Spraying equipment for color master batch and master batch self-repairing anti-oxidation coating
By designing a spraying device that includes a support base and a moving component, the problems of uneven masterbatch spraying and lack of self-healing protection in the prior art are solved, achieving uniform spraying and anti-oxidation effects.
Patent Information
- Application Number
- CN202511353497.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2025-11-18
AI Technical Summary
Existing masterbatch spraying equipment struggles to achieve uniform coloring during the spraying process and lacks self-healing and antioxidant protection functions.
A spraying device comprising a base, dye box, water pump, support base, particle seat, and oscillating assembly is designed. The uniform spraying of the particle seat is achieved through the reciprocating oscillation of the support base and the cooperation of the moving assembly. The stability of the spraying process is ensured by the stable support of the insert and connecting assembly.
It achieves uniform spraying of color masterbatch particles and self-healing anti-oxidation protection, improving the spraying effect and the ease of operation of the equipment.
Smart Images

Figure CN120961340A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of masterbatch spraying technology, specifically to a masterbatch self-healing anti-oxidation coating spraying equipment. Background Technology
[0002] Color masterbatches suffer from color stability issues due to oxidation during storage or use, or performance degradation due to surface damage. Therefore, a functional coating is needed to add self-healing capabilities and antioxidant protection to the masterbatches. A coloring spraying device for masterbatches, disclosed in patent publication CN208612841U, involves stirring the dye in a mixing tank to achieve a more uniform color. A water pump draws out the uniformly stirred dye, which is then sprayed onto the masterbatches by a nozzle. A spring is used to bounce the masterbatches, allowing them to be colored. However, while the spring force can bounce the masterbatches, it cannot completely color them, failing to achieve uniform coloring. Summary of the Invention
[0003] The purpose of this invention is to address the shortcomings and deficiencies of existing technologies by providing a self-healing anti-oxidation coating spraying device for masterbatch, which is simple in structure, reasonably designed, and easy to use. The box for holding the particles can be disassembled and moved. During spraying, the box is installed and locked in the support base. By driving the support base to swing back and forth, the particles are sprayed evenly, thereby achieving a uniform coloring effect.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: it includes a base, a dye box, and a water pump. The dye box is provided on the upper left side of the base, and the water pump is provided on the upper side of the dye box. The water pump and the dye box are connected through a water pipe, and a drain pipe is provided at the discharge end of the water pump. Also includes: The support base is located on the right side of the dye box; and a support column is fixedly installed at the bottom of the support base, with the bottom end of the support column screwed onto the base via a bearing seat; a center seat is fixedly installed on the inner bottom surface of the support base, and slots are provided on both the left and right sides of the center seat. A swing assembly, wherein the swing assembly is disposed on one side of the support column; The particle seat is located inside the support base. A post is fixedly installed at the bottom of the particle seat and inserted into the center base. Insertion platforms are fixedly installed on both the left and right sides of the post and inserted into the slots. The connecting components are two in number, each disposed on one side of a corresponding socket; The telescopic pipe is provided at the drain end of the drain pipe, and the drain end of the telescopic pipe is provided with a connecting spray pipe. The support frame is an inverted "L" shaped structure and is located on the lower side of the telescopic tube. The vertical end of the support frame is fixedly located on the upper side of the dye box. A movable component, wherein the movable component is disposed inside the support frame; Through the above technical solution design, the masterbatch granules are placed in the granule holder, and the granule holder is installed in the central seat through the insert post and connected and locked by the connecting component to provide stable support for the granule holder; at the same time, the moving component drives the connecting spray pipe to move and be placed on the upper side of the granule holder, and the water pump draws out the dye and sprays it onto the granules; the swinging component drives the support seat to swing, so that the granule holder swings.
[0005] As a further improvement of the present invention, the swing assembly includes: A rotating component is sleeved and fixedly mounted on a support column, and a sliding groove is provided inside the rotating component. A sliding block, wherein the sliding block is slidably disposed within a sliding groove; A rotary motor, wherein the rotary motor is fixedly mounted on the base by a motor bracket, and the rotary motor is located on the right side of the support base; A rotating component is sleeved and fixedly mounted on the output shaft of a rotary motor. The rear end of the rotating component contacts the lower side of the sliding block, and the rotating component and the sliding block are hinged together by a hinge shaft. Through the above technical solution design, the rotation of the rotary motor drives the rotation of the rotating component, which in turn drives the sliding block to move in the sliding groove, causing the rotating component to oscillate back and forth around the screw connection center at the bottom of the support column. The oscillation of the support column causes the support seat to oscillate, thereby driving the particles and dye to mix evenly.
[0006] As a further improvement of the present invention, the connection component includes: The limiting platform consists of four platforms, which are respectively positioned on the front and rear sides of the insertion platform and are fixedly mounted on the outer ring wall of the central seat. Two hydraulic push rods are fixedly mounted on the front side wall of the limiting platform on the front side of the insertion platform. The pushing end of the hydraulic push rod is provided with an insertion rod, which passes through the limiting platform on the front side of the insertion platform, the insertion platform, and the limiting platform on the rear side of the insertion platform in sequence from front to back. An annular groove is opened on the annular wall of the insertion rod, and the annular groove is located on the rear side of the limiting platform on the rear side of the insertion platform. A hydraulic push rod is fixedly mounted on the rear wall of the limiting platform on the rear side of the insertion platform by a bracket, and the hydraulic push rod is located on the outside of the insertion rod. The drive frame is hinged to the limiting platform on the rear side of the insertion platform via a hinge shaft, and a drive groove is provided on the lower side of the drive frame. A slot is provided through the front and rear sides of the drive groove, and the pushing end of the hydraulic push rod is inserted into the drive groove. The drive platform is fixedly mounted on the pushing end of the hydraulic push rod and is slidably inserted into the drive groove; both the front and rear sides of the drive platform are provided with bosses, which are slidably mounted in the groove. The locking element is fixedly installed on the side of the drive frame near the insertion rod, and the locking element is locked in the annular groove; Through the above technical solution design, the hydraulic push rod drives the insertion rod to be inserted into the limiting platform and the insertion platform. The hydraulic push rod drives the drive platform, and the boss moves in the groove, causing the drive frame to rotate around the upper hinge center, so that the clamping part rotates and is locked in the annular groove to strengthen the stability of the insertion rod.
[0007] As a further improvement of the present invention, the moving component includes: The pipe rack consists of two pipe racks, which are respectively fitted onto the drain end of the drain pipe and the inlet end of the spray pipe. A fixing block is fixedly installed on the upper side of the dye box, and the pipe rack on the drain pipe is fixedly installed on the fixing block; The movable block is fixedly installed at the bottom of the pipe rack connected to the nozzle; The driving block is fixedly installed on the left side of the movable block, and the driving block slides through the moving groove that is locked in the inner top surface of the horizontal end of the support frame; a support rod is fixedly installed at the bottom of the driving block. A rotating shaft is screwed through a bearing into the horizontal end of the support frame, and the rotating shaft is located on the rear side of the drive block. The pusher is sleeved and fixedly mounted on the bottom end of the rotating shaft, and the pusher is in contact with the inner top surface of the horizontal end of the support frame; the pusher has a push groove, and the support rod slides through the push groove; A push pair is provided on the upper side of the rotating shaft; Through the above technical solution design, the drive unit drives the rotating shaft to rotate, thereby causing the pusher to rotate. The pusher groove drives the support rod, causing the drive block to move, which in turn drives the movable block to move, thereby adjusting the position of the connecting nozzle.
[0008] As a further improvement of the present invention, the driving pair includes: A drive motor is fixedly mounted on the horizontal end of the support frame via a motor bracket, and the drive motor is located on the rear side of the telescopic rod; A threaded rod is mounted on the output end of a drive motor via a coupling, and a toothed block is threadedly mounted on the threaded rod. The toothed block is slidably mounted on the horizontal axis of the support frame via a sliding pair. A bevel gear, wherein the bevel gear is sleeved and fixed to the upper end of the rotating shaft, and the bevel gear is meshed on the rear side of the tooth block; The above technical solution design drives the motor to start, causing the threaded rod to rotate, which in turn drives the tooth block to mesh with the bevel gear, thus causing the rotating shaft to rotate.
[0009] As a further improvement of the present invention, the pipe rack is composed of a support platform and a cover. The upper side of the support platform is provided with a groove, and the drain end of the drain pipe and the inlet end of the connecting spray pipe are respectively inserted into the groove. The front and rear sides of the support platform are provided with slots. The cover is placed on the upper side of the drain end of the drain pipe and the inlet end of the connecting spray pipe, and the vertical ends of the front and rear sides of the cover are respectively clamped in the corresponding slots. The above technical solution is used to support the drainage pipe and the connecting nozzle.
[0010] As a further improvement of the present invention, a support ring is fixedly provided at the bottom of the particle seat, and the support ring is provided on the outside of the insertion post, with the lower surface of the support ring flush with the lower surface of the insertion post. Through the above technical solution design, after the particle seat is detached from the support seat, the support ring supports the particle seat.
[0011] As a further improvement of the present invention, a protruding ring is provided on the upper side of the particle seat, and the protruding ring is in contact with the upper side of the support seat. Through the above technical solution design, the convex ring supports the particle seat and is easy to handle.
[0012] The working principle of this invention is as follows: color masterbatch granules are placed in the granule seat, and the granule seat is installed in the center seat by the insert post. The hydraulic push rod drives the insert post to be inserted into the limiting platform and the insert platform. The hydraulic push rod drives the drive platform, and the boss moves in the groove, so that the drive frame rotates around the hinge center on the upper side, so that the clamping part rotates and is clamped in the annular groove to strengthen the stability of the insert post and provide stable support for the granule seat. Simultaneously, the motor is started, causing the threaded rod to rotate, which drives the toothed block to mesh with the bevel gear, causing the rotating shaft to rotate; this causes the pushing component to rotate, which in turn drives the support rod, moving the driving block and thus the movable block, adjusting the position of the connecting nozzle; until the connecting nozzle is moved and placed on the upper side of the granule seat; the water pump extracts the dye and sprays it onto the granules; the rotating motor drives the rotating component to rotate, which in turn drives the sliding block to move within the sliding groove, causing the rotating component to oscillate back and forth around the screw joint center at the bottom of the support column. The oscillation of the support column causes the support seat to oscillate, thus mixing the granules and dye evenly.
[0013] Compared with the prior art, the beneficial effects of the present invention are: 1. The granule holder is supported by a support base. The color masterbatch granules are placed inside the granule holder, and the granule holder is supported by the insertion of the insert post and the center seat, which facilitates the removal of the granule holder. 2. Based on the tight fit between the insert post and the center seat, the insert post and the center seat are connected by the tight connection of the insert rod, and the insert rod is clamped and positioned by the drive clamp, so that the particle seat is in a stable state when it is in the support seat; 3. Add a telescopic tube between the drain pipe and the connecting spray pipe to facilitate driving the connecting spray pipe to move it to the upper side of the pellet seat and spray the dye onto the pellets; conversely, when the pellet seat needs to be removed from the support, the telescopic tube is used to move the connecting spray pipe away from the pellet seat, making it easier to operate the pellet seat. 4. By driving the support seat to swing back and forth, the particle seat will swing, so that the particles and dye can be mixed. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of the present invention.
[0015] Figure 2 yes Figure 1 Enlarged view of part A.
[0016] Figure 3 yes Figure 1 A schematic diagram of the isometric structure in the northwest region.
[0017] Figure 4 This is a schematic diagram of the internal structure of the support base in this invention.
[0018] Figure 5 This is a schematic diagram of the swing component in this invention.
[0019] Figure 6 This is a schematic diagram of the connection between the insert post and the center seat in this invention.
[0020] Figure 7 yes Figure 6 Enlarged view of section B in the middle.
[0021] Figure 8 This is a schematic diagram of the support frame in this invention.
[0022] Figure 9 This is a schematic diagram of the pipe rack structure in this invention.
[0023] Explanation of reference numerals in the attached figures: 1. Base; 2. Dye box; 3. Water pump; 4. Drain pipe; 5. Support base; 6. Support column; 7. Center seat; 8. Swing assembly; 8-1. Rotating component; 8-1. Sliding groove; 8-2. Sliding block; 8-3. Rotating motor; 8-4. Particle seat; 9. Insert column; 10. Insertion platform; 11. Connecting assembly; 12. Limiting platform; 12-1. Hydraulic push rod; 12-2. Insert rod; 12-3. Annular groove; 12-4. Hydraulic push rod; 12-5. Drive frame; 12-6. Drive platform; 12-7. Boss; 12 -8, Clamping parts 12-9, Telescopic tube 13, Connecting nozzle 14, Support frame 15, Moving component 16, Pipe rack 16-1, Support platform 16-2, Clamping cover 16-3, Fixing block 16-4, Moving block 16-5, Drive block 16-6, Support rod 16-7, Rotating shaft 16-8, Pushing part 16-9, Pushing pair 16-10, Pushing motor 16-11, Threaded rod 16-12, Tooth block 16-13, Bevel gear 16-14, Support ring 17, Convex ring 18. Detailed Implementation
[0024] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings. The preferred embodiments described are only examples. All other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0025] Example 1: Please refer to Figures 1-9 This embodiment includes a base 1, a dye tank 2, and a water pump 3. The dye tank 2 is located on the upper left side of the base 1, and the water pump 3 is located on the upper side of the dye tank 2. The water pump 3 and the dye tank 2 are connected by a water pipe, and a drain pipe 4 is provided at the discharge end of the water pump 3. It also includes: Support base 5 is located on the right side of dye box 2; and a support column 6 is fixedly provided at the bottom of support base 5, the bottom end of support column 6 is screwed onto base 1 through bearing seat; a center seat 7 is fixedly provided on the inner bottom surface of support base 5, and slots are provided on both the left and right sides of center seat 7. The swing assembly 8 is disposed on one side of the support column 6; The particle seat 9 is disposed inside the support seat 5. A protruding ring 18 is provided on the upper side of the particle seat 9, and the protruding ring 18 is in contact with the upper side of the support seat 5. A post 10 is fixedly provided at the bottom of the particle seat 9 and is inserted into the center seat 7. A platform 11 is fixedly provided on both the left and right sides of the post 10 and is inserted into the slot. A support ring 17 is fixedly provided at the bottom of the particle seat 9 and is disposed on the outside of the post 10. The lower surface of the support ring 17 is flush with the lower surface of the post 10. Two connecting components 12 are respectively disposed on one side of the corresponding plug-in 11; Telescopic pipe 13 is provided at the drain end of drain pipe 4, and the drain end of telescopic pipe 13 is provided with a connecting spray pipe 14. The support frame 15 is an inverted "L" shaped structure and is located on the lower side of the telescopic tube 13. The vertical end of the support frame 15 is fixedly located on the upper side of the dye box 2. Movable component 16, wherein the movable component 16 is disposed inside the support frame 15; Through the above technical solution design, the masterbatch granules are placed in the granule holder 9, and the granule holder 9 is installed in the center seat 7 by the insert post 10 and connected and locked by the connecting component 12 to provide stable support for the granule holder 9; at the same time, the moving component 16 drives the connecting spray pipe 14 to move and be placed on the upper side of the granule holder 9, and the water pump 3 draws out the dye and sprays it onto the granules; the swing component 8 drives the support seat 5 to swing, so that the granule holder 9 swings.
[0026] Example 2: Please refer to Figures 1-9 Based on Embodiment 1, the swing assembly 8 is further improved and includes: Rotating component 8-1 is sleeved and fixedly mounted on the support column 6, and a sliding groove 8-1-1 is provided inside the rotating component 8-1. Sliding block 8-2, wherein the sliding block 8-2 is slidably disposed within the sliding groove 8-1-1; The rotary motor 8-3 is fixedly mounted on the base 1 via a motor bracket, and is located on the right side of the support 5. The specific model of the rotary motor 8-3 is purchased and installed directly from the market according to actual usage requirements. Rotating component 8-4 is sleeved and fixedly mounted on the output shaft of rotary motor 8-3. The rear end of rotating component 8-1 is in contact with the lower side of sliding block 8-2, and rotating component 8-4 and sliding block 8-2 are hinged together by a hinge shaft. Through the above technical solution design, the rotary motor 8-3 rotates and drives the rotating part 8-4 to rotate. The rotation of the rotating part 8-4 drives the sliding block 8-2 to move in the sliding groove 8-1-1, so that the rotating part 8-1 swings back and forth around the screw connection center at the bottom of the support column 6. The support seat 5 swings by the back and forth swing of the support column 6, which drives the particles and dye to mix evenly.
[0027] Example 3: Please refer to Figures 1-9 Based on Embodiment 1, the connection component 12 is further improved and includes: The limiting platform 12-1 consists of four platforms, which are respectively positioned on the front and rear sides of the insertion platform 11, and the limiting platform 12-1 is fixedly mounted on the outer ring wall of the center seat 7. Two hydraulic push rods 12-2 are fixedly mounted on the front side wall of the limiting platform 12-1 on the front side of the insertion platform 11. The pushing end of the hydraulic push rod 12-2 is provided with an insertion rod 12-3, and the insertion rod 12-3 passes through the limiting platform 12-1 on the front side of the insertion platform 11, the insertion platform 11, and the limiting platform 12-1 on the rear side of the insertion platform 11 in sequence from front to back. An annular groove 12-4 is opened on the annular wall of the insertion rod 12-3, and the annular groove 12-4 is located on the rear side of the limiting platform 12-1 on the rear side of the insertion platform 11. The hydraulic push rod 12-5 is fixedly mounted on the rear wall of the limiting platform 12-1 on the rear side of the insertion platform 11 by a bracket, and the hydraulic push rod 12-5 is located on the outside of the insertion rod 12-3. The drive frame 12-6 is hinged to the limiting platform 12-1 on the rear side of the insertion platform 11 via a hinge shaft. The drive frame 12-6 has a drive groove on its lower side, and a slot is provided through the front and rear sides of the drive groove. The pushing end of the hydraulic push rod 12-5 is inserted into the drive groove. The drive platform 12-7 is fixedly mounted on the pushing end of the hydraulic push rod 12-5, and the drive platform 12-7 is slidably inserted into the drive groove; both the front and rear sides of the drive platform 12-7 are provided with bosses 12-8, and the bosses 12-8 are slidably mounted in the groove. The clip 12-9 is fixedly disposed on the side of the drive frame 12-6 near the insertion rod 12-3, and the clip 12-9 is engaged in the annular groove 12-4; Through the above technical solution design, the hydraulic push rod 12-2 drives the insertion rod 12-3 to be inserted into the limiting platform 12-1 and the insertion platform 11, the hydraulic push rod 12-5 drives the drive platform 12-7, and the boss 12-8 moves in the groove, so that the drive frame 12-6 rotates around the upper hinge center, so that the clamp 12-9 rotates and clamps in the annular groove 12-4 to strengthen the stability of the insertion rod 12-3.
[0028] Example 4: Please refer to Figures 1-9 Based on Embodiment 1, the moving component 16 is further improved and includes: Two pipe supports 16-1 are respectively fitted onto the drain end of the drain pipe 4 and the inlet end of the connecting spray pipe 14. The pipe support 16-1 consists of a support platform 16-2 and a cover 16-3. The upper side of the support platform 16-2 is provided with a groove, and the drain end of the drain pipe 4 and the inlet end of the connecting spray pipe 14 are respectively inserted into the groove. The front and rear sides of the support platform 16-2 are provided with slots. The cover 16-3 is placed on the upper side of the drain end of the drain pipe 4 and the inlet end of the connecting spray pipe 14, and the vertical ends of the front and rear sides of the cover 16-3 are respectively locked into the corresponding slots. Fixing block 16-4 is fixedly installed on the upper side of dye box 2, and pipe bracket 16-1 on drain pipe 4 is fixedly installed on fixing block 16-4; Movable block 16-5, the movable block 16-5 is fixedly installed at the bottom of the pipe rack 16-1 connected to the nozzle 14; The driving block 16-6 is fixedly disposed on the left side of the movable block 16-5, and the driving block 16-6 slides through the moving groove in the inner top surface of the horizontal end of the support frame 15; a support rod 16-7 is fixedly disposed at the bottom of the driving block 16-6. Rotating shaft 16-8 is screwed through a bearing and inserted into the horizontal end of the support frame 15, and the rotating shaft 16-8 is located on the rear side of the drive block 16-6; The pusher 16-9 is sleeved and fixedly disposed at the bottom end of the rotating shaft 16-8, and the pusher 16-9 is in contact with the inner top surface of the horizontal end of the support frame 15; the pusher 16-9 has a push groove, and the support rod 16-7 slides through the push groove; A drive pair 16-10 is disposed on the upper side of the rotating shaft 16-8; the drive pair 16-10 includes: The drive motor 16-11 is fixedly mounted on the horizontal end of the support frame 15 via a motor bracket, and is located on the rear side of the telescopic rod. The specific model of the drive motor 16-11 is purchased and installed directly from the market according to actual usage requirements. The threaded rod 16-12 is mounted on the output end of the drive motor 16-11 via a coupling, and a toothed block 16-13 is threadedly connected to the threaded rod 16-12. The toothed block 16-13 is slidably mounted on the horizontal axis of the support frame 15 via a sliding pair. The bevel gear 16-14 is sleeved and fixed to the upper end of the rotating shaft 16-8, and the bevel gear 16-14 is meshed on the rear side of the tooth block 16-13. Through the above technical solution design, the motor 16-11 is started, causing the threaded rod 16-12 to rotate, which drives the toothed block 16-13 to mesh with the bevel gear 16-14, causing the rotating shaft 16-8 to rotate, which in turn causes the pusher 16-9 to rotate, and the pusher groove drives the support rod 16-7, causing the drive block 16-6 to move, which in turn drives the movable block 16-5 to move, thereby adjusting the position of the connecting nozzle 14.
[0029] When using this invention, the color masterbatch particles are placed in the particle seat 9, and the particle seat 9 is installed in the center seat 7 by the insert post 10. The hydraulic push rod 12-2 drives the insert rod 12-3 to be inserted into the limiting platform 12-1 and the insert platform 11. The hydraulic push rod 12-5 drives the drive platform 12-7, and the boss 12-8 moves in the groove, so that the drive frame 12-6 rotates around the upper hinge center, so that the clamp 12-9 rotates and clamps in the annular groove 12-4 to strengthen the stability of the insert rod 12-3 and provide stable support for the particle seat 9. Simultaneously, the drive motor 16-11 starts, causing the threaded rod 16-12 to rotate, driving the toothed block 16-13 to mesh with the bevel gear 16-14, causing the rotating shaft 16-8 to rotate; this causes the pusher 16-9 to rotate, driving the push groove to drive the support rod 16-7, causing the drive block 16-6 to move, which in turn moves the movable block 16-5, allowing the connecting nozzle 14 to adjust its position; until the connecting nozzle 14 is moved and placed on the upper side of the granule seat 9; the water pump 3 extracts the dye and sprays it onto the granules; the rotation of the rotary motor 8-3 drives the rotating part 8-4 to rotate, which in turn drives the sliding block 8-2 to move within the sliding groove 8-1-1, causing the rotating part 8-1 to reciprocate around the screw connection center at the bottom of the support column 6; the reciprocating oscillation of the support column 6 causes the support seat 5 to oscillate, thus mixing the granules and dye evenly.
[0030] Compared with the prior art, the beneficial effects of the present invention are: 1. The support seat 5 supports the granule seat 9. The color masterbatch granules are placed in the granule seat 9, and the granule seat 9 is supported by the insertion of the insert post 10 and the center seat 7, which facilitates the removal of the granule seat 9. 2. Based on the tight fit between the insert post 10 and the center seat 7, the insert post 10 and the center seat 7 are connected by the tight connection of the insert rod 12-3, and the insert rod 12-3 is clamped and positioned by the drive clip 12-9, so that the particle seat 9 is in a stable state when it is in the support seat 5. 3. A telescopic pipe 13 is added between the drain pipe 4 and the connecting spray pipe 14 to facilitate driving the connecting spray pipe 14 to move it to the upper side of the particle seat 9 and spray the dye onto the particles; conversely, when the particle seat 9 needs to be removed from the support seat 5, the telescopic pipe 13 is used to move the connecting spray pipe 14 away from the particle seat 9 to facilitate operation of the particle seat 9. 4. By driving the support seat 5 to swing back and forth, the particle seat 9 will swing, so that the particles and dye can be mixed.
[0031] For those skilled in the art, modifications can be made to the technical solutions described in the foregoing embodiments, and equivalent substitutions can be made to some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this invention should be included within the protection scope of this invention.
Claims
1. A color master batch self-repairing anti-oxidation coating spraying device, comprising a base (1), a dye tank (2), and a water pump (3), the upper left side of the base (1) is provided with the dye tank (2), the upper side of the dye tank (2) is provided with the water pump (3), the water pump (3) and the dye tank (2) are connected through a water pipe, and the discharge end of the water pump (3) is provided with a drain pipe (4); characterized in that It also comprises: a support seat (5) provided on the right side of the dye tank (2); and a support column (6) fixedly arranged at the bottom of the support seat (5), the bottom end of the support column (6) is rotatably arranged on the base (1) through a bearing seat; a center seat (7) is fixedly arranged on the inner bottom surface of the support seat (5), and the left and right sides of the center seat (7) are provided with slots; a swing assembly (8) arranged on one side of the support column (6); a particle seat (9) arranged in the support seat (5), a plug column (10) fixedly arranged at the bottom of the particle seat (9) is inserted into the center seat (7); plug stations (11) are fixedly arranged on the left and right sides of the plug column (10) and are inserted into the slots; a connecting assembly (12) arranged on one side of the corresponding plug station (11); a telescopic pipe (13) arranged at the drainage end of the drain pipe (4), and a connecting spray pipe (14) is arranged at the drainage end of the telescopic pipe (13); a support frame (15) arranged in an inverted "L" shape, and the support frame (15) is arranged on the lower side of the telescopic pipe (13), and the vertical end of the support frame (15) is fixedly arranged on the upper side of the dye tank (2); a moving assembly (16) arranged in the support frame (15).
2. The color master batch self-repairing anti-oxidation coating spraying equipment according to claim 1, characterized in that: The swing assembly (8) comprises: a rotating piece (8-1) sleeved and fixedly arranged on the support column (6), and a sliding groove (8-1-1) is formed in the rotating piece (8-1); a sliding block (8-2) slidably arranged in the sliding groove (8-1-1); a rotating motor (8-3) fixedly arranged on the base (1) through a motor support, and the rotating motor (8-3) is arranged on the right side of the support seat (5); a rotating piece (8-4) sleeved and fixedly arranged on the output shaft of the rotating motor (8-3), the rear end of the rotating piece (8-1) is arranged on the lower side of the sliding block (8-2), and the rotating piece (8-4) and the sliding block (8-2) are hingedly connected through a hinge shaft.
3. The color masterbatch self-repairing anti-oxidation coating spraying device according to claim 1, characterized in that: The connecting assembly (12) comprises: four limiting tables (12-1) arranged on the front and rear sides of the plug station (11), and the limiting tables (12-1) are fixedly arranged on the outer ring wall of the center seat (7). Hydraulic push rod (12-2), the hydraulic push rod (12-2) is two, respectively fixedly arranged on the front side wall of the limiting table (12-1) of the front side of the insertion station (11);The push end of the hydraulic push rod (12-2) is provided with a plug rod (12-3), and the plug rod (12-3) is sequentially provided from front to back in the limiting table (12-1) of the front side of the insertion station (11), the insertion station (11) and the limiting table (12-1) of the rear side of the insertion station (11);The annular wall of the plug rod (12-3) is provided with an annular groove (12-4), and the annular groove (12-4) is arranged on the rear side of the limiting table (12-1) of the rear side of the insertion station (11); Hydraulic push rod (12-5), the hydraulic push rod (12-5) is fixedly arranged on the rear wall of the limiting table (12-1) of the rear side of the insertion station (11) by the support, and the hydraulic push rod (12-5) is arranged on the outer side of the plug rod (12-3); Drive frame (12-6), the drive frame (12-6) is hingedly arranged on the limiting table (12-1) of the rear side of the insertion station (11) by the hinge shaft, and the lower side of the drive frame (12-6) is provided with a drive slot, and the front and rear sides of the drive slot are provided with a strip slot, and the push end of the hydraulic push rod (12-5) is inserted into the drive slot; Drive table (12-7), the drive table (12-7) is fixedly arranged on the push end of the hydraulic push rod (12-5), and the drive table (12-7) is slidably inserted into the drive slot;The front and rear sides of the drive table (12-7) are provided with a boss (12-8), and the boss (12-8) is slidably arranged in the strip slot; Clamping piece (12-9), the clamping piece (12-9) is fixedly arranged on one side of the drive frame (12-6) close to the plug rod (12-3), and the clamping piece (12-9) is clamped in the annular groove (12-4).
4. The color masterbatch self-repairing anti-oxidation coating spraying device according to claim 1, characterized in that: The moving assembly (16) comprises: Pipe frame (16-1), the pipe frame (16-1) is two, respectively sleeved on the drainage end of the drain pipe (4) and the water inlet end of the connecting nozzle (14); Fixed block (16-4), the fixed block (16-4) is fixedly arranged on the upper side of the dye tank (2), and the pipe frame (16-1) on the drain pipe (4) is fixedly arranged on the fixed block (16-4); Movable block (16-5), the movable block (16-5) is fixedly arranged on the bottom of the pipe frame (16-1) on the connecting nozzle (14); Drive block (16-6), the drive block (16-6) is fixedly arranged on the left side of the movable block (16-5), and the drive block (16-6) is slidably inserted into the clamped moving slot in the inner top surface of the horizontal end of the support frame (15);The bottom of the drive block (16-6) is fixedly provided with a support rod (16-7); Rotary shaft (16-8), the rotary shaft (16-8) is rotatably inserted into the horizontal end of the support frame (15) through the bearing, and the rotary shaft (16-8) is arranged on the rear side of the drive block (16-6). A pushing member (16-9) is sleeved and fixedly arranged at the bottom end of the rotating shaft (16-8), and the pushing member (16-9) is in contact with the inner top surface of the horizontal end of the support frame (15); the pushing member (16-9) is internally provided with a pushing groove, and the supporting rod (16-7) is slidably arranged in the pushing groove; A pushing pair (16-10) is arranged on the upper side of the rotating shaft (16-8).
5. The color masterbatch self-repairing anti-oxidation coating spraying device according to claim 4, characterized in that: The pushing pair (16-10) comprises: A pushing motor (16-11) is fixedly arranged on the horizontal end of the support frame (15) through a motor support, and the pushing motor (16-11) is arranged on the rear side of the telescopic rod; A threaded rod (16-12) is arranged on the output end of the pushing motor (16-11) through a shaft coupling, and a tooth block (16-13) is threadedly connected to the threaded rod (16-12), and the tooth block (16-13) is slidably arranged on the horizontal end of the support frame (15) through a sliding pair; A bevel gear (16-14) is sleeved and fixedly arranged on the upper end of the rotating shaft (16-8), and the bevel gear (16-14) is arranged on the rear side of the tooth block (16-13).
6. The color masterbatch self-healing anti-oxidation coating spraying device according to claim 4, characterized in that: The pipe frame (16-1) is composed of a support table (16-2) and a clamping cover (16-3), the upper side of the support table (16-2) is provided with a groove, and the drainage end of the drain pipe (4) and the water inlet end of the connecting spray pipe (14) are respectively arranged in the groove, and the front and rear sides of the support table (16-2) are provided with clamping grooves; the clamping cover (16-3) is arranged on the upper side of the drainage end of the drain pipe (4) and the water inlet end of the connecting spray pipe (14), and the vertical ends of the front and rear sides of the clamping cover (16-3) are clamped in the corresponding clamping grooves.
7. The color masterbatch self-healing anti-oxidation coating spraying device according to claim 1, characterized in that: The bottom of the particle seat (9) is fixedly provided with a supporting ring (17), and the supporting ring (17) is arranged on the outer side of the insertion column (10), and the lower surface of the supporting ring (17) is arranged in the same plane as the lower surface of the insertion column (10).
8. The color masterbatch self-healing anti-oxidation coating spraying device according to claim 1, characterized in that: The upper side of the particle seat (9) is provided with a convex ring (18), and the convex ring (18) is in contact with the upper side of the supporting seat (5). The upper side of the particle seat (9) is provided with a convex ring (18), and the convex ring (18) is in contact with the upper side of the supporting seat (5).
Citation Information
Patent Citations
Color grain's spraying device that colors
CN208612841U