two supporting blocks, the first motors are fixedly connected to the bottoms of one sides of the two front supporting plates, and the first motors are fixedly connected to the bottoms of the other sides of the two front supporting plates. The output ends of the two first motors are fixedly connected with speed reducers, the speed reducers are fixedly connected with front supporting plates, and the top faces of the two front supporting plates and the top faces of the two rear supporting plates are fixedly connected with sliding blocks. According to the steel bar feeding device, the first motors on the two sides are alternately driven to respectively drive the supporting blocks on the two sides to operate, continuous feeding of the steel bars can be achieved, the interval time of feeding of the steel bars is shortened, and then the working efficiency is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to steel production technical field especially the double -channel upper steel system for the cold -bed input end. BACKGROUND

[0002] In the steel production process, the cold -bed is one of the key process equipment, and its main role is to cool and solidify the molten state of steel, so that it gradually solidifies into block or plate, thereby forming the required steel products.

[0003] And the traditional cold -bed input end upper steel system in use, usually make the single -channel is used to the steel rod conveying, therefore after the steel rod is transferred to the input end of the cold -bed, the upper steel system needs to be reset first, and the next steel rod can be received and conveyed to the cold -bed, so the time interval of the adjacent two steel rods entering the cold -bed is large, resulting in low efficiency. UTILITY MODEL CONTENT

[0004] In order to make up for the above shortage, the utility model provides a double -channel upper steel system for the cold -bed input end, which aims at improving the traditional cold -bed input end upper steel system using single -channel feeding, so that the time interval of the adjacent two steel rods entering the cold -bed is large, resulting in low efficiency.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: the double -channel upper steel system for the cold -bed input end, including support, the middle part of the support is provided with feeding assembly on both sides;The feeding assembly includes support block, front support plate, rear support plate, first motor and speed reducer, the support block is provided with two, and the front side of the two support blocks is rotatably connected with the front support plate, the rear side of the two support blocks is rotatably connected with the rear support plate, the bottom of one side of the two front support plates is fixedly connected with the first motor, the output end of the two first motors is fixedly connected with the speed reducer, and the speed reducer is fixedly connected with the front support plate.

[0006] Through the above technical scheme: by driving the two first motors on one side of the support, the two support blocks on one side of the support can be driven to rotate, at this time the steel rod on one side of the support can enter the input end of the cold -bed, by driving the two first motors on the other side of the support, the two support blocks on the other side of the support can be driven to rotate, at this time the steel rod on the other side of the support can enter the input end of the cold -bed, and by alternately driving the first motors on both sides to drive the support blocks on both sides to rotate, the continuous feeding of the steel rod can be realized, the feeding time of the steel rod is shortened, and the working efficiency is improved.

[0007] Further description of the above technical scheme:

[0008] The top surface of the two front support plates and the two rear support plates is fixedly connected with the sliding block, and the sliding blocks on both sides are slidingly connected to the top surface of the support on both sides.

[0009] Through the technical scheme, the sliding block can support the support plate.

[0010] Further to the technical scheme, the support plate is provided.

[0011] The top surface of the support is fixedly connected with a second motor on both sides, the output end of the second motor on both sides is fixedly connected with a bidirectional screw rod, and the two sliding blocks are threadedly connected on the outside of the bidirectional screw rod on both sides.

[0012] Through the technical scheme, the second motor can drive the bidirectional screw rod to rotate, so as to adjust the distance between the two adjacent sliding blocks, and the steel rod with different diameters can be conveyed, thereby improving the practicability of the device.

[0013] Further to the technical scheme, the support plate is provided.

[0014] The top surface of the support plate on both sides is fixedly connected with a lining plate, and the lining plate on both sides is provided in a semicircular arc shape.

[0015] Further to the technical scheme, the support plate is provided.

[0016] The lining plate is made of cast iron.

[0017] Through the technical scheme, the lining plate is made of cast iron, so that excessive wear between the steel rod and the lining plate can be avoided during long-term use, and the lining plate is provided in a semicircular arc shape, so that it can fit the shape of the steel rod.

[0018] Further to the technical scheme, the support plate is provided.

[0019] The top surface of the support is fixedly connected with a mounting plate in the middle, and the proximal side of the bidirectional screw rod on both sides is rotatably connected to the middle of the mounting plate on both sides.

[0020] Through the technical scheme, the mounting plate can support the bidirectional screw rod.

[0021] Further to the technical scheme, the support plate is provided.

[0022] The bottom of the support is fixedly connected with a roller, the bottom of the support on both sides is fixedly connected with a fixed plate, the middle of the fixed plate on both sides is fixedly connected with an extension rod, and the output end of the extension rod on both sides is fixedly connected with an anti-skid plate.

[0023] Further to the technical scheme, the support plate is provided.

[0024] The middle outside of the anti-skid plate on both sides is fixedly connected with a sliding rod, and the sliding rod on both sides is slidably connected with the fixed plate on both sides.

[0025] Through the technical scheme, the device can be moved by the rollers, improving the flexibility of the device, and the anti-skid plate can be pushed out to contact the ground by driving the telescopic rod to extend the output end, improving the stability of the device when it is stationary.

[0026] The utility model has the advantages of the following:

[0027] 1. In the utility model, the first motor can drive the support blocks on both sides of the support to rotate, which can make the two support blocks open to allow the steel bars to fall on the input end of the cooling bed. The first motor on both sides can be driven alternately to drive the support blocks on both sides to rotate, which can realize continuous feeding of the steel bars, shorten the interval time of steel bar feeding, and improve the work efficiency.

[0028] 2. In the utility model, the second motor can drive the bidirectional screw to rotate, which can drive the sliding block to move on the top of the support, and adjust the distance between the two adjacent sliding blocks, so as to adjust the distance between the two adjacent support blocks. At this time, the steel bars with different diameters can be conveyed, and the practicability of the device is improved. BRIEF DESCRIPTION OF DRAWINGS

[0029] Figure 1 The utility model provides a three-dimensional structure schematic view of a double-channel steel feeding system applied to the input end of a cooling bed.

[0030] Figure 2 The utility model provides a support part structure schematic view of a double-channel steel feeding system applied to the input end of a cooling bed.

[0031] Figure 3 The utility model provides a support block part structure schematic view of a double-channel steel feeding system applied to the input end of a cooling bed.

[0032] Figure 4 The utility model provides a support block part structure exploded view of a double-channel steel feeding system applied to the input end of a cooling bed.

[0033] LEGEND:

[0034] 1. support; 2. support block; 3. front support plate; 4. rear support plate; 5. first motor; 6. speed reducer; 7. sliding block; 8. second motor; 9. bidirectional screw; 10. lining plate; 11. mounting plate; 12. fixed plate; 13. telescopic rod; 14. anti-skid plate; 15. sliding rod; 16. roller. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the utility model specification. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model protection.

[0036] With reference to Figure 1 , Figure 3 and Figure 4 , the utility model provides an embodiment: applied to the double channel of cold bed input end's system of go up steel, including support 1, the both sides of the middle part of support 1 are provided with feeding assembly;Feeding assembly includes support block 2, front support plate 3, rear support plate 4, first motor 5 and speed reducer 6, support block 2 is provided with two, and the front side of two support block 2 is rotatably connected with front support plate 3, the rear side of two support block 2 is rotatably connected with rear support plate 4, the bottom of one side of two front support plate 3 is fixedly connected with first motor 5, the output end of two first motor 5 is fixedly connected with speed reducer 6, and speed reducer 6 is fixedly connected with front support plate 3.

[0037] When the steel plate needs to be fed, first drive the two first motors 5 on the left side of the support 1 to drive the two support blocks 2 on the left side of the support 1 to rotate, and make the proximal sides of the two support blocks 2 away from each other, so that the steel rod on the left side inside the support 1 enters the input end of the cooling bed, then start the cooling bed to transport the steel rod, then drive the two first motors 5 on the right side of the support 1 to rotate, so that the steel plate on the right side inside the support 1 enters the input end of the cooling bed, and when driving the two first motors 5 on the right side of the support 1 to rotate, the two first motors 5 on the left side of the support 1 can be driven to reverse at the same time, so that the two support blocks 2 on the left side of the support 1 are reset, then the new steel rod can be placed, therefore, by alternating rotation of the first motors 5 on the two sides of the support 1, continuous feeding of the steel rod can be realized, the time interval of the adjacent two steel rods entering the cooling bed is shortened, and the work efficiency is improved.

[0038] With reference to Figure 1 and Figure 3 , the top surfaces of the two front support plates 3 and the two rear support plates 4 are fixedly connected with sliding blocks 7, and the two sliding blocks 7 are slidingly connected to the two sides of the top surface of the support 1. The two sides of the top surface of the support 1 are fixedly connected with second motors 8, the output ends of the two second motors 8 are fixedly connected with bidirectional screws 9, and the two sliding blocks 7 are threadedly connected to the two sides outside the bidirectional screws 9.

[0039] The second motor 8 is driven to rotate the bidirectional screw rod 9, the bidirectional screw rod 9 drives the two adjacent sliders 7 to move close to or away from each other, so that the distance between the two adjacent supporting blocks 2 is adjusted, and different diameter steel bars can be conveyed, thereby improving the practicability of the device.

[0040] With reference to Figure 1 and Figure 4 The top surface of the two supporting blocks 2 is fixedly connected with a lining plate 10, and the two lining plates 10 are semicircular arc-shaped. The lining plate 10 is made of cast iron.

[0041] The lining plate 10 is made of cast iron, which can avoid excessive wear between the steel bar and the lining plate 10 during long-term use, and the lining plate 10 is semicircular arc-shaped, which can fit the shape of the steel bar.

[0042] With reference to Figure 1 and Figure 2 The bottom of the support 1 is fixedly connected with a roller 16, the bottom of the support 1 is fixedly connected with a fixed plate 12, the middle of the two fixed plates 12 is fixedly connected with an extension rod 13, and the output end of the two extension rods 13 is fixedly connected with an anti-skid plate 14. The middle of the two anti-skid plates 14 is fixedly connected with a sliding rod 15, and the two sliding rods 15 are slidingly connected with the two fixed plates 12.

[0043] The roller 16 can move the device, improving the flexibility of the device, and the extension rod 13 can be driven to extend the output end, so that the anti-skid plate 14 is pushed out to contact the ground, improving the stability of the device when it is stationary.

[0044] Working principle: when the steel bar enters the two sides of the support 1, the lining plate 10 on both sides can support the steel bar, when the steel plate needs to be fed, first drive the two first motors 5 on the left side of the support 1 to rotate, through the speed reducer 6, the two supporting blocks 2 on the left side of the support 1 can be driven to rotate, and the proximal sides of the two supporting blocks 2 are away from each other, at this time, the bottom of the two supporting blocks 2 can be opened, so that the steel bar on the left side of the support 1 can enter the input end of the cooling bed, at this time, the feeding of a steel bar can be completed, when the steel bar enters the cooling bed, the cooling bed can be started to convey the steel bar, then drive the two first motors 5 on the right side of the support 1 to rotate, and the proximal sides of the two supporting blocks 2 on the right side of the support 1 are away from each other, at this time, the steel plate on the right side of the support 1 can enter the input end of the cooling bed, and when the two first motors 5 on the right side of the support 1 are driven to rotate, the two first motors 5 on the left side of the support 1 can be driven to reverse, so that the two supporting blocks 2 on the left side of the support 1 can be reset, then the new steel bar can be placed, therefore, through the alternate rotation of the first motors 5 on both sides of the support 1, the continuous feeding of the steel bar can be realized, the time interval of the adjacent two steel bars entering the cooling bed is shortened, so that the work efficiency is improved, and in use, the second motor 8 can be driven to drive the bidirectional screw rod 9 to rotate, the two sliding blocks 7 on both sides of the top of the support 1 can be driven to move close to or away from each other through the bidirectional screw rod 9, therefore, the two supporting blocks 2 in the support 1 can move close to or away from each other, so that the steel bars with different diameters can be conveyed.

[0045] Finally, it should be pointed out that: the above only for preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. Double lane system for the application of the steel to the input end of the cooling bed, comprising a support (1), characterized by the fact that: The middle part of the support (1) is provided with feeding assemblies on both sides; the feeding assembly comprises a supporting block (2), a front supporting plate (3), a rear supporting plate (4), a first motor (5) and a speed reducer (6), the supporting block (2) is provided with two, and the front side of the two supporting blocks (2) is rotatably connected with the front supporting plate (3), the rear side of the two supporting blocks (2) is rotatably connected with the rear supporting plate (4), the bottom of one side of the two front supporting plates (3) is fixedly connected with the first motor (5), the output end of the two first motors (5) is fixedly connected with the speed reducer (6), and the speed reducer (6) is fixedly connected with the front supporting plate (3).

2. The dual lane on-steel system for a cold bed input as claimed in claim 1, characterized in that: The top surface of the two front supporting plates (3) and the two rear supporting plates (4) is fixedly connected with a sliding block (7), and the two sliding blocks (7) are slidably connected on the two sides of the top surface of the support (1).

3. The dual lane on-steel system for application to the input end of a cold bed of claim 2, wherein: The top surface of the support (1) is fixedly connected with a second motor (8) on both sides, the output end of the two second motors (8) is fixedly connected with a bidirectional screw rod (9), and the two sliding blocks (7) are threadedly connected on the two sides outside the bidirectional screw rod (9).

4. The dual lane on-steel system for a cold bed input as claimed in claim 1, wherein: The top surface of the two supporting blocks (2) is fixedly connected with a lining plate (10), and the two lining plates (10) are provided in a semicircular arc shape.

5. The dual lane on-steel system for a cold bed input end of claim 4, wherein: The lining plate (10) is provided in cast iron material.

6. The dual lane on-steel system for a cold bed input as claimed in claim 3, wherein: The middle part of the top surface of the support (1) is fixedly connected with a mounting plate (11), and the proximal sides of the two bidirectional screw rods (9) are rotatably connected in the middle part of the two sides of the mounting plate (11).

7. The dual lane on-steel system for a cold bed input as claimed in claim 1, wherein: The bottom of the support (1) is fixedly connected with a roller (16), the bottom of the support (1) is fixedly connected with a fixed plate (12) on both sides, the middle part of the two fixed plates (12) is fixedly connected with an extension rod (13), and the output end of the two extension rods (13) is fixedly connected with an anti-skid plate (14).

8. The dual lane on-steel system for a cold bed input end of claim 7, wherein: The middle part of the two anti-skid plates (14) is fixedly connected with a sliding rod (15) on the outer side, and the two sliding rods (15) are slidably connected with the two fixed plates (12) on both sides.