Textile fabric wetting device for textile processing

By designing a textile cloth wetting device including an ion fan, air collector hood, water outlet pipe and spray head, the static electricity and dust problems on the surface of the textile cloth are solved, thoroughness and uniformity of the wetting are achieved, and the processing quality of the textile cloth is improved.

CN222834556UActive Publication Date: 2025-05-06NANTONG LIANXING YARN-DYED CO LTD
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Patent Information

Application Number
CN202421507242.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-28
Publication Date
2025-05-06
Estimated Expiration
2034-06-28

AI Technical Summary

Technical Problem

The surface of the textile fabric is dry after being cured, resulting in an increase in fiber resistance, static electricity generation, adsorption of dust, affecting the quality of subsequent processing, and changes in humidity affect the elongation and mass of the fiber.

Method used

Design a wetting device for textile processing, including hollow design in the outer shell, ion fan, air collector hood, water outlet pipe and shower head. The ion fan is used to eliminate static electricity, the air collector hood is cleaned up dust, the water outlet pipe shower head is wet, and the moisture is squeezed through the pressing roller to ensure uniform moisture and not easy to absorb dust.

Benefits of technology

Effectively eliminate static electricity and dust on the surface of textile fabrics, ensure the thoroughness and uniformity of the wetting process, improve the processing quality of textile fabrics, and is suitable for textiles of different thicknesses.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222834556U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of textile processing, and discloses a textile fabric wetting device for textile processing, an ion fan is installed on the left side of the upper end of an outer shell, an air outlet of the ion fan is communicated with a cavity of the outer shell, a first air collecting cover is installed under the ion fan, and an air outlet cover is arranged on the right side of the first air collecting cover; an air outlet cover is arranged on the upper side of the inner part of the outer shell, an air collecting cover II is arranged right above the air outlet cover, two water outlet pipes I are arranged above the right half part of the inner part of the cavity of the outer shell, and a water outlet pipe II is arranged right below the two water outlet pipes I. An ion fan, the air collecting cover II and the water outlet pipes I are sequentially arranged on the upper side of the inner part of the outer shell; the first air collecting cover, the air outlet cover and the second water outlet pipe are sequentially arranged on the lower side of the textile fabric, static electricity on the surface of the textile fabric can be eliminated, dust can be removed, then wetting operation is carried out, the surface of the textile fabric is wetted without dust, surrounding dust is not prone to being attracted in the follow-up machining process, and meanwhile the machining quality is improved.
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Description

Technical Field

[0001] The utility model relates to the field of textile processing, in particular to a textile cloth wetting device for textile processing. Background Art

[0002] After the textile fabric is formed, it is usually rolled up. During further processing (such as slitting, etc.), the unwinding mechanism is used to unwind it again. Since the surface of the textile fabric is dry when it is rolled up, when the fibers in the textile part lose moisture, their resistance increases, which means that they can no longer easily absorb the charge generated by mechanical friction contact. Then, the surface friction of the fabric will generate static electricity when it is unrolled, and the tool will also generate static electricity when cutting the surface of the fabric. Large static electricity will absorb dust, which will cause the surface of the textile fabric to easily absorb free dust in the air. At the same time, the elongation of textile fibers will increase with the increase of humidity. The decrease of relative humidity of textiles may make them weaker, thinner, and less elastic. In addition, the material temperature will increase during the processing, making the material dry, which will affect the quality of subsequent textile fabrics. For this reason, we designed a textile fabric wetting device for textile processing. Utility Model Content

[0003] In order to solve the technical problem that the surface of textile cloth easily absorbs free dust in the air, the utility model provides a textile cloth wetting device for textile processing.

[0004] The utility model is implemented by the following technical scheme: a textile fabric wetting device for textile processing, comprising an outer shell, the inner hollow design of the outer shell forms a cavity, and the left and right ends of the outer shell are provided with feed ports, the right end of the outer shell is symmetrically provided with mounting seats on both sides, and the mounting seats are sequentially provided with two rotating shafts 1 from bottom to top, and the two rotating shafts 1 are respectively rotatably provided with a pressure roller 1 and a pressure roller 2, the left end of the outer shell is symmetrically provided with fixed seats on both sides, and a guide roller is rotatably provided between the two fixed seats through the rotating shaft 2;

[0005] An ion fan is installed on the left side of the upper end of the outer shell, and the air outlet of the ion fan is connected to the outer shell cavity, a wind collecting cover 1 is installed directly below the ion fan, an air outlet cover is arranged on the right side of the wind collecting cover 1, and a wind collecting cover 2 is arranged directly above the air outlet cover;

[0006] Two water outlet pipes 1 are arranged above the right half of the inner cavity of the outer shell, and water outlet pipe 2 is arranged directly below the two water outlet pipes 1. Multiple sprinkler heads distributed at equal intervals are arranged below the outer circle of the water outlet pipe 1 and above the outer circle of the water outlet pipe 2.

[0007] As a further improvement of the above scheme, the front ends of the water outlet pipe 1 and the water outlet pipe 2 are both placed outside the outer shell, and the front ends of the water outlet pipe 1 and the water outlet pipe 2 are both connected to the water inlet main pipe, and the water inlet main pipe is connected to an external water pump and a water tank. The water flow can enter the water outlet pipe 1 and the water outlet pipe 2, and then can be sprayed onto the upper and lower surfaces of the textile through the sprinkler head, so that the textile is moistened more thoroughly and evenly.

[0008] As a further improvement of the above scheme, the water outlet pipe 1 is located above the feed port, and the water outlet pipe 2 is located below the feed port, which will not interfere with the normal movement of the textile, and a water collecting tank is provided below the water outlet pipe 1 and the water outlet pipe 2 to facilitate the collection of the water flow falling after spraying.

[0009] As a further improvement of the above scheme, two vertically downward wind shields are provided at the left end of the inner part of the outer shell, and the two wind shields are located on the left and right sides below the ion blower and directly above the wind collecting hood. The bottom end of the wind shield is flush with the top of the feed inlet, and the top end of the wind collecting hood is flush with the bottom of the feed inlet. The textile can be placed between the wind collecting hood and the wind shield, which makes it easier to clean the dust on the lower surface of the textile.

[0010] As a further improvement of the above scheme, the top of the air outlet hood is flush with the lower end of the feed port, and the bottom end of the air collecting hood 2 is flush with the upper end of the feed port, the lower ends of the air collecting hood 1 and the air collecting hood 2 are connected with air outlet pipes, the two air outlet pipes are connected to the air outlet main pipe, and the air outlet main pipe is connected to the air inlet of an external induced draft fan 1, and the lower end of the air outlet hood is connected to the air outlet of the external induced draft fan 2 through the air inlet pipe. The air outlet hood can blow out upward-flowing airflow upward, and the air collecting hood 2 allows the upward-flowing airflow to enter its interior and forms a negative pressure around it, thereby cleaning the dust attached to the upper surface of the textile.

[0011] As a further improvement of the above scheme, the upper ends of the outer ring surfaces of the guide roller and the pressure roller one are located above the bottom end of the feed port and below the top end of the feed port, and the lower end of the outer ring surface of the pressure roller two is located below the top end of the feed port. The pressure roller one and the guide roller can support and position the textile, so that the textile can enter the interior of the outer shell without contacting the feed port, thereby avoiding scratches.

[0012] As a further improvement of the above solution, the mounting seat is formed with a sliding hole through the front and rear, and the upper rotating shaft is slidably placed in the sliding hole;

[0013] A threaded hole is formed downward through the upper end of the mounting seat, the threaded hole is connected to the sliding hole, an adjusting screw is threadedly connected to the threaded hole, a ball is welded to the bottom end of the adjusting screw, ball seats are provided at the front and rear ends of the rotating shaft 1 above, the ball is movably placed in the ball seat, the ball can be arbitrarily deflected in the ball seat, so that the adjusting screws at the front and rear ends can be rotated respectively, and the distance between the edge pressing roller 1 and the pressing roller 2 can be changed according to needs, so that it is suitable for textiles of various thicknesses.

[0014] Compared with the prior art, the beneficial effects of the present invention are:

[0015] 1. The utility model sequentially arranges an ion fan, a second air collecting cover and a first water outlet pipe on the upper side of the inner part of the outer shell, and sequentially arranges a first air collecting cover, an air outlet cover and a second water outlet pipe on the lower side, which can first eliminate static electricity on the surface of the textile cloth and remove dust, and then perform a wetting operation, so that the surface of the textile cloth is wetted without dust, and is not easy to attract surrounding dust in subsequent processing, and also improves the processing quality;

[0016] 2. By arranging the pressure roller 1 and the pressure roller 2 on the right side of the outer shell, they can squeeze the moisture on the surface of the textile cloth to avoid its collapse during transportation due to excessive moisture, and the position of the pressure roller 2 can be adjusted as needed, which is suitable for textile cloths of various thicknesses and can also change the pressure of moisture squeezing as needed. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 A schematic diagram of the overall structure of a textile cloth wetting device for textile processing provided by the utility model;

[0018] Figure 2 for Figure 1 A cross-sectional view of

[0019] Figure 3 for Figure 1 Schematic diagram of the internal structure.

[0020] Description of main symbols:

[0021] 1. Outer shell; 11. Feed inlet; 12. Water collecting box; 2. Pressing roller 1; 21. Pressing roller 2; 22. Mounting seat; 23. Rotating shaft 1; 24. Adjusting screw; 3. Ion fan; 31. Wind shield; 4. Guide roller; 41. Fixed seat; 5. Wind collecting hood 1; 6. Wind outlet hood; 7. Wind collecting hood 2; 8. Water outlet pipe 1; 9. Water outlet pipe 2; 91. Sprinkler head. DETAILED DESCRIPTION

[0022] The present invention is further described below in conjunction with the accompanying drawings and specific implementation methods. It should be noted that, under the premise of no conflict, the various embodiments or technical features described below can be arbitrarily combined to form a new embodiment.

[0023] Example:

[0024] Please combine Figure 1-Figure 3 , a textile fabric wetting device for textile processing of the present embodiment comprises an outer shell 1, the inner part of the outer shell 1 is hollowed out to form a cavity, and a feed port 11 is provided at both the left and right ends of the outer shell 1, mounting seats 22 are symmetrically arranged at the front and rear sides of the right end of the outer shell 1, and the mounting seats 22 are sequentially installed with two rotating shafts 1 23 from bottom to top, and the two rotating shafts 1 23 are respectively rotatably installed with a pressure roller 1 2 and a pressure roller 2 21, and the left end of the outer shell 1 is symmetrically arranged with fixed seats 41 at the front and rear sides, and a guide roller 4 is rotatably installed between the two fixed seats 41 through the rotating shaft 2;

[0025] An ion fan 3 is installed on the left side of the upper end of the outer shell 1, and the air outlet of the ion fan 3 is connected to the cavity of the outer shell 1, a wind collecting cover 1 5 is installed directly below the ion fan 3, an air outlet cover 6 is arranged on the right side of the air collecting cover 1 5, and a wind collecting cover 2 7 is arranged directly above the air outlet cover 6;

[0026] Two water outlet pipes 1 8 are arranged on the upper right half of the inner cavity of the outer shell 1, and water outlet pipe 2 9 is arranged directly below the two water outlet pipes 1 8. A plurality of sprinkler heads 91 are arranged at equal intervals below the outer circle of water outlet pipe 1 8 and above the outer circle of water outlet pipe 2 9.

[0027] The front ends of the water outlet pipe 1 8 and the water outlet pipe 2 9 are both placed outside the outer shell 1 and connected to the water inlet main pipe, which is connected to an external water pump and a water tank. The water can enter the water outlet pipe 1 8 and the water outlet pipe 2 9, and then can be sprayed onto the upper and lower surfaces of the textile through the spray head 91, so that the textile is moistened more thoroughly and evenly.

[0028] Water outlet pipe 1 8 is located above the feed port 11, and water outlet pipe 2 9 is located below the feed port 11, which will not interfere with the normal movement of the textile. A water collecting box 12 is provided below water outlet pipe 1 8 and water outlet pipe 2 9 to collect the water flow falling after spraying.

[0029] Two vertically downward wind shields 31 are provided at the left end of the inner part of the outer shell 1. The two wind shields 31 are located on the left and right sides below the ion blower 3 and directly above the wind collecting hood 5. The bottom end of the wind shield 31 is flush with the top of the feed inlet 11, and the top end of the wind collecting hood 5 is flush with the bottom of the feed inlet 11. The textile can be placed between the wind collecting hood 5 and the wind shield 31, which makes it easy to clean the dust on the lower surface of the textile.

[0030] The top of the air outlet hood 6 is flush with the lower end of the feed port 11, and the bottom end of the air collecting hood 2 7 is flush with the upper end of the feed port 11. The lower ends of the air collecting hood 1 5 and the air collecting hood 2 7 are connected with air outlet pipes, and the two air outlet pipes are connected to the main air outlet pipe, and the main air outlet pipe is connected to the air inlet of the external induced draft fan 1. The lower end of the air outlet hood 6 is connected to the air outlet of the external induced draft fan 2 through the air inlet pipe. The air outlet hood 6 can blow out an upward-flowing airflow upward, and the air collecting hood 2 7 allows the upward-flowing airflow to enter its interior and forms a negative pressure around it, thereby cleaning the dust attached to the surface of the textile.

[0031] The upper ends of the outer ring surfaces of the guide roller 4 and the pressure roller 2 are above the bottom end of the feed port 11 and are placed below the top end of the feed port 11. The lower end of the outer ring surface of the pressure roller 21 is below the top end of the feed port 11. The pressure roller 2 and the guide roller 4 can support and position the textile, so that the textile can enter the outer shell 1 without contacting the feed port 11, thereby avoiding scratches.

[0032] The mounting seat 22 is formed with a sliding hole through the front and rear, and the upper rotating shaft 23 is slidably placed in the sliding hole;

[0033] A threaded hole is formed downward through the upper end of the mounting seat 22, which is connected to the sliding hole. An adjusting screw 24 is threadedly connected to the threaded hole. A ball is welded to the bottom end of the adjusting screw 24. Ball seats are provided at the front and rear ends of the upper rotating shaft 23. The ball is movably placed in the ball seat. The ball can be arbitrarily deflected in the ball seat, so that the adjusting screws 24 at the front and rear ends can be rotated respectively, and the distance between the edge pressing roller 2 and the pressing roller 21 can be changed as needed, so that it is suitable for textiles of various thicknesses.

[0034] The implementation principle of a textile fabric wetting device for textile processing in the embodiment of the present application is as follows: in actual use, the textile fabric enters from the feed port 11 on the left side of the outer shell 1 and flows out from the feed port 11 on the right side, and the textile fabric is arranged between the air outlet hood 6 and the air collecting hood 2 7, and the water outlet pipe 1 8 and the water outlet pipe 2 9. When the textile fabric enters the inner part of the outer shell 1, it will first be affected by the airflow blown downward by the ion fan 3. This airflow can eliminate the static electricity on the surface of the textile fabric, and can make the dust attached to the lower surface of the textile fabric be blown away downward and collected in the air collecting hood. 1-5, when it moves to the top of the air outlet hood 6, the air outlet hood 6 generates an upward airflow, so that the dust on the surface of the textile cloth is blown upward and collected by the wind collecting hood 2 7, and then continues to move to the position between the water outlet pipe 1 8 and the water outlet pipe 2 9, and the water outlet pipe 1 8 and the water outlet pipe 2 9 spray water mist to the upper and lower surfaces of the textile cloth through the spray head 91 to moisten it, and when it continues to move to the right, it will be squeezed by the pressing roller 1 2 and the pressing roller 21, so that the excess water on the surface is squeezed out, and finally it can enter the subsequent processing operation;

[0035] By sequentially arranging an ion fan 3, an air collecting cover 7 and a water outlet pipe 8 on the upper side of the outer shell 1, and sequentially arranging an air collecting cover 5, an air outlet cover 6 and a water outlet pipe 9 on the lower side, they can first eliminate static electricity on the surface of the textile cloth and remove dust, and then perform a wetting operation, so that the surface of the textile cloth is wet and dust-free, and it is not easy to attract surrounding dust in subsequent processing, and the processing quality is also improved;

[0036] By arranging the pressing roller 1 2 and the pressing roller 2 21 on the right side of the outer shell 1, they can squeeze the moisture on the surface of the textile cloth to avoid its collapse during transportation due to excessive moisture, and the position of the pressing roller 2 21 can be adjusted as needed, which is suitable for textile cloths of various thicknesses and can also change the moisture squeezing pressure as needed.

[0037] The above-mentioned implementation modes are only preferred implementation modes of the present invention, and cannot be used to limit the protection scope of the present invention. Any non-substantial changes and substitutions made by technicians in this field on the basis of the present invention shall fall within the scope of protection required by the present invention.

Claims

1. A textile fabric wetting device for textile processing, comprising an outer shell (1), characterized in that: The outer shell (1) is hollow inside to form a cavity, and the left and right ends of the outer shell (1) are provided with feed ports (11). The right end of the outer shell (1) is symmetrically provided with mounting seats (22) at both the front and rear sides, and the mounting seats (22) are sequentially provided with two rotating shafts (23) from bottom to top, and the two rotating shafts (23) are respectively rotatably provided with a pressure roller (2) and a pressure roller (21). The left end of the outer shell (1) is symmetrically provided with fixing seats (41), and a guide roller (4) is rotatably provided between the two fixing seats (41) via the rotating shaft (2). An ion fan (3) is installed on the left side of the upper end of the outer shell (1), and the air outlet of the ion fan (3) is connected to the cavity of the outer shell (1), a wind collecting cover (5) is installed directly below the ion fan (3), an air outlet cover (6) is arranged on the right side of the wind collecting cover (5), and a wind collecting cover (7) is arranged directly above the air outlet cover (6); Two water outlet pipes (8) are arranged above the right half of the inner cavity of the outer shell (1), and water outlet pipes (9) are arranged directly below the two water outlet pipes (8). Multiple spray heads (91) are arranged at equal intervals below the outer circle of the water outlet pipes (8) and above the outer circle of the water outlet pipes (9).

2. A textile fabric wetting device for textile processing as claimed in claim 1, characterized in that: The front ends of the water outlet pipe 1 (8) and the water outlet pipe 2 (9) are both passed through the outer shell (1) and placed outside the outer shell, and the front ends of the water outlet pipe 1 (8) and the water outlet pipe 2 (9) are both connected to a water inlet main pipe, and the water inlet main pipe is connected to an external water pump and a water tank.

3. A textile fabric wetting device for textile processing as claimed in claim 2, characterized in that: The water outlet pipe 1 (8) is located above the feed inlet (11), the water outlet pipe 2 (9) is located below the feed inlet (11), and a water collecting box (12) is provided below the water outlet pipe 1 (8) and the water outlet pipe 2 (9).

4. A textile fabric wetting device for textile processing as claimed in claim 1, characterized in that: Two wind shields (31) facing vertically downward are arranged at the left end of the interior of the outer shell (1). The two wind shields (31) are located on the left and right sides below the ion blower (3) and directly above the wind collecting hood (5). The bottom end of the wind shield (31) is flush with the top of the feed inlet (11), and the top end of the wind collecting hood (5) is flush with the bottom of the feed inlet (11).

5. A textile fabric wetting device for textile processing as claimed in claim 4, characterized in that: The top of the air outlet hood (6) is flush with the lower end of the feed port (11), and the bottom of the second air collecting hood (7) is flush with the upper end of the feed port (11). The lower ends of the first air collecting hood (5) and the second air collecting hood (7) are both connected with air outlet pipes. The two air outlet pipes are connected to the main air outlet pipe, and the main air outlet pipe is connected to the air inlet of the first external induced draft fan. The lower end of the air outlet hood (6) is connected to the air outlet of the second external induced draft fan via the air inlet pipe.

6. A textile fabric wetting device for textile processing as claimed in claim 1, characterized in that: The upper ends of the outer ring surfaces of the guide roller (4) and the pressure roller one (2) are located above the bottom end of the feed inlet (11) and below the top end of the feed inlet (11), and the lower end of the outer ring surface of the pressure roller two (21) is located below the top end of the feed inlet (11).

7. A textile fabric wetting device for textile processing as claimed in claim 1, characterized in that: The mounting seat (22) is penetrated by a sliding hole at the front and rear ends, and the upper rotating shaft (23) is slidably placed in the sliding hole. The upper end of the mounting seat (22) is penetrated by a threaded hole facing downward, and the threaded hole is connected to the sliding hole. An adjusting screw (24) is threadedly connected in the threaded hole. A ball is welded to the bottom end of the adjusting screw (24). Ball seats are provided at both the front and rear ends of the upper rotating shaft (23), and the ball is movably placed in the ball seat.