Autophoresis tank stirring device
By designing an adjustable-angle stirrer and heating component within the self-coating tank, the problem of poor stirring effect caused by a fixed stirrer angle in existing technologies is solved, thereby improving the fluidity and coating uniformity of the self-coating paint and enhancing the corrosion resistance of the lamp post.
Patent Information
- Application Number
- CN202422953950.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2034-12-02
AI Technical Summary
The existing agitator in the self-swimming tank is fixed and cannot be adjusted in angle, which means the mixing effect needs to be improved.
Design a self-electrophoretic tank stirring device. By combining a stirring component and a tilting component, the angle of the stirrer can be adjusted, and the temperature can be adjusted by a heating component to improve the fluidity of the self-electrophoretic paint.
By adjusting the angle and temperature of the stirrer, the fluidity and coating uniformity of the self-coating paint were significantly improved, thus enhancing the corrosion resistance of the lamp post.
Smart Images

Figure CN223505166U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lamp post coating technology, and in particular to a self-swimming tank stirring device. Background Technology
[0002] The self-coating production line for light poles: Through degreasing, multiple water washing, pickling, multiple neutralization, self-coating, and drying, a uniform and dense coating is formed on the inner and outer surfaces of the light pole, improving the overall corrosion resistance of the light pole. Self-coating is the most crucial step in the entire production line. An automated overhead conveyor suspends the light pole in a self-coating tank, immersing it in the self-coating paint. Then, the pump's suction function and the agitator's stirring function are used to improve the fluidity of the self-coating paint, thereby improving the uniformity of the coating. The problem is that the agitator in the existing self-coating tank is fixed and its angle cannot be adjusted, so the stirring effect needs further improvement. Utility Model Content
[0003] To address the shortcomings of existing technologies, this utility model provides a self-stirring tank agitator, which allows the angle of the agitator to be adjusted.
[0004] In order to achieve the purpose of this utility model, the following solution is proposed:
[0005] A self-swimming tank stirring device includes a tank, two stirring components and two tilting components.
[0006] Two stirring components and two tilting components are symmetrically arranged on both sides of the tank;
[0007] Each mixing assembly includes multiple agitators and a first support rod and a second support rod arranged parallel to the top of the tank. The end of the first support rod is rotatably connected to the base at the top of the tank. Multiple support plates are arranged between the first support rod and the second support rod. One end of the support plate is connected to the first support rod by multiple bolts, and the other end is supported by the second support rod. The agitator is located on the corresponding support plate.
[0008] Each tilting assembly includes multiple lifting rods and multiple reinforcing plates. The reinforcing plates connect two adjacent support plates. The bottom of the lifting rod is hinged to the inner wall of the tank, and the top is hinged to the corresponding reinforcing plate.
[0009] Furthermore, the top of the first support rod has multiple grooves on the side facing the second support rod, and one end of the support plate is installed in the corresponding grooves by multiple bolts.
[0010] Furthermore, the top of the second support rod is provided with multiple limiting grooves on the side facing the first support rod, and the other end of the support plate is located in the corresponding limiting groove.
[0011] Furthermore, two symmetrical locking components are arranged on both sides of the groove. Each locking component includes a telescopic rod, a straight rod, and multiple pressure plates. The top of the second support rod is provided with a sliding groove on the side away from the first support rod. The sliding groove is connected to multiple limiting grooves. The height difference between the bottom surface of the sliding groove and the bottom surface of the limiting groove is equal to the thickness of the support plate. Multiple pressure plates are rotatably connected to the bottom surface of the sliding groove, and torsion springs are provided at the connection between the two. The pressure plates are used to cover the corresponding support plates. The top of the second support rod is provided with multiple guide frames. The straight rod slides through multiple guide frames. The telescopic rod is provided on the second support rod and is connected to the straight rod for moving the straight rod. The bottom of the straight rod is provided with multiple push rods for pushing the pressure plates to release the support plates.
[0012] Furthermore, it also includes two heating pipes symmetrically arranged on both sides of the tank. The heating pipes include a main pipe and multiple secondary pipes connected to the main pipe. The main pipe is mounted on the top of the side wall of the tank, and a secondary pipe is located between two adjacent agitators. Multiple heating wires are threaded inside the heating pipes, and some of the heating wires extend downward from the opening end of the secondary pipe into the self-coating paint of the tank.
[0013] Furthermore, it also includes multiple L-shaped protective plates. The first support rod is located outside the second support rod. Multiple slots are provided on the opposite side of the two second support rods. The horizontal section of the L-shaped protective plate is fitted into the corresponding slot and fixed by multiple bolts. The horizontal section has through holes for passing through part of the heating wire. The vertical section of the L-shaped protective plate is used to shield the heating wire.
[0014] The beneficial effects of this utility model are as follows: through the ingenious arrangement of the stirring component and the flipping component, multiple stirrers can be flipped simultaneously by the flipping component, thereby adjusting the angle of the stirrers in the tank and further improving the fluidity of the self-coating paint. Attached Figure Description
[0015] Figure 1 A top view of the self-stirring device in the swimming tank is shown;
[0016] Figure 2 A structural diagram of the tank, the first support rod, and the second support rod is shown.
[0017] Figure 3 A structural diagram of a self-swimming tank stirring device with heating pipes is shown;
[0018] Figure 4 A top view of a self-stirring tank apparatus with heating pipes is shown;
[0019] Figure 5 A partial perspective view shows the pressure plate pressing down on the support plate. Detailed Implementation
[0020] like Figure 1 , Figure 2As shown, this embodiment provides a self-swimming tank stirring device, including a tank body 1, two stirring components and two tilting components.
[0021] The tank 1 contains self-coating paint. Two stirring components are symmetrically arranged on both sides of the tank 1. Each stirring component includes multiple stirrers 43 and a first support rod 41 and a second support rod 42 arranged parallel to the top of the tank 1. The first support rod 41 is located outside the second support rod 42. The end of the first support rod 41 is rotatably connected to the base 411 at the top of the tank 1. The second support rod 42 is fixedly arranged. Multiple support plates 44 are arranged between the first support rod 41 and the second support rod 42. The array direction of the multiple support plates 44 is parallel to the long axis of the first support rod 41. One end of the support plate 44 is connected to the first support rod 41 by multiple bolts. The other end of the support plate 44 is horizontally supported by the second support rod 42. The stirrers 43 are fixedly arranged on the corresponding support plates 44. The stirring paddle of the stirrer 43 is located inside the self-coating paint in the tank 1.
[0022] Two flipping components are symmetrically arranged on both sides of the tank 1. Each flipping component includes multiple lifting rods 31 and multiple reinforcing plates 32. The reinforcing plates 32 are connected to two adjacent support plates 44. The reinforcing plates 32 are close to the second support rods 42. The bottom of the lifting rods 31 is hinged to the inner wall of the tank 1, and the top of the lifting rods 31 is hinged to the corresponding reinforcing plates 32. The power source of the lifting rods 31 is a cylinder or a hydraulic cylinder. The lifting rods 31 are used to flip multiple support plates 44, thereby adjusting the angle of the agitator 43 and further improving the fluidity of the self-coating paint.
[0023] The above-mentioned solution improves the fluidity of the self-coating paint through stirring. Furthermore, this embodiment also improves the fluidity of the self-coating paint by adjusting the temperature, as detailed below: Figure 3 , Figure 4 As shown, the device also includes two heating pipes symmetrically arranged on both sides of the tank 1. Each heating pipe includes a main pipe 51 and multiple secondary pipes 52 connected to the main pipe 51. The main pipe 51 is mounted on the top of the side wall of the tank 1, and one secondary pipe 52 is located between two adjacent agitators 43. Multiple heating wires are threaded through the heating pipes, with some of the heating wires extending downwards from the open ends of the secondary pipes 52 into the self-coating paint in the tank 1. The heating wires extending from the secondary pipes 52 are bundled together with multiple straps to prevent them from swinging freely with the flow of the self-coating paint and to prevent them from getting tangled in the agitator paddles of the agitators 43. The heating wires are existing technology and can be purchased directly from the market, so their structure is not shown in the attached diagram. The heating wires are used to regulate the temperature of the self-coating paint.
[0024] To further separate the heating wire from the light pole and prevent the light pole from touching the heating wire during the lowering of the self-coating process, such as... Figure 3 , Figure 4As shown, the device also includes multiple L-shaped protective plates 6. Multiple slots are provided on the opposite side of the two second support rods 42. The horizontal section of the L-shaped protective plate 6 is assembled into the corresponding slot and fixed by multiple bolts. The horizontal section is provided with through holes 61, one through hole 61 corresponds to one secondary pipe 52. The through holes 61 are used to pass through part of the heating wire. The vertical section of the L-shaped protective plate 6 extends downward into the self-coating paint in the tank 1, which serves to shield the heating wire and separate the heating wire from the lamp post. In addition, multiple mesh holes are arrayed on the L-shaped protective plate 6 to facilitate the flow of self-coating paint.
[0025] The connection method between the support plate 44 and the first support rod 41 is as follows: Figure 1 , Figure 2 As shown, the top of the first support rod 41 has multiple grooves 412 on the side facing the second support rod 42, and one end of the support plate 44 is installed in the corresponding grooves 412 by multiple bolts.
[0026] The connection method between the support plate 44 and the second support rod 42 is as follows: Figure 1 , Figure 2 As shown, the top of the second support rod 42 is provided with multiple limiting grooves 421 on the side facing the first support rod 41, and the other end of the support plate 44 is supported in the corresponding limiting groove 421.
[0027] In the above scheme, the other end of the support plate 44 is only supported in the corresponding limiting groove 421 and is not fixed. In this state, in order to improve the stability of the stirrer 43, this embodiment is provided with two locking pieces to fix the other end of the support plate 44 in the limiting groove 421. The specific implementation method is as follows: Figure 2 , Figure 4 , Figure 5 As shown, two locking components are symmetrically arranged on both sides of the groove 1. Each locking component includes a telescopic rod 21, a straight rod 22, and multiple pressure plates 23. The top of the second support rod 42 is provided with a sliding groove 422 on the side away from the first support rod 41. The sliding groove 422 is connected to multiple limiting grooves 421. The bottom surface of the sliding groove 422 is higher than the bottom surface of the limiting groove 421, and the height difference between the two is equal to the thickness of the support plate 44. Multiple pressure plates 23 are arranged in an array along the long axis of the sliding groove 422. One pressure plate 23 corresponds to one limiting groove 421. The pressure plate 23 is rotatably connected to the bottom surface of the sliding groove 422, and a torsion spring is provided at the connection between the two. Under no external force, the torsion spring is used to keep the pressure plate 23 in place. Figure 4 In the intermediate state, the pressure plate 23 is used to cover the support plate 44 within the limiting groove 421. The top of the second support rod 42 is provided with multiple guide frames 423. The straight rod 22 slides through the multiple guide frames 423. The telescopic rod 21 is located on the second support rod 42, and its movable end is connected to the straight rod 22 for horizontal movement of the straight rod 22. The power source for the telescopic rod 21 is a cylinder or hydraulic cylinder. Figure 5 As shown, the bottom of the straight rod 22 is provided with multiple push rods 221, and each push rod 221 is in close contact with a pressure plate 23.
[0028] When the telescopic rod 21 extends, causing the straight rod 22 to move, the push rod 221 is used to actuate the pressure plate 23, causing the pressure plate 23 to rotate at a certain angle, thereby releasing the support plate 44. This allows the angle of the stirrer 43 to be adjusted using the flipping assembly. Note that when the support plate 44 disengages from the limiting groove 421, the telescopic rod 21 shortens, and the pressure plate 23, after losing the force of the push rod 221, resets under the action of the torsion spring. When it is necessary to keep the stirrer 43 in a vertical position, the telescopic rod 21 extends, first causing the pressure plate 23 to deviate from the limiting groove 421, and then the flipping assembly gradually resets the support plate 44 to a horizontal position. After the support plate 44 falls into the limiting groove 421, the telescopic rod 21 shortens, and the pressure plate 23, after losing the force of the push rod 221, resets under the action of the torsion spring, pressing down on the support plate 44 again.
[0029] The above embodiments are only used to illustrate the technical concept and features of this utility model, and are not intended to be unique or to limit this utility model. Those skilled in the art should understand that various changes or equivalent substitutions made to this utility model without departing from its scope are all within the protection scope of this utility model.
Claims
1. A self-stirring tank agitator, characterized in that, Includes a tank (1), two stirring components and two tilting components; Two stirring components and two tilting components are symmetrically arranged on both sides of the tank (1); Each stirring assembly includes multiple stirrers (43) and a first support rod (41) and a second support rod (42) arranged parallel to the top of the tank (1). The end of the first support rod (41) is rotatably connected to the base (411) at the top of the tank (1). Multiple support plates (44) are arranged between the first support rod (41) and the second support rod (42). One end of the support plate (44) is connected to the first support rod (41) by multiple bolts, and the other end is supported on the second support rod (42). The stirrers (43) are arranged on the corresponding support plates (44). Each flipping assembly includes multiple lifting rods (31) and multiple reinforcing plates (32). The reinforcing plates (32) are connected to two adjacent support plates (44). The bottom of the lifting rods (31) is hinged to the inner wall of the trough (1), and the top is hinged to the corresponding reinforcing plate (32).
2. The self-swimming tank stirring device according to claim 1, characterized in that, The top of the first support rod (41) is provided with multiple grooves (412) on the side facing the second support rod (42), and one end of the support plate (44) is installed in the corresponding groove (412) by multiple bolts.
3. The self-swimming tank stirring device according to claim 1, characterized in that, The second support rod (42) has multiple limiting grooves (421) on the side of the top facing the first support rod (41), and the other end of the support plate (44) is located in the corresponding limiting groove (421).
4. The self-swimming tank stirring device according to claim 3, characterized in that, Two symmetrical locking components are arranged on both sides of the groove (1). Each locking component includes a telescopic rod (21), a straight rod (22), and multiple pressure plates (23). The top of the second support rod (42) is provided with a sliding groove (422) on the side away from the first support rod (41). The sliding groove (422) is connected to multiple limiting grooves (421). The height difference between the bottom surface of the sliding groove (422) and the bottom surface of the limiting groove (421) is equal to the thickness of the support plate (44). The multiple pressure plates (23) are rotatably connected to the bottom surface of the sliding groove (422), and the connection between the two is... A torsion spring is provided, and a pressure plate (23) is used to cover the corresponding support plate (44). The top of the second support rod (42) is provided with multiple guide frames (423). The straight rod (22) slides through the multiple guide frames (423). A telescopic rod (21) is provided on the second support rod (42). The telescopic rod (21) is connected to the straight rod (22) and is used to move the straight rod (22). The bottom of the straight rod (22) is provided with multiple push rods (221). The push rods (221) are used to push the pressure plate (23) so that the pressure plate (23) releases the support plate (44).
5. The self-swimming tank stirring device according to claim 1, characterized in that, It also includes two heating pipes symmetrically arranged on both sides of the tank (1). The heating pipes include a main pipe (51) and multiple secondary pipes (52) connected to the main pipe (51). The main pipe (51) is mounted on the top of the side wall of the tank (1). A secondary pipe (52) is located between two adjacent agitators (43). Multiple heating wires are threaded inside the heating pipes. Some of the heating wires extend downward from the opening end of the secondary pipe (52) into the self-coating paint of the tank (1).
6. The self-swimming tank stirring device according to claim 5, characterized in that, It also includes multiple L-shaped guard plates (6), the first support rod (41) is located outside the second support rod (42), and multiple slots are provided on the opposite side of the two second support rods (42). The horizontal section of the L-shaped guard plate (6) is fitted into the corresponding slot and fixed by multiple bolts. The horizontal section is provided with a through hole (61) for passing through part of the heating wire, and the vertical section of the L-shaped guard plate (6) is used to shield the heating wire.