Oil-stain-resistant agent circulating spraying equipment for oil-stain-resistant linen fabric production

By designing an anti-oil stain circulating spraying equipment with a circulating spraying component and a liquid suction pump, the problem that the anti-oil stain circulating agent cannot be recycled is solved, the efficient use and uniform spraying of the anti-oil stain circulating agent are achieved, and the protective effect and durability of the linen fabric are improved.

CN223300213UActive Publication Date: 2025-09-05YIXING XINDONMAO TEXTILE TECH CO LTD
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Patent Information

Application Number
CN202421551307.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-03
Publication Date
2025-09-05
Estimated Expiration
2034-07-03

AI Technical Summary

Technical Problem

When the existing anti-oil stain agent circulating spraying equipment is sprayed on linen fabrics, the anti-oil stain agent cannot be recycled, resulting in poor penetration and coverage effects and serious waste of resources.

Method used

A circulating spraying device for anti-oil stain agent is designed, which includes a circulating spraying component and a liquid extraction pump. The excess anti-oil stain agent is recovered and reused by the liquid extraction pump, and the movement and winding of the linen fabric are controlled by the forward and reverse motor to realize the circulating spraying and drying of the anti-oil stain agent.

Benefits of technology

The utilization rate of the anti-oil agent is improved, the protective effect of the linen fabric is enhanced, the durability and environmental protection of the fabric are improved, and the equipment space is saved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses oil-resistant agent circulating spraying equipment for oil-resistant linen fabric production, and belongs to the technical field of spraying equipment. The left side and the right side of the spraying box body are each provided with a through conveying opening, the rotating winding rollers are arranged on the outer wall of the spraying box body and located at the lower ends of the through conveying openings, and the circulating spraying assembly is arranged in the spraying box body; the two forward and reverse rotation motors are arranged, one motor is controlled to rotate forwards, the other motor is controlled to turn over, forward movement and winding of the linen fabric can be completed, when circulating spraying is needed, only the rotating directions of the two forward and reverse rotation motors need to be changed, the linen fabric moves reversely and is wound, the protection effect of the linen fabric is enhanced, and the spraying speed is increased. The durability and the environmental protection property of the linen fabric are improved, and meanwhile the wearing experience of a wearer is improved; and by arranging the spraying disc capable of sliding back and forth along the inner wall of the spraying box body, the position of the spraying disc is accurately controlled, and it is ensured that the oil-resistant agent is evenly distributed on the linen fabric in the spraying process.
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Description

Technical Field

[0001] The utility model relates to the technical field of spraying equipment, in particular to an anti-oil stain agent circulating spraying equipment for producing anti-oil stain linen fabrics. Background Art

[0002] Linen is a common natural fiber, primarily made from the bast fiber of the flax plant. This fabric is widely used in a variety of clothing and household items due to its excellent moisture absorption and breathability. Linen fabric has the advantages of high moisture absorption, good breathability, antibacterial and radiation protection, and is wear-resistant and durable.

[0003] Oil-resistant linen fabric is a specially treated linen fabric with good oil-resistant properties. This fabric usually achieves its oil-resistant properties by spraying an oil-resistant agent on its surface to form an oil-resistant coating. This treatment can form a protective film on the surface of the fabric, effectively preventing oil stains from adhering and spreading.

[0004] The anti-oil stain agent circulating spraying equipment is used to evenly spray the anti-oil stain agent on linen fabrics to achieve the anti-oil stain effect. When the existing anti-oil stain agent circulating spraying equipment is in use, the anti-oil stain agent cannot be circulated and sprayed, which reduces the penetration and coverage effect of the anti-oil stain agent. Utility Model Content

[0005] In view of the above problems, the utility model discloses an anti-oil stain agent circulating spraying device for producing anti-oil stain linen fabrics.

[0006] The technical solution of the utility model is: an anti-oil stain agent circulating spraying device for producing anti-oil stain linen fabrics, comprising a spray box with through-feed ports on the left and right sides, a rotating winding roller provided on the outer wall of the spray box and located at the lower end of the through-feed ports, and a circulating spraying assembly provided in the spray box;

[0007] The circulating spraying assembly includes a plurality of feeding rotating rollers arranged at the upper and lower ends of the inner wall of the spray box, a spray disk arranged at the upper and lower ends of the inner wall of the spray box and located between two adjacent feeding rotating rollers, and an anti-oil agent placement box connected to each of the spray disks through a connecting hose. Each spray disk can slide back and forth along the inner wall of the spray box.

[0008] Furthermore, a flow outlet is provided at the bottom end of the spray box, and the flow outlet is connected to the oil-proofing agent placement box through a circulation pipe, and a liquid pump is provided at the connection point.

[0009] Description: When the excess anti-oil stain agent sprayed on the linen fabric falls to the bottom of the spray box and gathers, the anti-oil stain agent gathered at the bottom of the spray box is pumped back into the spray box through the circulation pipe by the liquid pump for recycling, which can effectively reduce the waste of anti-oil stain agent and improve resource utilization.

[0010] Furthermore, sliding grooves are provided at the upper and lower ends of the spray box and between the two adjacent feed rotating rollers. The sliding grooves correspond one-to-one to the spray disks and are slidably connected through sliding blocks. The spray disks located at the left and right ends are evenly provided with multiple spray holes on the opposite sides of the oil-proof linen fabric, and the spray disk located in the middle position is provided with multiple spray holes on both sides.

[0011] Description: When it is necessary to spray the anti-oil stain agent on the linen fabric located on the feeding rotating roller, the sliding blocks on each spray disc are driven by the power equipment to slide forward in the corresponding sliding groove until each spray disc is located between two adjacent feeding rotating rollers. Then, the anti-oil stain agent is pumped into the spray disc and sprayed onto the surface of the linen fabric through each spray hole. When the spraying is completed, the sliding blocks on each spray disc are driven by the power equipment to slide backward in the corresponding sliding groove. While accurately controlling the position of the spray disc, it is ensured that the anti-oil stain agent is evenly distributed on the linen fabric during the spraying process, and at the same time, the transmission of the linen fabric on the feeding rotating roller is guaranteed.

[0012] Furthermore, a drying tray is provided in each of the sliding grooves, and the drying tray can slide back and forth along the corresponding sliding groove.

[0013] Description: Each drying tray corresponds to each spray tray one by one and is located in front and behind. When the spraying is completed and the linen fabric needs to be dried, the power equipment drives each drying tray to slide backward in the corresponding sliding groove until each drying tray is located between two adjacent feeding rotating rollers. Then, the linen fabric is dried, which helps to maintain the treatment consistency of the linen fabric and ensures that each piece of fabric undergoes the same degree of spraying and drying treatment. Placing the spray tray and the drying tray in the same area helps to save space and reduce the size of the equipment.

[0014] Furthermore, the center of each rotating winding roller is connected to a forward and reverse rotating motor via a connecting shaft.

[0015] Description: The two forward and reverse motors are started at the same time, and one rotates forward while the other flips, so that the linen fabric can be moved forward and wound, and sprayed and dried at the same time. When repeated spraying and drying are required, it is only necessary to change the direction of the two forward and reverse motors to make the linen fabric move and wind in the opposite direction. If the above process is repeated, the anti-oil agent can be sprayed in a cycle, which not only enhances the protective effect of the linen fabric, but also improves the durability and environmental protection of the linen fabric, while enhancing the wearer's wearing experience.

[0016] Beneficial effects of the utility model:

[0017] The oil-proofing agent circulating spraying device of the present invention is provided with two forward and reverse motors, and one of them is controlled to rotate forward and the other is flipped, so that the forward movement and winding of the linen fabric can be completed. When cyclic spraying and drying are required, it is only necessary to change the direction of the two forward and reverse motors to make the linen fabric move and wind in the reverse direction, which not only enhances the protective effect of the linen fabric, but also improves the durability and environmental protection of the linen fabric, while improving the wearing experience of the wearer; by providing a spraying disk that can slide back and forth along the inner wall of the spraying box, the position of the spraying disk is accurately controlled to ensure that the oil-proofing agent is evenly distributed on the linen fabric during the spraying process, while ensuring the transmission of the linen fabric on the feeding rotating roller; at the same time, by providing drying disks that correspond one to one to each spraying disk and are located in front and behind, it helps to maintain the treatment consistency of the linen fabric, ensure that each piece of fabric is sprayed and dried to the same extent, and arrange the spraying disk and the drying disk in the same area, which helps to save space and reduce the volume of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is the overall front view of the utility model where the spraying disc is located between two adjacent feeding rotating rollers;

[0019] Figure 2 This is the overall front view of the drying plate of the utility model located between two adjacent feeding rotating rollers;

[0020] Figure 3 It is a top view of the present utility model.

[0021] Among them, 1-spraying box, 10-through feeding port, 11-outlet, 12-circulation pipe, 13-liquid pump, 14-sliding trough, 141-drying plate, 15-sliding block, 2-rotating winding roller, 20-forward and reverse motor, 3-circulation spraying assembly, 30-feeding rotating roller, 31-spraying plate, 310-spraying hole, 32-oil-proof agent placement box, 320-connecting hose. DETAILED DESCRIPTION

[0022] Example 1

[0023] like Figure 1 As shown, an anti-oil stain agent circulating spraying device for producing anti-oil stain linen fabrics includes a spray box 1 with a through-feed port 10 on each of its left and right sides, a rotating winding roller 2 provided on the outer wall of the spray box 1 and located at the lower end of the through-feed port 10, and a circulating spray assembly 3 provided in the spray box 1;

[0024] The center of each rotating winding roller 2 is connected to a forward and reverse motor 20 via a connecting shaft, wherein the forward and reverse motors 20 adopt existing technology. The two forward and reverse motors 20 are started at the same time, and one rotates forward while the other rotates backward, so that the linen fabric can be moved and wound in the forward direction, and sprayed and dried at the same time. When repeated spraying and drying are required, it is only necessary to change the direction of the two forward and reverse motors 20 to make the linen fabric move and wind in the reverse direction. If the above process is repeated, the oil-proof agent can be sprayed cyclically, which not only enhances the protective effect of the linen fabric, but also improves the durability and environmental protection of the linen fabric, and at the same time improves the wearing experience of the wearer.

[0025] The circulating spraying assembly 3 includes 11 feeding rotating rollers 30 provided at the upper and lower ends of the inner wall of the spray box 1, a spraying disc 31 provided at the upper and lower ends of the inner wall of the spray box 1 and located between two adjacent feeding rotating rollers 30, and an anti-oil fouling agent placement box 32 connected to each spraying disc 31 through a connecting hose 320. Each spraying disc 31 can slide back and forth along the inner wall of the spray box 1. Among them, the feeding rotating roller 30, the spraying disc 31, and the connecting hose 320 all adopt existing technologies, and the two ends of the connecting hose 320 are respectively connected to the spraying disc 31 and the anti-oil fouling agent placement box 32 through a movably connected manner, and the side wall of the anti-oil fouling agent placement box 32 is provided with a transparent through window, the purpose of which is to facilitate intuitive observation of the remaining amount of anti-oil fouling agent inside so as to replenish it in time and ensure the continuity of the anti-oil fouling effect.

[0026] Example 2

[0027] This embodiment is based on embodiment 1. Figure 3 As shown, an outflow outlet 11 is provided at the bottom of the spray box 1, and the outflow outlet 11 is connected to the anti-oil stain agent placement box 32 through a circulation pipe 12, and a liquid extraction pump 13 is provided at the connection, wherein the circulation pipe 12 and the liquid extraction pump 13 adopt the existing technology, and a filter is provided in the anti-oil stain agent placement box 32, and the position of the connection between the circulation pipe 12 and the anti-oil stain agent placement box 32 is higher than the position of the filter. The solid impurities in the recovered anti-oil stain agent can be filtered through the filter, which can ensure the cleanliness of the anti-oil stain agent and avoid the adverse effects of impurities on the normal operation and use of the equipment. When the excess anti-oil stain agent sprayed on the linen fabric falls to the bottom of the spray box 1 and gathers, the anti-oil stain agent gathered at the bottom of the spray box 1 is re-pumped into the spray box 1 through the circulation pipe 12 by the liquid extraction pump 13 for recycling, which can effectively reduce the waste of anti-oil stain agent and improve the utilization rate of resources.

[0028] Example 3

[0029] This embodiment is based on embodiment 2. Figure 1As shown, a sliding groove 14 is provided at the upper and lower ends of the spray box 1 and between two adjacent feeding rotating rollers 30. The sliding groove 14 corresponds to the spray disc 31 one by one and is slidably connected by a sliding block 15. The spray discs 31 at the left and right ends are evenly provided with 20 spray holes 310 on the opposite sides of the oil-proof linen fabric. The spray disc 31 at the middle position is provided with 20 spray holes 310 on both sides. When it is necessary to spray the linen fabric on the feeding rotating roller 30 with the oil-proof agent, the sliding blocks 15 on each spray disc 31 are driven by the power equipment to move in a certain direction. The spray discs 31 slide forward in the corresponding sliding grooves 14 until each spray disc 31 is located between two adjacent feed rotating rollers 30. Then, the anti-oil agent is pumped into the spray discs 31 and sprayed onto the surface of the linen fabric through the spray holes 310. After the spraying is completed, the sliding blocks 15 on each spray disc 31 are driven by a power device to slide backward in the corresponding sliding grooves 14. While accurately controlling the position of the spray discs, it is ensured that the anti-oil agent is evenly distributed on the linen fabric during the spraying process, while ensuring the transmission of the linen fabric on the feed rotating rollers 30.

[0030] like Figure 2 As shown, each sliding groove 14 is provided with a drying plate 141, and the drying plate 141 can slide back and forth along the corresponding sliding groove 14, wherein the drying plate 141 adopts the existing technology, and each drying plate 141 corresponds to each spraying plate 31 one by one, and is located in a front and a rear position. When the spraying is completed and the linen fabric needs to be dried, the power equipment drives each drying plate 141 to slide backward in the corresponding sliding groove 14 until each drying plate 141 is located between two adjacent feeding rotating rollers 30, and then the linen fabric is dried, which helps to maintain the processing consistency of the linen fabric and ensures that each piece of fabric undergoes the same degree of spraying and drying treatment. Placing the spraying plate 31 and the drying plate 141 in the same area helps to save space and reduce the volume of the equipment.

[0031] The method for using the solid-liquid separation device of Example 3 comprises the following steps:

[0032] S1, winding the linen fabric to be sprayed on one of the rotating winding rollers 2, and passing one end of the linen fabric around each feeding rotating roller 30 and fixing it on the other rotating winding roller 2;

[0033] S2. The sliding blocks 15 on each spraying disc 31 are driven by a power device to slide forward in the corresponding sliding groove 14 until each spraying disc 31 is located between two adjacent feed rotating rollers 30. Then, the oil repellent is pumped into the spraying disc 31 and sprayed onto the surface of the linen fabric through each spraying hole 310. After the spraying is completed, the sliding blocks 15 on each spraying disc 31 are driven by a power device to slide backward in the corresponding sliding groove 14.

[0034] S3. When the linen fabric needs to be dried, the power device drives each drying plate 141 to slide backward in the corresponding sliding groove 14 until each drying plate 141 is located between two adjacent feed rotating rollers 30, and then the linen fabric is dried;

[0035] S4, the two forward and reverse motors 20 are started at the same time, and one of them rotates forward and the other rotates backward, so that the linen fabric can be moved and wound in the forward direction, and sprayed and dried at the same time. When the spraying and drying need to be repeated, it is only necessary to change the direction of the two forward and reverse motors 20 to make the linen fabric move and wind in the reverse direction. If the above process is repeated, the anti-oil agent can be sprayed in a cycle.

[0036] S5. When the excess anti-oil stain agent sprayed on the linen fabric falls to the bottom of the spray box 1 and gathers, the anti-oil stain agent gathered at the bottom of the spray box 1 is pumped back into the spray box 1 through the circulation pipe 12 by the liquid pump 13 for recycling.

Claims

1. An anti-oil stain agent circulating spraying equipment for the production of anti-oil stain linen fabrics, characterized in that: It comprises a spray box (1) with through-feed ports (10) provided on the left and right sides respectively, a rotating winding roller (2) provided on the outer wall of the spray box (1) and located at the lower end of the through-feed port (10), and a circulating spray assembly (3) provided in the spray box (1); The circulating spray assembly (3) comprises a plurality of feeding rotating rollers (30) arranged at the upper and lower ends of the inner wall of the spray box (1), a spraying disc (31) arranged at the upper and lower ends of the inner wall of the spray box (1) and located between two adjacent feeding rotating rollers (30), and an anti-oil agent placement box (32) connected to each of the spraying discs (31) via a connecting hose (320), and each of the spraying discs (31) can slide back and forth along the inner wall of the spray box (1).

2. The oil-proof agent circulating spraying equipment for producing oil-proof linen fabrics according to claim 1 is characterized in that: The bottom end of the spray box (1) is provided with an outflow port (11), and the outflow port (11) is connected to the oil-proofing agent placement box (32) through a circulation pipe (12), and a liquid extraction pump (13) is provided at the connection point.

3. The oil-proof agent circulating spraying equipment for producing oil-proof linen fabrics according to claim 1 is characterized in that: Sliding grooves (14) are provided at the upper and lower ends of the spray box (1) and between two adjacent feeding rotating rollers (30). The sliding grooves (14) correspond to the spray discs (31) one by one and are slidably connected via sliding blocks (15). The spray discs (31) at the left and right ends are evenly provided with a plurality of spray holes (310) on the sides opposite to the oil-proof linen fabric. The spray disc (31) at the middle position is provided with a plurality of spray holes (310) on both the left and right sides.

4. The oil-proof agent circulating spraying equipment for producing oil-proof linen fabrics according to claim 3 is characterized in that: A drying tray (141) is provided in each of the sliding grooves (14), and the drying tray (141) can slide forward and backward along the corresponding sliding groove (14).

5. The oil-proof agent circulating spraying equipment for producing oil-proof linen fabrics according to claim 1 is characterized in that: The center of each rotating winding roller (2) is connected to a forward and reverse motor (20) via a connecting shaft.