Ultra-thin soft fog-locking smoke-feeling fabric printing and dyeing mechanism
By using the material partition plate and rotary printing and dyeing components in the printing and dyeing mechanism, the rapid printing and dyeing color switching and dye classification collection of ultra-thin and gentle fog lock smoke fabrics is achieved, which solves the problems of low production efficiency and waste of resources in the existing technology, and improves the printing and dyeing efficiency and resource utilization.
Patent Information
- Application Number
- CN202421981115.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-15
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-08-15
AI Technical Summary
The existing printing and dyeing mechanisms are difficult to achieve rapid switching of printing and dyeing colors, resulting in low production efficiency and the inability to classify, collect and utilize the waste generated by printing and dyeing, which wastes resources.
An ultra-thin and gentle mist lock smoke fabric printing and dyeing mechanism is designed, using a symmetrically arranged processing plate rack and printing and dyeing water tank, and a material partition partition is installed to form a water connection chamber. The rotary printing and dyeing components and horizontal driving components are used to achieve rapid switching of printing and dyeing rollers and dyeing classification and collection. The telescopic heating rack and scraper rack are used to ensure printing and dyeing uniformity, and moisture extrusion is performed through the extrusion structure when discharged.
It realizes rapid switching of printing and dyeing colors, improves production efficiency, and realizes the classification, collection and utilization of dyes through the material partition, saving time and resources.
Smart Images

Figure CN223226319U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of printing and dyeing, and in particular to an ultra-thin and soft fog-locking smoke-enchanting fabric printing and dyeing mechanism. Background Art
[0002] As living standards improve, consumers' demands for clothing and daily necessities are growing, demanding not only functionality and comfort but also innovation and personalization. With the continuous advancement of textile and materials science, a growing number of new fabrics have been developed, offering improved performance and functionality, providing consumers with better choices. Among them, the ultra-thin and soft mist-locking smoke-mask fabric utilizes environmentally friendly materials and processes, is free of harmful substances, and is non-irritating to the skin, meeting modern consumer demand for green consumption. Furthermore, the unique design and mist-locking effect of this ultra-thin and soft mist-locking smoke-mask fabric can be used in high-end apparel and accessories, providing designers with more design elements and inspiration, and promoting the development of the fashion industry. The printing and dyeing process for this ultra-thin and soft mist-locking smoke-mask fabric is slow and difficult to filter and collect impurities. Furthermore, existing printing and dyeing equipment struggles to quickly switch between colors, often requiring switching between different printing and dyeing processes, which slows production efficiency. Furthermore, the waste generated by printing and dyeing cannot be sorted and collected, resulting in a waste of resources.
[0003] In order to solve the shortcomings of the existing technology, people have conducted long-term exploration and proposed various solutions. For example, a Chinese patent document discloses a cloth printing and dyeing machine [CN202110827303.0], which includes a connecting base plate, a printing and dyeing mechanism, a drying box and an air collecting structure, wherein the printing and dyeing mechanism is fixedly connected to one side of the upper end outer surface of the connecting base plate, the drying box is fixedly connected to the other side of the upper end outer surface of the connecting base plate, and the air collecting structure is fixedly connected to the other side of the lower end outer surface of the connecting base plate. The printing and dyeing mechanism includes a connecting printing and dyeing machine, a connecting bracket, a printing and dyeing plate, a motor, a first connecting rotating shaft, a first connecting belt, a first connecting tooth, a second connecting rotating shaft, a first rotating shaft, a second connecting tooth, a connecting shaft, a spring and a second rotating shaft.
[0004] The above solution has solved to a certain extent the problems in the prior art of slow printing and dyeing speed and difficulty in air filtration and impurity collection of the printing and dyeing mechanism. However, the solution still has many shortcomings, such as: it is difficult to achieve rapid switching of printing and dyeing colors, which delays production efficiency, and it is impossible to classify, collect and utilize the waste generated by printing and dyeing, which wastes resources. Summary of the Invention
[0005] The purpose of the utility model is to provide an ultra-thin and soft fog-locking and smoke-enhancing fabric printing and dyeing mechanism in response to the above problems.
[0006] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions: an ultra-thin and soft fog-locked smoke-masked fabric printing and dyeing mechanism, comprising symmetrically arranged processing plates, a printing and dyeing water tank is provided between the processing plates, a feed roller is provided at the front end of the printing and dyeing water tank and a discharge roller is provided at the rear end, a rotating printing and dyeing component located on the printing and dyeing water tank is provided between the processing plates, and a horizontal driving component for driving the rotating printing and dyeing component to move horizontally is provided on the processing plates, a feed scraping structure is provided between the processing plates and at one end of the printing and dyeing water tank, and a discharge extrusion structure is provided between the processing plates and at one end of the printing and dyeing water tank.
[0007] In the above-mentioned ultra-thin and soft mist-locked smoke-enhanced fabric printing and dyeing mechanism, a material dividing partition is provided in the printing and dyeing water tank, and a water receiving cavity is formed between two adjacent material dividing partitions, and a drainage hole for connecting an external diversion pipe is provided at the bottom of each water receiving cavity.
[0008] In the above-mentioned ultra-thin and soft fog-locked smoke-enhanced fabric printing and dyeing mechanism, the rotary printing and dyeing component includes a rotating switching shaft arranged between the processing plate frames, and printing and dyeing roller assembly seats are symmetrically provided at both ends of the rotating switching shaft, and a number of printing and dyeing rollers are provided between the circumference of the printing and dyeing roller assembly seats, and the printing and dyeing rollers are driven by corresponding rotating drive motors arranged on the outer wall of the printing and dyeing roller assembly seat.
[0009] In the above-mentioned ultra-thin and soft fog-locked smoke-masked fabric printing and dyeing mechanism, a strip-shaped movable through hole is provided on the printing and dyeing roller assembly seat, and the rotating drive motor is slidably arranged in the strip-shaped movable through hole and driven by a sliding adjustment cylinder arranged on the outer wall of the processing plate frame.
[0010] In the above-mentioned ultra-thin and soft mist-locked smoke-masked fabric printing and dyeing mechanism, a telescopic heating frame is provided on one side of the printing and dyeing roller and a telescopic scraper frame is provided on the other side. Both ends of the telescopic heating frame and the telescopic scraper frame are positioned on the printing and dyeing roller assembly seat.
[0011] In the above-mentioned ultra-thin and soft fog-locked smoke-masked fabric printing and dyeing mechanism, the horizontal drive component includes a horizontal adjustment hole in a strip shape arranged on the printing and dyeing water tank, the rotating switching shaft is passed through the horizontal adjustment hole, and the rotating switching shaft is driven to rotate by a rotating switching motor arranged on the outer wall of the processing plate frame, and the outer wall of the processing plate frame is provided with a movable adjustment cylinder that can drive the rotating switching motor to move in the horizontal adjustment hole.
[0012] In the above-mentioned ultra-thin and soft fog-locked smoke-masked fabric printing and dyeing mechanism, the feed scraping structure includes a strip-shaped lifting through-hole arranged on the processing plate frame, and a ring-shaped loading frame is arranged in the strip-shaped lifting through-hole. A number of adjacent scraping rollers are arranged on the ring-shaped loading frame, and a number of scrapers are arranged on the circumferential outer wall of the scraping roller. The ring-shaped loading frame is lifted and lowered by a first lifting cylinder arranged on the outer wall of the processing plate frame.
[0013] In the above-mentioned ultra-thin and soft fog-locked smoke-masked fabric printing and dyeing mechanism, the discharge extrusion structure includes a number of lifting strip holes arranged on the processing plate frame, and an extrusion roller is arranged in the lifting strip holes, and the extrusion roller is lifted and lowered by a second lifting cylinder arranged on the outer wall of the processing plate frame.
[0014] In the above-mentioned ultra-thin and soft mist-locked smoke-enhanced fabric printing and dyeing mechanism, a dye inlet channel is axially provided on the inner wall of the printing and dyeing roller, and an annular fuel cavity which is interconnected with the dye inlet channel is provided on the inner wall of the printing and dyeing roller, and the annular fuel cavity is connected with an annular printing and dyeing part arranged on the circumferential outer wall of the printing and dyeing roller.
[0015] In the above-mentioned ultra-thin and soft mist-locked smoke-enhanced fabric printing and dyeing mechanism, an automatic pressure valve is provided at the discharge hole.
[0016] Compared with the existing technology, the advantages of the utility model are: high degree of automation and convenient operation. By arranging multiple printing and dyeing rollers on the printing and dyeing roller assembly seat, the printing and dyeing rollers can be directly rotated and switched when printing and dyeing different colors, saving time and cost. In addition, the printing and dyeing water tank is divided into different water receiving chambers by the dividing partition. When printing and dyeing different colors, the rotating printing and dyeing component is pushed to the upper end of the corresponding water receiving chamber through the horizontal driving component, thereby realizing the classified collection and utilization of different dyes. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0018] Figure 2 This is a cross-sectional view of the rotary printing and dyeing assembly in the present utility model;
[0019] Figure 3 This is a schematic diagram of the outer wall structure of the transfer dyeing roller assembly seat in the utility model;
[0020] Figure 4 This is a schematic diagram of the overall structure of the rotary printing and dyeing assembly in the present utility model;
[0021] Figure 5 This is a cross-sectional view of the printing and dyeing roller in the present utility model;
[0022] In the figure: processing plate frame 1, feed roller 11, discharge roller 12, printing and dyeing water tank 2, material dividing partition 21, water receiving chamber 22, drainage hole 23, rotary printing and dyeing component 3, rotating switching shaft 31, printing and dyeing roller assembly seat 32, printing and dyeing roller 33, dye inlet channel 331, annular fuel chamber 332, annular printing and dyeing part 333, rotary drive motor 34, strip movable through hole 35, sliding adjustment cylinder 36, telescopic heating frame 37, telescopic scraper frame 38, horizontal drive component 4, horizontal adjustment hole 41, feed scraping structure 5, strip lifting through hole 51, annular loading frame 52, scraping roller 53, first lifting cylinder 54, discharge extrusion structure 6, lifting strip hole 61, extrusion roller 62, second lifting cylinder 63. DETAILED DESCRIPTION
[0023] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0024] like Figure 1-5 As shown, an ultra-thin and soft mist-locked smoke-enhanced fabric printing and dyeing mechanism includes symmetrically arranged processing plates 1, a printing and dyeing water tank 2 is provided between the processing plates 1, a feed roller 11 is provided at the front end of the printing and dyeing water tank 2 and a discharge roller 12 is provided at the rear end, a rotating printing and dyeing component 3 is provided between the processing plates 1 and located on the printing and dyeing water tank 2, and a horizontal driving component 4 for driving the rotating printing and dyeing component 3 to move horizontally is provided on the processing plate 1, a feed scraping structure 5 is provided between the processing plates 1 and at one end of the printing and dyeing water tank 2, and a discharge extrusion structure 6 is provided between the processing plates 1 and at one end of the printing and dyeing water tank 2.
[0025] A material dividing partition 21 is provided in the printing and dyeing water tank 2, and a water receiving cavity 22 is formed between two adjacent material dividing partitions 21, and a drainage hole 23 for connecting to an external diversion pipe is provided at the bottom of each water receiving cavity 22.
[0026] The water receiving chamber 22 is used to collect different printing and dyeing fluids for classified recycling.
[0027] Furthermore, the rotary printing and dyeing component 3 includes a rotating switching shaft 31 arranged between the processing plate frames 1, and printing and dyeing roller assembly seats 32 are symmetrically provided at both ends of the rotating switching shaft 31, and a plurality of printing and dyeing rollers 33 are provided circumferentially between the printing and dyeing roller assembly seats 32. The printing and dyeing rollers 33 are driven by corresponding rotating drive motors 34 arranged on the outer wall of the printing and dyeing roller assembly seats 32.
[0028] Obviously, a strip-shaped movable through hole 35 is provided on the printing and dyeing roller assembly seat 32, and a rotation drive motor 34 is slidably arranged in the strip-shaped movable through hole 35 and driven by a sliding adjustment cylinder 36 arranged on the outer wall of the processing plate frame 1.
[0029] The pressing degree of the printing roller 33 is adjusted by the sliding adjustment cylinder 36 .
[0030] Furthermore, a telescopic heating frame 37 is provided on one side of the printing roller 33 and a telescopic scraper frame 38 is provided on the other side. Both ends of the telescopic heating frame 37 and the telescopic scraper frame 38 are positioned on the printing roller assembly seat 32.
[0031] The telescopic heating frame 37 is used for heating and ironing treatment before printing and dyeing, adopts steam heating to remove static electricity, and the telescopic scraper frame 38 is used for scraping fuel.
[0032] Specifically, the horizontal drive assembly 4 includes a horizontal adjustment hole 41 in a strip shape arranged on the printing and dyeing water tank 2, the rotating switching shaft 31 is passed through the horizontal adjustment hole 41, and the rotating switching shaft 31 is rotated by a rotating switching motor arranged on the outer wall of the processing plate frame 1, and the outer wall of the processing plate frame 1 is provided with a movable adjustment cylinder that can drive the rotating switching motor to move in the horizontal adjustment hole 41.
[0033] The rotating switching motor is mainly used to switch the printing roller 33 to achieve the change of printing and dyeing colors, and the moving adjustment cylinder is used to adjust the position of the printing roller 33 so that it moves to the corresponding upper end of the water receiving chamber 22.
[0034] More specifically, the feed scraping structure 5 includes a strip-shaped lifting through-hole 51 arranged on the processing plate frame 1, an annular loading frame 52 is arranged in the strip-shaped lifting through-hole 51, a number of adjacent scraping rollers 53 are arranged on the annular loading frame 52, and a number of scrapers are arranged on the circumferential outer wall of the scraping roller 53. The annular loading frame 52 is lifted and lowered by a first lifting cylinder 54 arranged on the outer wall of the processing plate frame 1.
[0035] The feed scraping structure 5 is mainly used for scraping the feed to prevent wrinkles.
[0036] In detail, the discharge extrusion structure 6 includes several lifting strip holes 61 arranged on the processing plate frame 1, and the lifting strip holes 61 are provided with extrusion rollers 62, and the extrusion rollers 62 are raised and lowered by a second lifting cylinder 63 arranged on the outer wall of the processing plate frame 1.
[0037] The discharge extrusion structure 6 is used to squeeze out the printing and dyeing water.
[0038] Preferably, a dye inlet channel 331 is axially provided on the inner wall of the printing roller 33, and an annular fuel cavity 332 is provided on the inner wall of the printing roller 33 that is interconnected with the dye inlet channel 331, and the annular fuel cavity 332 is connected to an annular printing portion 333 provided on the circumferential outer wall of the printing roller 33.
[0039] This setup makes it easy to refill the dye on a daily basis.
[0040] In addition, an automatic pressure valve is provided at the drainage hole 23. When the printing and dyeing fluid in the water receiving chamber 22 reaches a set pressure, the automatic pressure valve automatically opens to release.
[0041] To sum up, the principle of this embodiment is that the fabric is transported to the feed scraping structure 5 through the feed roller 11, and the feed scraping structure 5 is used to scrape the fabric to prevent wrinkles. Secondly, the printing roller 33 that needs to be printed and dyed is adjusted to the lower side by rotating the switching shaft 31, and the compression of the printing roller 33 is adjusted by the sliding adjustment cylinder 36. At the same time, the rotary printing and dyeing component 3 is pushed to the upper end of the water receiving chamber 22 corresponding to the printing and dyeing color of the printing and dyeing roller 33. During printing and dyeing, the discharge roller 12 is used to collect the material, and the rotating drive motor 34 drives the printing and dyeing roller 33 to rotate and dye. Among them, the telescopic heating frame 37 uses steam heating to reduce static electricity, and the telescopic scraper frame 38 scrapes the printing and dyeing fuel to achieve uniform printing and dyeing. The excess fluid of printing and dyeing flows into the water receiving chamber 22 and is guided to the external diversion pipe through the drainage hole 23 for classified collection.
[0042] The specific embodiments described herein are merely illustrative of the spirit of the present invention. Persons skilled in the art may make various modifications, additions, or substitutions to the described specific embodiments without departing from the spirit of the present invention or exceeding the scope defined by the appended claims.
[0043] Although the following terms are frequently used herein, such as the processing plate frame 1, feed roller 11, discharge roller 12, printing and dyeing water tank 2, material dividing partition 21, water receiving chamber 22, drainage hole 23, rotary printing and dyeing assembly 3, rotary switching shaft 31, printing and dyeing roller assembly seat 32, printing and dyeing roller 33, dye inlet channel 331, annular fuel chamber 332, annular printing and dyeing portion 333, rotary drive motor 34, strip movable through hole 35, sliding adjustment cylinder 36, telescopic heating frame 37, telescopic scraper frame 38, horizontal drive assembly 4, horizontal adjustment hole 41, feed scraping structure 5, strip lifting through hole 51, annular loading frame 52, scraping roller 53, first lifting cylinder 54, discharge extrusion structure 6, lifting strip hole 61, extrusion roller 62, and second lifting cylinder 63, the possibility of using other terms is not excluded. These terms are used only to more conveniently describe and explain the essence of the present invention; interpreting them as any additional restrictions is contrary to the spirit of the present invention.
Claims
1. An ultra-thin and soft mist-locking fabric printing and dyeing mechanism, comprising symmetrically arranged processing plates (1), a printing and dyeing water tank (2) is provided between the processing plates (1), a front end of the printing and dyeing water tank (2) is provided with a feed roller (11) and a rear end thereof is provided with a discharge roller (12), characterized in that: A rotary dyeing assembly (3) located on the dyeing water tank (2) is provided between the processing plates (1), and a horizontal driving assembly (4) for driving the rotary dyeing assembly (3) to move horizontally is provided on the processing plates (1). A feed leveling structure (5) is provided between the processing plates (1) and at one end of the dyeing water tank (2), and a discharge extrusion structure (6) is provided between the processing plates (1) and at one end of the dyeing water tank (2).
2. The ultra-thin and soft type mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 1 is characterized in that: The printing and dyeing water tank (2) is provided with a material dividing partition (21), and a water receiving cavity (22) is formed between two adjacent material dividing partitions (21), and a drainage hole (23) for connecting to an external diversion pipe is provided at the bottom of each water receiving cavity (22).
3. The ultra-thin and soft mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 1 is characterized in that: The rotary printing and dyeing assembly (3) comprises a rotary switching shaft (31) arranged between the processing plate frames (1), printing and dyeing roller assembly seats (32) are symmetrically provided at both ends of the rotary switching shaft (31), and a plurality of printing and dyeing rollers (33) are provided circumferentially between the printing and dyeing roller assembly seats (32), and the printing and dyeing rollers (33) are driven by corresponding rotary drive motors (34) arranged on the outer wall of the printing and dyeing roller assembly seats (32).
4. The ultra-thin and soft type mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 3 is characterized in that: The dyeing roller assembly seat (32) is provided with a strip-shaped movable through hole (35), and the rotation drive motor (34) is slidably arranged in the strip-shaped movable through hole (35) and driven by a sliding adjustment cylinder (36) arranged on the outer wall of the processing plate frame (1).
5. The ultra-thin and soft mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 4 is characterized in that: The printing roller (33) is provided with a telescopic heating frame (37) on one side and a telescopic scraper frame (38) on the other side. Both ends of the telescopic heating frame (37) and the telescopic scraper frame (38) are positioned on the printing roller assembly seat (32).
6. The ultra-thin and soft mist-locking and smoke-enhancing fabric printing and dyeing mechanism according to claim 5 is characterized in that: The horizontal drive assembly (4) includes a horizontal adjustment hole (41) arranged in a strip shape on the printing and dyeing water tank (2), the rotation switching shaft (31) is passed through the horizontal adjustment hole (41), and the rotation switching shaft (31) is rotationally driven by a rotation switching motor arranged on the outer wall of the processing plate frame (1), and the outer wall of the processing plate frame (1) is provided with a moving adjustment cylinder capable of driving the rotation switching motor to move in the horizontal adjustment hole (41).
7. The ultra-thin and soft mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 1 is characterized in that: The feed scraping structure (5) includes a strip-shaped lifting hole (51) arranged on the processing plate frame (1), an annular loading frame (52) is arranged in the strip-shaped lifting hole (51), a plurality of adjacent scraping rollers (53) are arranged on the annular loading frame (52), and a plurality of scrapers are arranged on the circumferential outer wall of the scraping roller (53), and the annular loading frame (52) is lifted and lowered by a first lifting cylinder (54) arranged on the outer wall of the processing plate frame (1).
8. The ultra-thin and soft mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 1 is characterized in that: The discharge extrusion structure (6) includes a plurality of lifting strip holes (61) arranged on the processing plate frame (1), and an extrusion roller (62) is arranged in the lifting strip holes (61). The extrusion roller (62) is raised and lowered by a second lifting cylinder (63) arranged on the outer wall of the processing plate frame (1).
9. The ultra-thin and soft mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 3 is characterized in that: A dye inlet channel (331) is axially provided on the inner wall of the printing roller (33), and an annular fuel cavity (332) is provided on the inner wall of the printing roller (33) and is communicated with the dye inlet channel (331), and the annular fuel cavity (332) is communicated with an annular printing portion (333) provided on the circumferential outer wall of the printing roller (33).
10. The ultra-thin and soft type mist-locking smoke-enhancing fabric printing and dyeing mechanism according to claim 2, characterized in that: An automatic pressure valve is provided at the discharge hole (23).
Citation Information
Patent Citations
A fabric printing and dyeing machine
CN113550091B