Casting blank output guide device of thin slab continuous casting machine

By introducing a combination of support base, guide table and drive table on the thin slab continuous casting machine, and using drive motor and brushless motor to adjust the direction of the roller shaft, the problem of skewed billet output was solved, and stable and efficient conveying was achieved.

CN223775964UActive Publication Date: 2026-01-09秦海军
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Patent Information

Application Number
CN202520185464.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-01-09
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

In existing thin slab continuous casting machines, the billets are prone to skew during the output process, leading to unstable conveying and affecting subsequent processing.

Method used

The guiding device consists of a support base, a guide platform, a drive platform, and rollers. By cooperating with a drive motor and a brushless motor, the direction of the rollers is adjusted to achieve the posture adjustment and stable output of the steel billet.

Benefits of technology

It improves the stability and efficiency of thin slab output, reduces production problems caused by skew, and increases the flexibility and practicality of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of output guide equipment, and provides a casting blank output guide device of a thin slab continuous casting machine, which comprises a supporting seat, a guide table is fixedly connected to the side wall of the top of the supporting seat, adjusting grooves are uniformly formed in one side, far away from the supporting seat, of the guide table, and a driving table is rotatably connected in the adjusting grooves. The middle of the side wall of the top of the driving table is evenly and rotationally connected with roll shafts, and the outer walls of the roll shafts are provided with high-temperature-resistant rubber layers in an adjusting mode. The concrete effects are that the driving motor is started to drive all the roll shafts to rotate at the same time through the chain, and driving force can be applied to steel billets along with rotation of the roll shafts, so that the steel billets are driven to move on the guiding table; when the billets deflect along with movement of the billets, the corresponding brushless motors are started to drive the driving tables to rotate, so that the roll shafts are adjusted to different orientations, the inclined billets can be adjusted to a normal output state through running fit of the multiple driving tables, and the situation that subsequent arrangement and conveying are affected due to deflection of the billets is avoided.
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Description

Technical Field

[0001] This utility model relates to the technical field of output guiding equipment, specifically to a billet output guiding device for a thin slab continuous casting machine. Background Technology

[0002] Thin slabs are a type of steel billet produced during the steel smelting process. They are primarily produced using continuous casting machines, which can continuously produce thin slabs, effectively increasing their production efficiency. Because continuous casting machines produce thin slabs through continuous casting, the produced thin slabs are uniformly output to transport equipment.

[0003] The current output process is basically carried out by rotating rollers, which drive the thin slab to move until it is delivered to the transport equipment. However, the rotating rollers can only transport in one direction. If the thin slab is deviated during the transport process, it cannot be adjusted, which affects the subsequent processing. Therefore, a slab output guide device for thin slab continuous casting machine is proposed here. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a billet output guiding device for thin slab continuous casting machines, which improves the stability and efficiency of thin slab output, increases the function of adjusting the posture of thin slabs during the output process, reduces the impact of thin slab skewing on normal conveying, and reduces production problems caused by abnormal output.

[0005] The present invention provides a billet output guide device for a thin slab continuous casting machine, including a support base, a guide platform fixedly connected to the top side wall of the support base, an adjustment groove evenly provided on the side of the guide platform away from the support base, and a drive platform rotatably connected in the adjustment groove, a roller shaft evenly rotatably connected in the middle of the top side wall of the drive platform, a high-temperature resistant rubber layer adjusted on the outer wall of the roller shaft, and side guard plates fixedly connected to both sides of the guide platform, and the guide platform has an inclined structure.

[0006] As a preferred technical solution of this utility model, an inlay groove is provided in the middle of the bottom side wall of the adjustment groove, and a brushless motor is detachably inlaid in the inlay groove. The output end of the brushless motor is detachably connected to the middle of the bottom side wall of the drive platform.

[0007] As a preferred technical solution of this utility model, a rotating groove is provided in the middle of the inner wall of the adjustment groove, and a rotating ring is fixedly connected to the side wall of the drive platform that extends into the adjustment groove and is opposite to the rotating groove. The rotating ring is rotatably connected in the rotating groove.

[0008] As a preferred technical solution of this utility model, a drive motor is detachably embedded in one end of the drive platform, and a drive sprocket is fixedly connected to the output end of the drive motor, with a chain meshing on the drive sprocket.

[0009] As a preferred technical solution of this utility model, a driven sprocket is fixedly connected to the middle of the side wall of the end opposite to the chain of the roller shaft, and the chain is engaged with the driven sprocket.

[0010] As can be seen from the above technical solution, the billet output guiding device for thin slab continuous casting machine provided by this utility model has the following specific effects: After the billet is produced from the continuous casting machine, it falls onto the guide table. The drive motor is started and drives all the rollers to rotate simultaneously via the chain. As the rollers rotate, a driving force is applied to the billet, thereby moving the billet on the guide table to achieve the output effect. When the billet deviates as it moves, the corresponding brushless motor is started to drive the drive table to rotate, thereby adjusting the rollers to different orientations. Through the coordinated rotation of multiple drive tables, the tilted billet can be adjusted to a normal output state, avoiding the impact of billet deviation on subsequent sorting and conveying. In addition, this method can achieve the output of billets in different states, ensuring the stability of the output and improving the flexibility of equipment application. Attached Figure Description

[0011] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0012] Figure 1 A partial front view of a guide platform provided in an embodiment of the present invention;

[0013] Figure 2 This is a schematic diagram of the internal structure of the adjusting groove provided in an embodiment of the present invention;

[0014] Figure 3 This is an exploded view of the drive stage provided in an embodiment of the present invention.

[0015] In the attached diagram, 1 is the support base; 2 is the guide platform; 3 is the adjustment groove; 4 is the drive platform; 5 is the side guard plate; 6 is the inlay groove; 7 is the brushless motor; 8 is the rotating groove; 9 is the rotating ring; 10 is the roller; 11 is the driven sprocket; 12 is the chain; 13 is the drive motor; and 14 is the driving sprocket. Detailed Implementation

[0016] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the present invention and should not be construed as limiting the scope of protection of the present invention.

[0017] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this utility model pertains.

[0018] like Figure 1-3 As shown, the billet output guiding device of the thin slab continuous casting machine of this utility model includes a support base 1. A guide platform 2 is fixedly connected to the top side wall of the support base 1. An adjustment groove 3 is evenly provided on the side of the guide platform 2 away from the support base 1, and a drive platform 4 is rotatably connected in the adjustment groove 3. A roller shaft 10 is evenly rotatably connected in the middle of the top side wall of the drive platform 4. An embedding groove 6 is provided in the middle of the bottom side wall of the adjustment groove 3. A brushless motor 7 is detachably embedded in the embedding groove 6, and the output end of the brushless motor 7 is detachably connected to the bottom of the drive platform 4. In the middle of the side wall, a rotating groove 8 is opened in the middle of the inner wall of the adjustment groove 3. The drive platform 4 extends into the adjustment groove 3 and is fixedly connected to the side wall opposite to the rotating groove 8. The rotating ring 9 is rotatably connected in the rotating groove 8. A drive motor 13 is detachably embedded in one end of the drive platform 4. A drive sprocket 14 is fixedly connected to the output end of the drive motor 13. A chain 12 is meshed on the drive sprocket 14. A driven sprocket 11 is fixedly connected in the middle of the side wall opposite to the chain 12 of the roller shaft 10. The chain 12 is meshed on the driven sprocket 11.

[0019] The technical effects of this solution are as follows: When outputting, the drive motor 13 is pre-started to drive the active sprocket 14 to rotate. Through the meshing connection, it drives all the driven sprockets 11 and rollers 10 to rotate synchronously, thereby applying a driving force to the section passing above the rollers 10 to ensure normal conveying of the billet. When the billet tilts, the brushless motor 7 in the adjustment groove 3 is started, thereby driving the drive table 4 to rotate in the adjustment groove 3, thereby adjusting the rotation direction of the drive table 4. This allows a different driving force to be applied to different sections of the billet, thereby adjusting the tilted billet to a normal state and avoiding the impact of the tilted billet on subsequent conveying. Furthermore, the rotation of the drive table 4 allows the billet to be output in different postures, improving the flexibility and practicality of the equipment application.

[0020] The outer wall of the roller 10 is fitted with a high-temperature resistant rubber layer, and the guide platform 2 is fixedly connected to the side guard plates 5 near both sides. The guide platform 2 is an inclined structure.

[0021] The technical effects of this solution are as follows: setting the guide platform 2 into an inclined structure can improve the convenience of billet output, and the inclined billet can reduce the energy consumption of the roller 10 rotation during transportation, thus achieving energy saving. The side guard plate 5 can protect the billet and prevent it from falling off the guide platform 2 and being damaged.

[0022] The operating process of this equipment is as follows: After the steel billet is produced from the continuous casting machine, it falls onto the guide table 2. The drive motor 13 is started in advance, which drives the chain 12 to rotate via the drive sprocket 14. The rotation of the chain 12 drives all the rollers 10 to rotate, thus applying a driving force to the steel billet. At the same time, a high-temperature resistant rubber layer is sleeved on the rollers 10, which increases the friction between the rollers 10 and the steel billet, ensuring a stable force is applied to the steel billet and preventing the high-temperature steel billet from damaging the rollers 10. When the steel billet tilts during conveying, the brushless motor 7 can be started to drive the drive table 4 to rotate, thereby changing the rotation direction of the rollers 10. By rotating the corresponding drive table 4, the rollers 10 are adjusted to the appropriate rotation direction, which can correct the deviation of the steel billet and ensure that the steel billet is in a normal conveying state, avoiding deviation that would affect subsequent conveying processes.

[0023] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model, and they should all be covered within the scope of the claims and specification of this utility model.

Claims

1. A billet output guide device for a thin slab continuous casting machine, comprising: The support base (1) is characterized in that a guide platform (2) is fixedly connected to the top side wall of the support base (1), and an adjustment groove (3) is evenly provided on the side of the guide platform (2) away from the support base (1), and a drive platform (4) is rotatably connected in the adjustment groove (3). A roller (10) is evenly rotatably connected in the middle of the top side wall of the drive platform (4), and a high-temperature resistant rubber layer is adjusted on the outer wall of the roller (10). Side guard plates (5) are fixedly connected to both sides of the guide platform (2), and the guide platform (2) is an inclined structure.

2. The billet output guiding device for a thin slab continuous casting machine according to claim 1, characterized in that, An inlay groove (6) is provided in the middle of the bottom side wall of the adjustment groove (3). A brushless motor (7) is detachably inlaid in the inlay groove (6). The output end of the brushless motor (7) is detachably connected to the middle of the bottom side wall of the drive platform (4).

3. The billet output guiding device for a thin slab continuous casting machine according to claim 1, characterized in that, The inner wall of the adjustment groove (3) is provided with a rotating groove (8). The drive platform (4) extends into the adjustment groove (3) and is fixedly connected to the side wall opposite to the rotating groove (8) with a rotating ring (9). The rotating ring (9) is rotatably connected in the rotating groove (8).

4. The billet output guiding device for a thin slab continuous casting machine according to claim 1, characterized in that, A drive motor (13) is detachably embedded in one end of the drive platform (4). The output end of the drive motor (13) is fixedly connected to a drive sprocket (14), and a chain (12) is meshed on the drive sprocket (14).

5. The billet output guiding device for a thin slab continuous casting machine according to claim 4, characterized in that, A driven sprocket (11) is fixedly connected to the middle of the side wall of the roller shaft (10) opposite to the chain (12), and the chain (12) is meshed with the driven sprocket (11).