Intelligent staggered guide roller traction rolling mill for aluminum alloy plates

By designing an aluminum alloy sheet intelligent misalignment guide roller traction rolling mill, the combination of multiple traction rollers and guide plates is used to solve the problem of displacement and damage in the prior art in the transportation process, and the stable conveying and traction of the sheet is achieved.

CN222999374UActive Publication Date: 2025-06-20QINGYUAN ZHENGTONG METAL PROD CO LTD +1
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422216135.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-06-20
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

The existing aluminum alloy plate rolling traction mechanism cannot effectively traction and transport the aluminum alloy plate, resulting in the plate being easily displaced during the conveying process and the edges and corners are easily damaged by impact.

Method used

An intelligent misalignment guide roller traction rolling mill for aluminum alloy sheets is designed. Multiple traction rollers are installed through the frame, and the combination of guide plates, wear-resistant plates and traction plates is used to achieve stable transportation and traction of aluminum alloy sheets.

Benefits of technology

Through the mating of multiple traction rollers and the adjustment of guide plates, the problem of insufficient power in the aluminum alloy plate during transportation can be effectively avoided, and the wear of the wear-resistant plate can be reduced through the design of the traction plate, thereby improving the conveying stability and safety of the plate.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN222999374U_ABST
    Figure CN222999374U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of traction rolling mills, in particular to an intelligent staggered guide roller traction rolling mill for aluminum alloy plates, which comprises a frame, traction rollers, mounting plates, guide plates, wear-resistant plates and traction plates, the traction rollers are arranged above the frame, the mounting plates are symmetrically arranged on two sides of the frame, the guide plates are arranged above the traction rollers, and the wear-resistant plates are arranged on two sides of the frame. The wear-resisting plate is arranged on one side of the guide plate, the wear-resisting plate and the guide plate are connected through auxiliary bolts, and the traction plate is arranged at one end of the guide plate; the guide plate and the wear-resisting plate are mounted under the action of the mounting plate, the wear-resisting plate is mounted on one side of the guide plate and is convenient to disassemble and assemble, a user can replace the wear-resisting plate conveniently, then the traction plate is mounted under the action of the guide plate, and traction during aluminum alloy plate conveying can be achieved through the traction plate; the traction plate slightly protrudes compared with the wear-resisting plate during working, and abrasion of the wear-resisting plate can be reduced when the aluminum alloy plates are conveyed.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model relates to the technical field of traction rolling mills, in particular to an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates. Background Art

[0002] When processing aluminum alloy plates, an aluminum ingot is pressed into an aluminum plate by a rolling mill. During the pressing process, water is sprayed for cooling. When the pressing is completed, the aluminum plate is pulled out by a traction machine. After the aluminum alloy plate is pulled out by the traction machine, operations such as coiling or cutting can be carried out.

[0003] Chinese Patent Publication No. CN221046943U discloses a rolling and traction mechanism for aluminum alloy plates, which includes a rolling mill and a traction machine arranged on one side of the discharge end of the rolling mill. A support frame is arranged at the lower end of the traction machine, and a through chute is opened on the support frame. An adjusting component is slidably connected in the chute. Both ends of the adjusting component penetrate through the chute, and both ends of the adjusting component are fixedly connected to the outer sides of both ends of the traction machine. This patent is applied to the rolling and traction mechanism of aluminum alloy plates. By setting the adjusting component, the position of the traction machine can be driven to move and adjusted according to the thickness of the aluminum alloy plate. When the aluminum alloy plate is thin, the distance between the traction machine and the rolling mill is adjusted to be close to avoid the aluminum alloy plate from sagging. When the aluminum alloy plate is thick, the distance between the traction machine and the rolling mill is increased to avoid the difficulty of dissipating the temperature of the rolled aluminum alloy plate.

[0004] However, this rolling and traction mechanism for aluminum alloy plates cannot effectively traction and convey the aluminum alloy plate during use. The aluminum alloy plate is prone to displacement during transportation, and the corners of the aluminum alloy plate are easily damaged by impact. Summary of the Utility Model

[0005] In view of the above problems, an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates is provided. Under the action of the mounting plate, the guide plate and the wear-resistant plate are installed. The wear-resistant plate is installed on one side of the guide plate and is convenient for disassembly and assembly, facilitating the user to replace the wear-resistant plate. Then, under the action of the guide plate, the traction plate is installed. The traction of the aluminum alloy plate during transportation can be realized through the traction plate. When the traction plate is working, it protrudes slightly compared with the wear-resistant plate, which can reduce the wear of the wear-resistant plate during the transportation of the aluminum alloy plate.

[0006] To solve the problems of the prior art, the utility model provides an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates, which includes a frame, traction rollers, mounting plates, guide plates, wear-resistant plates and traction plates. The traction rollers are arranged above the frame. The mounting plates are symmetrically arranged on both sides of the frame. The guide plates are arranged above the traction rollers. The wear-resistant plates are arranged on one side of the guide plates. The wear-resistant plates and the guide plates are connected by auxiliary bolts. The traction plates are arranged at one end of the guide plates.

[0007] Preferably, load-bearing plates are provided on both sides of the frame. A support plate is provided on the top of the load-bearing plate. A positioning groove matching the mounting plate is formed on the top of the support plate. A locking bolt for positioning is provided on one side of the support plate.

[0008] Preferably, first cross plates are symmetrically provided on one side of the mounting plate. A second cross plate is provided on one side of the guide plate. A positioning sliding groove is formed inside the second cross plate, and the positioning sliding groove matches the first cross plate.

[0009] Preferably, a lead screw is threadedly penetrated inside the mounting plate. A hand wheel is provided at the input end of the lead screw. The lead screw is rotatably installed between the guide plate through a working bearing.

[0010] Preferably, a trapezoidal groove is formed inside the guide plate. A trapezoidal plate connected to the wear-resistant plate is snap-fitted inside the trapezoidal groove.

[0011] Preferably, a plurality of traction rollers are provided. Bushings are sleeved at both ends of the plurality of traction rollers. A bending plate for positioning is provided above the bushing. The frame and the bending plate are connected by working bolts.

[0012] Preferably, a first belt pulley is provided at one end of the traction roller. A working motor is provided inside the frame. A second belt pulley is provided at the output end of the working motor. The first belt pulley and the second belt pulley are connected by a belt.

[0013] The beneficial effects of the present utility model compared with the prior art are as follows:

[0014] The traction rollers are installed through the frame. The plurality of traction rollers cooperate with each other to convey the aluminum alloy plate during work. Some of the plurality of traction rollers can rotate self - sufficiently, which can provide kinetic energy for the conveyance of the aluminum alloy plate and avoid the phenomenon of insufficient power during the conveyance of the aluminum alloy plate. Under the action of the mounting plate, the guide plate and the wear-resistant plate are installed. The wear-resistant plate is installed on one side of the guide plate and is convenient for disassembly and assembly, facilitating the user to replace the wear-resistant plate. Then, under the action of the guide plate, the traction plate is installed. The traction of the aluminum alloy plate during conveyance can be realized through the traction plate. The traction plate protrudes slightly compared with the wear-resistant plate during work, which can reduce the wear of the wear-resistant plate during the conveyance of the aluminum alloy plate. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates.

[0016] Figure 2 It is a schematic side view structure diagram of an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates.

[0017] Figure 3 It is a schematic explosion structure diagram of the frame of an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates.

[0018] Figure 4 It is a schematic explosion structure diagram of the guide plate of an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates.

[0019] Figure 5 It is a schematic connection structure diagram of the first belt pulley and the second belt pulley of an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates.

[0020] Figure 6 It is for an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates Figure 2 The enlarged structure diagram at position A.

[0021] The reference numerals in the figure are: 1, frame; 2, traction roller; 3, mounting plate; 4, guide plate; 5, wear-resistant plate; 6, traction plate; 7, load-bearing plate; 8, support plate; 9, first cross plate; 10, second cross plate; 11, lead screw; 12, trapezoidal plate; 13, bushing; 14, bending plate; 15, first belt pulley; 16, second belt pulley. Specific embodiments

[0022] In order to further understand the features, technical means, specific purposes and functions achieved by the present invention, the present invention will be further described in detail below in conjunction with the drawings and specific embodiments.

[0023] Please refer to Figures 1 to 6 , an intelligent misaligned guide roller traction rolling mill for aluminum alloy plates, including a frame 1, a traction roller 2, a mounting plate 3, a guide plate 4, a wear-resistant plate 5 and a traction plate 6. The traction roller 2 is arranged above the frame 1. The mounting plates 3 are symmetrically arranged on both sides of the frame 1. The guide plate 4 is arranged above the traction roller 2. The wear-resistant plate 5 is arranged on one side of the guide plate 4. The wear-resistant plate 5 is connected to the guide plate 4 through auxiliary bolts. The traction plate 6 is arranged at one end of the guide plate 4.

[0024] The traction roller 2 is installed through the frame 1. Multiple traction rollers 2 cooperate with each other and can convey the aluminum alloy plates during operation. Some of the multiple traction rollers 2 can rotate, which can provide kinetic energy for the conveyance of the aluminum alloy plates and avoid the phenomenon of insufficient power during the conveyance of the aluminum alloy plates. Then, under the action of the mounting plate 3, the guide plate 4 and the wear-resistant plate 5 are installed. The wear-resistant plate 5 is installed on one side of the guide plate 4 and is convenient for disassembly and assembly, facilitating the user to replace the wear-resistant plate 5. Then, under the action of the guide plate 4, the traction plate 6 is installed. The traction of the aluminum alloy plates during conveyance can be realized through the traction plate 6. The traction plate 6 protrudes slightly compared with the wear-resistant plate 5 during operation, and the wear of the wear-resistant plate 5 can be reduced during the conveyance of the aluminum alloy plates.

[0025] As Figure 1 and Figure 2 shown, load-bearing plates 7 are arranged on both sides of the frame 1. A support plate 8 is arranged on the top of the load-bearing plate 7. A positioning groove matching the mounting plate 3 is formed in the top of the support plate 8. A locking bolt for positioning is arranged on one side of the support plate 8.

[0026] Under the action of the load-bearing plate 7, the support plate 8 is fixed. The positioning of the mounting plate 3 can be realized through the positioning groove at the top of the support plate 8. Then, the locking bolt is rotated. When the locking bolt is in contact with the mounting plate 3, the stable installation of the mounting plate 3 can be realized. On the contrary, the locking bolt is separated from the mounting plate 3 to facilitate the disassembly and assembly of the mounting plate 3.

[0027] As Figure 4 and Figure 6 shown, first cross plates 9 are symmetrically arranged on one side of the mounting plate 3. A second cross plate 10 is arranged on one side of the guide plate 4. A positioning chute is formed inside the second cross plate 10, and the positioning chute matches the first cross plate 9.

[0028] The mounting plate 3 is connected to the first cross plate 9, and the guide plate 4 is connected to the second cross plate 10. When the mounting plate 3 moves, the first cross plate 9 moves in the positioning chute inside the second cross plate 10, facilitating the adjustment of the horizontal position of the guide plate 4.

[0029] As Figure 4 shown, a lead screw 11 is threaded through the inside of the mounting plate 3. A hand wheel is arranged at the input end of the lead screw 11. The lead screw 11 is rotationally installed with the guide plate 4 through a working bearing.

[0030] Manually rotate the hand wheel, and the hand wheel drives the lead screw 11 to rotate. The lead screw 11 is threaded through the mounting plate 3. At the same time, the lead screw 11 is connected to the guide plate 4 under the action of the working bearing, and the horizontal movement of the guide plate 4 can be realized.

[0031] As Figure 4 shown, a trapezoidal groove is formed inside the guide plate 4. A trapezoidal plate 12 connected to the wear-resistant plate 5 is snap-fitted inside the trapezoidal groove.

[0032] The trapezoidal plate 12 is installed through the trapezoidal groove inside the guide plate 4, and the trapezoidal plate 12 is connected to the wear-resistant plate 5, which is convenient for the disassembly and assembly of the trapezoidal plate 12 and the wear-resistant plate 5, and further facilitates the replacement of the severely worn wear-resistant plate 5.

[0033] As Figure 6 shown, a plurality of traction rollers 2 are provided. Bushings 13 are sleeved at both ends of the plurality of traction rollers 2. A bending plate 14 for positioning is arranged above the bushing 13. The frame 1 is connected to the bending plate 14 through working bolts.

[0034] Place the traction rollers 2 at equal intervals. Then, install the bushings 13 at both ends of the traction rollers 2. Position the bushings 13 by cooperating with the bending plates 14 through the working bolts, and the positioning installation of the bushings 13 and the traction rollers 2 can be achieved.

[0035] As Figure 3 and Figure 5 shown, a first belt pulley 15 is provided at one end of the traction roller 2. A working motor is provided inside the frame 1. A second belt pulley 16 is provided at the output end of the working motor. The first belt pulley 15 and the second belt pulley 16 are connected by a belt.

[0036] Start the working motor. When the working motor operates, it drives the second belt pulley 16 to rotate. The second belt pulley 16 is connected to the first belt pulley 15 under the action of the belt. When the first belt pulley 15 operates, it drives the traction roller 2 to rotate, providing kinetic energy for facilitating the transportation of aluminum alloy plates.

[0037] The above embodiments only represent one or several implementation manners of the present utility model, and the description is relatively specific and detailed. However, it should not be construed as a limitation to the scope of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several deformations and improvements can still be made, and these all belong to the protection scope of the present utility model. Therefore, the protection scope of the present utility model should be subject to the appended claims.

Claims

1. An intelligent staggered guide roller traction rolling mill for aluminum alloy plates, characterized in that: The invention comprises a frame (1), a traction roller (2), a mounting plate (3), a guide plate (4), a wear-resistant plate (5) and a traction plate (6), wherein the traction roller (2) is arranged above the frame (1), the mounting plate (3) is symmetrically arranged on both sides of the frame (1), the guide plate (4) is arranged above the traction roller (2), the wear-resistant plate (5) is arranged on one side of the guide plate (4), the wear-resistant plate (5) and the guide plate (4) are connected by auxiliary bolts, and the traction plate (6) is arranged at one end of the guide plate (4).

2. The intelligent staggered guide roller traction rolling mill for aluminum alloy sheets according to claim 1, characterized in that: A load-bearing plate (7) is provided on both sides of the frame (1), a support plate (8) is provided on the top of the load-bearing plate (7), a positioning groove matching the mounting plate (3) is provided on the top of the support plate (8), and a locking bolt for positioning is provided on one side of the support plate (8).

3. The intelligent staggered guide roller traction rolling mill for aluminum alloy sheets according to claim 1, characterized in that: A first transverse plate (9) is symmetrically arranged on one side of the mounting plate (3), and a second transverse plate (10) is arranged on one side of the guide plate (4). A positioning groove is provided inside the second transverse plate (10), and the positioning groove matches the first transverse plate (9).

4. The intelligent staggered guide roller traction rolling mill for aluminum alloy sheets according to claim 1, characterized in that: A screw rod (11) passes through the internal thread of the mounting plate (3); a hand plate is provided at the input end of the screw rod (11); and the screw rod (11) is rotatably mounted on the guide plate (4) via a working bearing.

5. The intelligent staggered guide roller traction rolling mill for aluminum alloy plates according to claim 1, characterized in that: A trapezoidal groove is provided inside the guide plate (4), and a trapezoidal plate (12) connected to the wear-resistant plate (5) is mounted in the trapezoidal groove.

6. The intelligent staggered guide roller traction rolling mill for aluminum alloy plates according to claim 1, characterized in that: The number of the traction rollers (2) is multiple, and both ends of the multiple traction rollers (2) are sleeved with shaft sleeves (13), and a bending plate (14) for positioning is arranged above the shaft sleeves (13), and the frame (1) and the bending plate (14) are connected by working bolts.

7. The intelligent staggered guide roller traction rolling mill for aluminum alloy plates according to claim 1, characterized in that: A first belt reel (15) is arranged at one end of the traction roller (2), a working motor is arranged inside the frame (1), a second belt reel (16) is arranged at the output end of the working motor, and the first belt reel (15) and the second belt reel (16) are connected by a belt.

Citation Information

Patent Citations

  • Aluminum alloy sheet rolling traction mechanism

    CN221046943U