Laminated brooding cage frame galvanizing device
By designing a stacked brood cage cage frame galvanizing device with moving, lifting and mounting mechanisms, the problem of operation difficulty in the existing technology is solved, and a convenient brood cage galvanizing process is realized, reducing the difficulty and labor intensity of manual operation.
Patent Information
- Application Number
- CN202421635063.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-07-11
AI Technical Summary
In the prior art, the galvanizing device for raising broods in three-dimensional cages is difficult to operate, and manual discharge and withdrawal are inconvenient, which increases the labor intensity of the operator.
A layered brood cage cage cage frame galvanizing device including a moving mechanism, a lifting mechanism and a hanging mechanism is designed. The galvanizing mechanism is driven to move the hanging mechanism above the brood cage through the moving mechanism. The lifting mechanism lowers the hanging mechanism for material collection, and the brood cage is moved to the galvanizing pond for galvanizing. After the galvanizing is completed, it cools on the cooling mechanism, which simplifies the operation process.
It reduces the difficulty of manual operation, reduces the labor intensity of operators, and improves the convenience and efficiency of operation.
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Figure CN223087970U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of galvanizing equipment, in particular to a galvanizing device for a stacked brooding cage frame. Background Art
[0002] Cage rearing is a widely used brooding method in current intensive chicken production. The three-dimensional cage brooding not only has a large feeding density and saves factory buildings, but also because of the three-dimensional mode, the chicks do not directly contact the feces, which can well prevent the occurrence of coccidiosis, improve the survival rate of the chicks, and at the same time, the management is relatively convenient. Since the metal cage frame often needs to be washed with water, the anti-corrosion requirement is relatively high, and the anti-corrosion method of the metal cage frame mainly adopts the hot-dip galvanizing process. A special hanger for hot-dip galvanizing of chicken cages disclosed in the prior art publication number CN216378342U includes a base, a support column is arranged in the middle of the base, inverted L-shaped suspension frames are arranged on both sides of the support column, a suspension head is arranged at the lower end of the suspension frame, and hooks are symmetrically arranged at the lower end of the suspension head, and the hooks can move left and right at both ends of the suspension head. However, during the use process, manual feeding and material taking are carried out, resulting in a certain operation difficulty and inconvenience for the operator to use. Summary of the Utility Model
[0003] In order to solve the above technical problems, the utility model provides a galvanizing device for a stacked brooding cage frame, which can facilitate material taking and feeding and reduce the difficulty of manual operation.
[0004] A galvanizing device for a stacked brooding cage frame of the utility model includes a bottom plate, a galvanizing tank, a plurality of legs and a plurality of friction pads. A galvanizing tank is fixedly installed at the right part of the top end of the bottom plate, legs are respectively fixedly installed at the four corners of the bottom end of the bottom plate, and friction pads are fixedly installed at the bottom ends of the legs; it further includes a moving mechanism, a lifting mechanism, a hanging mechanism and a cooling mechanism. The moving mechanism is installed at the front and rear ends of the bottom plate, the lifting mechanism is installed at the output end of the moving mechanism, the hanging mechanism is installed on the lifting mechanism, and the cooling mechanism is installed at the top end of the bottom plate; the moving mechanism drives the hanging mechanism to move above the brooding cage, the lifting mechanism makes the hanging mechanism descend to take materials from the brooding cage, and then the moving mechanism drives the brooding cage to move into the galvanizing tank to galvanize the brooding cage. After galvanizing is completed, the brooding cage is placed on the cooling mechanism, which can facilitate material taking and feeding and reduce the difficulty of manual operation.
[0005] Preferably, the moving mechanism includes two moving beams, two threaded rods, two driving motors and two threaded blocks. The two moving beams are respectively fixedly installed at the front and rear ends of the bottom plate. A moving groove is formed inside the moving beam. The threaded rod is rotatably installed in the moving groove. The left end of the threaded rod passes through the moving groove and is connected to the output end of the driving motor. A connecting groove is formed on the outer side of the moving beam. The threaded block is screwed on the outer wall of the threaded rod, and the threaded block slides through the connecting groove. When in use, start the two driving motors. The driving motors drive the threaded rods to rotate. The rotation of the threaded rods drives the threaded blocks to move in the moving grooves, thereby driving the brooding cage to move above the bottom plate, reducing the labor intensity of the operator.
[0006] Preferably, the lifting mechanism includes two vertical rods, a top plate, two support frames, a winding roller, a transmission, a winding motor, a steel rope and a moving plate. The two vertical rods are slidably installed at the top ends of the moving beams and are fixedly connected to the top ends of the threaded blocks. The top ends of the vertical rods are fixedly connected to the top plate. A through groove is formed in the middle of the top plate. The two support frames are symmetrically installed at the front and rear ends of the top of the top plate. The winding roller is rotatably installed between the two support frames. The input end of the winding roller is connected to the output end of the transmission. The input end of the transmission is connected to the output end of the winding motor. The transmission and the winding motor are both installed at the top end of the top plate. The steel rope is wound around the winding roller. The bottom end of the steel rope passes through the through groove and is connected to the top end of the moving plate. Start the winding motor to drive the winding roller to rotate through the transmission, which can wind the steel rope and drive the moving plate to move up and down to take materials from the brooding cage.
[0007] Preferably, it further includes two guide rods, two limit sliders, two support rods and a guide ring sleeve. Guide grooves are formed on the vertical rods. The two guide rods are fixedly installed in the guide grooves. The two limit sliders are slidably installed on the outer walls of the guide rods, and the two limit sliders are respectively installed at the front and rear ends of the moving plate. The two support rods are respectively fixedly installed at the front and rear ends of the through groove at the bottom end of the top plate. A guide ring sleeve is installed between the two support rods. The steel rope passes through the guide ring sleeve. The guide ring sleeve can guide the steel rope when it is wound, so that the bottom end of the steel rope is located at the same position. At the same time, when the moving plate moves, it drives the limit sliders to slide on the outer walls of the guide rods, guiding and limiting the moving plate to prevent it from tilting and ensuring its stability during movement.
[0008] Preferably, the hanging mechanism includes two electric telescopic rods, two connecting plates, two second limit sliders, two mounting plates and two groups of hooks. The two electric telescopic rods are symmetrically installed at the front and rear of the top of the moving plate. Limit sliding grooves are provided at the front and rear ends of the moving plate. The second limit sliders are slidably installed in the limit sliding grooves. The telescopic ends of the electric telescopic rods are connected to the tops of the second limit sliders through the connecting plates. The bottoms of the second limit sliders are connected with mounting plates, and a plurality of hooks are movably installed at the bottoms of the mounting plates. After the moving plate moves above the brooding cage, start the two electric telescopic rods to contract, drive the second limit sliders to move in the limit sliding grooves through the connecting plates, so that the second limit sliders drive the hooks to approach through the mounting plates to fix the brooding cage. It can be applicable to brooding cages of different specifications. The movably installed hooks can rotate, which is convenient for hanging and taking the brooding cage.
[0009] Preferably, the cooling mechanism includes a plurality of support rods, a cooling pool and a plurality of diversion pipes. The plurality of support rods are uniformly and fixedly installed at the right part of the top of the bottom plate. The top of the support rod is fixedly installed with a cooling pool. A plurality of diversion pipes are connected between the left side wall of the cooling pool and the right side wall of the galvanizing pool. After the brooding cage is galvanized, it is moved above the cooling pool for cooling. The excess zinc liquid enters the inside of the galvanizing pool through the diversion pipes.
[0010] Preferably, it further includes a diversion plate and a filter cover. The diversion plate is fixedly installed at the inner top of the cooling pool, and the filter cover is installed at the input end of the diversion pipe. The zinc liquid is guided by the diversion plate, which is convenient for the zinc liquid to flow to the input end of the diversion pipe. The filter cover can filter the impurities in the zinc liquid, and only needs to be cleaned regularly.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows: The moving mechanism drives the hanging mechanism to move above the brooding cage, and the lifting mechanism makes the hanging mechanism descend to take the brooding cage. Then, the moving mechanism drives the brooding cage to move into the galvanizing pool to galvanize the brooding cage. After galvanizing, the brooding cage is placed on the cooling mechanism, which can facilitate material taking and discharging and reduce the difficulty of manual operation. Description of the Drawings
[0012] Figure 1 is the structural schematic diagram of the present utility model;
[0013] Figure 2 is the front view structural schematic diagram of the present utility model;
[0014] Figure 3 is the left view structural schematic diagram of the present utility model;
[0015] Figure 4 is the front view sectional structural schematic diagram of the present utility model;
[0016] Figure 5 is the left view sectional structural schematic diagram of the present utility model;
[0017] Reference numerals in the drawings: 1, bottom plate; 2, galvanizing tank; 3, support leg; 4, friction pad; 5, moving beam; 6, threaded rod; 7, drive motor; 8, threaded block; 9, vertical rod; 10, top plate; 11, support frame; 12, winding roller; 13, transmission; 14, winding motor; 15, steel rope; 16, moving plate; 17, guide rod; 18, limiting slider; 19, support rod; 20, guide ring sleeve; 21, electric telescopic rod; 22, connecting plate; 23, second limiting slider; 24, mounting plate; 25, hook; 26, support bar; 27, cooling tank; 28, diversion pipe; 29, diversion plate; 30, filter cover. Detailed implementation mode
[0018] To facilitate the understanding of the present invention, the present invention will be described more comprehensively below with reference to the relevant drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. On the contrary, the purpose of providing these embodiments is to make the disclosure of the present invention more thorough and comprehensive.
[0019] As Figure 1 、 Figure 2 、 Figure 4 and Figure 5 shown, a galvanizing tank 2 is fixedly installed at the right part of the top end of the bottom plate 1, support legs 3 are respectively fixedly installed at the four corners of the bottom end of the bottom plate 1, a friction pad 4 is fixedly installed at the bottom end of the support leg 3, two moving beams 5 are respectively fixedly installed at the front and rear ends of the bottom plate 1, a moving groove is formed inside the moving beam 5, a threaded rod 6 is rotatably installed in the moving groove, the left end of the threaded rod 6 passes through the moving groove and is connected to the output end of the drive motor 7, a connecting groove is formed on the outer side of the moving beam 5, a threaded block 8 is screwed on the outer wall of the threaded rod 6, the threaded block 8 slides through the connecting groove, two vertical rods 9 are slidably installed at the top end of the moving beam 5 and are fixedly connected to the top end of the threaded block 8, the top end of the vertical rod 9 is fixedly connected to a top plate 10, a through groove is formed in the middle of the top plate 10, two support frames 11 are symmetrically installed at the front and rear ends of the top of the top plate 10, a winding roller 12 is rotatably installed between the two support frames 11, the input end of the winding roller 12 is connected to the output end of a transmission 13, the input end of the transmission 13 is connected to the output end of a winding motor 14, both the transmission 13 and the winding motor 14 are installed at the top end of the top plate 10, a steel rope 15 is wound around the winding roller 12, the bottom end of the steel rope 15 passes through the through groove and is connected to the top end of a moving plate 16, two electric telescopic rods 21 are symmetrically installed at the front and rear of the top end of the moving plate 16, limiting sliding grooves are formed at the front and rear ends of the moving plate 16, a second limiting slider 23 is slidably installed in the limiting sliding groove, the telescopic end of the electric telescopic rod 21 is connected to the top end of the second limiting slider 23 through a connecting plate 22, the bottom end of the second limiting slider 23 is connected to a mounting plate 24, and a plurality of hooks 25 are movably installed at the bottom end of the mounting plate 24;
[0020] When in use, start two driving motors 7. The driving motors 7 drive the threaded rods 6 to rotate. The rotation of the threaded rods 6 drives the threaded blocks 8 to move in the moving grooves, thereby driving the breeding cages to move above the bottom plate 1, reducing the labor intensity of the operators. Start the winding motor 14 to drive the winding roller 12 to rotate through the transmission 13, which can wind the steel rope 15 and drive the moving plate 16 to move up and down to take materials from the breeding cages. After the moving plate 16 moves above the breeding cages, start two electric telescopic rods 21 to contract. The second limiting slider 23 is driven to move in the limiting chute through the connecting plate 22, so that the second limiting slider 23 drives the hook 25 to approach through the mounting plate 24 to fix the breeding cages. It can be applicable to breeding cages of different specifications. The movably installed hook 25 can rotate, which is convenient for hanging, taking and placing the breeding cages.
[0021] As Figures 3 to 5 As shown, a guiding groove is formed in the vertical rod 9. Two guiding rods 17 are fixedly installed in the guiding groove. Two limiting sliders 18 are slidably installed on the outer walls of the guiding rods 17, and the two limiting sliders 18 are respectively installed at the front and rear ends of the moving plate 16. Two support rods 19 are respectively fixedly installed at the front and rear ends of the through groove at the bottom end of the top plate 10. A guiding ring sleeve 20 is installed between the two support rods 19. The steel rope 15 passes through the guiding ring sleeve 20. A plurality of support rods 26 are evenly and fixedly installed on the right part of the top end of the bottom plate 1. A cooling pool 27 is fixedly installed at the top ends of the support rods 26. A plurality of diversion pipes 28 are connected between the left side wall of the cooling pool 27 and the right side wall of the galvanizing pool 2. A diversion plate 29 is fixedly installed at the inner top end of the cooling pool 27. A filter cover 30 is installed at the input end of the diversion pipe 28;
[0022] The guiding ring sleeve 20 can guide the steel rope 15 when it is wound, so that the bottom ends of the steel rope 15 are located at the same position. At the same time, when the moving plate 16 moves, it drives the limiting slider 18 to slide on the outer wall of the guiding rod 17 to guide and limit the moving plate 16 to prevent it from tilting and ensure the stability during movement. After the breeding cages are galvanized, they are moved above the cooling pool 27 for cooling. The redundant zinc liquid enters the inside of the galvanizing pool 2 through the diversion pipe 28. The diversion plate 29 guides the zinc liquid to facilitate the flow of the zinc liquid to the input end of the diversion pipe 28. The filter cover 30 can filter the impurities in the zinc liquid, and it can be cleaned regularly.
[0023] As Figures 1 to 5As shown in the figure, when a galvanizing device for a stacked brooding cage frame of the present utility model is working, two driving motors 7 are started. The driving motors 7 drive the threaded rods 6 to rotate. The rotation of the threaded rods 6 drives the threaded blocks 8 to move in the moving grooves. The winding motor 14 is started to drive the winding roller 12 to rotate through the transmission 13, so as to wind the steel rope 15 and drive the moving plate 16 to move up and down. After the moving plate 16 moves above the brooding cage, two electric telescopic rods 21 are started to contract, and the second limit slider 23 is driven to move in the limit sliding groove through the connecting plate 22, so that the second limit slider 23 drives the hook 25 to approach through the mounting plate 24 to fix the brooding cage. The movably installed hook 25 can rotate, which is convenient for hanging and taking the brooding cage. After the brooding cage is galvanized, it is moved above the cooling pool 27 for cooling. The excess zinc liquid enters the galvanizing pool 2 through the diversion pipe 28. The zinc liquid is guided by the diversion plate 29 to facilitate the flow of the zinc liquid to the input end of the diversion pipe 28. The filter cover 30 can filter the impurities in the zinc liquid, and it can be cleaned regularly.
[0024] The driving motor 7, the transmission 13 and the winding motor 14 of the galvanizing device for the stacked brooding cage frame of the present utility model are purchased on the market. Those skilled in the art only need to install and operate according to the attached operation manual, without the need for creative labor of those skilled in the art.
[0025] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.
Claims
1. A galvanizing device for a stacked brooding cage frame, comprising a bottom plate (1), a galvanizing tank (2), a plurality of legs (3) and a plurality of friction pads (4). The right part of the top end of the bottom plate (1) is fixedly installed with the galvanizing tank (2). The four corners of the bottom end of the bottom plate (1) are respectively fixedly installed with legs (3), and the bottom ends of the legs (3) are fixedly installed with friction pads (4); It is characterized in that, It also includes a moving mechanism, a lifting mechanism, a hanging mechanism, and a cooling mechanism. The moving mechanism is installed at the front and rear ends of the bottom plate (1), the lifting mechanism is installed at the output end of the moving mechanism, the hanging mechanism is installed on the lifting mechanism, and the cooling mechanism is installed at the top end of the bottom plate (1).
2. The galvanizing device for the stacked brooding cage frame according to claim 1, characterized in that, The moving mechanism includes two moving beams (5), two threaded rods (6), two driving motors (7), and two threaded blocks (8). The two moving beams (5) are respectively fixedly installed at the front and rear ends of the bottom plate (1). A moving groove is formed inside the moving beam (5). The threaded rod (6) is rotatably installed in the moving groove. The left end of the threaded rod (6) passes through the moving groove and is connected to the output end of the driving motor (7). A connecting groove is formed on the outer side of the moving beam (5). The threaded block (8) is screwed on the outer wall of the threaded rod (6), and the threaded block (8) slides through the connecting groove.
3. The galvanizing device for the stacked brooding cage frame according to claim 2, characterized in that, The lifting mechanism includes two vertical rods (9), a top plate (10), two support frames (11), a winding roller (12), a transmission (13), a winding motor (14), a steel cable (15), and a moving plate (16). The two vertical rods (9) are slidably installed at the top end of the moving beam (5) and are fixedly connected to the top end of the threaded block (8). The top end of the vertical rod (9) is fixedly connected to the top plate (10). A through groove is formed in the middle of the top plate (10). The two support frames (11) are symmetrically installed at the front and rear ends of the top of the top plate (10). The winding roller (12) is rotatably installed between the two support frames (11). The input end of the winding roller (12) is connected to the output end of the transmission (13). The input end of the transmission (13) is connected to the output end of the winding motor (14). The transmission (13) and the winding motor (14) are both installed at the top end of the top plate (10). The steel cable (15) is wound around the winding roller (12), and the bottom end of the steel cable (15) passes through the through groove and is connected to the top end of the moving plate (16).
4. The galvanizing device for the cage frame of the stacked brooding cage according to claim 3, characterized in that, It also includes two guide rods (17), two limit sliders (18), two support rods (19), and a guide ring sleeve (20). A guide groove is formed on the vertical rod (9). The two guide rods (17) are fixedly installed in the guide groove. The two limit sliders (18) are slidably installed on the outer wall of the guide rod (17), and the two limit sliders (18) are respectively installed at the front and rear ends of the moving plate (16). The two support rods (19) are respectively fixedly installed at the front and rear ends of the through groove at the bottom end of the top plate (10). A guide ring sleeve (20) is installed between the two support rods (19), and the steel cable (15) passes through the guide ring sleeve (20).
5. The galvanizing device for the laminated brooding cage frame according to claim 3, characterized in that, The hanging mechanism includes two electric telescopic rods (21), two connecting plates (22), two second limit sliders (23), two mounting plates (24) and two groups of hooks (25). The two electric telescopic rods (21) are symmetrically installed at the front and back of the top end of the moving plate (16). Limit sliding grooves are provided at the front and back ends of the moving plate (16). The second limit sliders (23) are slidably installed in the limit sliding grooves. The telescopic ends of the electric telescopic rods (21) are connected to the top ends of the second limit sliders (23) through the connecting plates (22). The bottom ends of the second limit sliders (23) are connected with the mounting plates (24). A plurality of hooks (25) are movably installed at the bottom ends of the mounting plates (24).
6. The galvanizing device for the stacked brooding cage frame according to claim 1, characterized in that, The cooling mechanism includes a plurality of support rods (26), a cooling pool (27) and a plurality of diversion pipes (28). The plurality of support rods (26) are uniformly and fixedly installed at the right part of the top end of the bottom plate (1). The top ends of the support rods (26) are fixedly installed with the cooling pool (27). A plurality of diversion pipes (28) are connected between the left side wall of the cooling pool (27) and the right side wall of the galvanizing pool (2).
7. The galvanizing device for the cage frame of the stacked brooding cage according to claim 6, characterized in that, It further includes a diversion plate (29) and a filter cover (30). The diversion plate (29) is fixedly installed at the inner top end of the cooling pool (27). The filter cover (30) is installed at the input end of the diversion pipe (28).
Citation Information
Patent Citations
Hanging tool special for coop hot galvanizing
CN216378342U