Metal surface galvanizing processing device
By driving the vibration wheel to drive the nozzle connection table to vibrate, the problem of uneven spraying of existing devices is solved, and a wider and even galvanizing spraying effect is achieved, and the cost is reduced and maintenance convenience is improved.
Patent Information
- Application Number
- CN202421803404.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The spraying position of the existing metal surface galvanizing processing device is fixed, resulting in uneven spraying effect and affecting processing efficiency.
The vibration drive motor drives the vibration wheel to rotate, so that the vibration slider slides inside the vibration slide chute, and drives the nozzle connection table to vibrate left and right, achieving uniform spraying of the galvanized spray port, and the opening and closing of each spray port can be controlled separately.
The galvanized spraying range is achieved with a wider and more uniform, reducing processing costs, and improving the spraying effect and the maintenance convenience of the device.
Smart Images

Figure CN223144963U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of galvanizing processing, in particular to a metal surface galvanizing processing device. Background Art
[0002] The existing patent (publication number: CN220294977U) proposes a metal surface galvanizing processing device, including a bottom plate. The middle of the upper surface of the bottom plate is fixedly connected with a waste liquid tank. Through a liquid storage component, a reciprocating component and a clamping component, when in use, a delivery pump is started to spray the coating liquid inside the liquid storage tank through a spraying head. During the spraying process, the A motor drives the A transmission rod to rotate, then the A transmission rod drives the reciprocating screw rod to rotate, and then the reciprocating screw rod drives the plate to move. However, for this device, "the delivery pump is started, then the water inlet pipe pumps out the coating liquid inside the liquid storage tank, and then the coating liquid is sent to the inside of the spraying plate through the water outlet pipe and then sprayed out through the spraying head", the position of the spraying head is completely fixed, making the spraying position relatively concentrated and affecting the spraying effect. Summary of the Invention
[0003] Aiming at the above deficiencies of the existing technology, the utility model provides a metal surface galvanizing processing device. A vibration driving motor drives a vibration wheel to rotate, so that a vibration slider slides inside a vibration chute, thereby driving a nozzle connecting table to vibrate left and right. When the galvanizing spraying port performs spraying operations, it continuously vibrates left and right, making the spraying range of the galvanizing spraying port wider and more uniform, and the spraying effect better.
[0004] The purpose of the utility model is realized through the following technical solutions:
[0005] A metal surface galvanizing processing device includes a main support table, a clamping driving motor, a screw rod connecting table, a metal placing plate, positioning claws, a galvanizing bearing table, a displacement driving motor, a nozzle connecting table, a clamping driving screw rod, a vibration driving motor, a displacement driving gear, and a vibration wheel. The bottom of the main support table has a bottom support plate, and the middle of the main support table has a placing plate bearing rod and auxiliary positioning rods. The placing plate bearing rod is in the middle position, and the auxiliary positioning rods are distributed on both sides of the placing plate bearing rod. The middle of the screw rod connecting table has a clamping screw rod connecting groove and auxiliary positioning grooves. The clamping screw rod connecting groove is in the middle position, and the auxiliary positioning grooves are distributed on both sides of the clamping screw rod connecting groove. The auxiliary positioning grooves are adapted to the auxiliary positioning rods, the auxiliary positioning grooves are connected to the auxiliary positioning rods, and the auxiliary positioning grooves slide on the outside of the auxiliary positioning rods. The top of the screw rod connecting table has a bearing rod connecting groove, the bearing rod connecting groove is adapted to the placing plate bearing rod, the bearing rod connecting groove is connected to the placing plate bearing rod, and the bearing rod connecting groove slides on the outside of the placing plate bearing rod.
[0006] Both sides of the main support platform are provided with clamping motor mounting platforms. The clamping drive motor is inserted and fixed inside the clamping motor mounting platform. The middle of the main support platform is rotatably connected to the clamping drive screw. The transmission shaft of the clamping drive motor is fixedly connected to the clamping drive screw. The clamping drive screw is threadedly connected to the clamping screw connection groove. The metal placement plate is placed on the upper part of the placement plate bearing rod. Both sides of the screw connection platform are provided with claw connection columns. Both sides of the positioning claw are provided with claw connection grooves. The claw connection grooves are adapted to the claw connection columns. The claw connection grooves are connected to the claw connection columns. The claw connection grooves are sleeved outside the claw connection columns. The positioning claw and the claw connection column are connected by screws. The top of the main support platform is provided with a spraying mechanism bearing platform. One side of the spraying mechanism bearing platform is provided with a side drive rack. The galvanizing platform connection grooves are formed between adjacent side drive racks. The galvanizing platform connection grooves are adapted to the galvanizing bearing platform.
[0007] The galvanizing platform connection groove is connected to the galvanizing bearing platform. The galvanizing bearing platform slides inside the galvanizing platform connection groove. The top of the galvanizing bearing platform is provided with an upper positioning platform. The upper positioning platform presses on the upper part of the spraying mechanism bearing platform. The top of the upper positioning platform is provided with a displacement motor platform. The displacement drive motor is inserted and fixed inside the displacement motor platform. The transmission shaft of the displacement drive motor is fixedly connected to the displacement drive gear. The displacement drive gear meshes with the side drive rack. The bottom of the galvanizing bearing platform is provided with a nozzle platform connection slide. The top of the nozzle connection platform is provided with a nozzle platform connection chute. The nozzle platform connection chute is adapted to the nozzle platform connection slide. Beneficial effects
[0008] 1. When the present utility model performs galvanizing processing operations on the metal surface, the vibration drive motor drives the vibration wheel to rotate, causing the vibration slider to slide inside the vibration chute, thereby driving the nozzle connection platform to vibrate left and right. When the galvanizing spray port performs spraying operations, it continuously vibrates left and right, making the spraying range of the galvanizing spray port wider and more uniform, and the spraying effect better.
[0009] 2. One spraying port switch knob is provided on one side of each galvanizing spray port of the present utility model, so that each galvanizing spray port can be individually opened and closed, enabling this device to close the galvanizing spray ports beyond the processing range according to the size and shape of the metal to be processed, saving materials and reducing processing costs.
[0010] 3. The metal placement plate of the present utility model is placed on the upper part of the placement plate bearing rod. During the galvanizing operation of the galvanizing spray port, the metal placement plate can prevent the spraying liquid from adhering to the clamping drive screw and affecting the drive of the clamping drive screw on the screw connection platform, ensuring that the clamping drive screw can still effectively drive the screw connection platform to move after this device has worked for a long time, and improving the anti-pollution ability of this device.
[0011] 4. The positioning claw of the present utility model and the screw connecting platform are of a split design and are connected by screws, enabling operators to conveniently replace the positioning claw and the metal placement plate, thereby increasing the maintenance convenience of this device. Description of the Drawings
[0012] Figure 1 It is a schematic structural diagram of a metal surface galvanizing processing device according to the present utility model.
[0013] Figure 2 It is a main view cross-sectional view of a metal surface galvanizing processing device according to the present utility model.
[0014] Figure 3 It is a partial explosion of a metal surface galvanizing processing device according to the present utility model Figure 1 .
[0015] Figure 4 It is a partial explosion of a metal surface galvanizing processing device according to the present utility model Figure 2 .
[0016] Figure 5 It is a schematic structural diagram of the main support platform according to the present utility model.
[0017] Figure 6 It is a schematic structural diagram of the galvanizing bearing platform according to the present utility model. Detailed Description of the Preferred Embodiment
[0018] The following further details the present utility model with reference to the drawings and embodiments:
[0019] Embodiment 1:
[0020] A metal surface galvanizing processing device, comprising a main support platform 1, a clamping drive motor 4, a screw connection platform 5, a metal placement plate 6, positioning claws 7, a galvanizing bearing platform 10, a displacement drive motor 12, a nozzle connection platform 13, a clamping drive screw 21, a vibration drive motor 26, a displacement drive gear 27, and a vibration wheel 31. The bottom of the main support platform 1 has a bottom support plate 2, and the middle of the main support platform 1 has a placement plate bearing rod 19 and an auxiliary positioning rod 20. The placement plate bearing rod 19 is in the central position, and the auxiliary positioning rods 20 are distributed on both sides of the placement plate bearing rod 19. The middle of the screw connection platform 5 has a clamping screw connection groove 22 and an auxiliary positioning groove 23. The clamping screw connection groove 22 is in the central position, and the auxiliary positioning grooves 23 are distributed on both sides of the clamping screw connection groove 22. The auxiliary positioning grooves 23 are adapted to the auxiliary positioning rods 20, the auxiliary positioning grooves 23 are connected to the auxiliary positioning rods 20, and the auxiliary positioning grooves 23 slide on the outside of the auxiliary positioning rods 20. The top of the screw connection platform 5 has a bearing rod connection groove 18, the bearing rod connection groove 18 is adapted to the placement plate bearing rod 19, the bearing rod connection groove 18 is connected to the placement plate bearing rod 19, and the bearing rod connection groove 18 slides on the outside of the placement plate bearing rod 19.
[0021] Embodiment 2:
[0022] On both sides of the main support platform 1 of the present utility model, there are clamping motor mounting platforms 3. The clamping drive motor 4 is inserted and fixed inside the clamping motor mounting platforms 3. The middle of the main support platform 1 is rotatably connected to the clamping drive screw 21. The transmission shaft of the clamping drive motor 4 is fixedly connected to the clamping drive screw 21. The clamping drive screw 21 is threadedly connected to the clamping screw connection groove 22. The metal placement plate 6 is placed on the upper part of the placement plate bearing rod 19. During the galvanizing operation of the galvanizing spray port 14, the metal placement plate 6 can prevent the spraying liquid from adhering to the clamping drive screw 21 and affecting the driving of the screw connection platform 5 by the clamping drive screw 21, ensuring that the clamping drive screw 21 can still effectively drive the movement of the screw connection platform 5 after the device works for a long time, and improving the anti-pollution ability of this device. On both sides of the screw connection platform 5, there are claw connection columns 17. On both sides of the positioning claws 7, there are claw connection grooves 16. The claw connection grooves 16 are adapted to the claw connection columns 17. The claw connection grooves 16 are connected to the claw connection columns 17. The claw connection grooves 16 are sleeved on the outside of the claw connection columns 17. The positioning claws 7 and the claw connection columns 17 are connected by screws. The positioning claws 7 and the screw connection platform 5 are of a split design and are connected by screws, enabling the operator to conveniently replace the positioning claws 7 and the metal placement plate 6, increasing the maintenance convenience of this device. On the top of the main support platform 1, there is a spraying mechanism bearing platform 8. On one side of the spraying mechanism bearing platform 8, there is a side drive rack 9. The galvanizing platform connection grooves 34 are formed between adjacent side drive racks 9. The galvanizing platform connection grooves 34 are adapted to the galvanizing bearing platform 10.
[0023] Embodiment 3:
[0024] The galvanized table connection groove 34 of the present utility model is connected to the galvanized bearing table 10. The galvanized bearing table 10 slides inside the galvanized table connection groove 34. The top of the galvanized bearing table 10 has an upper positioning table 35. The upper positioning table 35 presses against the upper part of the spraying mechanism bearing table 8. The top of the upper positioning table 35 has a displacement motor table 11. The displacement driving motor 12 is inserted and fixed inside the displacement motor table 11. The transmission shaft of the displacement driving motor 12 is fixedly connected to the displacement driving gear 27. The displacement driving gear 27 meshes with the side driving rack 9. The bottom of the galvanized bearing table 10 has a nozzle table connection sliding table 24. The top of the nozzle connection table 13 has a nozzle table connection sliding groove 28. The nozzle table connection sliding groove 28 is adapted to the nozzle table connection sliding table 24.
[0025] Embodiment 4:
[0026] The nozzle table connection sliding groove 28 of the present utility model is connected to the nozzle table connection sliding table 24. The nozzle table connection sliding groove 28 slides outside the nozzle table connection sliding table 24. One side of the nozzle connection table 13 has a vibration sliding groove 33. One side of the galvanized bearing table 10 has a vibration motor connection table 25. The bottom of the vibration motor connection table 25 has a vibration motor mounting table 30. The vibration driving motor 26 is inserted and fixed inside the vibration motor mounting table 30. The transmission shaft of the vibration driving motor 26 is fixedly connected to the vibration wheel 31. When performing the galvanizing operation on the metal surface, the vibration driving motor 26 drives the vibration wheel 31 to rotate, so that the vibration slider 32 slides inside the vibration sliding groove 33, thereby driving the nozzle connection table 13 to vibrate left and right. When the galvanized spraying port 14 performs the spraying operation, it continuously vibrates left and right, making the spraying range of the galvanized spraying port 14 wider and more uniform, and the spraying effect better. The surface of the vibration wheel 31 has a vibration slider 32.
[0027] Embodiment 5:
[0028] The vibration slider 32 of the present utility model is adapted to the vibration sliding groove 33. The vibration slider 32 is connected to the vibration sliding groove 33. The vibration slider 32 slides inside the vibration sliding groove 33. The bottom of the nozzle connection table 13 has a galvanized spraying port 14. One side of the galvanized spraying port 14 has a spraying port switch knob 15. One spraying port switch knob 15 is provided on one side of each galvanized spraying port 14, so that each galvanized spraying port 14 can be individually opened and closed. This device can close the galvanized spraying ports 14 that exceed the processing range according to the size and shape of the metal to be processed, saving materials and reducing processing costs. The other side of the galvanized spraying port 14 has a feed pipe 29.
[0029] Embodiment 6:
[0030] Installation steps of the utility model: Rotationally connect the clamping drive screw 21 to the middle of the main support table 1. Sleeve the auxiliary positioning groove 23 of the screw connecting table 5 outside the auxiliary positioning rod 20 of the main support table 1, and thread-connect the clamping screw connecting groove 22 of the screw connecting table 5 with the clamping drive screw 21. Place the metal placement plate 6 on the upper part of the placement plate bearing rod 19 of the main support table 1. Sleeve the claw connecting groove 16 of the positioning claw 7 outside the claw connecting column 17 of the screw connecting table 5, and connect the positioning claw 7 and the screw connecting table 5 with screws. Insert the galvanized bearing table 10 into the galvanized table connecting groove 34 of the main support table 1, and press the upper positioning table 35 of the galvanized bearing table 10 on the upper part of the spraying mechanism bearing table 8 of the main support table 1. Insert the displacement drive motor 12 into the displacement motor table 11 of the galvanized bearing table 10 and fix it. Fix the transmission shaft of the displacement drive motor 12 to the displacement drive gear 27, and mesh the displacement drive gear 27 with the side drive rack 9 of the main support table 1. Sleeve the nozzle table connecting sliding groove 28 of the nozzle connecting table 13 outside the nozzle table connecting sliding table 24 of the galvanized bearing table 10. Insert the vibration drive motor 26 into the vibration motor installation table 30 of the galvanized bearing table 10 and fix it. Fix the transmission shaft of the vibration drive motor 26 to the vibration wheel 31, and insert the vibration slider 32 of the vibration wheel 31 into the vibration sliding groove 33 of the nozzle connecting table 13. The installation of this device is completed.
[0031] The above are only the preferred embodiments of the utility model and are not used to limit the utility model. It should be pointed out that for those of ordinary skill in the art of this technology, without departing from the technical principle of the utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the utility model.
Claims
1. A galvanizing processing device for metal surfaces, characterized in that : It includes a main support platform (1), a clamping drive motor (4), a screw connection platform (5), a metal placement plate (6), positioning claws (7), a galvanized bearing platform (10), a displacement drive motor (12), a nozzle connection platform (13), a clamping drive screw (21), a vibration drive motor (26), a displacement drive gear (27), and a vibration wheel (31). The bottom of the main support platform (1) has a bottom support plate (2), and the middle of the main support platform (1) has a placement plate bearing rod (19) and an auxiliary positioning rod (20). The placement plate bearing rod (19) is in the central position, and the auxiliary positioning rods (20) are distributed on both sides of the placement plate bearing rod (19). The middle of the screw connection platform (5) has a clamping screw connection groove (22) and an auxiliary positioning groove (23). The clamping screw connection groove (22) is in the central position, and the auxiliary positioning grooves (23) are distributed on both sides of the clamping screw connection groove (22). The auxiliary positioning grooves (23) are adapted to the auxiliary positioning rods (20), the auxiliary positioning grooves (23) are connected to the auxiliary positioning rods (20), and the auxiliary positioning grooves (23) slide on the outside of the auxiliary positioning rods (20). The top of the screw connection platform (5) has a bearing rod connection groove (18), the bearing rod connection groove (18) is adapted to the placement plate bearing rod (19), the bearing rod connection groove (18) is connected to the placement plate bearing rod (19), and the bearing rod connection groove (18) slides on the outside of the placement plate bearing rod (19).
2. The metal surface galvanizing processing device according to claim 1, characterized in that : Both sides of the main support platform (1) have clamping motor mounting platforms (3). The clamping drive motor (4) is inserted and fixed inside the clamping motor mounting platforms (3). The middle of the main support platform (1) is rotationally connected to the clamping drive screw (21). The transmission shaft of the clamping drive motor (4) is fixedly connected to the clamping drive screw (21). The clamping drive screw (21) is threadedly connected to the clamping screw connection groove (22). The metal placement plate (6) is placed on the upper part of the placement plate bearing rod (19). Both sides of the screw connection platform (5) have claw connection columns (17). Both sides of the positioning claws (7) have claw connection grooves (16). The claw connection grooves (16) are adapted to the claw connection columns (17). The claw connection grooves (16) are connected to the claw connection columns (17). The claw connection grooves (16) are sleeved on the outside of the claw connection columns (17). The positioning claws (7) and the claw connection columns (17) are connected by screws. The top of the main support platform (1) has a spraying mechanism bearing platform (8). One side of the spraying mechanism bearing platform (8) has a side drive rack (9). The galvanized platform connection grooves (34) are formed between adjacent side drive racks (9). The galvanized platform connection grooves (34) are adapted to the galvanized bearing platform (10).
3. A metal surface galvanizing processing device according to claim 2, characterized in that : The galvanizing table connecting groove (34) is connected to the galvanizing bearing table (10). The galvanizing bearing table (10) slides inside the galvanizing table connecting groove (34). The top of the galvanizing bearing table (10) has an upper positioning table (35). The upper positioning table (35) presses against the upper part of the spraying mechanism bearing table (8). The top of the upper positioning table (35) has a displacement motor table (11). The displacement driving motor (12) is inserted and fixed inside the displacement motor table (11). The transmission shaft of the displacement driving motor (12) is fixedly connected to the displacement driving gear (27). The displacement driving gear (27) meshes with the side driving rack (9). The bottom of the galvanizing bearing table (10) has a nozzle table connecting slide (24). The top of the nozzle connecting table (13) has a nozzle table connecting chute (28). The nozzle table connecting chute (28) is adapted to the nozzle table connecting slide (24).
4. A metal surface galvanizing processing device according to claim 3, characterized in that : The nozzle table connecting chute (28) is connected to the nozzle table connecting slide (24). The nozzle table connecting chute (28) slides outside the nozzle table connecting slide (24). One side of the nozzle connecting table (13) has a vibration chute (33). One side of the galvanizing bearing table (10) has a vibration motor connecting table (25). The bottom of the vibration motor connecting table (25) has a vibration motor mounting table (30). The vibration driving motor (26) is inserted inside the vibration motor mounting table (30). The transmission shaft of the vibration driving motor (26) is fixedly connected to the vibration wheel (31). The surface of the vibration wheel (31) has a vibration slider (32).
5. A metal surface galvanizing processing device according to claim 4, characterized in that : The vibration slider (32) is adapted to the vibration chute (33). The vibration slider (32) is connected to the vibration chute (33). The vibration slider (32) slides inside the vibration chute (33). The bottom of the nozzle connecting table (13) has a galvanizing spray port (14). One side of the galvanizing spray port (14) has a spray port switch knob (15). The other side of the galvanizing spray port (14) has a feed pipe (29).
Citation Information
Patent Citations
Metal surface galvanizing processing device
CN220294977U