A fabric leveling device for textile processing
The leveling equipment, which combines a guide component with a steam device, uses a stepper motor-driven leveling component to push and pull the textile fabric on both sides and in the direction of movement. This solves the problem of uneven leveling in existing equipment, achieves efficient leveling and reduces costs, and prevents the fabric from becoming moldy.
Patent Information
- Application Number
- CN202511509245.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-22
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2045-10-22
AI Technical Summary
Existing textile fabric leveling equipment requires manual pushing or the conveyor rollers can only pull the fabric in the direction of movement, and cannot achieve leveling by pulling on both sides, resulting in poor leveling effect.
The guide component is combined with a steam generator. The leveling component is symmetrically arranged and driven by a stepper motor. The top corner of the leveling component is beveled. Steam is discharged through the through hole and comes into contact with the fabric. The leveling component contacts the fabric and pushes it to both sides. At the same time, the guide component pulls the fabric in the direction of movement.
It achieves effective leveling of textile fabrics, avoids wrinkles, reduces steam consumption, improves leveling efficiency, and prevents mold growth through temperature treatment in the guide drying tube.
Smart Images

Figure CN120989860B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of textiles, and particularly relates to a cloth flattening device for textile processing. BACKGROUND
[0002] Textiles refer to flexible materials and products thereof which are processed from fiber raw materials through textile technology, and are made of natural fibers (cotton, hemp, silk, wool) or chemical fibers (polyester, nylon, acrylic, etc.) as raw materials, through spinning to form yarn, and then through weaving, knitting, non-woven and other processes. The textile cloth flattening device is used for eliminating fabric wrinkles and improving surface flatness. At present, steam pressurized ironing of textile cloth is mostly used for textile cloth flattening. However, manual flattening of textile cloth wrinkles by means of a flattening device or flattening of textile cloth by tension of a conveying roller is usually required in the flattening process. However, the conveying roller can only pull and flatten the textile cloth in the movement direction, and cannot pull and flatten the textile cloth on both sides, so that effective ironing and flattening cannot be achieved. Therefore, the textile cloth flattening device for textile processing is provided. SUMMARY
[0003] To solve the problems in the background, the application provides a textile cloth flattening device for textile processing, which solves the problems that the existing textile cloth flattening device needs manual pushing of the flattening device or the conveying roller can only pull and flatten the textile cloth in the movement direction and cannot pull and flatten the textile cloth on both sides.
[0004] To achieve the above-mentioned purpose, the application provides the following technical scheme: a textile cloth flattening device for textile processing, comprising a base, further comprising:
[0005] A transmission assembly is fixed to the base;
[0006] A guide assembly is arranged on the base and located at the bottom of the transmission assembly;
[0007] A flattening assembly is arranged on the transmission assembly and used for flattening and ironing cloth;
[0008] The flattening assembly comprises a flattening piece fixed to the transmission assembly through a connecting piece;
[0009] The top corner of the flattening piece is a symmetrical bevel, a through hole is formed in one of the bevels at the top of the flattening piece, and second communication pipes are fixed to the two ends of the flattening piece, and the second communication pipes are communicated with the guide assembly through the transmission assembly;
[0010] The flattening assemblies are symmetrically arranged on the base, the through holes in the two flattening assemblies are symmetrically arranged, and the two flattening assemblies are relatively rotated by a stepping motor;
[0011] The textile fabric moves on the guide assembly, the through holes discharge steam to contact with the fabric, and the two leveling assemblies rotate oppositely to level the fabric from the middle to the two sides through the relative rotation of the two leveling assemblies.
[0012] Preferably, the leveling assemblies on the two leveling assemblies are staggered, and the relative distance between the two leveling assemblies is greater than the height of the leveling assembly and the connecting piece as a whole.
[0013] When the two leveling assemblies rotate oppositely, the two sets of leveling assemblies move staggeredly to contact with the textile fabric.
[0014] Preferably, the guide assembly is a supporting roller arranged at one end of the base, and a guide drying pipe is arranged at the other end of the base.
[0015] One end of the guide drying pipe is connected with a steam generating device.
[0016] The steam in the guide drying pipe is communicated with the second communication pipe through a transmission assembly.
[0017] Preferably, the transmission assembly comprises a fixing frame fixed to the base, a fixed guide frame fixed to the fixing frame, a transmission roller arranged on the fixed guide frame, and a first transmission belt sleeved on the outside of the transmission roller.
[0018] The connecting piece is arranged outside the first transmission belt.
[0019] A receiving screen is fixed to the base and located at the bottom of the first transmission belt.
[0020] Preferably, a guide groove is formed in the outside of the fixed guide frame, a second transmission belt is sleeved on the outside of the guide groove, and a dispersion notch is formed in the bottom of the guide groove.
[0021] The second transmission belt is used to block the dispersion notch.
[0022] The leveling piece is communicated with the dispersion notch through the second communication pipe and the second transmission belt.
[0023] Preferably, a first communication pipe is fixed to the fixed guide frame, one end of the first communication pipe is communicated with the guide drying pipe through a butt joint, and the other end of the first communication pipe is communicated with the dispersion notch.
[0024] Preferably, the transmission roller drives the first transmission belt and the connecting piece to rotate, the leveling piece drives the second transmission belt to rotate along the guide groove through the second communication pipe, and when the second communication pipe rotates to the lower end of the fixed guide frame, the leveling piece is communicated with the dispersion notch through the second communication pipe.
[0025] Preferably, a guide roller is mounted on the base, and a winding device for winding the fabric is arranged on the base;
[0026] The textile fabric is flattened along the support roller through the bottom of the flattening assembly, and then passes around the guide drying pipe and the guide roller and is wound outside the winding device.
[0027] Compared with the prior art, the present application has the following advantages:
[0028] The textile fabric is transported by the guide assembly, and the textile fabric passes through the bottom of the transmission assembly. The guide assembly is connected with the steam generating device. The steam enters the flattening assembly through the guide assembly and the transmission assembly. The two flattening assemblies are synchronously rotated by the stepping motor. The steam is discharged through the through hole and contacts the textile fabric during the rotation of the flattening assembly. The flattening assembly contacts the textile fabric to apply pressure to the fabric and push the textile fabric flat to both sides. At the same time, the guide assembly pulls the textile fabric in the movement direction, so that the textile fabric is flattened, and the phenomenon of wrinkles during flattening is avoided.
[0029] The steam generated by the steam generating device enters the guide drying pipe. The steam enters the dispersion notch through the first communication pipe. The transmission roller, the first transmission belt and the second communication pipe are driven to rotate by the stepping motor. The flattening assembly drives the second transmission belt to move along the guide groove through the second communication pipe. The second communication pipe moves to the bottom of the fixed guide frame. The second communication pipe is connected with the dispersion notch. At this time, the steam in the dispersion notch enters the flattening assembly through the second communication pipe and is sprayed out through the through hole to contact the textile fabric. The flattening assembly applies pressure to the textile fabric to flatten it. When the flattening assembly rotates to the upper end of the fixed guide frame, the second communication pipe is disconnected from the dispersion notch. The steam in the dispersion notch cannot enter the flattening assembly at the upper end, so that the consumption of steam is reduced, and the cost of textile fabric flattening is reduced.
[0030] The textile fabric passes through the support roller into the receiving screen plate and the flattening assembly. The textile fabric is flattened by the flattening assembly. The textile fabric passes around the guide drying pipe and the guide roller and is wound by the winding device. The steam enters the guide drying pipe, so that the temperature of the surface of the guide drying pipe continuously rises. The textile fabric flattened by the steam passes around the outside of the guide drying pipe and is dried by the temperature of the guide drying pipe. The dried textile fabric is wound, so that the textile fabric is prevented from being mildewed. BRIEF DESCRIPTION OF DRAWINGS
[0031] Figure 1 It is a schematic diagram of the overall appearance structure of the present application.
[0032] Figure 2 It is a schematic diagram of the profile structure of the present application;
[0033] Figure 3 It is a schematic diagram of the appearance structure of the transmission assembly and the leveling assembly of the present application;
[0034] Figure 4 It is a schematic diagram of the plane structure of the transmission assembly and the leveling assembly of the present application;
[0035] Figure 5 It is a schematic diagram of the cross-section structure of the transmission assembly and the leveling assembly of the present application;
[0036] Figure 6 It is a schematic diagram of the profile structure of the present application Figure 5 It is a schematic diagram of the enlarged structure at A in the present application;
[0037] Figure 7 It is a schematic diagram of the disassembled structure of the transmission assembly and the leveling assembly of the present application;
[0038] Figure 8 It is a schematic diagram of the profile structure of the fixed guide frame of the present application.
[0039] In the figure: 1, base; 2, guide assembly; 21, winding equipment; 22, guide roller; 23, guide drying pipe; 24, supporting roller; 25, butt joint; 26, first communication pipe; 3, transmission assembly; 31, fixed frame; 32, receiving net plate; 33, transmission roller; 35, first transmission belt; 36, fixed guide frame; 37, guide groove; 38, second transmission belt; 39, dispersion notch; 4, leveling assembly; 41, leveling piece; 42, second communication pipe; 43, connecting piece; 44, through hole. DETAILED DESCRIPTION
[0040] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0041] As shown in the figure, the present application provides a cloth leveling equipment for textile processing, which comprises a base 1, and further comprises: Figures 1 to 8
[0042] A transmission assembly 3 is fixed on the base 1;
[0043] A guide assembly 2 is arranged on the base 1 and located at the bottom of the transmission assembly 3;
[0044] A leveling assembly 4 is arranged on the transmission assembly 3 and used for leveling and ironing cloth;
[0045] Wherein, the flattening assembly 4 comprises a flattening piece 41 fixed on the transmission assembly 3 through a connecting piece 43;
[0046] The top corner of the flattening piece 41 is a symmetrical bevel, a through hole 44 is formed on one of the bevels on the top of the flattening piece 41, and a second communication pipe 42 is fixed on both ends of the flattening piece 41, and the second communication pipe 42 is communicated with the guide assembly 2 through the transmission assembly 3;
[0047] The flattening assembly 4 is symmetrically arranged on the base 1, the through holes 44 on the two flattening assemblies 4 are symmetrically arranged, and the two flattening assemblies 4 are relatively rotated by the stepping motor;
[0048] The textile fabric moves on the guide assembly 2, the steam is discharged through the through hole 44 and contacts with the fabric, and the two flattening assemblies 4 are relatively rotated, and the two flattening pieces 41 are relatively rotated from the middle part to the two sides of the fabric.
[0049] The textile fabric is conveyed by the guide assembly 2, the textile fabric passes through the bottom of the transmission assembly 3, the guide assembly 2 is connected with the steam generating device, the steam enters the flattening piece 41 through the guide assembly 2 and the transmission assembly 3, the two flattening assemblies 4 are synchronously relatively rotated by the stepping motor, the steam is discharged through the through hole 44 and contacts with the textile fabric during the rotation of the flattening piece 41, the flattening piece 41 contacts with the textile fabric to apply pressure to the fabric, and the textile fabric is pushed to the two sides, and the textile fabric is pulled in the moving direction by the guide assembly 2, so that the textile fabric is flattened, and the phenomenon of wrinkles in the flattening process is avoided.
[0050] As shown in the description, the connecting piece 43 can be replaced by a self-locking telescopic piece, so that the second communication pipe 42 is connected with the transmission assembly 3 through the telescopic piece of the connecting piece 43, and the pressure applied to the textile fabric by the second communication pipe 42 can be increased through the telescopic piece.
[0051] As shown in the description, Figure 1 , Figure 3 and Figure 4 , the flattening pieces 41 on the two flattening assemblies 4 are staggered, and the relative distance between the two flattening assemblies 4 is greater than the height of the flattening piece 41 and the connecting piece 43 as a whole.
[0052] When the two flattening assemblies 4 are relatively rotated, the two groups of flattening pieces 41 are staggered and contact with the textile fabric.
[0053] Through the synchronous relative rotation of the two flattening assemblies 4, since the flattening pieces 41 on the two flattening assemblies 4 are alternately arranged, the relative rotation of the flattening pieces 41 makes the flattening pieces 41 on the two flattening assemblies 4 contact with the middle part of the textile fabric in turn, and the alternately arranged flattening pieces 41 can avoid that the middle part of the textile fabric cannot be flattened, thereby ensuring the flattening effect of the whole textile fabric.
[0054] As Figures 3-6 shown, the guide assembly 2 is arranged on the support roller 24 at one end of the base 1, and the other end of the base 1 is provided with a guide drying pipe 23;
[0055] One end of the guide drying pipe 23 is connected with a steam generating device;
[0056] The steam in the guide drying pipe 23 is communicated with the second communication pipe 42 through the transmission assembly 3;
[0057] The transmission assembly 3 includes a fixing frame 31 fixedly arranged on the base 1, a fixed guide frame 36 fixedly arranged on the fixing frame 31, a transmission roller 33 arranged on the fixed guide frame 36, and a first transmission belt 35 arranged outside the transmission roller 33;
[0058] The connecting piece 43 is arranged outside the first transmission belt 35;
[0059] The base 1 is fixedly arranged with a receiving screen plate 32, and the receiving screen plate 32 is located at the bottom of the first transmission belt 35;
[0060] The fixed guide frame 36 is provided with a guide groove 37 outside, the second transmission belt 38 is arranged outside the guide groove 37, and the bottom of the guide groove 37 is provided with a dispersion notch 39;
[0061] The second transmission belt 38 is used for blocking the dispersion notch 39;
[0062] The leveling piece 41 communicates with the dispersion notch 39 through the second communication pipe 42 and the second transmission belt 38;
[0063] The fixed guide frame 36 is fixedly arranged with the first communication pipe 26, one end of the first communication pipe 26 communicates with the guide drying pipe 23 through the butt joint 25, and the other end of the first communication pipe 26 communicates with the dispersion notch 39;
[0064] The transmission roller 33 drives the first transmission belt 35 and the connecting piece 43 to rotate, the leveling piece 41 drives the second transmission belt 38 to rotate along the guide groove 37 through the second communication pipe 42, and when the second communication pipe 42 rotates to the lower end of the fixed guide frame 36, the leveling piece 41 communicates with the dispersion notch 39 through the second communication pipe 42.
[0065] The steam generated by the steam generating device enters the guide drying pipe 23, the steam enters the dispersion notch 39 through the first communication pipe 26, the transmission roller 33 driven by the stepping motor, the first transmission belt 35 and the second communication pipe 42 rotate, and the leveling piece 41 drives the second transmission belt 38 to move along the guide groove 37 through the second communication pipe 42, the second communication pipe 42 moves to the bottom of the fixed guide frame 36, the second communication pipe 42 is communicated with the dispersion notch 39, at this time, the steam in the dispersion notch 39 enters the leveling piece 41 through the second communication pipe 42, and then is sprayed out through the through hole 44 to contact the textile fabric, and the leveling piece 41 applies pressure to the textile fabric to realize leveling.
[0066] When the leveling piece 41 rotates to the upper end of the fixed guide frame 36, the second communication pipe 42 is disconnected from the dispersion notch 39 at this time, and the steam in the dispersion notch 39 cannot enter the leveling piece 41 at the upper end, so that the consumption of steam can be reduced, and the cost of textile fabric leveling can be reduced.
[0067] As shown in Figure 2 As shown in Figure 3 The base 1 is provided with a guide roller 22, and a winding device 21 for winding the fabric is arranged on the base 1.
[0068] The textile fabric passes through the bottom of the leveling assembly 4 along the supporting roller 24, is wound outside the winding device 21 through the guide drying pipe 23 and the guide roller 22, and the height between the guide roller 22 and the guide drying pipe 23 can be adjusted to increase the contact area between the textile fabric and the guide drying pipe 23.
[0069] The textile fabric passes through the supporting roller 24 and enters between the receiving mesh plate 32 and the leveling piece 41, and the textile fabric is leveled by the leveling piece 41, the textile fabric passes through the guide drying pipe 23 and the guide roller 22, and is wound by the winding device 21, and the steam enters the guide drying pipe 23 to continuously increase the temperature of the surface of the guide drying pipe 23, the textile fabric leveled by the steam passes through the outside of the guide drying pipe 23, and the textile fabric is dried by the temperature of the guide drying pipe 23, and the dried textile fabric is wound to avoid mold of the textile fabric.
[0070] Meanwhile, the distance between the guide roller 22 and the guide drying pipe 23 can be adjusted to change the contact area between the textile fabric and the guide drying pipe 23, thereby improving the drying effect of the textile fabric.
[0071] The working principle and use process of the present application are as follows:
[0072] The textile fabric is conveyed by the guide assembly 2, the textile fabric passes through the bottom of the transmission assembly 3, the guide assembly 2 is connected with the steam generating device, the steam enters the leveling piece 41 through the guide assembly 2 and the transmission assembly 3, the two leveling assemblies 4 are synchronously relatively rotated by the stepping motor driving, the steam is discharged through the through hole 44 and contacts the textile fabric during the rotation of the leveling piece 41, the leveling piece 41 contacts the textile fabric to apply pressure to the fabric and push the textile fabric to the two sides, and the movement direction of the textile fabric is pulled by the guide assembly 2, so that the textile fabric is leveled;
[0073] The two leveling assemblies 4 are synchronously relatively rotated, the leveling pieces 41 on the two leveling assemblies 4 are alternately arranged, the relative rotation of the leveling pieces 41 makes the leveling pieces 41 on the two leveling assemblies 4 sequentially contact the middle part of the textile fabric, the alternately arranged leveling pieces 41 can avoid that the middle part of the textile fabric cannot be leveled, thereby ensuring the leveling effect of the whole textile fabric;
[0074] The steam generated by the steam generating device enters the guide drying pipe 23, the steam enters the dispersion notch 39 through the first communication pipe 26, the transmission roller 33, the first transmission belt 35 and the second communication pipe 42 are rotated by the stepping motor driving, the leveling piece 41 drives the second transmission belt 38 to move along the guide groove 37 through the second communication pipe 42, the second communication pipe 42 moves to the bottom of the fixed guide frame 36, the second communication pipe 42 is communicated with the dispersion notch 39, at this time the steam in the dispersion notch 39 enters the leveling piece 41 through the second communication pipe 42, and is sprayed out through the through hole 44 to contact the textile fabric, the leveling piece 41 applies pressure to the textile fabric to realize leveling, when the leveling piece 41 rotates to the upper end of the fixed guide frame 36, the second communication pipe 42 is disconnected from the dispersion notch 39, and the steam in the dispersion notch 39 cannot enter the leveling piece 41 at the upper end, so that the consumption of steam is reduced, thereby reducing the cost of textile fabric leveling;
[0075] The textile fabric passes between the supporting roller 24, the leveling piece 41 and the supporting roller 24, the textile fabric is leveled by the leveling piece 41, the textile fabric passes around the guide drying pipe 23 and the guide roller 22, and is wound by the winding device 21, and the steam enters the guide drying pipe 23, so that the temperature of the surface of the guide drying pipe 23 continuously rises, the textile fabric leveled by the steam passes around the outside of the guide drying pipe 23, the textile fabric is dried by the temperature of the guide drying pipe 23, the dried textile fabric is wound, so that the textile fabric is prevented from being mildewed, and by adjusting the distance between the guide roller 22 and the guide drying pipe 23, the contact area of the textile fabric and the guide drying pipe 23 can be changed, thereby improving the drying effect of the textile fabric.
[0076] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and illustrative figures, it should be apparent that the scope of the present application is not limited to these specific embodiments.
[0077] While the embodiments of the application have been shown and described herein, it will be understood by those skilled in the art that many changes, modifications, substitutions and alterations to these embodiments can be made without departing from the principles and spirits of the application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A fabric levelling device for textile processing comprising a base (1), characterised in that, Also include: Transmission assembly (3), the transmission assembly (3) is fixed on the base (1); Guide assembly (2), the guide assembly (2) is provided on the base (1), and is located at the bottom of the transmission assembly (3); Leveling assembly (4), the leveling assembly (4) is provided on the transmission assembly (3), for leveling the cloth; Wherein, the leveling assembly (4) includes leveling piece (41) fixed on the transmission assembly (3) through connecting piece (43); The top corner of the leveling piece (41) is symmetrical bevel, one of the bevels on the top of the leveling piece (41) is provided with a through hole (44), and the two ends of the leveling piece (41) are fixed with second communication pipe (42), and the second communication pipe (42) is communicated with the guide assembly (2) through the transmission assembly (3); The leveling assembly (4) is symmetrically arranged on the base (1), the through holes (44) on the two leveling assemblies (4) are symmetrically arranged, and the two leveling assemblies (4) are relatively rotated by stepping motor; Textile cloth moves on the guide assembly (2), the through hole (44) discharges steam and contacts with the cloth, and the two leveling assemblies (4) relatively rotate, and the two leveling pieces (41) relatively rotate from the middle of the cloth to the two sides; The two leveling pieces (41) on the two leveling assemblies (4) are staggered, and the relative distance between the two leveling assemblies (4) is greater than the height of the leveling piece (41) and the connecting piece (43) as a whole; When the two leveling assemblies (4) relatively rotate, the two sets of leveling pieces (41) stagger and move to contact with the textile cloth; The guide assembly (2) is provided with a supporting roller (24) at one end of the base (1), and the other end of the base (1) is provided with a guide drying pipe (23); One end of the guide drying pipe (23) is connected with the steam generating device; The steam in the guide drying pipe (23) is communicated with the second communication pipe (42) through the transmission assembly (3); The base (1) is provided with a guide roller (22), and the base (1) is provided with a winding device (21) for winding the cloth; The textile cloth passes through the bottom of the leveling assembly (4) along the supporting roller (24) for leveling, and then passes through the guide drying pipe (23) and the guide roller (22) to be wound outside the winding device (21), and by adjusting the height between the guide roller (22) and the guide drying pipe (23), the contact area between the textile cloth and the guide drying pipe (23) can be increased.
2. The fabric flattening apparatus for textile processing according to claim 1, characterized by: The transmission assembly (3) includes a fixed frame (31) fixed on the base (1), the fixed frame (31) is fixed with a fixed guide frame (36), the fixed guide frame (36) is provided with a transmission roller (33), and the outer transmission of the transmission roller (33) is provided with a first transmission belt (35); The connecting piece (43) is provided outside the first transmission belt (35); The base (1) is fixed with a receiving screen (32), and the receiving screen (32) is located at the bottom of the first transmission belt (35).
3. The fabric flattening apparatus for textile processing according to claim 2, characterized by: The fixed guide frame (36) is externally provided with a guide groove (37), the guide groove (37) is externally provided with a second transmission belt (38), and the bottom of the guide groove (37) is provided with a dispersion notch (39); The second transmission belt (38) is used for plugging the dispersion notch (39); The leveling piece (41) is communicated with the dispersion notch (39) through the second communication pipe (42) penetrating through the second transmission belt (38).
4. The fabric flattening apparatus for textile processing according to claim 3, characterized by: The fixed guide frame (36) is externally provided with a first communication pipe (26), one end of the first communication pipe (26) is communicated with the guide drying pipe (23) through a butt joint (25), and the other end of the first communication pipe (26) is communicated with the dispersion notch (39).
5. The fabric flattening apparatus for textile processing according to claim 4, characterized by: The transmission roller (33) drives the first transmission belt (35) and the connecting piece (43) to rotate, the leveling piece (41) drives the second transmission belt (38) to rotate along the guide groove (37) through the second communication pipe (42), and when the second communication pipe (42) rotates to the lower end of the fixed guide frame (36), the leveling piece (41) is communicated with the dispersion notch (39) through the second communication pipe (42).
Citation Information
Patent Citations
Textile fabric double-sided ironing and leveling equipment
CN120738883A
Guiding and leveling device for winding textile fabric
CN219525769U