Digital printed cloth drying device
By introducing a squeegee and an electric push rod into the digital printed fabric drying device, the problem of high moisture content during the drying process of digital printed fabric is solved, achieving efficient moisture removal and surface cleaning, improving processing efficiency and saving water resources.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SUZHOU JISHU PRINTING TECH CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-04-17
AI Technical Summary
Existing digital printed fabric drying equipment is difficult to effectively remove water when drying digital printed fabric, resulting in high moisture content, prolonged drying time, and reduced processing efficiency.
A digital printed fabric drying device was designed, equipped with a squeegee and an electric push rod. The squeegee contacts and moves with the digital printed fabric to remove moisture and impurities, and is then dried in an electric heating box.
It effectively reduces the moisture content and surface impurities of digitally printed fabrics, improves drying efficiency, saves water resources, and simplifies the cleaning process.
Smart Images

Figure CN224136250U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a digital printed fabric drying device, and more particularly to a digital printed fabric drying device applied in the field of digital printed fabric processing. Background Technology
[0002] Digital printed fabric is a textile produced using digital printing technology. Its core process is to directly spray digital pattern information onto the fabric surface through computer control, eliminating the need for traditional plate-making processes. This technology combines computer-aided design, digital color management, and high-precision inkjet printing, supporting fully digital operation from design to finished product. It is particularly adept at handling complex gradients and high-definition details in pattern presentation.
[0003] The core functions of digital printing fabric are: environmental protection and energy saving (using on-demand inkjet technology to avoid dye waste in traditional printing processes such as paste preparation and screen washing, reducing wastewater discharge and meeting green manufacturing standards), personalized customization (supporting small-batch, single-piece production to meet consumers' personalized needs for clothing, home textiles and other products, such as custom-made exclusive patterns or limited-edition designs), and improved production efficiency (simplifying complex processes such as color separation, screen making and color matching in traditional printing, shortening the production cycle from several days to several hours, especially suitable for fast fashion needs).
[0004] In the current process of digital printing fabric processing, after cleaning, the fabric is dried using a drying device. However, the existing drying device for digital printing fabric is difficult to scrape off water from the fabric during drying to reduce its moisture content. When the fabric contains a large amount of water, the drying time will be prolonged, which will reduce the efficiency of processing digital printing fabric. Utility Model Content
[0005] The technical problem to be solved by this utility model in view of the above-mentioned prior art is that existing digital printed fabric drying devices have difficulty in performing a water scraping treatment on the digital printed fabric during the drying process to reduce the moisture content of the digital printed fabric.
[0006] To solve the above problems, this utility model provides a digital printed fabric drying device, including a base, an electric heating box fixedly connected to the upper end of the base, a pair of movable frames slidably connected inside the base, a flat sheet fixedly connected to the upper end of the pair of movable frames, a water hole on the flat sheet, an electric push rod fixedly connected between one of the movable frames and the inner side wall of the base, an electric push rod rotatably connected to the inner top wall of the electric heating box via a universal joint, a squeegee fixedly connected to the telescopic end of the electric push rod 2, a circular plate fixedly connected to each of the two side ends of the squeegee, a sleeve plate fitted to the outer end of the circular plate, the end of the sleeve plate away from the circular plate contacting the inner side wall of the electric heating box, a limit tube threadedly connected to the inner thread of the circular plate, multiple threaded holes threadedly connected to the limit tube on the inner wall of the sleeve plate, a rectangular groove on the inner side wall of the electric heating box, and a rectangular plate slidably connected to the rectangular groove fixedly connected to the end of the sleeve plate away from the circular plate.
[0007] In the aforementioned digital printed fabric drying device, before drying the digital printed fabric, it can not only remove most of the moisture in the digital printed fabric, greatly reducing its moisture content, but also clean the surface of the digital printed fabric, reducing the impurities adhering to its surface.
[0008] As a further improvement of this application, the electric heating box is connected to a door via a hinge at one end near the flat plate, and there is a gap between the lower end of the door and the inner bottom wall of the base.
[0009] As a further improvement of this application, fixed frames are fixedly connected to the four corners of the upper end of the paving board, and mounting tubes are threadedly connected to the fixed frames. A clamping seat is rotatably sleeved on the lower end of the mounting tube.
[0010] As a further improvement of this application, a sliding groove is provided on each of the two inner sidewalls of the base, and a sliding plate that is slidably connected to the sliding groove is fixedly connected to each of the two side ends of the movable frame.
[0011] As a further improvement of this application, there is a gap between the side end of the movable frame and the inner wall of the base, and one end of the limiting tube extends a certain length from inside the circular plate.
[0012] As a further improvement of this application, the wiper blade has a conical structure from top to bottom, and the length of the wiper blade is less than the distance between a pair of horizontal clamping seats.
[0013] As another improvement of this application, a second water hole is provided on the inner bottom wall of the base, and a water box is movably inserted inside the base, with the upper end of the water box communicating with the second water hole.
[0014] 1. Lower the squeegee so that its lower end abuts against the upper end of the digital printing fabric. At the same time, the squeegee can also apply a certain pressure to the digital printing fabric to improve the squeegee effect. Then, start the electric push rod one, so that its telescopic end pushes the moving frame and all the mechanisms on it to move together, thereby moving the digital printing fabric under the squeegee. In this way, the squeegee can squeegee the entire digital printing fabric. When this application is used, before drying the digital printing fabric, it can not only remove most of the moisture in the digital printing fabric, greatly reducing its moisture content, but also clean the surface of the digital printing fabric, reducing the impurities adhering to its surface.
[0015] 2. The water scraped off the digital printing fabric will flow directly into the base, or through water hole one into the base. After flowing into the base, it will flow through water hole two into the water box to temporarily store the water. Finally, the water box is pulled out of the base, and the water in the water box is taken out for purification treatment so that it can be reused, thereby saving water resources. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of the first and second embodiments of this application;
[0017] Figure 2 This is a schematic diagram of the planarization structure according to the first embodiment of this application;
[0018] Figure 3 This is a schematic diagram of the wiper blade structure according to the first embodiment of this application;
[0019] Figure 4 This is a schematic diagram of the circular plate structure according to the first embodiment of this application;
[0020] Figure 5 This is a schematic diagram of the clamping seat structure according to the first embodiment of this application.
[0021] Explanation of the labels in the diagram:
[0022] 1. Base; 2. Electric heating box; 3. Moving frame; 4. Flat plate; 5. Water hole one; 6. Electric push rod one; 7. Electric push rod two; 8. Scraper; 9. Round plate; 10. Connecting plate; 11. Limiting tube; 12. Rectangular groove; 13. Rectangular plate; 14. Box door; 15. Fixed frame; 16. Mounting tube; 17. Pressing seat; 18. Slide groove; 19. Slide plate; 20. Water hole two; 21. Water box. Detailed Implementation
[0023] The two embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0024] First implementation method:
[0025] Figure 1-5 A digital printed fabric drying device is shown, including a base 1. An electric heating box 2 is fixedly connected to the upper end of the base 1. A pair of movable frames 3 are slidably connected inside the base 1. A flat plate 4 is fixedly connected to the upper end of the pair of movable frames 3. A water hole 5 is opened on the flat plate 4. An electric push rod 6 (model DJ830P) is fixedly connected between one of the movable frames 3 and the inner side wall of the base 1. An electric push rod 7 (model DJ830P) is rotatably connected to the inner top wall of the electric heating box 2 through a universal joint. A squeegee 8 is fixedly connected to the telescopic end of the electric push rod 7. A circular plate 9 is fixedly connected to each of the two side ends of the squeegee 8. A sleeve plate 10 is sleeved on the outer end of the circular plate 9. The end of the sleeve plate 10 away from the circular plate 9 is in contact with the inner side wall of the electric heating box 2.
[0026] The circular plate 9 is internally threaded to a limiting tube 11. The inner wall of the sleeve plate 10 is provided with multiple threaded holes that are threaded to the limiting tube 11. The inner side wall of the electric heating box 2 is provided with a rectangular groove 12. The end of the sleeve plate 10 away from the circular plate 9 is fixedly connected to a rectangular plate 13 that is slidably connected to the rectangular groove 12.
[0027] The electric heating box 2 is connected to the door 14 via a hinge at one end near the flat plate 4. There is a gap between the lower end of the door 14 and the inner bottom wall of the base 1. The four corners of the upper end of the flat plate 4 are fixedly connected to the fixed frame 15. The fixed frame 15 is threadedly connected to the mounting tube 16. The lower end of the mounting tube 16 is rotatably fitted with a pressing seat 17. The base 1 has a pair of inner side walls with sliding grooves 18. The movable frame 3 has a pair of side ends with a sliding plate 19 that is slidably connected to the sliding groove 18.
[0028] There is a gap between the side end of the movable frame 3 and the inner wall of the base 1. One end of the limiting tube 11 extends a certain length from the circular plate 9. The wiper blade 8 has a conical structure from top to bottom. The length of the wiper blade 8 is less than the distance between a pair of horizontal pressing seats 17.
[0029] The application is used in the following steps:
[0030] Step 1: Lay the digital printing fabric flat on the laying plate 4, then rotate the mounting tube 16 downwards to push the pressing seat 17 down and press the digital printing fabric to fix it.
[0031] Step 2: Rotate the door 14 to open the opening of the electric heating box 2, then start the electric push rod 6 to push the moving frame 3 towards the electric heating box 2. When the digital printing cloth is moved directly below the squeegee 8, start the electric push rod 7 to move the squeegee 8 down until the lower end of the squeegee 8 is against the upper end of the digital printing cloth. At the same time, the squeegee 8 can also apply a certain pressure to the digital printing cloth to improve the squeegee effect.
[0032] Then, start the electric push rod 6, so that its telescopic end pushes the moving frame 3 and all its mechanisms to move together, thereby causing the digital printing cloth to move under the squeegee 8, and then the squeegee 8 to squeegee the water on the whole digital printing cloth, greatly reducing its water content. At the same time, it can also remove impurities adhering to the digital printing cloth.
[0033] When in use, the operator can rotate the squeegee 8 at a suitable angle for squeegeeing the digital printed fabric, so that it drives a pair of round plates 9 to rotate within the socket plate 10. Finally, the round plates 9 can be fixed by the limiting tube 11, thus enabling squeegeeing of the digital printed fabric at multiple angles.
[0034] Step 3: Apply a water scraping treatment to the digital printing fabric. After the entire digital printing fabric enters the electric heating box 2, start the electric heating box 2 to heat up the digital printing fabric and dry it. During the drying process, exhaust ventilation is carried out through the feed port on the electric heating box 2.
[0035] In summary, when this application is used, before drying the digitally printed fabric, it can not only remove most of the moisture in the digitally printed fabric, greatly reducing its moisture content, but also clean the surface of the digitally printed fabric, reducing the impurities adhering to its surface.
[0036] Second implementation method:
[0037] This embodiment adds the following structure based on the first embodiment, while the rest remains the same as the first embodiment, as detailed below:
[0038] Figure 1 The bottom wall of the base 1 is shown to have a water hole 20, and a water box 21 is movably inserted inside the base 1. The upper end of the water box 21 is connected to the water hole 20.
[0039] The water scraped off the digitally printed fabric will flow directly into the base 1, or through water hole 5 into the base 1. After flowing into the base 1, it will flow through water hole 20 into the water box 21 to temporarily store the water. Finally, the water box 21 will be pulled out of the base 1, and the water in the water box 21 will be taken out for purification treatment so that it can be reused, thereby saving water resources.
[0040] In light of current practical needs, the above-described embodiments adopted in this application are not limited to these. Any changes made within the scope of knowledge possessed by those skilled in the art without departing from the concept of this application still fall within the protection scope of this utility model.
Claims
1. A digitally printed fabric drying device, comprising a base (1), characterized in that: An electric heating box (2) is fixedly connected to the upper end of the base (1); The base (1) has a pair of movable frames (3) slidably connected inside. The upper ends of the pair of movable frames (3) are fixedly connected to the same paving board (4). A water hole (5) is opened on the paving board (4). An electric push rod (6) is fixedly connected between one of the movable frames (3) and the inner side wall of the base (1). An electric push rod (7) is rotatably connected to the inner top wall of the electric heating box (2) via a universal joint. A scraper (8) is fixedly connected to the telescopic end of the electric push rod (7). A round plate (9) is fixedly connected to a pair of side ends of the scraper (8). A sleeve plate (10) is fitted on the outer end of the round plate (9). The end of the sleeve plate (10) away from the round plate (9) is in contact with the inner side wall of the electric heating box (2). The circular plate (9) is internally threaded to a limiting tube (11), and the inner wall of the sleeve plate (10) is provided with multiple threaded holes that are threaded to the limiting tube (11). The inner side wall of the electric heating box (2) is provided with a rectangular groove (12), and the end of the sleeve plate (10) away from the circular plate (9) is fixedly connected to a rectangular plate (13) that is slidably connected to the rectangular groove (12).
2. A digital printing cloth drying device according to claim 1, characterized in that: The electric heating box (2) is connected to a door (14) via a hinge at one end near the flat plate (4), and there is a gap between the lower end of the door (14) and the inner bottom wall of the base (1).
3. A digital printing cloth drying device according to claim 2, characterized in that: The four corners of the upper end of the paving board (4) are fixedly connected to a frame (15), and the frame (15) is threaded with an installation tube (16). The lower end of the installation tube (16) is rotatably fitted with a pressing seat (17).
4. A digital printing cloth drying device according to claim 3, characterized in that: The base (1) has a pair of inner sidewalls with sliding grooves (18), and the movable frame (3) has a pair of side ends with a sliding plate (19) that is slidably connected to the sliding grooves (18).
5. A digital printing cloth drying device according to claim 4, characterized in that: There is a gap between the side end of the movable frame (3) and the inner wall of the base (1), and one end of the limiting tube (11) extends a certain length from the circular plate (9).
6. A digital printing cloth drying device according to claim 5, characterized in that: The wiper blade (8) has a conical structure from top to bottom, and the length of the wiper blade (8) is less than the distance between a pair of horizontal pressing seats (17).
7. A digital printing cloth drying device according to claim 6, characterized in that: A water hole 2 (20) is provided on the inner bottom wall of the base (1), and a water box (21) is movably inserted inside the base (1), with the upper end of the water box (21) communicating with the water hole 2 (20).