Aluminum-titanium-boron wire grain refiner material coil transfer equipment
By introducing a winding frame and wire rope system into the transfer equipment for aluminum-titanium-boron wire grain refiner coils, the problems of inconvenient limiting and laborious unloading in existing equipment have been solved, achieving stable limiting of the coils and labor-saving unloading, thus improving transfer efficiency.
Patent Information
- Application Number
- CN202423037887.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-09
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-09
AI Technical Summary
The existing aluminum-titanium-boron wire grain refiner material roll transfer equipment suffers from problems such as inconvenient limit positioning and laborious unloading due to its long frame.
A transfer device for aluminum-titanium-boron wire grain refiner rolls was designed. By setting a winding frame and a wire rope system on a fixed plate, the rolls are stably limited and unloaded with ease. The operation of the limit plate is simplified by using a handwheel and a spring, reducing manual movement. The push rod pushes the unloading mechanism.
It achieves stable positioning and labor-saving unloading of material rolls during the transfer process, reduces the operational difficulty for staff, and improves transfer efficiency.
Smart Images

Figure CN223496130U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of transfer equipment technology, specifically to a transfer equipment for aluminum-titanium-boron wire grain refiner rolls. Background Technology
[0002] When aluminum molten metal is smelted at a prolonged high-temperature overheating state, the lack of active crystallization nuclei during the crystallization process leads to coarse grain defects, which in turn affect the final microstructure and properties of the material. Online addition of aluminum-titanium-boron wire grain refiners is currently the most effective method for grain refinement. However, due to the heavy weight of aluminum-titanium-boron wire, it cannot be handled manually; therefore, auxiliary equipment for transferring aluminum-titanium-boron wire grain refiner coils is required.
[0003] Chinese patent CN218558852U discloses a trolley for transporting aluminum-titanium-boron wire grain refiner rolls, including a frame, a handle at the rear of the frame, a triangular bracket at the front of the frame, and the frame being fixedly connected to the middle of the lower crossbeam of the triangular bracket.
[0004] Although the aforementioned patent uses a pull plate to limit the material roll during use, ensuring that the roll will not fall off during transportation, the long frame requires workers to walk over it to use the pull plate, causing inconvenience in limiting the roll. In addition, because the forks are equipped with anti-slip materials, when unloading the roll from the forks, the handle needs to be held to raise the frame to a certain height before the roll can slide off the forks, making unloading the roll more laborious. Therefore, there is an urgent need for a new type of aluminum-titanium-boron wire grain refiner roll transportation equipment to solve these problems. Utility Model Content
[0005] (a) Technical problems to be solved
[0006] The technical problem to be solved by this utility model is to provide a material roll transfer device for aluminum-titanium-boron wire grain refiner that can better control the flipping of the mounting plate and makes unloading easier, in light of the current state of the technology.
[0007] (II) Technical Solution
[0008] This utility model is achieved through the following technical solution: This utility model proposes a material roll transfer device for aluminum-titanium-boron wire grain refiner, including a connecting frame. A material fork is installed at one end of the connecting frame. Support plates are symmetrically arranged on one side of the top of the material fork. A horizontal plate is fixed between the two support plates. A connecting plate is installed in the center of one side wall of the horizontal plate. A through hole is opened above the connecting plate. A spring is fixed on the side wall of the connecting plate around the through hole. A connecting rod is arranged between the two support plates above the horizontal plate. A connecting sleeve is installed on the connecting rod. An installation plate is fixed on one side wall of the connecting sleeve. A fixing block is provided at the top of the installation plate. A limit plate is fixed at the end of the installation plate. A handle is provided at the other end of the connecting frame. A fixing plate is fixed in the center of the top of the handle. A winding frame is installed on one side of the top of the fixing plate. A handwheel is connected to one side wall of the winding frame. A steel wire rope is arranged through the through hole between the winding frame and the fixing block. A push rod is connected to the other side of the top of the fixing plate. A push plate is installed at the end of the push rod.
[0009] Furthermore, a wheel is installed below the connecting frame, adjacent to the side of the fork, and reinforcing rods are fixed between the connecting frame and the cross plate on both sides.
[0010] By adopting the above technical solution, the wheels can more securely fix the connecting frame, and the wheels can make it easier to move the connecting frame, making it convenient for workers to transfer the material rolls.
[0011] Furthermore, the connecting frame is bolted to the fork, the fork and the cross plate are both welded to the support plate, the cross plate is bolted to the connecting plate, and the connecting plate has an L-shaped structure.
[0012] By adopting the above technical solution, the connecting frame can more securely fix the fork, the fork can better insert and pick up the coil, the fork can more securely fix the support plate, and the cross plate enhances the stability between the two support plates.
[0013] Furthermore, an axle is provided between the two wheels, the connecting frame is welded to the axle and wheel, and both the connecting frame and the cross plate are welded to the reinforcing rod.
[0014] By adopting the above technical solution, the connecting frame and the cross plate can more firmly fix the reinforcing rod, and the reinforcing rod can increase the connection strength between the connecting frame and the fork.
[0015] Furthermore, the perforation is formed on the connecting plate, the connecting plate is connected to the spring bolt, the support plate is welded to the connecting rod, and the connecting rod is rotatably connected to the connecting sleeve.
[0016] By adopting the above technical solution, the perforation makes it easier for the wire rope to pass through the connecting plate, the connecting plate can more firmly fix the spring, and the spring can spring the mounting plate back to its original position when the wire rope loosens.
[0017] Furthermore, the connecting sleeve is bolted to the mounting plate, the fixing block and the limiting plate are both welded to the mounting plate, the connecting frame is welded to the handlebars, and the handlebars are bolted to the fixing plate.
[0018] By adopting the above technical solution, the connecting sleeve can make it easier for the mounting plate to flip on the connecting rod, the mounting plate can more firmly fix the limiting plate, and the limiting plate can better limit the material coil on the fork, preventing the material coil from slipping off the fork during the transfer process.
[0019] Furthermore, the fixing plate is bolted to the winding frame, the winding frame is rotatably connected to the handwheel, the winding frame and the fixing block are both tied to the wire rope, and the push rod is hinged to the push plate.
[0020] By adopting the above technical solution, the fixing plate can more firmly fix the winding frame, the handwheel can make it easier for the wire rope to be wound and unwound on the winding frame, and the push rod can make it easier for the operator to push the push plate. When unloading the material coil, the push plate can push the material coil on the fork to the unloading point, making it easier and more convenient for the operator to unload the material coil.
[0021] (III) Beneficial Effects
[0022] Compared with the prior art, this utility model has the following advantages:
[0023] To address the problems of existing aluminum-titanium-boron wire grain refiner coil transfer equipment, such as the long frame requiring operators to walk across it to use the pull plate, thus hindering coil positioning, and the need to lift the frame by gripping the handle to allow the coil to slide off the forks due to anti-slip devices, making unloading more laborious, this invention proposes a winding rack on a fixed plate. When the transfer equipment inserts the coil onto the forks, the handwheel is turned to... For wire rope winding, the mounting plate can be rotated and lifted by the fixing block to prevent the limit plate from affecting the forks' insertion of the wire rope coil. When the mounting plate needs to be lowered, the handwheel can be turned to release the wire rope. The mounting plate can be lowered by the spring force. The limit plate can be controlled to limit the wire rope coil without the operator having to move. By setting a push rod on the fixing plate, when the wire rope coil is moved to the designated location and needs to be unloaded, the operator can hold the push rod and push it to push the wire rope coil off the forks through the push plate, making it easier for the operator to unload the wire rope coil. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the structure of the aluminum-titanium-boron wire grain refiner material roll transfer device described in this utility model;
[0025] Figure 2 This invention relates to a transfer device for an aluminum-titanium-boron wire grain refiner material roll. Figure 1 Enlarged view of point A in the middle.
[0026] The annotations in the attached figures are explained as follows:
[0027] 1. Connecting frame; 2. Fork; 3. Support plate; 4. Cross plate; 5. Connecting plate; 6. Perforation; 7. Spring; 8. Connecting rod; 9. Connecting sleeve; 10. Mounting plate; 11. Fixing block; 12. Limiting plate; 13. Handlebar; 14. Fixing plate; 15. Rewinding frame; 16. Handwheel; 17. Wire rope; 18. Push rod; 19. Push plate; 20. Wheel; 21. Reinforcing rod. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0029] like Figures 1-2As shown, this embodiment of an aluminum-titanium-boron wire grain refiner material roll transfer device includes a connecting frame 1. A fork 2 is installed at one end of the connecting frame 1. Support plates 3 are symmetrically arranged on one side of the top of the fork 2. A horizontal plate 4 is fixed between the two support plates 3. The connecting frame 1 can more stably fix the fork 2, the fork 2 can better insert and pick up the material roll, and the fork 2 can more stably fix the support plates 3. The horizontal plate 4 improves the stability between the two support plates 3. A connecting plate 5 is installed in the center of one side wall of the horizontal plate 4. A through hole 6 is opened above the connecting plate 5. A spring 7 is fixed on one side wall of the connecting plate 5 around the through hole 6. The through hole 6 makes it easier for the steel wire rope 17 to pass through the connecting plate 5. The connecting plate 5 can more stably fix the spring 7. The spring 7 can spring the mounting plate 10 back to its original position when the steel wire rope 17 loosens. A connecting rod 8 is arranged between the two support plates 3 above the horizontal plate 4. A connecting rod 8 is installed on the connecting rod 8. A connecting sleeve 9 has a mounting plate 10 fixed on one side wall. A fixing block 11 is provided at the top of the mounting plate 10, and a limit plate 12 is fixed at the end of the mounting plate 10. A handle 13 is provided at the other end of the connecting frame 1. A fixing plate 14 is fixed in the center at the top of the handle 13. A winding frame 15 is installed on one side of the top of the fixing plate 14. A handwheel 16 is connected to one side wall of the winding frame 15. A wire rope 17 is provided through a through hole 6 between the winding frame 15 and the fixing block 11. A push rod 18 is connected to the other side of the top of the fixing plate 14. A push plate 19 is installed at the end of the push rod 18. The fixing plate 14 can more firmly fix the winding frame 15. The handwheel 16 can make it easier to wind and unwind the wire rope 17 on the winding frame 15. The push rod 18 can make it easier for the operator to push the push plate 19. When unloading the material roll, the push plate 19 can push the material roll on the fork 2 to the unloading point, making it easier and more convenient for the operator to unload the material roll.
[0030] like Figures 1-2As shown, in this embodiment, a wheel 20 is installed below the connecting frame 1, close to the side of the fork 2. Reinforcing rods 21 are fixed between the connecting frame 1 and the cross plate 4 on both sides. The wheel 20 can more securely fix the connecting frame 1 and facilitate the movement of the connecting frame 1, making it easier for workers to transfer the material coil. The connecting frame 1 is bolted to the fork 2. The fork 2 and the cross plate 4 are both welded to the support plate 3. The cross plate 4 is bolted to the connecting plate 5. The connecting plate 5 has an L-shaped structure. An axle is provided between the two wheels 20. The connecting frame 1 is welded to the axle and wheel 20. The connecting frame 1 and the cross plate 4 are both welded to the reinforcing rod 21. The connecting frame 1 and the cross plate 4 can more securely fix the reinforcing rod 21. The reinforcing rod 21 can increase the connection strength between the connecting frame 1 and the fork 2. A perforation 6 is formed in the connecting frame. Connecting plate 5 is bolted to spring 7. Support plate 3 is welded to connecting rod 8. Connecting rod 8 is rotatably connected to connecting sleeve 9. Connecting sleeve 9 is bolted to mounting plate 10. Fixing block 11 and limiting plate 12 are both welded to mounting plate 10. Connecting frame 1 is welded to handlebar 13. Handlebar 13 is bolted to fixing plate 14. Connecting sleeve 9 makes it easier for mounting plate 10 to flip on connecting rod 8. Mounting plate 10 can more firmly fix limiting plate 12. Limiting plate 12 can better limit the material coil on fork 2 and prevent the material coil from slipping off fork 2 during transfer. Fixing plate 14 is bolted to winding frame 15. Winding frame 15 is rotatably connected to handwheel 16. Winding frame 15 and fixing block 11 are both tied to wire rope 17. Push rod 18 is hinged to push plate 19.
[0031] The specific implementation process of this embodiment is as follows: In use, the transfer equipment is first moved to the material roll to be transferred by the handlebar 13. By setting a winding frame 15 on the fixed plate 14, when the material roll is inserted into the fork 2 by the transfer equipment, the handwheel 16 is turned to wind up the wire rope 17. The winding of the wire rope 17 can be lifted by rotating the mounting plate 10 through the fixed block 11 to avoid the limit plate 12 affecting the insertion of the material roll by the fork 2. When the mounting plate 10 needs to be lowered, the handwheel 16 is turned again to release the wire rope 17. The mounting plate 10 can be lowered by the elastic force of the spring 7. The limit plate 12 can be controlled to limit the material roll without the operator having to walk. By setting a push rod 18 on the fixed plate 14, when the material roll is moved to the designated location and needs to be unloaded, the operator holds the push rod 18 and pushes it to push the material roll off the fork 2 through the push plate 19, making it easier for the operator to unload the material roll.
[0032] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A transfer device for an aluminum-titanium-boron wire grain refiner material roll, characterized in that: The device includes a connecting frame (1), one end of which is fitted with a fork (2). Symmetrical support plates (3) are arranged on one side of the top of the fork (2). A horizontal plate (4) is fixed between the two support plates (3). A connecting plate (5) is centrally mounted on one side wall of the horizontal plate (4). A through hole (6) is provided above the connecting plate (5). A spring (7) is fixed to one side wall of the connecting plate (5) around the through hole (6). A connecting rod (8) is arranged between the two support plates (3) above the horizontal plate (4). A connecting sleeve (9) is mounted on the connecting rod (8). An mounting plate (10) is fixed to one side wall of the connecting sleeve (9). The mounting plate (10) has a fixing block (11) at its top end, and a limit plate (12) is fixed at the end of the mounting plate (10). The connecting frame (1) has a handlebar (13) at the other end, and a fixing plate (14) is fixed at the center of the top of the handlebar (13). A winding frame (15) is installed on one side of the top of the fixing plate (14), and a handwheel (16) is connected to one side wall of the winding frame (15). A wire rope (17) is installed through the through hole (6) between the winding frame (15) and the fixing block (11). A push rod (18) is connected to the other side of the top of the fixing plate (14), and a push plate (19) is installed at the end of the push rod (18).
2. The aluminum-titanium-boron wire grain refiner material roll transfer device according to claim 1, characterized in that: A wheel (20) is installed on the side of the connecting frame (1) close to the fork (2), and reinforcing rods (21) are fixed between the two sides of the connecting frame (1) and the cross plate (4).
3. The aluminum-titanium-boron wire grain refiner material roll transfer device according to claim 1, characterized in that: The connecting frame (1) is bolted to the fork (2), the fork (2) and the cross plate (4) are both welded to the support plate (3), the cross plate (4) is bolted to the connecting plate (5), and the connecting plate (5) has an L-shaped structure.
4. The aluminum-titanium-boron wire grain refiner material roll transfer device according to claim 2, characterized in that: An axle is provided between the two wheels (20), the connecting frame (1) is welded to the axle and wheel (20), and the connecting frame (1) and the cross plate (4) are both welded to the reinforcing rod (21).
5. The aluminum-titanium-boron wire grain refiner material roll transfer device according to claim 1, characterized in that: The perforation (6) is formed on the connecting plate (5), the connecting plate (5) is bolted to the spring (7), the support plate (3) is welded to the connecting rod (8), and the connecting rod (8) is rotatably connected to the connecting sleeve (9).
6. The aluminum-titanium-boron wire grain refiner material roll transfer device according to claim 1, characterized in that: The connecting sleeve (9) is bolted to the mounting plate (10), the fixing block (11) and the limiting plate (12) are both welded to the mounting plate (10), the connecting frame (1) is welded to the handlebar (13), and the handlebar (13) is bolted to the fixing plate (14).
7. The aluminum-titanium-boron wire grain refiner material roll transfer device according to claim 1, characterized in that: The fixing plate (14) is bolted to the winding frame (15), the winding frame (15) is rotatably connected to the handwheel (16), the winding frame (15) and the fixing block (11) are both tied to the wire rope (17), and the push rod (18) is hinged to the push plate (19).
Citation Information
Patent Citations
Transfer trolley for aluminum-titanium-boron wire grain refiner material coil
CN218558852U