CN216765292U - Fabric spinning device not prone to napping and high in flatness - Google Patents

Fabric spinning device not prone to napping and high in flatness Download PDF

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Publication number
CN216765292U
CN216765292U CN202220440550.5U CN202220440550U CN216765292U CN 216765292 U CN216765292 U CN 216765292U CN 202220440550 U CN202220440550 U CN 202220440550U CN 216765292 U CN216765292 U CN 216765292U
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cloth
ironing
napping
prone
assembly
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CN202220440550.5U
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郑美芬
方必有
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Chunan Qiandaohu Hangrui Weaving Co ltd
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Chunan Qiandaohu Hangrui Weaving Co ltd
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Abstract

The utility model belongs to the technical field of spinning machine and specifically relates to a surface fabric weaving device that difficult napping roughness is high is related to, and it includes the frame and sets up the loom main part in the frame, the loom main part is provided with the guide roller that is used for changing the cloth trend and is used for the wind-up roll of rolling cloth, still be provided with the wetting subassembly that is used for moistening the cloth in the frame, be used for making the smooth subassembly that irones of cloth and be used for making the dry drying assembly of cloth, the cloth is followed self traffic direction and is passed through guide roller, wetting subassembly, ironed subassembly, drying assembly in proper order and rolled up in the wind-up roll. This application has the cloth that makes to weave in the loom main part and can roll again after moistening, ironing and air-drying effect, realizes the effect of preliminary leveling, improves the problem that the cloth frizzy and unevenness that automatic loom made into influenced follow-up processingquality.

Description

Fabric spinning device not prone to napping and high in flatness
Technical Field
The application relates to the field of textile machinery, in particular to a fabric spinning device not prone to galling and high in flatness.
Background
With the development of economy, the living standard of people is continuously improved, and the requirements on various living qualities are also continuously improved, such as the fabrics of clothes and furniture. The method also prompts the textile industry to continuously research and develop fabrics with various performances to meet the high-quality requirements of people, such as the research and development of fabrics with difficult napping and high flatness.
Generally, the fabric is made by weaving silk yarns into fabric through an automatic weaving machine, the woven fabric is synchronously rolled on a cloth roller of the automatic weaving machine, and corresponding pretreatment, dyeing and after-finishing processes are carried out according to actual processing requirements after the fabric is rolled, so that the fabrics with different properties are obtained.
In view of the above-mentioned related arts, the inventor believes that the cloth woven by the automatic loom is generally rough and uneven, which may cause overlapping or wrinkling of the cloth during the transfer process by the roller, and may prevent the overlapped or wrinkled portion of the cloth from being processed in the subsequent processing process, thereby affecting the processing quality of the cloth.
SUMMERY OF THE UTILITY MODEL
In order to improve the problem that the cloth that automatic loom was knitted is frizzy and the subsequent processingquality of unevenness influence, this application provides a surface fabric weaving device that difficult napping roughness is high.
The application provides a pair of fabric weaving device that roughness is high is difficult for napping adopts following technical scheme:
the fabric spinning device comprises a rack and a loom main body arranged on the rack, wherein the loom main body is provided with a guide roller used for changing the trend of cloth and a winding roller used for winding the cloth, the rack is further provided with a wetting assembly used for wetting the cloth, an ironing assembly used for leveling the cloth and a drying assembly used for drying the cloth, and the cloth sequentially passes through the guide roller, the wetting assembly, the ironing assembly and the drying assembly along the self running direction and is wound on the winding roller.
By adopting the technical scheme, the cloth woven on the loom main body can be subjected to primary leveling treatment before rolling, the cloth is moistened to facilitate ironing, the cloth is ironed to be leveled, water stains on the cloth are reduced by drying the cloth to reduce the probability of subsequent curling and wrinkling caused by the humidity of the cloth, and the problem that the subsequent processing quality is influenced due to frizziness and unevenness of the cloth woven by the automatic loom is solved; simultaneously this application realizes preliminary leveling through add new structure behind the loom main part to do not change the structure of original loom main part, the cloth after handling and finishing still rolls up on the wind-up roll of loom main part, and the operating personnel of being convenient for repacks, has increased the practicality.
Optionally, the ironing assembly includes an ironing plate attached to one side of the fabric and a ironing roller attached to the other side of the fabric, and an electric heating pipe is arranged inside the ironing plate.
Through adopting above-mentioned technical scheme, make ironing plate form high temperature through electric heating pipe, iron the cloth through the effect of flattening of high temperature and nip roll, improve the roughness of cloth.
Optionally, adjusting blocks are fixed on two sides of the ironing plate, the adjusting blocks are threaded through and provided with adjusting screws, the adjusting screws are rotatably connected to the frame, and the adjusting blocks are connected to the frame in a sliding manner along a direction close to or far away from the cloth.
Through adopting above-mentioned technical scheme, can drive the regulating block when adjusting screw rotates and remove, and then drive the ironing board and be close to or keep away from the cloth, and then adjust the interval between ironing board and the flattening roller to adapt to the cloth of different thickness, increased the practicality.
Optionally, the frame is provided with two cylinders for enabling the flattening roller to be far away from the cloth, the telescopic direction of the cylinders is parallel to the movement direction of the adjusting blocks, the telescopic ends of the cylinders are provided with mounting blocks, and the flattening roller is rotatably connected between the two mounting blocks.
Through adopting above-mentioned technical scheme, adjust the operating condition and the non-operating condition of flattening roller through setting up the cylinder. When the flattening roller is in a working state, starting the air cylinder to extend so as to enable the flattening roller to be attached to the cloth; when the flattening roller is in a non-working state, the operation cylinder contracts to enable the flattening roller to leave the cloth, so that an operation space is provided for an operator to finish the cloth, and the actual operation is more convenient.
Optionally, both ends of the ironing board along the cloth conveying direction are provided with cambered surfaces for the cloth to pass through smoothly.
Through adopting above-mentioned technical scheme for ironing board and cloth can smooth contact, and the hard arris angle that reduces the hot plate produces wearing and tearing to the cloth friction, is favorable to protecting the cloth surface and improves the planarization of cloth.
Optionally, the ironing board all is provided with the deflector roll that is used for making the cloth laminating ironing board along cloth transmission direction's both sides, deflector roll place plane is located ironing board upper surface keeps away from one side of flattening roller.
Through adopting above-mentioned technical scheme, through setting up the deflector roll for the cloth forms the wave trend between deflector roll and ironing board, makes the cloth laminate ironing board as far as possible, improves ironing effect.
Optionally, the wetting assembly includes two water spray pipes and a plurality of nozzles communicated with the water spray pipes, the water spray pipes are located on two sides of the cloth, and the nozzles are arranged towards the cloth.
By adopting the technical scheme, the cloth can be wetted before ironing, and the cloth is wetted and then ironed, so that the ironing effect is improved.
Optionally, the drying assembly comprises an air blower and an air pipe communicated with the air blower, the air pipe is evenly communicated with a plurality of air ducts, and the air ducts are arranged towards the cloth.
Through adopting above-mentioned technical scheme, air-dry the remaining a little water stain after the moist ironing of cloth through the dryer, make the cloth become dry, reduce follow-up because of the moist probability of curling the fold of cloth, improve the planarization of cloth.
Optionally, a partition plate for separating the wetting assembly from the drying assembly is arranged on the frame.
Through adopting above-mentioned technical scheme, reduce the probability that the moisture of wetting subassembly drenched the cloth after with the drying again, and then also reduce the probability that takes place crimp after the rolling of moist cloth, improve the cloth planarization.
In summary, the present application includes at least one of the following beneficial technical effects:
the cloth woven on the loom main body can be subjected to wetting, ironing and air drying effects and then wound, so that primary leveling treatment is realized, and the problem that the subsequent processing quality is influenced due to frizzy and uneven cloth woven by an automatic loom is solved;
the distance between the ironing plate and the ironing roller is adjusted by operating the adjusting screw rod to rotate so as to adapt to the cloth with different thicknesses, and the practicability is improved;
set up the cylinder on the flattening roller for the flattening roller can be close to or keep away from the cloth, is convenient for adjust the operating condition and the non-operating condition of flattening roller, and actual operation is more convenient.
Drawings
Fig. 1 is a perspective view of an embodiment of the present application.
Fig. 2 is a schematic view of the internal structure of the leveling mechanism according to the embodiment of the present application.
Fig. 3 is a schematic structural diagram of a wetting assembly of an embodiment of the present application.
Figure 4 is a schematic diagram of the structure of an ironing assembly according to an embodiment of the application.
Fig. 5 is an enlarged view at a in fig. 4.
Description of reference numerals: 1. a frame; 2. a loom main body; 3. a leveling mechanism; 4. a guide roller; 5. a wind-up roll; 6. a frame body; 7. a partition plate; 8. a wetting assembly; 9. an ironing assembly; 10. a drying assembly; 11. an air duct; 12. a blower; 13. a connecting pipe; 14. an air duct; 15. a water spray pipe; 16. a water inlet valve; 17. a water outlet valve; 18. a spray head; 19. an ironing board; 20. flattening rollers; 21. a cambered surface; 22. a guide roller; 23. an adjustment section; 24. adjusting the screw rod; 25. a worm gear; 26. a worm; 27. an adjustment groove; 28. an adjusting block; 29. a hand wheel; 30. mounting a plate; 31. a cylinder; 32. mounting blocks; 33. mounting grooves; 34. an electric heating tube; 35. and (4) flat plate.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses surface fabric weaving device that difficult napping roughness is high refers to fig. 1, including frame 1, fixedly on the frame 1 being provided with loom main part 2 and peaceful mechanism 3, and the rotation is provided with guide roll 4 and wind-up roll 5 on the loom main part 2, and after the cloth was made into to the silk thread on loom main part 2, the cloth passed through guide roll 4 and peaceful mechanism 3 in proper order, and the rolling is to the wind-up roll 5 at last.
Referring to fig. 1 and 2, the frame 1 includes frame bodies 6 for mounting the leveling mechanism 3, partition plates 7 are fixedly disposed between the frame bodies 6, and the partition plates 7 divide the space in the frame bodies 6 into an upper layer and a lower layer; the upper strata of support body 6 is provided with the wetting subassembly 8 that is used for the moist cloth and the subassembly 9 that irones that is used for the high temperature to iron the cloth, and 6 lower floors of support body are provided with and are used for making the dry subassembly 10 of cloth, and the silk thread is made into the cloth from loom main part 2 and is gone up in proper order through wetting, ironing and wind drying effect after and then carries out the rolling to the realization is to the preliminary leveling of cloth.
Referring to fig. 2, the drying assembly 10 includes two air pipes 11 fixedly disposed on the frame body 6 and a blower 12 fixedly disposed on the outer wall of the frame body 6, two connecting pipes 13 are simultaneously communicated with the blower 12, and the connecting pipes 13 are communicated with the air pipes 11; two tuber pipes 11 are located the upper and lower both sides of cloth respectively, and even intercommunication has a plurality of dryer 14 on the tuber pipe 11, and dryer 14 all sets up towards the cloth. And starting the air blower 12, and blowing the generated air to the surface of the cloth through the communicating pipe, the air pipe 11 and the air duct 14 in sequence so as to dry the residual water stain on the cloth.
Referring to fig. 2 and 3, the wetting assembly 8 includes two water spraying pipes 15 fixedly disposed on the frame body 6, the two water spraying pipes 15 are respectively located at the upper and lower sides of the cloth, the water spraying pipes 15 penetrate through the side wall of the frame body 6 and are communicated with an external pure water source, an inlet valve 16 is communicated with an inlet end of the water spraying pipe 15 penetrating through the side wall of the frame body 6, and an outlet valve 17 is communicated with an outlet end of the water spraying pipe 15 penetrating through the side wall of the frame body 6; a plurality of spray heads 18 are uniformly distributed on the spray pipe 15, and the spray heads 18 are arranged towards the cloth. Opening the water inlet valve 16 and closing the water outlet valve 17, and simultaneously introducing a purified water source into the water spraying pipe 15, wherein the generated water mist can wet the surface of the cloth; when the water inlet valve 16 and the water outlet valve 17 are opened simultaneously, the water spraying pipe 15 can be cleaned, and the probability that the scale in the water spraying pipe 15 is sprayed on the surface of the cloth to pollute the cloth is reduced.
With reference to fig. 2 and 4, the ironing assembly 9 comprises an ironing plate 19 and a ironing roller 20, the ironing plate 19 being located below the fabric and being attached to the fabric, the ironing roller 20 being located above the fabric and being attached to the fabric; both ends of the ironing plate 19 in the cloth conveying direction are provided with cambered surfaces 21, and the cambered surfaces 21 can be attached to the cloth, so that the cloth can be smoothly conveyed to the upper surface of the ironing plate 19; meanwhile, the frame body 6 is rotatably provided with two guide rollers 22, the two guide rollers 22 are located on two sides of the ironing plate 19 in the cloth transmission direction, and the height of the plane where the guide rollers 22 are located is lower than the upper surface of the ironing plate 19, so that the cloth can form a wave-shaped trend when passing through the guide rollers 22 and the ironing plate 19, and the cloth can be attached to the surface of the ironing plate 19 as much as possible, and the ironing effect is improved.
Referring to fig. 4, an adjusting portion 23 for adjusting the height of the ironing board 19 is further disposed on the ironing board 19, the adjusting portion 23 includes two adjusting screws 24, two worm wheels 25 and a worm 26, adjusting grooves 27 are disposed on the inner walls of the frame bodies 6 on both sides of the ironing board 19, the adjusting grooves 27 extend in the vertical direction, and the adjusting screws 24 are rotatably connected to the inner walls of the adjusting grooves 27 in the vertical direction; the ironing board 19 is close to all fixedly on the lateral wall of the both sides of support body 6 and is provided with regulating block 28, regulating block 28 and adjusting screw 24 one-to-one, and regulating block 28 threaded connection is on corresponding adjusting screw 24 to regulating block 28 slides along vertical direction and connects in adjustment tank 27.
Referring to fig. 4, the bottom end of the adjusting groove 27 is located below the partition 7, the worm wheel 25 is coaxially and fixedly connected to the bottom end of the adjusting screw 24, the worm 26 is rotatably connected to the bottom of the vertical side wall of the adjusting groove 27, the worm 26 is simultaneously meshed with the two worm wheels 25, and one end of the worm 26 rotatably penetrates through the frame body 6 and is coaxially and fixedly provided with a hand wheel 29. Turning the hand wheel 29 can turn the worm 26 and in turn the two worm wheels 25, so that the two adjusting screws 24 rotate synchronously, and the adjusting block 28 is moved to adjust the height of the ironing plate 19 to suit different thicknesses of cloth.
Referring to fig. 4, a mounting plate 30 is fixedly arranged on the upper portion of the frame body 6, two vertically arranged cylinders 31 are fixedly arranged on the lower surface of the mounting plate 30, the two cylinders 31 are located at two ends of the leveling roller 20, a cylinder body of each cylinder 31 is fixedly connected to the lower surface of the mounting plate 30, a telescopic end of each cylinder 31 is fixedly connected with a mounting block 32, and the leveling roller 20 is rotatably connected between the two mounting blocks 32. When the device is in a working state, the operation cylinder 31 extends, the extended cylinder 31 drives the flattening roller 20 to move downwards, and the flattening roller 20 is attached to the cloth; when the cloth finishing machine is in a non-working state, the operation cylinder 31 contracts, and the contracted cylinder 31 drives the flattening roller 20 to move upwards so as to provide an operation space for an operator to finish cloth.
Referring to fig. 4 and 5, a mounting groove 33 is formed on a side wall of the ironing board 19 facing the cloth, a plurality of electric heating pipes 34 are fixedly arranged in the mounting groove 33, and the electric heating pipes 34 are electrically connected with an external power supply; meanwhile, a flat plate 35 is fixedly arranged on the upper surface of the ironing plate 19, the flat plate 35 covers the mounting groove 33, and the flat plate 35 and the upper surface of the ironing plate 19 are in smooth transition to form a horizontal surface for cloth to pass through. When the ironing machine works, the electric heating pipe 34 is started to enable the flat plate 35 to be in a high-temperature state, and ironing of cloth is achieved by combining the flattening effect of the flattening roller 20.
The implementation principle of the fabric textile device which is not easy to nappe and has high flatness is as follows: after the silk threads are woven into cloth on the loom main body 2, firstly, the cloth enters the upper layer of the leveling mechanism 3 through the guide roller 4; then, the cloth passes through the wetting component 8, and is wetted under the spray head 18; then, the cloth is attached to the ironing plate 19 to form high temperature, and the ironing effect of the ironing roller 20 is matched to enable the cloth to be subjected to the ironing and pressing effect; then, the cloth passes through a drying assembly 10, and is dried under an air duct 14; the cloth subjected to the wetting, ironing and air drying effects is finally wound on a winding roller 5; the preliminary leveling treatment of the cloth is finished, and the problem that the subsequent processing quality is affected by the frizziness and the unevenness of the cloth woven by the automatic loom is solved.
The above is the preferred embodiment of the present application, and the protection scope of the present application is not limited thereby, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a surface fabric weaving device that difficult napping roughness is high, includes frame (1) and sets up loom main part (2) on frame (1), loom main part (2) are provided with guide roller (4) that are used for changing the cloth trend and wind-up roll (5) that are used for the rolling cloth, its characterized in that: the cloth ironing machine is characterized in that a wetting assembly (8) used for wetting cloth, an ironing assembly (9) used for enabling the cloth to be smooth and a drying assembly (10) used for enabling the cloth to be dry are further arranged on the rack (1), and the cloth sequentially passes through the guide roller (4), the wetting assembly (8), the ironing assembly (9) and the drying assembly (10) along the self running direction and is wound on the winding roller (5).
2. A fabric weaving device not prone to napping and high in flatness according to claim 1, characterized in that: the ironing assembly (9) comprises an ironing plate (19) attached to one side of the cloth and a pressing roller (20) attached to the other side of the cloth, and an electric heating pipe (34) is arranged inside the ironing plate (19).
3. A fabric weaving device not prone to napping and high in flatness according to claim 2, characterized in that: adjusting blocks (28) are fixed on two sides of the ironing plate (19), adjusting screws (24) penetrate through the adjusting blocks (28) in a threaded mode, the adjusting screws (24) are rotatably connected to the rack (1), and the adjusting blocks (28) are connected to the rack (1) in a sliding mode along the direction close to or far away from cloth.
4. A fabric weaving device not prone to napping and high in flatness according to claim 3, characterized in that: the cloth flattening machine is characterized in that two air cylinders (31) used for enabling the flattening roller (20) to be far away from cloth are arranged on the rack (1), the stretching direction of the air cylinders (31) is parallel to the moving direction of the adjusting blocks (28), the stretching ends of the air cylinders (31) are provided with mounting blocks (32), and the flattening roller (20) is rotatably connected between the two mounting blocks (32).
5. A fabric weaving device not prone to napping and high in flatness according to claim 2, characterized in that: the two ends of the ironing plate (19) along the cloth conveying direction are both provided with cambered surfaces (21) for the cloth to pass through smoothly.
6. A fabric weaving device not prone to napping and high in flatness according to claim 5, characterized in that: ironing board (19) all are provided with deflector roll (22) that are used for making cloth laminating ironing board (19) along cloth transmission direction's both sides, deflector roll (22) place plane is located ironing board (19) upper surface is kept away from one side of flattening roller (20).
7. A fabric weaving device not prone to napping and high in flatness according to claim 1, characterized in that: the wetting component (8) comprises a water spraying pipe (15) and a plurality of spray heads (18) communicated with the water spraying pipe (15), and the spray heads (18) are arranged towards the cloth.
8. A fabric weaving device not prone to napping and high in flatness according to claim 1, characterized in that: the drying assembly (10) comprises an air blower (12) and an air pipe (11) communicated with the air blower (12), the air pipe (11) is evenly communicated with a plurality of air cylinders (14), and the air cylinders (14) are arranged towards the cloth.
9. A fabric weaving device not prone to napping and high in flatness according to claim 1, characterized in that: the frame (1) is provided with a partition plate (7) for separating the wetting assembly (8) and the drying assembly (10).
CN202220440550.5U 2022-03-01 2022-03-01 Fabric spinning device not prone to napping and high in flatness Active CN216765292U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220440550.5U CN216765292U (en) 2022-03-01 2022-03-01 Fabric spinning device not prone to napping and high in flatness

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Application Number Priority Date Filing Date Title
CN202220440550.5U CN216765292U (en) 2022-03-01 2022-03-01 Fabric spinning device not prone to napping and high in flatness

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CN216765292U true CN216765292U (en) 2022-06-17

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115094602A (en) * 2022-07-22 2022-09-23 江苏淳瑞纺织科技有限公司 Fabric wrinkle removing device for textile and garment processing
CN116573470A (en) * 2023-05-06 2023-08-11 桐乡市环宇针织有限公司 Textile fabric winding equipment with wrinkle removal function

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115094602A (en) * 2022-07-22 2022-09-23 江苏淳瑞纺织科技有限公司 Fabric wrinkle removing device for textile and garment processing
CN115094602B (en) * 2022-07-22 2024-03-26 江苏淳瑞纺织科技有限公司 Fabric wrinkle removing device for textile and clothing processing
CN116573470A (en) * 2023-05-06 2023-08-11 桐乡市环宇针织有限公司 Textile fabric winding equipment with wrinkle removal function
CN116573470B (en) * 2023-05-06 2024-01-05 新疆露株纺织有限公司 Textile fabric winding equipment with wrinkle removal function

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