An anti-corrosion coating spraying device
By adopting closed pipeline suspension structure and dynamic spraying technology in the spraying equipment, the problems of uneven spraying and time-consuming operation in existing equipment are solved, efficient and comprehensive spraying of the pipeline is achieved, and the anti-corrosion performance of the equipment is improved.
Patent Information
- Application Number
- CN202510628890.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2045-05-16
AI Technical Summary
During the spraying process, existing anticorrosion coating spraying equipment has problems such as leakage at the bottom and inside or non-uniform spraying, especially the external spraying effect of static workpieces is limited, and the operation is time-consuming and labor-intensive.
A spray rack, flexible traction parts, positioning components and internal spraying components are used to form a closed pipeline suspension structure. Dynamic spraying of the pipeline is achieved through rotating columns, adjusting components and positioning components to ensure that the inner and outer walls are synchronized.
It achieves efficient and even spraying of pipes of different specifications, and dynamic spraying is completely free of blind spots, improving the spraying effect and the anti-corrosion performance of the equipment, reducing operating time and manpower consumption.
Smart Images

Figure CN120133075B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of spraying equipment, and particularly to an anti-corrosion coating spraying equipment. Background Art
[0002] Multiple corrosive environments (such as acidic and alkaline chemicals, high humidity, and high temperature) are involved in the semiconductor manufacturing process. These factors will accelerate the corrosion of equipment components, affecting their performance and lifespan. Therefore, anti-corrosion coatings are crucial in the semiconductor equipment processing technology, especially in the pipeline processing of semiconductor equipment. For example, conveying pipelines, discharge pipelines, etc., which are used to transport highly corrosive gases and liquids, need to have corrosion resistance to prevent gas and liquid leakage or pollution caused by pipeline corrosion.
[0003] A Chinese patent document with the authorization announcement number CN118847410B discloses an anti-corrosion coating spraying equipment for metal product processing. When multiple spraying components move downward and contact the surface of the workpiece, the spraying nozzles will extend into the support box under pressure. Since multiple spraying nozzles contact and are pressured by the surface of the workpiece, the sliding conduit drives two positioning components to move through the retaining ring. When the side plate in the positioning component drives the slider to move upward, with the elastic support of the second spring, the slider drives the latch to snap into the card slot, achieving the purpose of locking the sliding conduit and the spraying nozzles. Secondly, control the multi-stage electro-hydraulic rod to extend. The sliding column drives the support box to move upward through the fixed frame, so that the spraying nozzles are separated from the workpiece. Connect the spraying machine adapter on the connecting pipe to an external spraying machine, and the workpiece can be sprayed.
[0004] The above anti-corrosion coating spraying equipment has the following deficiencies: This spraying equipment sprays the outside of a stationary workpiece, with a fixed angle and fixed position. Therefore, it is easy to miss spraying at the bottom and inside, or the spraying is uneven, resulting in limitations in the spraying effect. During operation, the staff needs to repeatedly adjust the position and angle of the workpiece, which is time-consuming and laborious. Summary of the Invention
[0005] In view of the problems in the background art, an anti-corrosion coating spraying equipment is proposed. The present invention has good compatibility with pipelines of different specifications, provides comprehensive and dead-angle-free dynamic spraying, and is uniform and efficient in batch spraying.
[0006] The present invention provides an anti-corrosion coating spraying device, which includes a spraying rack, a flexible traction member, a positioning component and an internal spraying component. Air supply drying seats that can be lifted are arranged on both the front and rear sides of the spraying rack. Inside the spraying rack, a rotatable rotating column, an externally spraying seat that can be lifted, and a recycling seat that can be lifted are successively arranged from top to bottom. The externally spraying seat sprays the outer wall of the pipeline from above. The flexible traction members are paired and arranged on both sides of the externally spraying seat and the rotating column, one in front and one behind. The positioning component is arranged on the rotating column and corresponds to each pair of flexible traction members one by one, and is used for positioning the upper ends of the corresponding flexible traction members. The middle part of the internal spraying component penetrates through the inside of the pipeline, and both ends extend out of the pipeline and are respectively provided with adjusting members. The end of the internal spraying component is connected to the lower end of the corresponding flexible traction member, and the internal spraying component sprays the inner wall of the pipeline from the inside. The distance between the two groups of adjusting members can be adjusted, which on the one hand positions the pipeline from both ends, and on the other hand drives the pipeline to rotate self. The rotating column, the positioning component, the flexible traction member and the internal spraying component form a closed pipeline hanging structure, so that the two ends of the pipeline face one in front and one behind. At the same time, through the rotation of the rotating column and the drive of the adjusting members, the inside and outside of the pipeline are synchronously sprayed while the pipeline swings back and forth and rotates self.
[0007] Preferably, the positioning component includes an installation sleeve sleeved on the rotating column and limiting rings located on both sides of the installation sleeve. A positioning structure for positioning the flexible traction member is arranged on the installation sleeve. A positioning frame is placed on the two groups of limiting rings. A lifting driving member is arranged on the positioning frame and drives the positioning seat to press down on the positioning structure to position the flexible traction member.
[0008] Preferably, the flexible traction member is a steel rope. The positioning structure includes a positioning groove arranged on the installation sleeve. The positioning groove is within the covering range of the positioning seat, and a fixing rod is arranged in the groove.
[0009] Preferably, the internal spraying component includes a support rod. Both ends of the support rod are respectively connected to the lower ends of the corresponding flexible traction members on the corresponding sides. Spraying holes I are arranged along the length direction of the support rod. A feed pipe I communicating the spraying holes I and the coating storage end is also arranged on the support rod. The adjusting members are arranged in a mirror image, one on the left and one on the right, on the support rod.
[0010] Preferably, the adjusting member includes a sliding sleeve slidably arranged on the support rod. An adjusting ring is arranged at the sleeve opening of the sliding sleeve, and a vibrating member and a fixing member are arranged on the sleeve body. An arc-shaped groove is arranged at the upper end of the adjusting ring. An adjustable frame that can slide is arranged in the arc-shaped groove. On the side of the adjustable frame facing the pipeline, an adjusting roller is arranged to adjust the position to fit the outer wall of the pipeline opening by moving up and down and drive the pipeline to rotate synchronously by rotation.
[0011] Preferably, the external spraying seat includes a lifting platform located between the support rod and the rotating column; the lifting platform is slidably arranged on the spraying frame and penetrates through all the pipeline suspension structures. The bottom of the lifting platform is provided with spraying plates with spraying holes II corresponding to the support rods one by one. The lifting platform is also provided with a limiting member acting on the flexible traction member and a feed pipe II connecting the spraying holes II and the paint storage end.
[0012] Preferably, the limiting member is an annular ring with a notch, and is installed on the front and rear sides of the lifting platform corresponding to the position of the spraying plate; the notch is located on the side of the annular ring.
[0013] Preferably, the recovery seat includes a recovery platform located below the support rod and slidably arranged on the spraying frame; the recovery platform is opposite to the lifting platform in position, and a recovery pool is arranged at the upper end; a slag retaining net is arranged on the opening of the recovery pool.
[0014] Preferably, the air supply and drying seat includes an air supply and drying platform slidably arranged at the front and rear ends of the spraying frame; a fan is arranged on the air supply and drying platform.
[0015] Preferably, the pipe orifice is opposite to the fan when the pipeline is suspended.
[0016] Compared with the prior art, the present invention has the following beneficial technical effects: A closed pipeline suspension structure is formed by using the rotating column, the positioning assembly, the flexible traction member and the internal spraying assembly, and the pipelines are suspended and installed one by one, so that the pipelines have the same height and the pipe orifices face the same direction. Then, the sliding sleeve is slid and fixed to initially limit the pipeline, and then the position of the adjusting frame is slid along the pipe orifice, and the adjusting roller is lowered to fit the outer wall of the pipe orifice, and then the pipeline is secondarily limited. After the pipeline is fixed, its movement is started. On the one hand, the adjusting rollers at both ends of the pipeline rotate synchronously in one direction to push the pipelines suspended on the support rod to rotate synchronously; on the other hand, the back-and-forth rotation of the rotating column drives the pipelines to swing back and forth. Then, spraying is started during the vibration, rotation and swinging of the pipelines. The support rod sprays downward on the inner wall of the pipeline through the spraying holes I, and the spraying plate sprays on the outer wall of the pipeline from above, so as to spray the inner and outer sides of a batch of pipelines synchronously under dynamic conditions. It has good matching with pipelines of different specifications, the dynamic spraying is comprehensive and without dead angles, and the batch spraying is uniform and efficient. The overflowing anticorrosive paint is recovered during the spraying process. After the spraying is completed, the fan ventilates and dries the suspended pipelines. The spraying effect of the anticorrosive coating is good, the environmental protection performance is strong, and it is beneficial to maintain the pipeline performance of the semiconductor equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a structural diagram of the anticorrosive coating spraying equipment (viewpoint one);
[0018] Figure 2 It is a structural diagram of the anticorrosive coating spraying equipment (viewpoint two);
[0019] Figure 3It is a structural diagram of an anti-corrosion coating spraying device (viewpoint three);
[0020] Figure 4 It is a schematic diagram of a closed pipeline suspension structure;
[0021] Figure 5 It is a combined schematic diagram of a single positioning component, a flexible traction member, and an internal spraying component (viewpoint one);
[0022] Figure 6 It is a combined schematic diagram of a single positioning component, a flexible traction member, and an internal spraying component (viewpoint two);
[0023] Figure 7 It is Figure 6 The enlarged view at position A in
[0024] Figure 8 It is a structural diagram of an internal spraying component;
[0025] Figure 9 It is a structural diagram of an adjusting member;
[0026] Figure 10 It is a structural diagram of an external spraying seat and a recovery seat;
[0027] Figure 11 It is a structural diagram of a limiting member;
[0028] Figure 12 It is a structural diagram of a blowing and drying seat.
[0029] Reference numerals: 1, spraying rack; 101, electric slide rail two; 102, electric slide rail three; 103, electric slide rail four; 2, rotating column; 3, positioning component; 301, mounting sleeve; 302, limiting ring; 303, positioning frame; 304, lifting driving member; 305, positioning seat; 306, anti-slip strip; 307, fixing rod; 4, external spraying seat; 401, lifting table; 402, spraying plate; 403, limiting member; 404, notch; 5, flexible traction member; 6, internal spraying component; 601, support rod; 602, spraying hole one; 603, feed pipe one; 604, sliding sleeve; 605, fixing member; 606, adjusting ring; 607, vibrating member; 608, adjusting frame; 609, arc-shaped groove; 612, adjusting roller; 613, guiding groove; 614, fixing hole one; 7, recovery seat; 701, recovery table; 702, recovery pool; 703, slag retaining net; 8, blowing and drying seat; 801, blowing and drying table; 802, fan. Detailed implementation manners
[0030] Example 1, the present invention provides an anti-corrosion coating spraying device, as Figures 1-4As shown in the figure, it includes a spraying rack 1, a flexible traction member 5, a positioning assembly 3 and an internal spraying assembly 6. Air supply and drying seats 8 that can be lifted are arranged on both the front and rear sides of the spraying rack 1. Inside the spraying rack 1, a rotatable rotating column 2, an externally spraying seat 4 that can be lifted, and a recovery seat 7 that can be lifted are arranged in sequence from top to bottom. The externally spraying seat 4 sprays on the outer wall of the pipeline from above. The flexible traction members 5 are paired and arranged on both sides of the externally spraying seat 4 and the rotating column 2, one in front and one behind. The positioning assembly 3 is arranged on the rotating column 2 and is correspondingly arranged for each pair of flexible traction members 5, and is used for positioning the upper ends of the corresponding flexible traction members 5. The middle part of the internal spraying assembly 6 penetrates through the inside of the pipeline, and both ends extend out of the pipeline and are respectively provided with adjusting members. The end of the internal spraying assembly 6 is connected to the lower end of the corresponding flexible traction member 5. The internal spraying assembly 6 sprays on the inner wall of the pipeline from the inside. The distance between the two groups of adjusting members can be adjusted. On the one hand, it positions the pipeline from both ends, and on the other hand, it drives the pipeline to rotate automatically from both ends. The rotating column 2, the positioning assembly 3, the flexible traction members 5 and the internal spraying assembly 6 form a closed pipeline suspension structure, so that the two ends of the pipeline face one in front and one behind. At the same time, through the rotation of the rotating column 2 and the drive of the adjusting members, while the pipeline swings back and forth and rotates automatically, it is sprayed inside and outside synchronously.
[0031] As Figures 5-7 shown in the figure, the positioning assembly 3 includes an installation sleeve 301 sleeved on the rotating column 2 and limit rings 302 located on both sides of the installation sleeve 301. A positioning structure for positioning the flexible traction member 5 is arranged on the installation sleeve 301. A positioning frame 303 is mounted on the two groups of limit rings 302. A lifting drive member 304 is arranged on the positioning frame 303 to drive the positioning seat 305 to press down onto the positioning structure to position the flexible traction member 5.
[0032] It should be further noted that the lifting drive member 304 is set as a lifting cylinder, the cylinder body is located on the positioning frame 303, and the telescopic rod end is connected to the positioning seat 305.
[0033] It should be further noted that the positioning seat 305 is arc-shaped, the concave surface faces the installation sleeve 301, and anti-slip strips 306 are provided.
[0034] It should be further noted that the rotating column 2 can be driven by a motor to rotate in both forward and reverse directions as a whole.
[0035] Before spraying, remove the flexible traction member 5 and penetrate it through the pipeline until the pipeline is located at the position of the positioning assembly 3. By pressing the positioning seat 305 down to fit the installation sleeve 301, the upper end of the flexible traction member 5 can be fixed, forming a closed pipeline suspension structure. By using the rotation of the rotating column 2, the pipeline suspension structure can be driven to swing back and forth.
[0036] It should be further noted that the flexible traction member 5 is a steel rope; the positioning structure includes a positioning groove provided on the mounting sleeve 301; the positioning groove is within the coverage range of the positioning seat 305, and a fixing rod 307 is provided in the groove. The end of the steel rope is initially fixed by winding around the fixing rod 307, and then the positioning seat 305 is pressed down to cover the positioning groove and press the end of the steel rope for secondary fixing.
[0037] As Figures 8-9 shown, the internal spraying assembly 6 includes a support rod 601; both ends of the support rod 601 are respectively connected to the lower ends of the corresponding side flexible traction members 5, the support rod 601 is provided with a spraying hole one 602 along the length direction, and a feed pipe one 603 communicating the spraying hole one 602 and the paint storage end is also provided on the support rod 601; the adjusting members are arranged in a mirror image left and right on the support rod 601.
[0038] It should be further noted that the spraying hole one 602 is located at the bottom of the support rod 601.
[0039] Before spraying, the pipeline is suspended on the support rod 601. External paint is introduced into the support rod 601 through the feed pipe one 603, and the inner wall of the pipeline is sprayed downward through the spraying hole one 602.
[0040] The adjusting member includes a sliding sleeve 604 slidably arranged on the support rod 601; an adjusting ring 606 is arranged on the sleeve opening of the sliding sleeve 604, and a vibrating member 607 and a fixing member 605 are arranged on the sleeve body.
[0041] It should be further noted that the vibrating member 607 drives the pipeline to vibrate by generating vibration, so that the sprayed anticorrosive layer is evenly distributed.
[0042] It should be further noted that the fixing member 605 is set as a fastening screw; upper and lower guiding grooves 613 are provided on the support rod 601; a sliding block cooperating with the upper guiding groove 613 is provided on the sliding sleeve 604, and a fixing hole cooperating with the lower guiding groove 613 is also provided; the fastening screw is screwed into the lower guiding groove 613 through the fixing hole to achieve the purpose of fixing the adjusting member.
[0043] An arc-shaped groove 609 is provided at the upper end of the adjusting ring 606; an adjustable frame 608 is slidably arranged in the arc-shaped groove 609; an adjusting roller 612 is arranged on the side of the adjustable frame 608 facing the pipeline, which can move up and down to fit the outer wall of the pipeline opening and drive the pipeline to rotate synchronously by rotation.
[0044] It should be further noted that the adjustable frame 608 is strip-shaped and slides along an arc-shaped track, and an electric slide rail one for driving the adjusting roller 612 to move up and down is provided thereon.
[0045] It should be further noted that a first fixing hole 614 is provided on the groove wall of the arc-shaped groove 609; a second fixing hole is provided on the adjusting frame 608; when positioning the adjusting frame 608, a bolt passes through the first fixing hole 614, one end is threadedly connected to the second fixing hole, and the other end is threadedly connected to a nut.
[0046] It should be further noted that multiple sets of adjusting rollers 612 are provided, which are respectively driven to rotate by corresponding motors, and the length direction is horizontal with the length direction of the support rod 601.
[0047] When positioning the pipeline, first, the pipeline is suspended on the support rod 601. The adjusting ring 606 is made to fit the two ends of the pipeline by sliding the sliding sleeve 604, and then the sliding sleeve 604 is fixed by the fixing member 605 to preliminarily limit the pipeline. At this time, the adjusting roller 612 is located above the pipeline. Then, the position of the adjusting frame 608 is slid along the pipeline opening, and the adjusting roller 612 is operated to descend to fit the outer wall of the pipeline opening. The bolt passes through the first fixing hole 614, one end is threadedly connected to the second fixing hole, and the other end is threadedly connected to a nut to fix the adjusting frame 608, completing the secondary limitation of the pipeline. Finally, during spraying, the adjusting rollers 612 at both ends of the pipeline rotate synchronously in one direction to drive the pipeline suspended on the support rod 601 to rotate synchronously. During the rotation of the pipeline, in cooperation with vibration, the rotation of the rotating column 2 can also be used to swing back and forth, and finally the inner and outer walls are sprayed under various moving trajectories.
[0048] As Figure 10 shown, the external spraying seat 4 includes a lifting platform 401 located between the support rod 601 and the rotating column 2; the lifting platform 401 is slidably arranged on the spraying frame 1 and penetrates through all the pipeline suspension structures. A spraying plate 402 with a second spraying hole corresponding to the support rod 601 is provided at the bottom of the lifting platform 401. A limiting member 403 acting on the flexible traction member 5 and a feed pipe two communicating the second spraying hole and the paint storage end are also provided on the lifting platform 401.
[0049] An electric slide rail two 101 is provided on the spraying frame 1; the lifting platform 401 is lifted between the support rod 601 and the rotating column 2 by cooperating with the electric slide rail two 101 to adjust the spraying height of its outer wall of the pipeline. Since the spraying plate 402 corresponds to the support rod 601 one by one, and in cooperation with the rotation and vibration of the pipeline, the spraying of the outer wall of the pipeline is efficient and uniform.
[0050] As Figure 11 shown, the limiting member 403 is an annular ring with a notch 404, which is installed on the front and rear sides of the lifting platform 401 corresponding to the position of the spraying plate 402; the notch 404 is located on the side of the annular ring; after the upper end of the flexible traction member 5 is bound and pressed and fixed, the lower end is further limited by passing through the annular ring. During the rotation and back-and-forth swing of the pipeline, the limiting member 403 always limits the flexible traction member 5 to prevent entanglement.
[0051] AsFigure 10 As shown in the figure, the recovery base 7 includes a recovery table 701 located below the support rod 601 and slidably arranged on the spraying rack 1; the recovery table 701 is opposite to the lifting table 401 in position, and a recovery pool 702 is arranged at the upper end; a slag blocking net 703 is arranged on the opening of the recovery pool 702.
[0052] It should be further noted that a negative pressure is formed in the recovery pool 702 through the operation of a vacuum device to collect the paint in the air.
[0053] It should be further noted that an electric slide rail three 102 is arranged on the spraying rack 1; the recovery table 701 is lifted and lowered below the support rod 601 by cooperating with the electric slide rail three 102 to adjust the recovery height of the overflowing paint and reduce environmental pollution.
[0054] As Figure 12 shown in the figure, the air supply and drying base 8 includes an air supply and drying table 801 slidably arranged at the front and rear ends of the spraying rack 1; a fan 802 is arranged on the air supply and drying table 801. An electric slide rail four 103 is arranged on the spraying rack 1; the air supply and drying table 801 is lifted and lowered at both ends of the spraying rack 1 by cooperating with the electric slide rail four 103 to adjust its air supply height to match the suspended pipeline and accelerate the ventilation and drying after spraying.
[0055] It should be further noted that when the pipeline is suspended, the pipe orifice is opposite to the fan 802 to enhance air circulation and accelerate drying.
[0056] Embodiment 2: Based on the anti-corrosion coating spraying equipment in Embodiment 1, this embodiment proposes an anti-corrosion coating spraying method, and the steps are as follows:
[0057] S1. Remove the flexible traction member 5 at one end of the pipeline suspension structure, pass the flexible traction member 5 through the pipeline and move the pipeline to the position of the support rod 601; wind the flexible traction member 5 around the fixed rod 307 for preliminary fixation, limit the lower end by passing through the annular ring, and then use the positioning seat 305 to press down and cover the positioning groove to press the end of the steel rope for secondary fixation;
[0058] S2. Make the adjusting ring 606 fit the two pipe orifices of the pipeline by sliding the sliding sleeve 604, and then fix the sliding sleeve 604 with the fixing member 605 to preliminarily limit the pipeline; at this time, the adjusting roller 612 is located above the pipeline, and then slide the adjusting frame 608 along the pipe orifice, and operate the adjusting roller 612 to descend to fit the outer wall of the pipe orifice; the bolt passes through the first fixing hole 614, is threadedly connected to the second fixing hole at one end, and is threadedly connected to the nut at the other end to fix the adjusting frame 608 and complete the secondary limitation of the pipeline;
[0059] S3. Repeat the above operations to successively complete the suspension of all pipelines, so that the pipeline heights are the same and the pipe orifices face the fans 802 at both ends;
[0060] S4. On the one hand, the adjusting rollers 612 at both ends of the pipeline rotate synchronously in one direction to drive the pipeline suspended on the support rod 601 to rotate synchronously; on the other hand, the back-and-forth rotation of the rotating column 2 drives the pipeline to swing back and forth.
[0061] S5. Spraying starts during the vibration, rotation and swinging of the pipeline. The first feeding pipe 603 introduces external paint into the support rod 601 and sprays it downward onto the inner wall of the pipeline through the first spraying hole 602; the spraying plate 402 descends to a suitable height and sprays the outer wall of the pipeline from above.
[0062] S6. The recovery table 701 recovers the overflowing paint.
[0063] S7. After spraying is completed, the fan 802 ventilates and dries the suspended pipeline.
[0064] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to this. Various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those skilled in the art to which the present invention pertains.
Claims
1. An anti-corrosion coating spraying device, characterized in that, Including: A spraying rack (1), with liftable air supply and drying seats (8) arranged at the front and rear of the spraying rack (1). Inside the spraying rack (1), a rotatable rotating column (2), a liftable external spraying seat (4), and a liftable recovery seat (7) are arranged in sequence from top to bottom. The external spraying seat (4) sprays on the outer wall of the pipeline from above. Flexible traction members (5), the flexible traction members (5) are paired and arranged on both sides of the external spraying seat (4) and the rotating column (2), one in front and one behind. A positioning assembly (3), the positioning assembly (3) is arranged on the rotating column (2), corresponding to each pair of flexible traction members (5) one by one, and is used for positioning the upper ends of the corresponding flexible traction members (5). And an internal spraying assembly (6), the middle part of the internal spraying assembly (6) penetrates through the inside of the pipeline, both ends extend out of the pipeline and are respectively provided with adjusting members. The end of the internal spraying assembly (6) is connected to the lower end of the corresponding flexible traction member (5), and the internal spraying assembly (6) sprays on the inner wall of the pipeline from the inside. The distance between the two groups of adjusting members is adjustable. On the one hand, it positions the pipeline from both ends, and on the other hand, it drives the pipeline to rotate self - rotatably from both ends. The rotating column (2), the positioning assembly (3), the flexible traction members (5), and the internal spraying assembly (6) form a closed pipeline suspension structure, making the two ends of the pipeline face one in front and one behind. At the same time, through the rotation of the rotating column (2) and the drive of the adjusting members, the inner and outer parts of the pipeline are synchronously sprayed while the pipeline swings back and forth and rotates self - rotatably.
2. The anti-corrosion coating spraying device according to claim 1, wherein The positioning assembly (3) includes a mounting sleeve (301) sleeved on the rotating column (2) and limiting rings (302) located on both sides of the mounting sleeve (301). The mounting sleeve (301) is provided with a positioning structure for positioning the flexible traction member (5). A positioning frame (303) is mounted on the two groups of limiting rings (302). A lifting drive member (304) is arranged on the positioning frame (303), driving the positioning seat (305) to press down onto the positioning structure to position the flexible traction member (5).
3. The anti-corrosion coating spraying device according to claim 2, characterized in that, The flexible traction member (5) is a steel rope. The positioning structure includes a positioning groove provided on the mounting sleeve (301). The positioning groove is within the covering range of the positioning seat (305), and a fixing rod (307) is arranged in the groove.
4. The anti-corrosion coating spraying device according to claim 1, characterized in that, The internal spraying assembly (6) includes a support rod (601). Both ends of the support rod (601) are respectively connected to the lower ends of the corresponding side flexible traction members (5). The support rod (601) is provided with spraying holes one (602) along the length direction, and a feed pipe one (603) connecting the spraying holes one (602) and the paint storage end is also arranged on the support rod (601). The adjusting members are arranged in a mirror image, one on the left and one on the right, on the support rod (601).
5. The anti-corrosion coating spraying equipment according to claim 4, characterized in that, The adjusting member includes a sliding sleeve (604) slidably arranged on the support rod (601). An adjusting ring (606) is arranged on the sleeve mouth of the sliding sleeve (604), and a vibrating member (607) and a fixing member (605) are arranged on the sleeve body. An arc - shaped groove (609) is arranged at the upper end of the adjusting ring (606). An adjustable frame (608) that can slide is arranged in the arc - shaped groove (609). An adjusting roller (612) is arranged on the side of the adjustable frame (608) facing the pipeline, which can adjust its position to fit the outer wall of the pipeline mouth by moving up and down and drive the pipeline to rotate synchronously by rotating.
6. The anti-corrosion coating spraying equipment according to claim 4, characterized in that, The external spraying seat (4) includes a lifting table (401) located between the support rod (601) and the rotating column (2); the lifting table (401) is slidably arranged on the spraying frame (1) and penetrates through all the pipeline suspension structures. A spraying plate (402) with a second spraying hole corresponding to the support rod (601) one by one is arranged at the bottom of the lifting table (401). A limiting member (403) acting on the flexible traction member (5) and a second feed pipe communicating the second spraying hole and the paint storage end are also arranged on the lifting table (401).
7. The anti-corrosion coating spraying device according to claim 6, wherein The limiting member (403) is an annular ring with a notch (404), and is installed on the front and rear sides of the lifting table (401) corresponding to the position of the spraying plate (402); The notch (404) is located on the side of the annular ring.
8. The anti-corrosion coating spraying equipment according to claim 7, characterized in that, The recovery seat (7) includes a recovery table (701) located below the support rod (601) and slidably arranged on the spraying frame (1); the recovery table (701) is opposite to the lifting table (401) in position, and a recovery pool (702) is arranged at the upper end; a slag retaining net (703) is arranged on the opening of the recovery pool (702).
9. The anti-corrosion coating spraying equipment according to claim 1, characterized in that, The air supply and drying seat (8) includes an air supply and drying table (801) slidably arranged at the front and rear ends of the spraying frame (1); a blower (802) is arranged on the air supply and drying table (801).
10. The anti-corrosion coating spraying equipment according to claim 9, characterized in that, When the pipeline is suspended, the pipe orifice is opposite to the blower (802).
Citation Information
Patent Citations
Anti-corrosion coating spraying equipment for metal product processing
CN118847410B
Environment-friendly three-way pipe surface treatment process
CN111570148A
Detection and maintenance device for reinforced concrete drainage pipe and use method of detection and maintenance device
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