Electrophoresis water removal device for pipe fitting
By combining a drive motor and a vibration motor, centrifugal force and vibration are used to remove water droplets from the pipes, solving the problems of slow speed and incompleteness of traditional water removal methods. This achieves rapid and thorough water droplet removal and improves the electrophoretic coating effect.
Patent Information
- Application Number
- CN202423096635.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-16
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-16
AI Technical Summary
Traditional water removal methods are slow and incomplete during electrophoretic coating, which affects the coating effect.
The system combines a drive motor to rotate the shaft with a vibration motor to remove water droplets from the pipes through centrifugal force and vibration. The filter screen in the inner cylinder of the water removal cylinder is used to achieve complete removal of water droplets.
It accelerates the water droplet removal process, ensuring that water droplets on the pipe surface are fully and thoroughly removed, thus improving the coating effect.
Smart Images

Figure CN223499989U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of coating technology, and in particular to a pipe fitting electrophoretic dewatering device. Background Technology
[0002] During the electrophoretic coating process, water droplets on the surface of the pipes must be completely removed to avoid affecting the coating effect. The traditional method of water removal is mainly to remove water droplets by air drying. This method is not only slow, but also results in incomplete or ineffective removal of water droplets. Utility Model Content
[0003] (1) Technical solution
[0004] To solve the above-mentioned technical problems, this utility model provides a pipe electrophoretic dewatering device, including a dewatering outer cylinder, a base, a dewatering inner cylinder, a rotating shaft, a drive motor, a lower fixing rod, a lower fixing block, a top plate, an upper fixing rod, an upper fixing block, a telescopic rod, a drain outlet, and a vibration motor. The base is located at the bottom of the dewatering outer cylinder, and the dewatering inner cylinder is located inside the outer cylinder. A filter screen is provided on the outer wall of the dewatering inner cylinder. The rotating shaft is vertically and rotatably mounted on the bottom inner wall of the dewatering outer cylinder. The rotating shaft is driven by the drive motor, and the upper end of the rotating shaft is connected to the bottom outer wall of the dewatering inner cylinder. The wall is provided with several lower fixing rods. The top plate is located directly above the inner cylinder of the water removal system. The bottom of the top plate is provided with several upper fixing rods that correspond one-to-one with the lower fixing rods. The lower fixing rod is connected to the lower fixing block at the end away from the bottom inner wall of the inner cylinder of the water removal system. The upper fixing rod is connected to the upper fixing block at the end away from the bottom of the top plate. The telescopic rods are connected between the bottom of both ends of the top plate and the top of both sides of the inner cylinder of the water removal system. Both the lower fixing block and the upper fixing block are truncated cones with their two apexes facing each other. The bottom of the outer cylinder of the water removal system is provided with the drain outlet. The vibration motor is located inside the base.
[0005] Preferably, the base is divided into a first receiving portion in the middle and a second receiving portion on both sides of the first receiving portion by two partitions.
[0006] Preferably, the drive motor and the vibration motor are installed in the first receiving part.
[0007] Preferably, the first receiving portion is provided with a flip cover.
[0008] Preferably, each of the second accommodating sections is provided with a water collection drawer, and the bottom of the corresponding water removal outer cylinder above each water collection drawer is provided with a drain outlet.
[0009] Preferably, the lower end of the rotating shaft is mounted on the inner wall of the bottom of the water removal outer cylinder via a bearing seat.
[0010] (2) Beneficial effects
[0011] This utility model provides a pipe electrophoretic dewatering device. Compared with the prior art, this utility model has the following advantages: the drive motor drives the rotating shaft to rotate, which in turn drives the inner dewatering cylinder to rotate. Water droplets on the pipe are thrown outward under the action of centrifugal force and enter the outer dewatering cylinder through the filter screen of the inner dewatering cylinder. During the rotation and dewatering process, the vibration motor can also be started to drive the entire outer dewatering cylinder to vibrate. By combining the two methods of rotation and vibration, the removal of water droplets on the pipe is accelerated, which can ensure that the water droplets on the pipe are fully and thoroughly removed. Attached Figure Description
[0012] Figure 1 This is a schematic diagram of the internal structure of this utility model.
[0013] Figure 2 This is a front view of the present invention.
[0014] The attached figures are labeled as follows: 1-outer water-removing cylinder, 2-base, 21-partition, 22-first receiving part, 23-second receiving part, 24-flip cover, 25-water collection drawer, 3-inner water-removing cylinder, 4-rotating shaft, 41-bearing seat, 5-drive motor, 6-lower fixing rod, 7-lower fixing block, 8-top plate, 9-upper fixing rod, 10-upper fixing block, 11-telescopic rod, 12-drain outlet, 13-vibration motor. Detailed Implementation
[0015] The present invention will be further described in conjunction with the accompanying drawings and embodiments.
[0016] like Figure 1 , 2As shown, the pipe electrophoretic dewatering device of this utility model includes a dewatering outer cylinder 1, a base 2, a dewatering inner cylinder 3, a rotating shaft 4, a drive motor 5, a lower fixing rod 6, a lower fixing block 7, a top plate 8, an upper fixing rod 9, an upper fixing block 10, a telescopic rod 11, a drain outlet 12, and a vibration motor 13. The base 2 is located at the bottom of the dewatering outer cylinder 1, and the dewatering inner cylinder 3 is located inside the dewatering outer cylinder 1. A filter screen is provided on the outer wall of the dewatering inner cylinder 3. The rotating shaft 4 is vertically mounted on the bottom inner wall of the dewatering outer cylinder 1 and rotates upwards. The rotating shaft 4 is driven by the drive motor 5. The upper end of the rotating shaft 4 is connected to the bottom outer wall of the dewatering inner cylinder 3. Several lower fixing rods 6 are provided on the bottom inner wall of the dewatering inner cylinder 3. The top plate 8 is located directly above the dewatering inner cylinder 3, and the bottom of the top plate 8 is provided with... There are several upper fixing rods 9 corresponding one-to-one with the lower fixing rod 6. The lower fixing rod 6 is connected to the lower fixing block 7 at the end away from the bottom inner wall of the inner water removal cylinder 3. The upper fixing rod 9 is connected to the upper fixing block 10 at the end away from the bottom of the top plate 8. The telescopic rod 11 is connected between the bottom ends of the top plate 8 and the top sides of the inner water removal cylinder 3. By setting the telescopic rod 11, the distance between the upper fixing block 10 and the lower fixing block 7 can be adjusted to accommodate the water removal of pipes of different lengths. The lower fixing block 7 and the upper fixing block 10 are both truncated cones with their two apexes facing each other. This arrangement can accommodate the fixing of pipes of different diameters and improve practicality. The bottom of the outer water removal cylinder 1 is provided with the drain outlet 12, and the base 2 is provided with the vibration motor 13.
[0017] The base 2 is divided into a first receiving part 22 located in the middle and a second receiving part 23 located on both sides of the first receiving part 22 by two partitions 21.
[0018] The first receiving part 22 is equipped with the drive motor 5 and the vibration motor 13, and the first receiving part 22 is provided with a flip cover 24.
[0019] Each of the second accommodating parts 23 is provided with a water collection drawer 25, and the bottom of the water removal outer cylinder 1 corresponding to each water collection drawer 25 is provided with a drain outlet 12. The lower end of the rotating shaft 4 is installed on the inner wall of the bottom of the water removal outer cylinder 1 through a bearing seat 41.
[0020] In actual operation, one end of each of the pipe fittings to be dewatered is inserted into the corresponding lower fixing block 7 to secure one end of the fitting. Then, the top plate 8 is pressed down, pressing the upper fixing block 10 into the other end of the fitting, thus securing both ends of the fitting. After the fittings are secured, the drive motor 5 is started to rotate the shaft 4, which in turn rotates the inner dewatering cylinder 3. Water droplets on the fittings are thrown outwards under centrifugal force and enter the outer dewatering cylinder 1 through the filter screen of the inner dewatering cylinder 3. Finally, the water is discharged from the drain outlet 12 into the water collection drawer 25 for collection. During the dewatering process, the flip cover 24 can be opened, and the vibration motor 13 can be started to vibrate the entire outer dewatering cylinder 1. By combining rotation and vibration, the removal of water droplets on the fittings is accelerated, ensuring that the water droplets on the fittings are fully and thoroughly removed. Content not described in detail in this specification belongs to prior art known to those skilled in the art.
[0021] The embodiments described above are merely preferred embodiments of the present invention, and are described in a relatively specific and detailed manner. However, the present invention is not limited to these embodiments. It should be noted that for those skilled in the art, any improvements made without departing from the spirit of the present invention fall within the protection scope of the present invention. Therefore, the protection scope of this patent should be determined by the appended claims.
Claims
1. A pipe fitting electrophoretic dewatering device, characterized in that, The system includes an outer drain cylinder (1), a base (2), an inner drain cylinder (3), a rotating shaft (4), a drive motor (5), a lower fixing rod (6), a lower fixing block (7), a top plate (8), an upper fixing rod (9), an upper fixing block (10), a telescopic rod (11), a drain outlet (12), and a vibration motor (13). The base (2) is located at the bottom of the outer drain cylinder (1), and the inner drain cylinder (3) is located inside the outer drain cylinder (1). A filter screen is provided on the outer wall of the inner drain cylinder (3). The rotating shaft (4) is vertically mounted on the inner wall of the bottom of the outer drain cylinder (1). The rotating shaft (4) is driven by the drive motor (5). The upper end of the rotating shaft (4) is connected to the outer wall of the bottom of the inner drain cylinder (3). Several lower fixing rods are provided on the inner wall of the bottom of the inner drain cylinder (3). The rod (6) is provided above the water-removing inner cylinder (3), and the top plate (8) is provided at the bottom of the top plate (8) with several upper fixing rods (9) corresponding to the lower fixing rod (6). The lower fixing rod (6) is connected to the lower fixing block (7) at one end away from the bottom inner wall of the water-removing inner cylinder (3), and the upper fixing rod (9) is connected to the upper fixing block (10) at one end away from the bottom of the top plate (8). The telescopic rod (11) is connected between the bottom of both ends of the top plate (8) and the top of both sides of the water-removing inner cylinder (3). The lower fixing block (7) and the upper fixing block (10) are both conical truncated cones with their two tips facing each other. The drain outlet (12) is provided at the bottom of the water-removing outer cylinder (1), and the vibration motor (13) is provided inside the base (2).
2. The pipe fitting electrophoretic dewatering device according to claim 1, characterized in that, The base (2) is divided into a first receiving part (22) in the middle and a second receiving part (23) on both sides of the first receiving part (22) by two partitions (21).
3. The pipe fitting electrophoretic dewatering device according to claim 2, characterized in that, The drive motor (5) and the vibration motor (13) are installed in the first receiving part (22).
4. The pipe fitting electrophoretic dewatering device according to claim 2, characterized in that, The first receiving part (22) is provided with a flip cover (24).
5. The pipe fitting electrophoretic dewatering device according to claim 2, characterized in that, Each of the second receiving sections (23) is provided with a water collection drawer (25), and the bottom of the water removal outer cylinder (1) above each water collection drawer (25) is provided with a drain outlet (12).
6. The pipe fitting electrophoretic dewatering device according to claim 1, characterized in that, The lower end of the rotating shaft (4) is mounted on the inner wall of the bottom of the water removal outer cylinder (1) through a bearing seat (41).