Digital dyeing process for realizing gradient color effect

By introducing components such as support frames, slide rails, electric telescopic rods and color fixing boxes into the dyeing device, the problems of uneven dyeing and poor color fixing effects caused by fabric floating dyeing are solved, and uniform dyeing and color fixing effects of gradient colors are achieved.

CN120384376APending Publication Date: 2025-07-29HUAIAN GOLDEN RIBBON DYEING CO LTD
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Patent Information

Application Number
CN202510603657.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

When the fabric is installed on the hanger as a whole, the fabric floats on the surface of the dye, resulting in uneven dyeing and poor color fixation effect.

Method used

The supporting frame, slide rail, electric telescopic rod, limit block, drive gear and scraper block are used in the dyeing box body to achieve clamping and dyeing of the fabric multiple times, and the contact position between the material and the fixing agent is adjusted through the bearing plate and electric push rod of the fixing box to ensure uniform fixing of the color.

Benefits of technology

The uniformity of gradient color dyeing and the effect of color fixation are achieved, the problems of uneven color dyeing and uneven color fixation are avoided, and the overall dyeing efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of dyeing, in particular to a digital dyeing process for realizing a gradient color effect, which comprises a dyeing box body, a control panel is mounted on the front surface of the dyeing box body, a support frame is mounted on the top surface of the dyeing box body, and a slide rail body is mounted on the lower surface of the support frame. An electric telescopic rod is arranged at the lower end of the sliding rail body, an ejector block is installed at the lower end of the electric telescopic rod, and a first limiting block and a second limiting block are sequentially installed at the lower end of the ejector block from left to right. According to the device, the scraping block can abut against the outer surface of a material through rotation, redundant coloring agents on the surface of the material can be scraped and dripped, the situation that the redundant coloring agents on the surface of the material are dripped due to the fact that a large amount of time is consumed by the subsequent material is avoided, and therefore the bottom end of the material is clamped in the gradient dyeing process; meanwhile, redundant coloring agents on the surface can be scraped off.
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Description

Technical Field

[0001] The present invention relates to the technical field of dyeing, and particularly to a digital dyeing process for achieving a gradient color effect. Background Art

[0002] A gradient color refers to the color of an object that changes from light to dark, or from deep to shallow, or slowly transitions from one color to another, full of the mysterious and romantic atmosphere of endless changes.

[0003] In this regard, Chinese Patent Application No.: CN212152703U discloses a silk gradient color dyeing device, including a silk gradient color dyeing device, an immersion tank, a uv air purifier body, a fixed pulley and silk. The upper end of the immersion tank is provided with an upper cover. Connecting ear plates are welded at both ends of the top of the immersion tank and both ends of the bottom of the upper cover. One end of the inner top of the upper cover is installed with a uv air purifier body by screws. A connecting plate is installed at the other end of the inner top of the upper cover by screws. A silk winding roller is provided on the connecting plate, and both ends of the silk winding roller are connected to the connecting plate through bearings. Fixed pulleys are arranged around the inner side of the immersion tank, and the fixed pulleys are fixedly connected to the inner side wall of the immersion tank through a fixing frame and bolts. The inside of the immersion tank is filled with dye, and a discharge port is opened at the upper end of one side of the immersion tank. The utility model has remarkable effects, is simple to operate, durable, can meet the working requirements, and is suitable for popularization.

[0004] However, when the fabric is installed on the hanger as a whole, at this time the fabric will float on the surface of the dyeing agent and will not sink as a whole. As a result, color spots or dye stains will be caused during subsequent dyeing, making the overall gradient color uneven. At the same time, when the fabric is fixed in the fixing agent, the whole fabric cannot move, resulting in a poor overall fixing effect. Therefore, improving and optimizing the above problems has become an urgent problem to be solved at present. Summary of the Invention

[0005] The purpose of the present invention is to provide a digital dyeing process for achieving a gradient color effect, so as to solve the problems mentioned in the above background art. When the fabric is installed on the hanger as a whole, the fabric will float on the surface of the dyeing agent and will not sink as a whole. As a result, color spots or dye stains will be caused during subsequent dyeing, making the overall gradient color uneven. At the same time, when the fabric is fixed in the fixing agent, the whole fabric cannot move, resulting in a poor overall fixing effect.

[0006] To achieve the above object, the present invention provides the following technical solution: A digital dyeing process for achieving a gradient color effect, including a dyeing tank body, a control panel is installed on the front surface of the dyeing tank body, a support frame is installed on the top surface of the dyeing tank body, a slide rail body is installed on the lower surface of the support frame, an electric telescopic rod is arranged at the lower end of the slide rail body, a top block is installed at the lower end of the electric telescopic rod, a first limit block and a second limit block are successively installed at the lower end of the top block from left to right, a first electric push rod is inserted and installed inside the second limit block, a fixing frame is installed on the right side surface of the first electric push rod, and the fixing frame is installed on the right side surface of the second limit block; A connecting plate, the connecting plate is installed on the back surface of the top block, a rack plate is installed at the lower end of the connecting plate, a first driving gear is meshed and connected to the left side surface of the rack plate, the front end of the first driving gear penetrates through the back surface of the dyeing tank body and is installed with a first rotating shaft, the first driving gear is installed on the back surface of the dyeing tank body, the front end of the first rotating shaft penetrates through the front surface of the dyeing tank body and is installed with a transmission mechanism, a first stabilizing block is installed on the outer surface of the first rotating shaft, and a first pressing block is installed on the right side surface of the first stabilizing block.

[0007] Preferably, a first gear is installed on the back surface of the transmission mechanism, and a second gear is meshed and connected to the right side surface of the first gear.

[0008] Preferably, the back surface of the second gear penetrates through the inside of the dyeing tank body and is installed with a second rotating shaft, a second stabilizing block is installed on the outer surface of the second rotating shaft, and a second pressing block is installed on the left side of the second stabilizing block.

[0009] Preferably, an installation frame is fixedly connected to the back surface of the dyeing tank body, and a second driving gear is installed on the front surface of the installation frame.

[0010] Preferably, a connecting rod is installed at the front end of the second driving gear, and a rotating cylinder is installed on the front surface of the connecting rod.

[0011] Preferably, a positioning rod is installed on the outer surface of the rotating cylinder, and a scraping block is installed on the right side surface of the positioning rod.

[0012] Preferably, a fixing tank body is installed on the right side surface of the dyeing tank body, and a bottom plate is installed on the inner side wall of the fixing tank body.

[0013] Preferably, a first telescopic cylinder and a second telescopic cylinder are successively installed on the surface of the bottom plate from left to right, a first bearing plate is installed on the top surface of the first telescopic cylinder, a second bearing plate is installed on the top surface of the second telescopic cylinder, a second electric push rod is installed inside the second bearing plate, and a pressing block is installed on the top surface of the second electric push rod.

[0014] Preferably, a support block is installed on the right surface of the fixing box body, a driving motor is installed on the upper surface of the support block, the output end of the driving motor penetrates through the right surface of the fixing box body and is installed with an output shaft, a first convex block and a second convex block are sequentially installed on the outer surface of the output shaft from left to right, the upper surface of the first convex block abuts against the lower surface of the first bearing plate, the upper surface of the second convex block abuts against the lower surface of the second bearing plate, a stabilizing ring is installed on one side of the surface of the output shaft, and the stabilizing ring is installed on the surface of the bottom plate.

[0015] A digital dyeing process for achieving a gradient color effect includes the following steps: Fix the material. Immerse the material into the dyeing box for dyeing, and repeat the above dyeing operation to dye the material into a gradient color. Wash off the deeper floating color on the surface of the material. Immerse the material in the fixing agent working solution, and then wash with water, apply softener, dehydrate and dry. Complete the gradient color dyeing of the material.

[0016] Compared with the prior art, the beneficial effects of the present invention are: The digital dyeing process for achieving a gradient color effect, through the set support frame, slide rail body, electric telescopic rod, top block, first limit block, second limit block, first electric push rod, fixed frame, connecting plate, rack plate, first driving gear, first rotating shaft, transmission mechanism, first stabilizing block, first extrusion block, first gear and second gear. When in use, at this time, the dyeing agent to be dyed has been loaded into the interior of the dyeing tank body. Place the fabric or textile to be dyed between the first limit block and the second limit block, and then start the first electric push rod. The first electric push rod moves to the left, and then the first electric push rod clamps and stabilizes the materials inside the first limit block and the second limit block. Then start the electric telescopic rod to move downward, which can drive the entire top block to move downward, so the materials inside the top block will also move downward. When the top block moves downward, at this time the connecting plate will also follow the top block to descend, and then the connecting plate will drive the rack plate to start descending. At this time, the left surface of the rack plate will contact the first driving gear, and then the first driving gear starts to rotate clockwise. Thus, the first driving gear drives the first rotating shaft, the first stabilizing block and the first extrusion block to rotate clockwise. At the same time, the transmission mechanism will also start to rotate. The transmission mechanism drives the first gear to rotate. Then after the first gear starts to rotate, it meshes with the second gear. At this time, the second gear starts to rotate counterclockwise. Through the second gear, the second rotating shaft, the second stabilizing block and the second extrusion block can be driven to rotate counterclockwise. Through the rotation of the first extrusion block and the second extrusion block, the two sides of the bottom end of the material can be clamped and resisted, thus avoiding the situation that the material is prone to floating on the surface of the dyeing tank body in the past. When the top block descends, at this time the material will also follow the top block to descend into the interior of the dyeing tank body for dyeing operation. Then through the ascending and descending of the top block, the material is driven to move inside the dyeing tank body at the same time, so that the material can be dyed multiple times, and thus a gradient color can be dyed on the surface of the material. When the rack plate moves up and down, at this time the rack plate will also contact the outer surface of the second driving gear, and the second driving gear meshes with the rack plate. Then the second driving gear drives the connecting rod and the rotating cylinder to rotate. Then through the connecting rod, the rotating cylinder can be driven to rotate. Then the rotating cylinder drives the positioning rod and the scraping block to rotate. Through the rotation of the scraping block, it can contact the outer surface of the material and scrape off the excess dyeing agent on the surface of the material and let it drip. This avoids the subsequent situation that the material takes a lot of time to let the excess dyeing agent on its surface drip. Therefore, this design clamps the bottom end of the material during the process of achieving gradient color dyeing, and at the same time can scrape off the excess dyeing agent on its surface. The overall operation effect is good, reflecting the functionality of the design.

[0017] The digital dyeing process for achieving a gradient color effect, through the set fixing box body, bottom plate, first telescopic cylinder, first bearing plate, second telescopic cylinder, second bearing plate, second electric push rod, pressing block, driving motor, output shaft, first convex block, second convex block and stabilizing ring. When in use, after the gradient color dyeing operation is completed, at this time, the electric telescopic rod is transported above the fixing box body through the slide rail body, and then the limit on the material is released. The material will fall into the interior of the fixing box body, and then the material is placed on the surfaces of the first bearing plate and the second bearing plate. Subsequently, the second bearing plate is made to fit on the surface of the material by the downward movement of the second electric push rod, which can limit the material on the surfaces of the first bearing plate and the second bearing plate. Then the material will complete the fixing operation inside the fixing box body. At the same time, the driving motor is started, and the driving motor can drive the output shaft to rotate. When the output shaft rotates, at this time, the first convex block will first contact the lower surface of the first bearing plate, so that the first bearing plate will move upward through the design of the first telescopic cylinder, and thus the first bearing plate will also move upward. At this time, the state of the material is high on the left and low on the right. Subsequently, when the first bearing plate descends, at this time, the second convex block will contact the lower surface of the second bearing plate, and then the second bearing plate will rise, so that the material on the surface of the second bearing plate will rise. At this time, the state of the material is low on the left and high on the right. By circulating this operation, the position of the material during fixing inside the fixing box body can be adjusted, so that the material can evenly contact the fixing agent, and the overall fixing effect is good, reflecting the ingenuity of the design. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is a three-dimensional schematic diagram of the structure of the present invention; Figure 2 is a three-dimensional schematic diagram of the structure of the top block and the connecting plate of the present invention; Figure 3 is a split schematic diagram of the structure of the rack plate and the first driving gear of the present invention; Figure 4 is a three-dimensional schematic diagram of the structure of the rotating cylinder and the connecting rod of the present invention; Figure 5 is a three-dimensional schematic diagram of the structure of the bottom plate and the first bearing plate of the present invention; Figure 6 is a three-dimensional schematic diagram of the structure of the second bearing plate and the second telescopic cylinder of the present invention; Figure 7 is a three-dimensional schematic diagram of the structure of the driving motor and the output shaft of the present invention.

[0019] In the figure: 1. Dyeing box body; 2. Control panel; 3. Support frame; 4. Slide rail body; 5. Electric telescopic rod; 6. Top block; 7. First limit block; 8. Second limit block; 9. First electric push rod; 10. Fixed frame; 11. Connecting plate; 12. Rack plate; 13. First driving gear; 14. First rotating shaft; 15. Transmission mechanism; 16. First stabilizing block; 17. First extrusion block; 18. First gear; 19. Second gear; 20. Second rotating shaft; 21. Second stabilizing block; 22. Second extrusion block; 23. Mounting frame; 24. Second driving gear; 25. Connecting rod; 26. Rotating cylinder; 27. Positioning rod; 28. Scraping block; 29. Fixing color box body; 30. Bottom plate; 31. First telescopic cylinder; 32. First bearing plate; 33. Second telescopic cylinder; 34. Second bearing plate; 35. Second electric push rod; 36. Pressing block; 37. Driving motor; 38. Output shaft; 39. First convex block; 40. Second convex block; 41. Stabilizing ring. Detailed implementation manners

[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0021] Please refer to Figures 1-7 , an embodiment provided by the present invention: A digital dyeing process for achieving a gradient color effect. The control panel 2, electric telescopic rod 5, first electric push rod 9, transmission mechanism 15, first telescopic cylinder 31, second electric push rod 35, and drive motor 37 used in this application are all products that can be directly purchased on the market. Their principles and connection methods are all well-known prior arts to those skilled in the art, so they will not be elaborated here. It includes a dyeing tank body 1. A control panel 2 is installed on the front surface of the dyeing tank body 1. A support frame 3 is installed on the top surface of the dyeing tank body 1. A slide rail body 4 is installed on the lower surface of the support frame 3. An electric telescopic rod 5 is arranged at the lower end of the slide rail body 4. A top block 6 is installed at the lower end of the electric telescopic rod 5. A first limit block 7 and a second limit block 8 are successively installed at the lower end of the top block 6 from left to right. A first electric push rod 9 is inserted and installed inside the second limit block 8. A fixing frame 10 is installed on the right side surface of the first electric push rod 9. The fixing frame 10 is installed on the right side surface of the second limit block 8. An installation frame 23 is fixedly connected to the back surface of the dyeing tank body 1. A second driving gear 24 is installed on the front surface of the installation frame 23. A connecting rod 25 is installed at the front end of the second driving gear 24. A rotating cylinder 26 is installed on the front surface of the connecting rod 25. A positioning rod 27 is installed on the outer surface of the rotating cylinder 26. A scraping block 28 is installed on the right side surface of the positioning rod 27. A fixing tank body 29 is installed on the right side surface of the dyeing tank body 1. A bottom plate 30 is installed on the inner side wall of the fixing tank body 29. A first telescopic cylinder 31 and a second telescopic cylinder 33 are successively installed on the surface of the bottom plate 30 from left to right. A first bearing plate 32 is installed on the top surface of the first telescopic cylinder 31. A second bearing plate 34 is installed on the top surface of the second telescopic cylinder 33. A second electric push rod 35 is installed inside the second bearing plate 34. A pressing block 36 is installed on the top surface of the second electric push rod 35. A support block is installed on the right side surface of the fixing tank body 29. A drive motor 37 is installed on the upper surface of the support block. The output end of the drive motor 37 penetrates through the right side surface of the fixing tank body 29 and is installed with an output shaft 38. A first convex block 39 and a second convex block 40 are successively installed on the outer surface of the output shaft 38 from left to right. The upper surface of the first convex block 39 abuts against the lower surface of the first bearing plate 32. The upper surface of the second convex block 40 abuts against the lower surface of the second bearing plate 34. A stabilizing ring 41 is installed on one side surface of the output shaft 38. The stabilizing ring 41 is installed on the surface of the bottom plate 30. When the gradient color dyeing operation is completed, at this time, the electric telescopic rod 5 is conveyed above the fixing tank body 29 through the slide rail body 4, and then the limit on the material is released. The material will fall into the fixing tank body 29, and then the material is placed on the surfaces of the first bearing plate 32 and the second bearing plate 34. Subsequently, the second bearing plate 34 is made to fit on the surface of the material by the descent of the second electric push rod 35, and the material can be limited on the surfaces of the first bearing plate 32 and the second bearing plate 34. Then the material will complete the fixing operation inside the fixing tank body 29. At the same time, the drive motor 37 is started, and the drive motor 37 can drive the output shaft 38 to rotate. When the output shaft 38 rotates,At this time, the first convex block 39 will preferentially contact the lower surface of the first bearing plate 32, so that the first bearing plate 32 will move upward through the design of the first telescopic cylinder 31, and thus the first bearing plate 32 will also move upward. At this time, the state of the material is high on the left and low on the right. Subsequently, when the first bearing plate 32 descends, the second convex block 40 will contact the lower surface of the second bearing plate 34, and then the second bearing plate 34 will rise, so that the material on the surface of the second bearing plate 34 will rise. At this time, the state of the material is low on the left and high on the right. By repeating this operation, the position of the material being fixed in the fixing box body 29 can be adjusted, so that the material can evenly contact the fixing agent, and the overall fixing effect is better; Connecting plate 11, the connecting plate 11 is installed on the back surface of the top block 6. A rack plate 12 is installed at the lower end of the connecting plate 11. The left side surface of the rack plate 12 is meshed and connected with a first driving gear 13. The front end of the first driving gear 13 penetrates through the back surface of the dyeing tank body 1 and is installed with a first rotating shaft 14. The first driving gear 13 is installed on the back surface of the dyeing tank body 1. The front end of the first rotating shaft 14 penetrates through the front surface of the dyeing tank body 1 and is installed with a transmission mechanism 15. A first stabilizing block 16 is installed on the outer surface of the first rotating shaft 14. A first pressing block 17 is installed on the right side surface of the first stabilizing block 16. A first gear 18 is installed on the back surface of the transmission mechanism 15. The right side surface of the first gear 18 is meshed and connected with a second gear 19. The back surface of the second gear 19 penetrates through the inside of the dyeing tank body 1 and is installed with a second rotating shaft 20. A second stabilizing block 21 is installed on the outer surface of the second rotating shaft 20. A second pressing block 22 is installed on the left side of the second stabilizing block 21. At this time, the dyeing agent to be dyed has been loaded into the dyeing tank body 1. Place the fabric or textile to be dyed between the first limiting block 7 and the second limiting block 8. Then start the first electric push rod 9 and move it to the left through the first electric push rod 9. Then the first electric push rod 9 will clamp and stabilize the materials inside the first limiting block 7 and the second limiting block 8. Then start the electric telescopic rod 5 to move downward, so as to drive the top block 6 to move downward as a whole. Thus, the materials inside the top block 6 will also move downward. When the top block 6 moves downward, at this time the connecting plate 11 will also follow the top block 6 to descend. Then the connecting plate 11 will drive the rack plate 12 to start descending. At this time, the left side surface of the rack plate 12 will contact the first driving gear 13. Then the first driving gear 13 starts to rotate clockwise. Thus, the first driving gear 13 will drive the first rotating shaft 14, the first stabilizing block 16 and the first pressing block 17 to rotate clockwise. At the same time, the transmission mechanism 15 will also start to rotate. The transmission mechanism 15 drives the first gear 18 to rotate. Then after the first gear 18 starts to rotate, it meshes with the second gear 19. At this time, the second gear 19 starts to rotate counterclockwise. The second gear 19 can drive the second rotating shaft 20, the second stabilizing block 21 and the second pressing block 22 to rotate counterclockwise. Through the rotation of the first pressing block 17 and the second pressing block 22, the two sides of the bottom end of the material can be pressed and clamped, thus avoiding the situation that the material is prone to floating on the surface of the dyeing tank body 1 in the past. When the top block 6 descends, at this time the material will also follow the top block 6 to descend into the dyeing tank body 1 for dyeing operation. Then the material is driven to move inside the dyeing tank body 1 by the ascending and descending of the top block 6, so as to be dyed multiple times, and thus a gradient color will be dyed on the surface of the material. When the rack plate 12 moves up and down, at this time the rack plate 12 will also contact the outer surface of the second driving gear 24, and the second driving gear 24 meshes with the rack plate 12. Then the second driving gear 24 will drive the connecting rod 25 and the rotating cylinder 26 to rotate. Then the connecting rod 25 can drive the rotating cylinder 26 to rotate.Then, the rotation of the rotating cylinder 26 drives the positioning rod 27 and the scraping block 28 to rotate. Through the rotation of the scraping block 28, it can contact the outer surface of the material, and scrape and drip the excess dye on the surface of the material, avoiding the subsequent material spending a lot of time dripping the excess dye on its surface. Therefore, this design clamps the bottom end of the material during the process of achieving gradient color dyeing, and at the same time can scrape off the excess dye on its surface, with a better overall operation effect.

[0022] A digital dyeing process for achieving a gradient color effect includes the following steps: Fix the material; Immerse the material into the dyeing tank for dyeing, and repeat the above dyeing operation to dye the material into a gradient color; Wash off the deeper floating color on the surface of the material; Soak the material in the fixing agent working solution, and then wash with water, apply softener, dehydrate and dry; Complete the gradient color dyeing of the material.

[0023] Working principle: When the staff uses this device, first connect the device to an external power supply to provide power support for the device. At this time, the dyeing agent to be dyed has been loaded into the interior of the dyeing tank body 1. Place the fabric or textile to be dyed between the first limit block 7 and the second limit block 8, and then start the first electric push rod 9. Move the first electric push rod 9 to the left. Then the first electric push rod 9 will clamp and stabilize the materials inside the first limit block 7 and the second limit block 8. Then start the electric telescopic rod 5 to move downward, which can drive the top block 6 to move downward as a whole. Thus, the materials inside the top block 6 will also move downward. When the top block 6 moves downward, at this time, the connecting plate 11 will also follow the top block 6 to descend. Then the connecting plate 11 will drive the rack plate 12 to start descending. At this time, the left surface of the rack plate 12 will contact the first driving gear 13, and then start to rotate clockwise through the first driving gear 13. Thus, the first driving gear 13 will drive the first rotating shaft 14, the first stabilizing block 16 and the first pressing block 17 to rotate clockwise. At the same time, the transmission mechanism 15 will also start to rotate. Drive the first gear 18 to rotate through the transmission mechanism 15. Then after the first gear 18 starts to rotate, it meshes with the second gear 19. At this time, the second gear 19 starts to rotate counterclockwise. The second rotating shaft 20, the second stabilizing block 21 and the second pressing block 22 can be driven to rotate counterclockwise through the second gear 19. Through the rotation of the first pressing block 17 and the second pressing block 22, the two sides of the bottom end of the material can be resisted and clamped, thus avoiding the situation that the material is prone to floating on the surface of the dyeing tank body 1 in the past. When the top block 6 descends, at this time, the material will also follow the top block 6 and descend into the interior of the dyeing tank body 1 for dyeing operation. Then drive the material to move inside the dyeing tank body 1 through the ascending and descending of the top block 6, so that the material can be dyed multiple times, and thus a gradient color will be dyed on the surface of the material. When the rack plate 12 moves up and down, at this time, the rack plate 12 will also contact the outer surface of the second driving gear 24, and the second driving gear 24 meshes with the rack plate 12. Then the second driving gear 24 will drive the connecting rod 25 and the rotating cylinder 26 to rotate. Then the rotating cylinder 26 can be driven to rotate through the connecting rod 25. Then the rotating cylinder 26 will drive the positioning rod 27 and the scraping block 28 to rotate. Through the rotation of the scraping block 28, it can contact the outer surface of the material and scrape off and drip the excess dyeing agent on the surface of the material, avoiding the subsequent situation that the material takes a lot of time to drip the excess dyeing agent on its surface; After the gradient color dyeing operation is completed, at this time, the electric telescopic rod 5 is conveyed above the fixing box body 29 through the slide rail body 4, and then the limit on the material is released. The material will fall into the fixing box body 29, and then the material is placed on the surfaces of the first bearing plate 32 and the second bearing plate 34. Subsequently, the second bearing plate 34 is attached to the surface of the material by the descent of the second electric push rod 35, and the material can be limited on the surfaces of the first bearing plate 32 and the second bearing plate 34. Then, the material will complete the fixing operation inside the fixing box body 29. At the same time, the driving motor 37 is started, and the output shaft 38 can be driven to rotate by the driving motor 37. When the output shaft 38 rotates, at this time, the first convex block 39 will preferentially contact the lower surface of the first bearing plate 32, so that the first bearing plate 32 will move upward through the design of the first telescopic cylinder 31, and thus the first bearing plate 32 will also move upward. At this time, the state of the material is high on the left and low on the right. Subsequently, when the first bearing plate 32 descends, at this time, the second convex block 40 will contact the lower surface of the second bearing plate 34, and then the second bearing plate 34 will rise, so that the material on the surface of the second bearing plate 34 will rise. At this time, the state of the material is low on the left and high on the right. By circulating this operation, the position of the material during fixing inside the fixing box body 29 can be adjusted, so that the material can uniformly contact the fixing agent. The above is all the working principles of the present invention.

[0024] The above is only the preferred embodiment of the present invention, and it does not impose any form of limitation on the present invention; any ordinary technical personnel in the industry can smoothly implement the present invention according to the illustrations in the specification and the above description; however, any minor changes, modifications, and equivalent variations made by those skilled in the art within the scope of the technical solution of the present invention by using the technical content disclosed above are all equivalent embodiments of the present invention; at the same time, any equivalent changes, modifications, and variations made to the above embodiments based on the essential technology of the present invention still fall within the protection scope of the technical solution of the present invention.

Claims

1. A digital dyeing process for achieving a gradient color effect, including a dyeing tank body (1), a control panel (2) is installed on the front surface of the dyeing tank body (1), a support frame (3) is installed on the top surface of the dyeing tank body (1), a slide rail body (4) is installed on the lower surface of the support frame (3), and an electric telescopic rod (5) is arranged at the lower end of the slide rail body (4), characterized in that: A top block (6) is installed at the lower end of the electric telescopic rod (5). A first limit block (7) and a second limit block (8) are sequentially installed at the lower end of the top block (6) from left to right. A first electric push rod (9) is inserted and installed inside the second limit block (8). A fixing frame (10) is installed on the right side surface of the first electric push rod (9), and the fixing frame (10) is installed on the right side surface of the second limit block (8). A connecting plate (11), the connecting plate (11) is installed on the back surface of the top block (6). A rack plate (12) is installed at the lower end of the connecting plate (11). A first driving gear (13) is meshed and connected to the left side surface of the rack plate (12). The front end of the first driving gear (13) penetrates through the back surface of the dyeing tank body (1) and is installed with a first rotating shaft (14). The first driving gear (13) is installed on the back surface of the dyeing tank body (1). The front end of the first rotating shaft (14) penetrates through the front surface of the dyeing tank body (1) and is installed with a transmission mechanism (15). A first stabilizing block (16) is installed on the outer surface of the first rotating shaft (14). A first pressing block (17) is installed on the right side surface of the first stabilizing block (16).

2. The digital dyeing process for achieving a gradient color effect according to claim 1, characterized in that: A first gear (18) is installed on the back surface of the transmission mechanism (15). A second gear (19) is meshed and connected to the right side surface of the first gear (18).

3. The digital dyeing process for achieving a gradient color effect according to claim 2, characterized in that: The back surface of the second gear (19) penetrates through the inside of the dyeing tank body (1) and is installed with a second rotating shaft (20). A second stabilizing block (21) is installed on the outer surface of the second rotating shaft (20). A second pressing block (22) is installed on the left side of the second stabilizing block (21).

4. A digital dyeing process for achieving a gradient color effect according to claim 1, characterized in that: An installation frame (23) is fixedly connected to the back surface of the dyeing tank body (1). A second driving gear (24) is installed on the front surface of the installation frame (23).

5. A digital dyeing process for achieving a gradient color effect according to claim 4, characterized in that: A connecting rod (25) is installed at the front end of the second driving gear (24). A rotating cylinder (26) is installed on the front surface of the connecting rod (25).

6. A digital dyeing process for achieving a gradient color effect according to claim 5, characterized in that: A positioning rod (27) is installed on the outer surface of the rotating cylinder (26). A scraping block (28) is installed on the right side surface of the positioning rod (27).

7. A digital dyeing process for achieving a gradient color effect according to claim 1, characterized in that: A fixing color box body (29) is installed on the right side surface of the dyeing tank body (1). A bottom plate (30) is installed on the inner side wall of the fixing color box body (29).

8. A digital dyeing process for achieving a gradient color effect according to claim 7, characterized in that: A first telescopic cylinder (31) and a second telescopic cylinder (33) are sequentially installed on the surface of the bottom plate (30) from left to right. A first bearing plate (32) is installed on the top surface of the first telescopic cylinder (31). A second bearing plate (34) is installed on the top surface of the second telescopic cylinder (33). A second electric push rod (35) is installed inside the second bearing plate (34). A pressing block (36) is installed on the top surface of the second electric push rod (35).

9. A digital dyeing process for achieving a gradient color effect according to claim 7, characterized in that: A support block is mounted on the right surface of the color fixing box body (29), and a driving motor (37) is mounted on the upper surface of the support block. The output end of the driving motor (37) penetrates through the right surface of the color fixing box body (29) and is provided with an output shaft (38). A first convex block (39) and a second convex block (40) are sequentially mounted on the outer surface of the output shaft (38) from left to right. The upper surface of the first convex block (39) abuts against the lower surface of the first bearing plate (32), and the upper surface of the second convex block (40) abuts against the lower surface of the second bearing plate (34). A stabilizing ring (41) is mounted on one side of the surface of the output shaft (38), and the stabilizing ring (41) is mounted on the surface of the bottom plate (30).

10. A digital dyeing process for achieving a gradient color effect according to claim 1, characterized in that: Including the following steps: Fix the material; Immerse the material into the dyeing tank for dyeing, and repeat the above dyeing operation to make the material dyed with a gradient color; Wash off the deeper floating color on the surface of the material; Immerse the material in the fixing agent working solution, and then wash with water, apply softener, dehydrate and dry; Complete the gradient color dyeing of the material.

Citation Information

Patent Citations

  • Silk gradient dyeing device

    CN212152703U