A fabric impregnation device for ski suit production
By designing the unfolding and desizing components of the fabric impregnation device for skiwear production, the problems of uneven fabric impregnation and excess slurry dripping were solved, achieving uniform fabric impregnation and environmental protection, and improving the production quality of skiwear.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FUJIAN HUICHENG CLOTHING CO LTD
- Filing Date
- 2025-07-25
- Publication Date
- 2026-06-02
AI Technical Summary
In the production of ski suits, uneven absorption of sizing occurs due to folding or unevenness of the fabric before sizing. After sizing, excess sizing drips, causing environmental pollution and resource waste.
A fabric impregnation device for skiwear production was designed, comprising an unfolding component and a desizing component. The unfolding roller flattens the fabric and the desizing roller squeezes out excess slurry. Combined with a linkage component, synchronous rotation is achieved to ensure that the fabric is impregnated smoothly and that excess slurry is effectively removed.
It achieves uniform sizing of the fabric and effective removal of excess sizing liquid, improves the sizing effect, reduces resource waste and environmental pollution, and enhances production quality.
Smart Images

Figure CN224313856U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of fabric impregnation technology, specifically to a fabric impregnation device for ski suit production. Background Technology
[0002] Currently, fabric sizing is a crucial step in the production of ski suits, directly affecting the final waterproof performance, abrasion resistance, and wearing comfort of the ski suit. The traditional method of fabric sizing usually involves immersing the fabric directly into the sizing solution, and then taking it out for further processing after the fabric has fully absorbed the sizing solution. However, this method often faces some challenges in actual operation.
[0003] Before entering the impregnation device, the edges of the greige fabric are often folded or uneven due to folding and squeezing during storage or transportation. This uneven greige fabric is prone to uneven absorption of slurry during the impregnation process, which affects the impregnation effect and thus the overall quality of the ski suit.
[0004] When the fabric is removed after sizing, excessive sizing liquid often adheres to its surface. If this excess sizing liquid is not handled properly, it will not only waste sizing resources and increase production costs, but may also drip onto the ground during subsequent processing, causing pollution to the working environment. It will also be detrimental to the drying of the fabric and subsequent processing.
[0005] Therefore, we propose a fabric sizing device for skiwear production, which realizes automatic unfolding of the fabric before sizing and removal of excess sizing liquid after sizing, thereby greatly improving the sizing effect and the production quality of skiwear. Utility Model Content
[0006] The purpose of this invention is to provide a fabric impregnation device for ski suit production, which solves the problems mentioned in the background art.
[0007] To achieve the above objectives, this utility model provides the following technical solution: a fabric impregnation device for ski suit production, comprising an impregnation box, an impregnation roller rotatably mounted at the top of the inside of the impregnation box, a discharge pipe connected to the bottom of the side wall of the impregnation box, an unfolding component mounted at the top of one side of the inside of the impregnation box, and a desizing component mounted at the top of the other side of the inside of the impregnation box, wherein the unfolding component and the desizing component are driven by a linkage component.
[0008] Optionally, the unfolding assembly includes a first mounting base fixedly installed on both sides of the top end inside the impregnation box, unfolding rollers rotatably installed on both sides of the two sets of first mounting bases, and threaded grooves opened on both sides of the two sets of unfolding rollers, with the thread directions of adjacent sets of threaded grooves being opposite.
[0009] By adopting the above technical solution, the fabric can be flattened.
[0010] Optionally, the desizing assembly includes a first mounting base fixedly installed on both sides of the other end inside the impregnation box, a desizing roller rotatably installed on both sides of the two sets of first mounting bases, and a traction roller rotatably installed on both sides of the middle part of the impregnation box.
[0011] By adopting the above technical solution, the greige fabric can be desized.
[0012] Optionally, the linkage assembly includes a first gear fixedly mounted through a first mounting base at one end of both sets of unfolding rollers, a second gear fixedly mounted through a second mounting base at one end of both sets of desizing rollers, a linkage shaft fixedly mounted at one end of both the first gear and the second gear on one side, and a transmission belt installed between the two sets of linkage shafts.
[0013] By adopting the above technical solution, the two adjacent sets of unfolding rollers and desizing rollers can rotate synchronously in opposite directions.
[0014] Optionally, two adjacent sets of the first gears mesh, two adjacent sets of the second gears mesh, a motor is fixedly installed on the side wall of the impregnation box, the output end of the motor is connected to the transmission shaft, and the other end of the transmission shaft is fixedly connected to a set of linkage shafts.
[0015] By adopting the above technical solution, the linkage shaft can be driven to rotate.
[0016] Optionally, a liquid level sensor is fixedly installed on one side of the inner wall of the impregnation box, and a feeding pipe is connected and installed in the middle of the side wall of the impregnation box.
[0017] By adopting the above technical solution, the liquid level of the slurry can be controlled.
[0018] Compared with the prior art, the beneficial effects of the technical solution of this application are as follows:
[0019] The technical solution of this application combines an unfolding component and a desizing component. Before the fabric enters the impregnation box, it will pass between two sets of unfolding rollers. The unfolding rollers have threaded grooves with opposite thread directions on both sides. After the fabric is in contact with the surface of the unfolding rollers, the rotating unfolding rollers can unfold the folded edges of the fabric, ensuring that the fabric can enter the impregnation box smoothly. After the fabric has finished impregnating, it will go along the traction rollers to the space between two sets of desizing rollers. The two sets of desizing rollers rotate in opposite directions to squeeze the fabric, which can squeeze out the excess slurry on the surface of the fabric, avoiding excessive slurry adhering to the surface of the fabric and dripping onto the ground, causing pollution to the working environment.
[0020] With a linkage shaft fixedly installed at one end of the first gear and the second gear on one side, and a transmission belt installed between the two linkage shafts, when the drive motor is driven, it can drive one linkage shaft to rotate. Since the two linkage shafts are connected by the transmission belt, they simultaneously drive one set of first gear and second gear to rotate. With the meshing of two adjacent sets of first gears and two adjacent sets of second gears, the two adjacent sets of unfolding rollers and desizing rollers can rotate synchronously in opposite directions. Attached Figure Description
[0021] Other features, objects, and advantages of this invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings:
[0022] Figure 1 This is a schematic diagram of the overall structure of a fabric impregnation device for ski suit production according to this utility model;
[0023] Figure 2 This is a schematic diagram of the desizing component of a fabric impregnation device for ski suit production according to this utility model;
[0024] Figure 3 This is a schematic diagram of the linkage component structure of a fabric impregnation device for ski suit production according to this utility model.
[0025] In the diagram: 1. Impregnation box; 11. Impregnation roller; 12. Liquid level sensor; 13. Feeding pipe; 14. Discharge pipe; 15. Motor; 2. First mounting base; 21. Spreading roller; 22. Threaded groove; 23. Second mounting base; 24. Desizing roller; 25. Traction roller; 3. First gear; 31. Second gear; 32. Linkage shaft; 33. Drive belt. Detailed Implementation
[0026] Please see Figure 1-3 This utility model provides a technical solution: a fabric impregnation device for ski suit production, including an impregnation box 1, an impregnation roller 11 rotatably mounted at the top of the impregnation box 1, a discharge pipe 14 connected to the bottom of the side wall of the impregnation box 1, an unfolding component mounted at the top of one side of the impregnation box 1, and a desizing component mounted at the top of the other side of the impregnation box 1. The unfolding component and the desizing component are driven by a linkage component. The unfolding component includes a first mounting seat 2 fixedly mounted on both sides of the top of the impregnation box 1, an unfolding roller 21 rotatably mounted on both sides of the two sets of first mounting seats 2, and threaded grooves 22 opened on both sides of the two sets of unfolding rollers 21. The thread directions of the two adjacent sets of threaded grooves 22 are opposite, which can flatten the fabric. The desizing component includes a first mounting seat 2 fixedly mounted on both sides of the other end of the impregnation box 1, a desizing roller 24 rotatably mounted on both sides of the two sets of first mounting seats 2, and a traction roller 25 rotatably mounted on both sides of the middle part of the impregnation box 1, which can desizing the fabric.
[0027] By combining the unfolding component and the desizing component, before the fabric enters the impregnation box 1, it will pass between the two sets of unfolding rollers 21. With the unfolding rollers 21 having threaded grooves 22 with opposite thread directions on both sides, after the fabric is in contact with the surface of the unfolding rollers 21, the rotating unfolding rollers 21 can unfold the folded edges of the fabric, ensuring that the fabric can enter the impregnation box 1 smoothly. After the fabric has finished impregnating, it will travel along the traction rollers 25 to the space between the two sets of desizing rollers 24. The two sets of desizing rollers 24 rotate in opposite directions to squeeze the fabric, which can squeeze out the excess slurry on the surface of the fabric, preventing too much slurry from adhering to the surface of the fabric and dripping onto the ground, causing pollution to the working environment.
[0028] In this technical solution, the linkage assembly includes a first gear 3 that is fixedly installed through the first mounting base 2 at one end of each of the two sets of unfolding rollers 21, a second gear 31 that is fixedly installed through the second mounting base 23 at one end of each of the two sets of desizing rollers 24, a linkage shaft 32 that is fixedly installed at one end of both the first gear 3 and the second gear 31 on one side, and a transmission belt 33 that is installed between the two sets of linkage shafts 32, so that the two adjacent sets of unfolding rollers 21 and desizing rollers 24 can rotate synchronously in opposite directions.
[0029] When the drive motor 15 is driven, it can drive a set of linkage shafts 32 to rotate. Since the two sets of linkage shafts 32 are connected by the transmission belt 33, they simultaneously drive a set of first gears 3 and second gears 31 to rotate. The two adjacent sets of first gears 3 mesh and the two adjacent sets of second gears 31 mesh, so that the two adjacent sets of unfolding rollers 21 and desizing rollers 24 can rotate synchronously in opposite directions.
[0030] In this technical solution, two adjacent sets of first gears 3 mesh, two adjacent sets of second gears 31 mesh, a motor 15 is fixedly installed on the side wall of the impregnation box 1, the output end of the motor 15 is connected to the transmission shaft, and the other end of the transmission shaft is fixedly connected to a set of linkage shafts 32, which can drive the linkage shafts 32 to rotate.
[0031] When the drive motor 15 is driven, it can drive the two sets of linkage shafts 32 to rotate, and cooperate with the two adjacent sets of first gears 3 and the two adjacent sets of second gears 31 to mesh, so that the two adjacent sets of unfolding rollers 21 and desizing rollers 24 can rotate synchronously in opposite directions, which not only improves the success rate of fabric flattening, but also improves the fabric sizing efficiency.
[0032] In this technical solution, a liquid level sensor 12 is fixedly installed on one side of the inner wall of the slurry box 1, and a feeding pipe 13 is connected and installed in the middle of the side wall of the slurry box 1, which can detect the liquid level of the slurry.
[0033] The liquid level sensor 12 installed inside the slurry box 1 can detect the liquid level of the slurry inside the slurry box 1 at all times. When the liquid level of the slurry inside the slurry box 1 is lower than the set value, the valve on the feeding pipe 13 will be opened to add a certain amount of slurry to the slurry box 1.
[0034] In use, a measured amount of slurry is first added to the impregnation box 1, and then the fabric is pulled into the impregnation box 1. It is then driven by the impregnation rollers 11 inside the box. As the fabric is continuously driven, it is completely immersed in the slurry in the impregnation box 1. Simultaneously, in conjunction with the unfolding and desizing components, before the fabric enters the impregnation box 1, it first passes between two sets of unfolding rollers 21. The unfolding rollers 21 have oppositely oriented threaded grooves 22 on both sides. After the fabric adheres to the surface of the unfolding rollers 21, the rotating unfolding rollers 21 unfold the folded edges of the fabric, ensuring that the fabric can enter the impregnation box 1 smoothly. After the fabric has completed impregnation, it travels along the traction rollers 25 to between the two sets of desizing rollers 24. The desizing rollers 24 rotate in opposite directions to squeeze the fabric, squeezing out excess slurry from the fabric surface and preventing excessive slurry from dripping onto the ground and polluting the working environment. At the same time, the linkage shafts 32, which are fixedly installed at one end of the first gear 3 and the second gear 31 on one side, and the transmission belt 33, which is installed between the two sets of linkage shafts 32, can drive one set of linkage shafts 32 to rotate when the drive motor 15 is driven. Since the two sets of linkage shafts 32 are connected by the transmission belt 33, they simultaneously drive one set of first gears 3 and second gears 31 to rotate. With the meshing of two adjacent sets of first gears 3 and two adjacent sets of second gears 31, the two sets of unfolding rollers 21 and desizing rollers 24 can rotate synchronously in opposite directions.
Claims
1. A fabric impregnation device for ski suit production, comprising an impregnation box (1), characterized in that: The impregnation box (1) is rotatably mounted on the top of the inside. The bottom of the side wall of the impregnation box (1) is connected to the discharge pipe (14). The top of one side of the impregnation box (1) is mounted with an unfolding component. The top of the other side of the impregnation box (1) is mounted with a desizing component. The unfolding component and the desizing component are driven by a linkage component.
2. The fabric impregnation device for ski suit production according to claim 1, characterized in that: The unfolding assembly includes a first mounting base (2) fixedly installed on both sides of the top of the impregnation box (1), unfolding rollers (21) rotatably installed on both sides of the two sets of the first mounting bases (2), and threaded grooves (22) opened on both sides of the two sets of unfolding rollers (21), with the thread directions of the two adjacent sets of threaded grooves (22) being opposite.
3. The fabric impregnation device for ski suit production according to claim 2, characterized in that: The desizing assembly includes a first mounting base (2) fixedly installed on both sides of the other end inside the impregnation box (1), a desizing roller (24) rotatably installed on both sides of the two sets of first mounting bases (2), and a traction roller (25) rotatably installed on both sides of the middle part of the impregnation box (1).
4. The fabric impregnation device for ski suit production according to claim 3, characterized in that: The linkage assembly includes a first gear (3) fixedly installed through a first mounting base (2) at one end of each of the two sets of unfolding rollers (21), a second gear (31) fixedly installed through a second mounting base (23) at one end of each of the two sets of desizing rollers (24), a linkage shaft (32) fixedly installed at one end of both the first gear (3) and the second gear (31) on one side, and a transmission belt (33) installed between the two sets of linkage shafts (32).
5. The fabric impregnation device for ski suit production according to claim 4, characterized in that: Two adjacent sets of first gears (3) mesh, two adjacent sets of second gears (31) mesh, a motor (15) is fixedly installed on the side wall of the impregnation box (1), the output end of the motor (15) is connected to the transmission shaft, and the other end of the transmission shaft is fixedly connected to a set of linkage shafts (32).
6. The fabric impregnation device for ski suit production according to claim 1, characterized in that: A liquid level sensor (12) is fixedly installed on one side of the inner wall of the impregnation box (1), and a feeding pipe (13) is connected to the middle of the side wall of the impregnation box (1).