Turning climbing guide groove

By designing spirally distributed turning and climbing guide channels, the problems of large footprint and low production capacity caused by the separate setting of turning and climbing guide channels are solved, achieving efficient rolling and convenient maintenance.

CN224128231UActive Publication Date: 2026-04-17AN HUI NUO TAI GONG CHENG JI SHU YOU XIAN GONG SI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing separate design of turning guide channels and climbing guide channels results in a large footprint, which is not conducive to installation and maintenance, and also leads to low production capacity.

Method used

A turning and climbing guide channel is designed, which is composed of a workpiece input guide channel, a turning guide channel and a workpiece output guide channel connected in sequence in a spiral distribution. The height of the first, second and third support seats gradually increases along the extension direction of the channel to form a channel, thereby realizing the turning and lifting of the workpiece.

Benefits of technology

It improves rolling efficiency within a limited space, significantly increases production line capacity, saves floor space, and facilitates installation and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a turning and climbing guide groove. The turning climbing guide groove comprises a rolled piece input guide groove part, a turning guide groove part and a rolled piece output guide groove part which are sequentially connected, and the rolled piece input guide groove part, the turning guide groove part and the rolled piece output guide groove part are combined and distributed in a spiral shape. The rolled piece input guide groove part comprises a plurality of first supporting seats and a first guide groove; the turning guide groove part comprises a plurality of second supporting seats and a second guide groove; the rolled piece output guide groove part comprises a plurality of third supporting seats and a third guide groove; the first guide groove, the second guide groove and the third guide groove are combined to form a channel for a rolled piece to move, and the heights of the first supporting seats, the second supporting seats and the third supporting seats are gradually increased in the extending direction of the channel. By means of the guide groove, the rolled piece can be lifted to the required height while turning along a formed channel in a limited space, the rolled piece is conveyed to the next designated rolling procedure, the rolling efficiency is improved, and the productivity of a production line is improved.
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Description

Technical Field

[0001] This utility model belongs to the technical field of steel rolling equipment, specifically relating to a turning and climbing guide trough. Background Technology

[0002] With the advancement of rolling mill equipment, the rolling quality of industrial materials in my country is increasing, especially for high-value-added rolled materials, which require increasingly stringent surface quality standards. Guide chutes are a crucial component of rolling mill equipment. Currently, the rolled piece moves along the predetermined direction of the guide chutes during the rolling process, using turning or climbing guide chutes for turning or climbing. However, existing turning or climbing guide chutes are typically separated, occupying a large area and hindering subsequent installation and maintenance. Furthermore, this separated setup results in lower production capacity and inefficient utilization of the rolling mill equipment. Utility Model Content

[0003] In view of this, the purpose of this utility model is to provide a turning and climbing guide channel to solve the technical problems of inconvenient subsequent installation and maintenance and low production capacity caused by the separate setting of turning guide channels and climbing guide channels.

[0004] To achieve the above objectives, this utility model provides the following technical solution: a turning and climbing guide groove, comprising a rolled piece input guide groove, a turning guide groove, and a rolled piece output guide groove connected in sequence, wherein the rolled piece input guide groove, the turning guide groove, and the rolled piece output guide groove are arranged in a spiral shape;

[0005] The input guide groove of the rolled piece includes a plurality of first support seats arranged at intervals, and a first guide groove disposed on each of the first support seats;

[0006] The turning guide groove includes a plurality of second support seats arranged at intervals, and a second guide groove disposed on each of the second support seats;

[0007] The output guide groove of the rolled piece includes a plurality of third support seats arranged at intervals, and a third guide groove disposed on each of the third support seats;

[0008] The first guide groove, the second guide groove, and the third guide groove are combined to form a channel for the movement of the rolled piece, and the height of each of the first support bases, the second support bases, and the third support bases gradually increases along the extension direction of the channel.

[0009] Furthermore, the workpiece input guide groove includes a first arc-shaped beam disposed on each of the first support seats. The first guide groove includes a plurality of first guide groove units disposed at intervals on the first arc-shaped beam, and a first support platform that supports each of the first guide groove units respectively. A first guide wheel assembly for guiding the movement of the workpiece is provided between two adjacent first guide groove units.

[0010] Furthermore, the first guide wheel assembly includes a mounting base disposed on the first support platform, the mounting base having a through hole for the rolled piece to pass through, and the mounting base also having a pair of first guide wheels distributed on both sides of the through hole to guide the movement of the rolled piece.

[0011] Furthermore, the side of the first support seat closest to the first arc-shaped beam is inclined.

[0012] Furthermore, the inclination angle of the inclined surface of the first support is 2-4°.

[0013] Furthermore, the turning guide groove also includes a second arc-shaped beam disposed on each of the second support seats and located below the second guide groove, at least one flip-top assembly disposed on the second arc-shaped beam and used to support the second guide groove, and at least one second guide wheel disposed on the second arc-shaped beam and located below the second guide groove. The first arc-shaped beam abuts against the second arc-shaped beam, the top of the second guide groove is provided with a first opening, and the second guide groove is provided with a second opening for each of the second guide wheels to extend into and contact the rolled piece.

[0014] Furthermore, the second arc-shaped beam is also provided with at least one pair of third guide wheels, the pair of third guide wheels being distributed on opposite sides perpendicular to the extension direction of the second guide groove, and the second guide groove having a third opening for the pair of third guide wheels to extend into.

[0015] Furthermore, the flip-top assembly includes a mounting base disposed on the second arc-shaped beam and used to support the second guide groove, a cover plate fastened to the top of the second guide groove to seal the first opening, a pressure cap rotatably mounted on the mounting base and used to press against the cover plate, and a handle rotatably mounted on the mounting base and used to lock the pressure cap.

[0016] Furthermore, the output guide groove of the rolled piece includes a third arc-shaped beam disposed on each of the third support seats and abutting against the second arc-shaped beam. The third guide groove includes a plurality of second guide groove units disposed at intervals on the third arc-shaped beam, and a second support platform that supports each of the second guide groove units respectively. A second guide wheel assembly for guiding the movement of the rolled piece is provided between two adjacent second guide groove units.

[0017] The beneficial effects of this utility model are as follows: Compared with the prior art, the turning and climbing guide groove of this utility model is arranged in a spiral shape by the sequentially connected workpiece input guide groove, turning guide groove and workpiece output guide groove. That is, the first support seat, the second support seat and the third support seat gradually increase in size along the extension direction of the channel, so that the workpiece can turn along the formed channel in a limited space and be lifted to the required height, thereby delivering the workpiece to the designated next rolling process, improving rolling efficiency and significantly increasing the capacity of the entire production line.

[0018] Other advantages, objectives, and features of this invention will be set forth in the following description and will be apparent to those skilled in the art to some extent, or may be learned by practice of this invention. The objectives and other advantages of this invention can be realized and obtained through the following description. Attached Figure Description

[0019] To make the objectives, technical solutions, and beneficial effects of this utility model clearer, the following drawings are provided for illustration:

[0020] Figure 1 This is a structural diagram of a turning and climbing guide groove according to an embodiment of the present invention;

[0021] Figure 2 This is a top view of a turning and climbing guide channel according to an embodiment of the present invention;

[0022] Figure 3 for Figure 2 Enlarged view of A in the middle;

[0023] Figure 4 for Figure 2 Enlarged view of B in the middle;

[0024] Figure 5 This is a structural diagram of a turning guide groove according to an embodiment of the present invention;

[0025] Figure 6 This is a top view of a turning guide groove according to an embodiment of the present invention;

[0026] Figure 7 This is a front view of a turning guide groove according to an embodiment of the present invention;

[0027] Figure 8 This is a cross-sectional view of a flip cover assembly according to an embodiment of the present invention.

[0028] Icon labels:

[0029] 1-Steel input guide groove; 11-First support base; 12-First guide groove; 121-First guide groove unit; 122-First support platform; 13-First arc-shaped beam; 14-First guide wheel assembly; 141-Mounting base; 142-First guide wheel;

[0030] 2-Turn guide groove; 21-Second support base; 22-Second guide groove; 23-Second arc beam; 24-Flip cover assembly; 241-Base; 242-Cover plate; 243-Clip cover; 244-Handle; 245-Extension plate; 246-Slot; 247-Handle; 25-Second guide wheel; 26-Second opening; 27-Third guide wheel; 28-Third opening;

[0031] 3-Rolled piece output guide groove; 31-Third support seat; 32-Third guide groove; 321-Second guide groove unit; 322-Second support platform; 33-Third arc beam; 34-Second guide wheel assembly. Detailed Implementation

[0032] like Figures 1 to 8 As shown, this embodiment proposes a turning and climbing guide channel, including a workpiece input guide channel 1, a turning guide channel 2, and a workpiece output guide channel 3 connected in sequence. The workpiece input guide channel 1, the turning guide channel 2, and the workpiece output guide channel 3 are arranged in a spiral shape. Specifically, the workpiece input guide channel 1 includes a plurality of first support seats 11, which are spaced apart, and each first support seat 11 is provided with a first guide channel 12. The turning guide channel 2 includes a plurality of second support seats 21, which are spaced apart, and each second support seat 21 is provided with a second guide channel 22. The workpiece output guide channel 3 includes a plurality of third support seats 31, which are spaced apart, and each third support seat 31 is provided with a third guide channel 32. The first guide channels 12, the second guide channels 22, and the third guide channels 32 are combined to form a channel for the workpiece to move. The height of each first support seat 11, each second support seat 21, and each third support seat 31 gradually increases along the extension direction of the channel. In this way, as the workpiece moves along the channel, it can smoothly enter from the workpiece input guide groove, turn through the turning guide groove 2, and finally exit from the workpiece output guide groove 3. The first support 11, the second support 21, and the third support 31 gradually increase in size along the channel extension direction, allowing the workpiece to turn along the formed channel in a limited space while being lifted to the required height, thereby delivering the workpiece to the designated next rolling process. This can improve rolling efficiency and significantly increase the capacity of the entire production line. At the same time, since the entire guide groove is spirally distributed, it not only saves floor space but also facilitates subsequent installation and maintenance.

[0033] Further, please refer to Figure 2 and Figure 3As shown, the workpiece input guide 1 includes a first arc-shaped beam 13, which is disposed on each first support seat 11. The first guide 12 includes multiple first guide 121 units and multiple first support platforms 122. The first guide 121 units are spaced apart on the first arc-shaped beam 13, and each first support platform 122 supports each first guide 121. Furthermore, a first guide wheel assembly 14 is provided between two adjacent first guide 121 units to guide the movement of the workpiece. Thus, by providing multiple first support seats 11, the pressure and friction generated by the workpiece during turning and climbing can be better withstood, improving the stability of the workpiece movement. By providing the first guide wheel assembly 14, the movement of the workpiece within the first guide 12 can be effectively guided, improving the smoothness of the workpiece movement and helping to reduce friction between the workpiece and the first guide 12, thus extending the service life of the equipment.

[0034] Further, please refer to Figure 3 As shown, the first guide wheel assembly 14 includes a mounting base 141, which is disposed on the first support platform 122. The mounting base 141 has a through hole through which the rolled piece can pass, allowing the rolled piece to move smoothly within the first guide groove 12. Furthermore, the mounting base 141 also has a pair of first guide wheels 142, which are distributed on both sides of the through hole. The pair of first guide wheels 142 closely fit against both sides of the rolled piece, further ensuring the stability and accuracy of the rolled piece during movement.

[0035] Furthermore, the side of the first support base 11 closest to the first arc-shaped beam 13 is inclined. This inclination increases the contact area between the first support base 11 and the first arc-shaped beam 13, thereby improving the structural strength of the entire workpiece input guide groove. Simultaneously, this inclination also helps the workpiece move smoothly within the first guide groove 12, preventing swaying or jamming during turns or inclines, further improving the stability and accuracy of workpiece movement. Preferably, the inclination angle of the inclined surface of the first support base 11 is 2-4°. This angle ensures that when the workpiece moves within the first guide groove 12, neither excessive friction due to an excessively large angle nor instability due to an excessively small angle.

[0036] Further, please refer to Figure 2 , Figures 5 to 8As shown, the turning guide groove 2 includes a second arc-shaped beam 23, at least one flip-top assembly 24, and at least one second guide wheel 25. The first arc-shaped beam 13 abuts against the second arc-shaped beam 23. The second guide groove 22 is disposed above the second arc-shaped beam 23. The top of the second guide groove 22 has a first opening. The flip-top assembly 3 is disposed on the second arc-shaped beam 23 and is used to support the second guide groove 22. The second guide wheel 25 is disposed on the second arc-shaped beam 23 and is located below the second guide groove 22. In addition, the second guide groove 22 has a second opening 26 for each second guide wheel 25 to extend into and contact the rolled piece. At least one flip-top assembly 24 is provided on the second arc-shaped beam 23, which can be used to support the second guide groove 22; at least one second guide wheel 25 is provided on the second arc-shaped beam 23 and below the second guide groove 22, so that the rolled piece can be rolled forward by the second guide wheel 25, so that the rolling piece changes from sliding friction to rolling friction, making the movement smoother and more efficient, while effectively reducing the noise of the rolling piece movement and reducing the wear on the surface of the rolling piece.

[0037] In this application, the side of the second support 21 closest to the second arc-shaped beam 23 is inclined, and the angle of its inclined surface can be adjusted according to the actual situation, which is not limited here.

[0038] Further, please refer to Figure 5 and Figure 6 As shown, the second arc-shaped beam 23 is also provided with at least one pair of third guide wheels 27. The pair of third guide wheels 27 are distributed on opposite sides of the extension direction perpendicular to the second guide groove 22. The second guide groove 22 has a third opening 28, which allows the pair of third guide wheels 27 to extend into and contact the rolled piece. By providing at least one pair of third guide wheels 27 on both sides of the second arc-shaped beam 23, the movement trajectory of the rolled piece can be corrected by the pair of third guide wheels 27, thereby improving the accuracy of the movement trajectory and effectively avoiding the occurrence of steel jamming accidents.

[0039] Further, please refer to Figure 8 As shown, the flip-top assembly 24 includes a base 241, a cover plate 242, a pressure cap 243, and a handle 244. The base 241 is mounted on the second arc-shaped beam 23 and supports the second guide groove 22. The cover plate 242 is fastened to the top of the second guide groove 22 to seal the first opening. The pressure cap 243 is rotatably mounted on the base 241 and presses against the cover plate 242. The handle 244 is rotatably mounted on the base 241 and locks the pressure cap 243. This design allows for easy opening and closing of the flip-top assembly 24. In the event of a steel stacking accident, the rolled steel in the second guide groove 22 can be removed by opening the cover plate 242, facilitating the rapid removal of scrap steel.

[0040] Further, please refer to Figure 8As shown, in order to improve the connection stability between the pressure cap 243 and the handle 244, the pressure cap 243 is provided with an extension plate 245, and the handle 244 is provided with a slot 246 for the extension plate 245 to extend into. When the handle 244 is rotated to the locked position, the extension plate 245 will extend into the slot 246, thereby preventing the pressure cap 243 from being opened accidentally.

[0041] Further, please refer to Figure 1 As shown, a handle 247 is provided on the cover 242 for easy operation. The operator can easily open or close the cover 242 by holding the handle 247.

[0042] Further, please refer to Figure 2 and Figure 4 As shown, the output guide trough 3 of the rolled piece includes a third arc-shaped beam 33, which is disposed on each third support base 31. Furthermore, the third guide trough 32 includes multiple second guide trough units 321 and multiple second support platforms 322. The second guide trough units 321 are spaced apart on the third arc-shaped beam 33, and each second support platform 322 can support each second guide trough unit 321. In addition, a second guide wheel assembly 34 is provided between two adjacent second guide trough units 321, which guides the movement of the rolled piece. Thus, by providing multiple third support bases 31, the pressure and friction generated by the rolled piece during turning and climbing can be better withstood, improving the stability of the rolled piece movement. By providing the second guide wheel assembly 34, the movement of the rolled piece within the third guide trough 32 can be effectively guided, improving the smoothness of the rolled piece movement and also helping to reduce friction between the rolled piece and the third guide trough 34, extending the service life of the equipment.

[0043] In this application, the structure of the second guide wheel assembly 34 is the same as that of the first guide wheel assembly 14, and will not be described in detail here.

[0044] Finally, it should be noted that the above preferred embodiments are only used to illustrate the technical solution of this utility model and are not intended to limit it. Although the utility model has been described in detail through the above preferred embodiments, those skilled in the art should understand that various changes can be made to it in form and detail without departing from the scope defined by the claims of this utility model.

Claims

1. A turning and climbing guide channel, characterized by, It includes a workpiece input guide groove, a turning guide groove, and a workpiece output guide groove connected in sequence, wherein the workpiece input guide groove, the turning guide groove, and the workpiece output guide groove are arranged in a spiral shape; The input guide groove of the rolled piece includes a plurality of first support seats arranged at intervals, and a first guide groove disposed on each of the first support seats; The turning guide groove includes a plurality of second support seats arranged at intervals, and a second guide groove disposed on each of the second support seats; The output guide groove of the rolled piece includes a plurality of third support seats arranged at intervals, and a third guide groove disposed on each of the third support seats; The first guide groove, the second guide groove, and the third guide groove are combined to form a channel for the movement of the rolled piece, and the height of each of the first support bases, the second support bases, and the third support bases gradually increases along the extension direction of the channel.

2. A turning and climbing guide according to claim 1, characterized in that The workpiece input guide groove section further includes a first arc-shaped beam disposed on each of the first support seats. The first guide groove includes a plurality of first guide groove units disposed at intervals on the first arc-shaped beam, and a first support platform that supports each of the first guide groove units respectively. A first guide wheel assembly for guiding the movement of the workpiece is provided between two adjacent first guide groove units.

3. A turning and climbing guide according to claim 2, wherein The first guide wheel assembly includes a mounting base disposed on the first support platform. The mounting base has a through hole for the rolled piece to pass through, and the mounting base also has a pair of first guide wheels distributed on both sides of the through hole to guide the movement of the rolled piece.

4. A turning and climbing guide according to claim 2, wherein The side of the first support seat closest to the first arc-shaped beam is inclined.

5. A turning and climbing guide according to claim 4, wherein The inclination angle of the inclined surface of the first support is 2-4°.

6. A turning and climbing guide according to claim 2, wherein The turning guide section further includes a second arc-shaped beam disposed on each of the second support seats and located below the second guide groove, at least one flip-top assembly disposed on the second arc-shaped beam and used to support the second guide groove, and at least one second guide wheel disposed on the second arc-shaped beam and located below the second guide groove. The first arc-shaped beam abuts against the second arc-shaped beam. A first opening is provided at the top of the second guide groove, and a second opening is provided on the second guide groove for each of the second guide wheels to extend into and contact the rolled piece.

7. A turning and climbing guide according to claim 6, wherein The second arc-shaped beam is also provided with at least one pair of third guide wheels, which are distributed on opposite sides perpendicular to the extension direction of the second guide groove. The second guide groove is provided with a third opening for the pair of third guide wheels to extend into.

8. A turning and climbing guide according to claim 6, wherein The flip-top assembly includes a base disposed on the second arc-shaped beam and used to support the second guide groove, a cover plate fastened to the top of the second guide groove to seal the first opening, a pressure cap rotatably mounted on the base and used to press against the cover plate, and a handle rotatably mounted on the base and used to lock the pressure cap.

9. A turning and climbing guide groove according to claim 6, characterized in that, The output guide groove of the rolled piece further includes a third arc beam disposed on each of the third support seats and abutting against the second arc beam. The third guide groove includes a plurality of second guide groove units disposed at intervals on the third arc beam, and a second support platform that supports each of the second guide groove units respectively. A second guide wheel assembly for guiding the movement of the rolled piece is provided between two adjacent second guide groove units.