A textile water jet humidification device

CN224741292UActive Publication Date: 2026-09-11HUNAN MENGHUI TEXTILE CO LTD
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Patent Information

Application Number
CN202521920247.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-08
Publication Date
2026-09-11
Estimated Expiration
2035-09-08

AI Technical Summary

Technical Problem

[0003]在实际增湿作业中,布水管端部的雾化喷头易出现水雾偏移问题,导致喷出的水雾无法覆盖织物边缘,反而落在织物外侧的设备或地面上,为适配织物幅宽,布水管端部通常需延伸至织物边缘外侧一定距离,端部喷头的安装位置更靠近布水管末端,同时,扇形喷雾的边缘区域雾滴密度本就低于中心区域,端部喷头的喷雾边缘若受气流影响,更易脱离织物覆盖范围,形成水雾外溢现象

Benefits of technology

在布水管两端对应设置两个开口相对的集水罩,集水罩开口端朝向织物边缘,内部底部形成暂存空间,可承接端部喷头偏移出织物范围的水雾。当扇形水雾落在织物外侧时,集水罩能快速收集这些水雾,避免其滴落至地面或设备表面,从根源上解决传统增湿中地面潮湿导致人员滑倒、水雾溅湿电气设备引发故障的问题,同时减少水资源浪费,提升增湿工艺的环保性与车间安全性。

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Abstract

The utility model provides a kind of textile water spraying humidifying device, including cloth water pipe, multiple second valves are evenly installed in cloth water pipe outer surface lower position, the one end of second valve away from cloth water pipe is equipped with straight pipe, atomizing nozzle is installed in straight pipe lower end, the both ends of screw rod are connected with the both ends of cloth water pipe respectively by connecting piece, the lower position of the back surface of two water collecting covers is equipped with drain pipe for connecting drain hose, hanger plate is installed on water collecting cover upper surface, screw rod penetrates hanger plate, the both sides of hanger plate along the length direction of screw rod are equipped with adjusting nut, adjusting nut is connected with screw rod thread, the utility model has following beneficial effects: reduce water resource waste, improve the environmental protection and workshop safety of humidification process.
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Description

Technical Field

[0001] This utility model is a water spray humidification device for textiles, belonging to the textile field. Background Technology

[0002] In the entire textile production process (spinning, weaving, dyeing and finishing, and finished product finishing), the humidity state of fibers and fabrics directly affects processing performance, product quality, and production efficiency. Water spray humidification, as a key process for controlling fiber / fabric humidity through water mist spraying, can specifically address problems such as fiber brittleness, fabric wrinkling, and uneven dyeing in dry environments. In continuous humidification processes for textile fabrics, the water distribution pipe, as the core carrier for water mist delivery and nozzle installation, typically needs to be adapted to the fabric width. Multiple sets of atomizing nozzles are evenly installed along the axial direction of the pipe. After the main water supply pipe delivers water to the distribution pipe, the water is distributed along the internal channels of the distribution pipe to each atomizing nozzle. After being atomized by the nozzles, it forms a water mist covering the fabric surface, achieving uniform humidification across the entire fabric width. The atomizing nozzles are often designed with a fan-shaped spray structure. This spray pattern can increase the water mist coverage width, reduce the number of nozzles, and ensure seamless connection between adjacent nozzles, avoiding unhumidified areas on the fabric. This design is suitable for the continuous processing needs of various fabrics such as cotton, chemical fibers, and blends.

[0003] In actual humidification operations, the atomizing nozzles at the end of the water distribution pipe are prone to water mist deviation. This causes the sprayed water mist to fail to cover the edges of the fabric and instead fall onto equipment or the ground outside the fabric. To adapt to the fabric width, the end of the water distribution pipe usually needs to extend a certain distance beyond the fabric edge. The installation position of the end nozzle is closer to the end of the water distribution pipe. At the same time, the droplet density in the edge area of ​​the fan-shaped spray is already lower than that in the center area. If the spray edge of the end nozzle is affected by airflow, it is more likely to leave the fabric coverage area, resulting in water mist overflow. This water mist deviation not only wastes water resources but also has a negative impact on the production environment and equipment operation. Water mist falling on the ground makes the workshop floor wet, increasing the risk of operators slipping. Utility Model Content

[0004] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a water spraying and humidifying device for textiles to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: a water spray humidification device for textiles, comprising: The water distribution pipe has an open end; The first valve is installed at the open end of the water distribution pipe to connect the water distribution pipe to the main water supply pipe. The second valve is provided in multiple ways. The multiple second valves are evenly installed on the lower part of the outer surface of the water distribution pipe. A straight pipe is installed at the end of the second valve away from the water distribution pipe, and an atomizing nozzle is installed at the lower end of the straight pipe. A screw is arranged parallel to the water distribution pipe, and the two ends of the screw are connected to the two ends of the water distribution pipe respectively through connectors; Two water collection hoods are provided, and the opposite sides of the two water collection hoods are open. The bottom of the water collection hoods forms a space for temporarily storing water. Drain pipes for connecting to drainage hoses are installed on the lower part of the opposite sides of the two water collection hoods. A hanging plate is installed on the upper surface of the water collection hood, and a screw passes through the hanging plate. Adjusting nuts are provided on both sides of the hanging plate along the length of the screw, and the adjusting nuts are threadedly connected to the screw.

[0006] Furthermore, an L-shaped plate is provided on one side of the hanging plate. The horizontal part of the L-shaped plate is connected and fixed to the hanging plate. A first through hole is provided on the vertical part of the L-shaped plate. A second through hole is provided at the upper part of one side of the hanging plate, which is aligned with the first through hole. The screw passes through the channel formed by the first through hole and the second through hole. One hanging plate and the corresponding L-shaped plate are arranged between two adjusting nuts that cooperate to limit the position of the hanging plate.

[0007] Furthermore, an elongated oval opening is provided on one side of the hanging plate, and the elongated oval opening is arranged vertically.

[0008] Furthermore, an absorbent sponge block is provided on the inner wall of the water collection hood facing its opening end, and the absorbent sponge block is connected to the water collection hood by Velcro.

[0009] Furthermore, a pipe fitting is installed at the end of the first valve away from the water distribution pipe, and a flange is installed at the end of the pipe fitting away from the first valve.

[0010] Furthermore, a branch pipe is installed at the end of the second valve away from the straight pipe, and the end of the branch pipe away from the second valve is connected to the water distribution pipe.

[0011] Furthermore, the connector includes support plates, and support plates are installed at both ends of the water distribution pipe. Horizontal holes are opened on the opposite surfaces of the two support plates. The end of the screw passes through the horizontal holes, and limit nuts are threaded to both ends of the screw. The two support plates are disposed between the two limit nuts.

[0012] Furthermore, a sleeve is fixedly connected to the end of the support plate away from the horizontal hole, and the sleeve is fitted onto the water distribution pipe and maintains a constant relative position with the water distribution pipe.

[0013] The beneficial effects of this utility model are: Two opposing water collection hoods are installed at both ends of the water distribution pipe, with the openings facing the edge of the fabric. The bottom of the hoods forms a temporary storage space to collect water mist that deviates from the fabric area from the end nozzles. When the fan-shaped water mist falls on the outside of the fabric, the water collection hoods can quickly collect this mist, preventing it from dripping onto the ground or equipment surface. This fundamentally solves the problems of slipping on wet ground and malfunctions caused by water mist splashing onto electrical equipment in traditional humidification, while also reducing water waste and improving the environmental friendliness and workshop safety of the humidification process. Attached Figure Description

[0014] 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: Figure 1 This is a schematic diagram of the structure of a water spray humidification device for textiles according to the present invention; Figure 2 This is another perspective view of a water spray humidification device for textiles according to the present invention. Figure 3 for Figure 2 Enlarged view of point A in the middle; Figure 4 This is a schematic diagram of the assembly of the second valve and the water distribution pipe in a water spray humidification device for textiles according to this utility model. Figure 5 This is a schematic diagram of the assembly of the hanging plate and the water collection cover in a water spray humidification device for textiles according to the present invention. In the picture: 1. Water distribution pipe; 11. Branch pipe; 2. Screw; 21. Support plate; 22. Sleeve; 23. Limit nut; 24. Horizontal hole; 3. First valve; 31. Pipe fitting; 4. Second valve; 41. Straight pipe; 42. Atomizing nozzle; 5. Water collection cover; 51. Drain pipe; 52. Hanging plate; 53. Oblong opening; 54. Adjusting nut; 55. L-shaped plate; 56. First through hole; 57. Second through hole; 6. Absorbent sponge block. Detailed Implementation

[0015] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0016] Please see Figures 1-4This utility model provides a technical solution: a water spraying humidification device for textiles, including a water distribution pipe 1, one end of which is open, a first valve 3 installed at the open end of the water distribution pipe 1, wherein a pipe joint 31 is installed at the end of the first valve 3 away from the water distribution pipe 1, and a flange is installed at the end of the pipe joint 31 away from the first valve 3, so that the flange is connected to the water outlet on the main water supply pipe, thereby connecting the water distribution pipe 1 to the main water supply pipe.

[0017] Multiple second valves 4 are provided, and the multiple second valves 4 are evenly installed on the lower part of the outer surface of the water distribution pipe 1. A branch pipe 11 is installed at the end of the second valve 4 away from the straight pipe 41. The end of the branch pipe 11 away from the second valve 4 is connected to the water distribution pipe 1. A straight pipe 41 is installed at the end of the second valve 4 away from the water distribution pipe 1. An atomizing nozzle 42 is installed at the lower end of the straight pipe 41. According to the width of the fabric, the second valve 4 is gradually closed from the end of the water distribution pipe 1 inward, thereby reducing the range of water mist and adapting to the needs of fabrics with different widths.

[0018] The screw 2 is arranged parallel to the water distribution pipe 1. Both ends of the water distribution pipe 1 are equipped with support plates 21. The end of the support plate 21 away from the horizontal hole 24 is connected and fixed with a pipe sleeve 22. The pipe sleeve 22 is fitted on the water distribution pipe 1 and keeps its relative position unchanged. The two support plates 21 are provided with horizontal holes 24 on their opposite sides. The end of the screw 2 passes through the horizontal hole 24. Both ends of the screw 2 are threaded with limit nuts 23. The two support plates 21 are set between the two limit nuts 23. The two support plates 21 and the two limit nuts 23 work together to restrict the relative position of the water distribution pipe 1 and the screw 2.

[0019] See Figures 1-5There are two water collection covers 5, both of which are open on opposite sides. The bottom of the water collection cover 5 forms a space for temporary water storage. Drain pipes 51 for connecting to the drain hose are installed on the lower part of the opposite sides of the two water collection covers 5. A hanging plate 52 is installed on the upper surface of the water collection cover 5. A screw rod 2 passes through the hanging plate 52. Adjusting nuts 54 are provided on both sides of the hanging plate 52 along the length of the screw rod 2. The adjusting nuts 54 are threadedly connected to the screw rod 2. According to the position of closing the second valve 4, the position of the hanging plate 52 is adjusted along the screw rod 2, thereby changing the distance between the two water collection covers 5 and realizing convenient adjustment of the position of the water collection covers 5. Two water collection covers 5 with opposite openings are set at both ends of the water distribution pipe 1. The opening end of the water collection cover 5 faces the edge of the fabric, and the bottom of the interior forms a temporary storage space to receive water mist that is offset from the end nozzles outside the fabric area. When the fan-shaped water mist falls on the outer side of the fabric, the water collection hood 5 can quickly collect this water mist, preventing it from dripping onto the ground or equipment surface. This fundamentally solves the problems of slipping on wet ground and malfunctions caused by water mist splashing onto electrical equipment, which are common with traditional humidification methods. It also reduces water waste and improves the environmental friendliness and workshop safety of the humidification process. The drain pipe 51 at the lower back of the water collection hood 5 can be connected to a drainage hose. After being temporarily stored inside the water collection hood 5, the collected water mist is discharged in a directed manner along the drain pipe 51 and drainage hose to the workshop wastewater recycling system, preventing water from accumulating and overflowing from the water collection hood 5. This orderly recycling method not only reduces the workload of workshop cleaning but also allows the recycled water to be treated and reused for humidification, further reducing water consumption and meeting the green production needs of textile enterprises. The inner wall of the water collection hood 5 facing its opening is equipped with absorbent sponge blocks 6, which are connected to the water collection hood 5 via Velcro. The design of the absorbent sponge blocks 6 prevents water mist from splashing out onto the inner wall of the water collection hood 5, thus reducing the thickness of the water collection hood 5.

[0020] See Figures 1-3 and Figure 5 The hanging plate 52 has an elongated oval opening 53 on one side, which is arranged vertically. The elongated oval opening 53 reduces the amount of material used in the production of the hanging plate 52. An L-shaped plate 55 is provided on one side of the hanging plate 52. The horizontal part of the L-shaped plate 55 is connected and fixed to the hanging plate 52. A first through hole 56 is provided on the vertical part of the L-shaped plate 55. A second through hole 57 is provided on the upper part of one side of the hanging plate 52, which is aligned with the first through hole 56. The screw 2 passes through the channel formed by the first through hole 56 and the second through hole 57. A hanging plate 52 and a corresponding L-shaped plate 55 are set between two adjusting nuts 54 that cooperate to limit the position of the hanging plate 52. When the adjusting nut 54 cannot be turned normally due to moisture, the screw 2 is cut off by the space between the L-shaped plate 55 and the hanging plate 52, so that the hanging plate 52 and the water collection cover 5 can be recycled and reused.

[0021] Although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A water spray humidification device for textiles, characterized in that, include: Water distribution pipe (1), one end of which is open; The first valve (3) is installed at the open end of the water distribution pipe (1) to connect the water distribution pipe (1) to the main water supply pipe; The second valve (4) is provided in multiple ways. Multiple second valves (4) are evenly installed on the lower part of the outer surface of the water distribution pipe (1). A straight pipe (41) is installed at the end of the second valve (4) away from the water distribution pipe (1). An atomizing nozzle (42) is installed at the lower end of the straight pipe (41). The screw (2) is arranged parallel to the water distribution pipe (1), and the two ends of the screw (2) are connected to the two ends of the water distribution pipe (1) respectively through connectors; Two water collection covers (5) are provided. The two water collection covers (5) are open on opposite sides. The bottom of the water collection cover (5) forms a space for temporary water storage. Drain pipes (51) for connecting drainage hoses are installed on the lower part of the opposite sides of the two water collection covers (5). A hanging plate (52) is installed on the upper surface of the water collection cover (5). The screw (2) passes through the hanging plate (52). Adjusting nuts (54) are provided on both sides of the hanging plate (52) along the length direction of the screw (2). The adjusting nuts (54) are threadedly connected to the screw (2).

2. The water spray humidification device for textiles according to claim 1, characterized in that, The hanging plate (52) is provided with an L-shaped plate (55) on one side. The horizontal part of the L-shaped plate (55) is connected and fixed to the hanging plate (52). The vertical part of the L-shaped plate (55) is provided with a first through hole (56). The upper part of one side of the hanging plate (52) is provided with a second through hole (57) that is aligned with the first through hole (56). The screw (2) passes through the channel formed by the first through hole (56) and the second through hole (57). One hanging plate (52) and the corresponding L-shaped plate (55) are arranged between two adjusting nuts (54) that cooperate to limit the position of the hanging plate (52).

3. The water spray humidification device for textiles according to claim 2, characterized in that, The hanging plate (52) has an elongated opening (53) on one side, and the elongated opening (53) is arranged vertically.

4. The water spray humidification device for textiles according to claim 1, characterized in that, The water collection cover (5) has an absorbent sponge block (6) on its inner wall facing its opening end. The absorbent sponge block (6) is connected to the water collection cover (5) by Velcro.

5. A water spray humidification device for textiles according to claim 1, characterized in that, The first valve (3) is equipped with a pipe joint (31) at the end away from the water distribution pipe (1), and the pipe joint (31) is equipped with a flange at the end away from the first valve (3).

6. A water spray humidification device for textiles according to claim 1, characterized in that, The second valve (4) has a branch pipe (11) installed at the end away from the straight pipe (41), and the end of the branch pipe (11) away from the second valve (4) is connected to the water distribution pipe (1).

7. A water spray humidification device for textiles according to claim 1, characterized in that, The connector includes a support plate (21), and both ends of the water distribution pipe (1) are equipped with support plates (21). The two support plates (21) have horizontal holes (24) on their opposite sides. The end of the screw (2) passes through the horizontal hole (24). Both ends of the screw (2) are threaded with limit nuts (23). The two support plates (21) are arranged between the two limit nuts (23).

8. A water spray humidification device for textiles according to claim 7, characterized in that, The end of the support plate (21) away from the horizontal hole (24) is connected and fixed with a sleeve (22), which is sleeved on the water distribution pipe (1) and keeps its relative position unchanged.