Efficient cleaning device for textile fabric
By designing operating racks and cleaning components parallel up and down and opposite structures, the stability and cleaning efficiency problems of traditional textile fabric cleaning devices are solved, and efficient and comprehensive cleaning of both sides of the fabric is achieved, improving production quality and efficiency.
Patent Information
- Application Number
- CN202510334083.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The traditional textile fabric cleaning device has a not compact structure, poor stability and reliability, and it is impossible to efficiently clean both sides of the fabric at the same time. The cleaning range is limited, making it difficult to meet the needs of high-quality production.
Design an operating frame with parallel upper and lower structures, consistent structures but opposite distribution directions, combining cleaning bosses, correction wheels, buffer connecting seats, flat scrapers and vacuum cleaners to form a circulation conveying path to ensure that both sides of the fabric are evenly cleaned, and use elastic cleaning strips and vacuum cleaners to collect impurities.
It realizes efficient and comprehensive cleaning of both sides of the fabric, improves cleaning efficiency and quality, avoids fabric damage, and meets high-quality production needs.
Smart Images

Figure CN120273171A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of textile processing equipment, and particularly relates to an efficient cleaning device for textile fabrics. Background Art
[0002] In the textile industry, the cleaning of textile fabrics is an important production link, which is crucial for ensuring the quality of fabrics and the smooth progress of subsequent processing. However, there are many problems with traditional textile fabric cleaning devices.
[0003] Firstly, the structural design of traditional devices is often not compact and reasonable enough, resulting in poor stability and reliability of the entire cleaning system. During long-term operation, component loosening, misalignment, etc. may occur, affecting the continuity and consistency of cleaning. Moreover, these devices have limitations in fabric conveying. Usually, they can only clean one side of the fabric, and multiple operations are required to clean both sides of the fabric, reducing the cleaning efficiency and increasing production time and costs.
[0004] Furthermore, the cleaning means for the fabric surface of traditional cleaning devices are relatively single. For loose impurities and dust on the fabric surface, it is impossible to effectively utilize the elastic deformation of the cleaning components to adapt to the undulations of the fabric surface. The cleaning range is limited, and the cleaning efficiency is low, making it difficult to achieve efficient and comprehensive cleaning, which seriously hinders the improvement of the production quality and production efficiency of textile fabrics. Summary of the Invention
[0005] The present invention relates to an efficient cleaning device for textile fabrics. The operating frames that are parallel up and down, have the same structure but opposite distribution directions form a circulating fabric conveying path, ensuring that both sides of the fabric can be effectively cleaned, improving the comprehensiveness and efficiency of cleaning.
[0006] The present invention provides an efficient cleaning device for textile fabrics, specifically including: a frame; the frame is a cuboid structure welded by stainless steel square tubes. A control box is hung on the outer wall of one side of the frame. There are operating frames that are parallel to each other on the upper and lower sides of the frame. The structures on the operating frames are the same, but the structural distribution directions thereon are opposite; on both ends of the frame of each operating frame, there is a set of conveying rollers respectively. Each set of conveying rollers consists of two, which are meshed and connected parallel to each other up and down. The textile fabric to be cleaned passes through the meshing part of each set of conveying rollers. The textile fabric first passes through the upper operating frame and then passes downward and reversely through the lower operating frame from the other end. At the lower conveying roller at the fabric output end of each operating frame, there is a motor connected. The motor is installed on the frame to convey the fabric forward; at one end of the operating frame close to the fabric input, there is a pretreatment frame horizontally arranged. On the pretreatment frame, there is a buffer connecting seat facing the fabric conveying end horizontally, and a flattening scraping plate is arranged downward on the buffer connecting seat; at one end of the operating frame close to the fabric output, there is a dust suction frame.
[0007] Optionally, a cleaning boss is fixed upward on the operating frame, the upper end surface of the cleaning boss is higher than the cloth conveying height between the conveying rollers, the cloth between the two sets of conveying rollers is tightened by the cleaning boss, and the edges at both ends of the top of the cleaning boss are rounded structures.
[0008] Optionally, the pre-processing frame is a "冂"-shaped structure lying horizontally on the operating frame, and anti-stuck grooves are respectively provided on the inner walls at both ends of the pre-processing frame, and correction side columns are vertically rotatably installed in the anti-stuck grooves, and a correction wheel for preventing the edge of the cloth from warping and deflecting is fixedly provided at the upper middle part of the correction side column, and the lower end of the correction wheel is a chamfered structure, and the edge of the conveyed fabric is at the lower end position of the correction wheel.
[0009] Optionally, a first buffer rod is vertically and symmetrically provided on the buffer seat, the first buffer rod is vertically slidably connected to the preprocessing frame, a plug is provided at the end of the first buffer rod, and the first buffer rod between the buffer seat and the preprocessing frame is provided with a first spring that always provides thrust to the buffer seat toward the fabric conveying end.
[0010] Optionally, the flattening scraper is a "V"-shaped structure with the tip facing the fabric conveying end, the bottom of the flattening scraper is against the top of the passing fabric, a cross support plate is laterally fixedly embedded on the flattening scraper, a second buffer rod is symmetrically and vertically fixed on the cross support plate, the upper end of the second buffer rod passes through the buffer seat, and a second spring is mounted on the second buffer rod between the cross support plate and the buffer seat, and the second spring always provides the flattening scraper with a thrust toward the cleaning boss.
[0011] Optionally, cleaning strips with even spacing are provided on the left and right sides of the open end of the flattening scraper near the bottom. The cleaning strips are made of elastic material. The bottom of the cleaning strips contacts the passing fabric, and the cleaning strips on the left and right sides are distributed in an open "V" shape.
[0012] Optionally, the dust collection frame is fixedly connected to a dust collection head through a dust collection pipe, and the dust collection head is located above the operating frame. A "V"-shaped collecting baffle is provided on one side of the dust collection head close to the fabric output end, and two third buffer rods are vertically and symmetrically provided on the collecting baffle. The upper end of the third buffer rod is vertically slidably hung on the dust collection head through a connecting ear plate, and the connecting ear plate is fixedly connected to the dust collection head. A third spring is mounted on the third buffer rod, and the third spring provides a downward thrust for the collecting baffle. The bottom of the collecting baffle contacts the passing fabric to collect the fluff on the fabric and suction it to the dust collection head for treatment.
[0013] The present invention provides a highly efficient textile fabric cleaning device, which has the following beneficial effects: The device achieves efficient cleaning of the fabric through a unique structural design. Its overall structure is compact and reasonably laid out. The frame, as the supporting structure, bears many components such as the operating frame, conveying rollers, and motors, ensuring the stability and reliability of the entire device. The upper and lower parallel operating frames with the same structure but opposite distribution directions form a circulating fabric conveying path, ensuring that both sides of the fabric can be effectively cleaned, improving the comprehensiveness and efficiency of cleaning. The design of the cleaning boss is ingenious, which props up and tightens the fabric, not only facilitating the subsequent close contact between the cleaning components and the fabric to enhance the cleaning effect, but also its rounded corner structure avoids scratching the fabric during the cleaning process, ensuring the quality of the fabric.
[0014] The correction side columns and correction wheels on the pretreatment frame can effectively prevent the edges of the fabric from warping and shifting, ensuring the flatness of the fabric during the entire cleaning process and creating good conditions for subsequent cleaning operations. At the same time, the cooperation of the buffer connecting seat with the first buffer rod and the first spring, as well as the design of the flattening squeegee with the second buffer rod and the second spring, enable the flattening squeegee to automatically adjust its position according to the thickness and tension of the fabric, always closely fitting the fabric to flatten the fabric, improving the uniformity of cleaning. The elastic cleaning strips on the flattening squeegee can adapt to the undulations on the surface of the fabric to remove loose impurities and dust, and the "V"-shaped opening distribution expands the cleaning range, further enhancing the cleaning efficiency.
[0015] Finally, the suction heads on the suction frame, together with the attached collection baffles, the third buffer rod, and the third spring, can effectively collect the lint on the fabric through the elastic contact of the collection baffles and the suction of the suction heads, ensuring a high cleanliness of the fabric when it is output, avoiding the problem that traditional cleaning devices are difficult to completely remove lint during the cleaning process, improving the cleaning quality of the fabric, providing high-quality cleaned fabric for subsequent textile processing or use, and meeting the requirements of high-quality production. While ensuring the cleaning effect, the entire device fully considers the protection of the fabric, effectively avoiding the damage that may be caused to the fabric during the traditional cleaning process, improving the cleaning efficiency and cleaning quality, and having significant technical advantages. Brief Description of the Drawings
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments will be briefly introduced below.
[0017] The drawings in the following description only relate to some embodiments of the present invention and do not limit the present invention.
[0018] In the drawings: Figure 1 The first axonometric structural schematic diagram of the present invention is shown; Figure 2 The second axonometric structural schematic diagram of the present invention is shown; Figure 3Shows the front view structural schematic diagram of the present invention; Figure 4 Shows the first axonometric structural schematic diagram of the pretreatment rack, buffer connecting seat and flattening scraper part of the present invention; Figure 5 Shows the second axonometric structural schematic diagram of the pretreatment rack, buffer connecting seat and flattening scraper part of the present invention; Figure 6 Shows the axonometric structural schematic diagram of the dust suction rack part of the present invention; Figure 7 Shows the axonometric structural schematic diagram of the frame and operation frame parts of the present invention.
[0019] List of reference numerals 1. Frame; 2. Conveyor roller; 3. Operation frame; 301. Cleaning boss; 4. Control box; 5. Motor; 6. Pretreatment rack; 601. Anti-card slot; 602. Correction side column; 603. Correction wheel; 7. Buffer connecting seat; 701. First buffer rod; 702. First spring; 8. Flattening scraper; 801. Horizontal support plate; 802. Second buffer rod; 803. Second spring; 804. Cleaning strip; 9. Dust suction rack; 901. Dust suction head; 902. Collection baffle; 903. Third buffer rod; 904. Connecting ear plate; 905. Third spring. Detailed implementation manners
[0020] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.
[0021] Embodiment 1: Please refer to Figures 1 to 7 : The present invention provides an efficient cleaning device for textile fabrics, comprising: a frame 1; the frame 1 is a cuboid structure welded by stainless steel square tubes, a control box 4 is hung on an outer wall of one side of the frame 1, the frame 1 is provided with operating frames 3 that are parallel to each other on the upper and lower sides, the structures on the operating frames 3 are the same, but the distribution directions of the structures thereon are opposite; a set of conveying rollers 2 are respectively provided on the frame 1 at both ends of the operating frame 3, each set of conveying rollers 2 consists of two, which are meshed and connected in parallel up and down, and the textile fabric to be cleaned passes through the meshing part of each set of conveying rollers 2. The textile fabric first passes through the upper operating frame 3 and then passes downward and reversely through the lower operating frame 3 from the other end. A motor 5 is connected to the conveying roller 2 at the lower part at the fabric output end of each layer of the operating frame 3, and the motor 5 is installed on the frame 1 to convey the fabric forward; a pretreatment frame 6 is horizontally provided at one end of the operating frame 3 close to the fabric input, a buffer connecting seat 7 is horizontally arranged on the pretreatment frame 6 towards the fabric conveying end, and a flattening scraping plate 8 is downwardly provided on the buffer connecting seat 7; a dust suction frame 9 is provided at one end of the operating frame 3 close to the fabric output.
[0022] Among them, a cleaning boss 301 is fixedly provided upward on the operating frame 3. The upper end surface of the cleaning boss 301 is higher than the fabric conveying height between the conveying rollers 2. The fabric between the two sets of conveying rollers 2 is supported and tightened upward by the cleaning boss 301. Both edge lines at the two ends of the top of the cleaning boss 301 are rounded structures, which are arranged in parallel on the upper and lower sides on the frame 1, and the structures of the upper and lower operating frames 3 are the same, but the distribution directions are opposite. This symmetric structural design enables the textile fabric to first pass through the upper operating frame 3 and then pass downward and reversely through the lower operating frame 3 from the other end, forming a circulating conveying path to ensure that both sides of the fabric in the device can be effectively cleaned. The operating frame 3 is a platform for carrying other cleaning components, providing a stable operating space for subsequent cleaning operations, and is fixedly provided upward on the operating frame 3, and its upper end surface is higher than the fabric conveying height between the conveying rollers 2. This design is to support the fabric between the two sets of conveying rollers 2 upward to keep the fabric in a taut state. The taut fabric can better contact with subsequent cleaning components, improving the cleaning effect. At the same time, both edge lines at the two ends of the top of the cleaning boss 301 are rounded structures to prevent the sharp edge lines from scratching or damaging the fabric when the fabric passes through, ensuring the quality and integrity of the fabric.
[0023] Among them, the pre-treatment frame 6 is a "冂"-shaped structure lying on the operating frame 3, and the inner side walls at both ends of the pre-treatment frame 6 are respectively provided with anti-stuck grooves 601, and the correction side column 602 is vertically rotatably installed in the anti-stuck groove 601. The middle part of the correction side column 602 is fixed with a correction wheel 603 for preventing the edge of the cloth from warping and deflecting. The lower end of the correction wheel 603 is a chamfered structure, and the edge of the conveyed fabric is at the lower end of the correction wheel 603, which is a "冂"-shaped structure lying on the operating frame 3. Its main function is to pre-treat the fabric at the initial stage of entering the cleaning process. Anti-stuck grooves 601 are respectively provided on the inner side walls at both ends, providing space and guidance for the installation and movement of subsequent components. The correction side column 602 is vertically rotatably installed in the anti-stuck groove 601, and the correction side column 602 can be flexibly rotated in the anti-stuck groove 601 to adapt to the conveying of the fabric. The correction wheel 603 is fixed at the upper middle part of the correction side column 602, and its lower end is a chamfered structure. When the edge of the fabric passes through, the correction wheel 603 can prevent the edge of the fabric from warping or deflecting. The chamfered structure allows the edge of the fabric to pass more smoothly, avoiding damage to the edge of the fabric, ensuring that the fabric remains neat and flat during the conveying process, and providing good conditions for subsequent cleaning operations.
[0024] Among them, the buffer seat 7 is vertically provided with a first buffer rod 701 symmetrically, the first buffer rod 701 is connected to the pre-processing frame 6 by vertical sliding, and a plug is provided at the end of the first buffer rod 701. The first buffer rod 701 between the buffer seat 7 and the pre-processing frame 6 is provided with a first spring 702 that always provides a thrust to the fabric conveying end for the buffer seat 7, which is located on the pre-processing frame 6 and horizontally faces the fabric conveying end. The first buffer rod 701 that is vertically provided symmetrically connects the buffer seat 7 with the pre-processing frame 6 by vertical sliding, so that the buffer seat 7 can slide vertically within a certain range, and a plug is provided at the end of the first buffer rod 701 to prevent the first buffer rod 701 from sliding out of the pre-processing frame 6. The first spring 702 provided on the first buffer rod 701 always provides a thrust to the fabric conveying end for the buffer seat 7, so that the buffer seat 7 can automatically adjust its position according to the thickness and tension of the fabric, and ensure the flattening effect of the subsequent flattening scraper 8 on the fabric.
[0025] Among them, the flattening squeegee 8 has a "V"-shaped structure with the tip facing the fabric conveying end. The bottom of the flattening squeegee 8 abuts against the top of the passing fabric. Horizontally and fixedly embedded on the flattening squeegee 8 is a cross support plate 801. Vertically and symmetrically upwardly fixed on the cross support plate 801 are second buffer rods 802. The upper ends of the second buffer rods 802 pass through the buffer connection seat 7. A second spring 803 is sleeved on the second buffer rods 802 between the cross support plate 801 and the buffer connection seat 7. The second spring 803 always provides a thrust to the flattening squeegee 8 towards the cleaning boss 301, presenting a "V"-shaped structure with the tip facing the fabric conveying end, and its bottom abuts against the top of the passing fabric. This shape design helps to gather the fabric towards the middle, playing a certain role in flattening and arranging.
[0026] Among them, at positions near the bottom on both left and right sides of the open end of the flattening squeegee 8, there are evenly spaced cleaning strips 804. The cleaning strips 804 are made of elastic material. The bottom of the cleaning strips 804 contacts the passing fabric. The cleaning strips 804 on both left and right sides are distributed in an open "V" shape. Horizontally and fixedly embedded on the flattening squeegee 8 is a cross support plate 801, which provides support for the installation of the second buffer rods 802. Vertically and symmetrically upwardly fixed on the cross support plate 801 are second buffer rods 802. The upper ends of the second buffer rods 802 pass through the buffer connection seat 7, and a second spring 803 is sleeved on the second buffer rods 802. The second spring 803 always provides a thrust to the flattening squeegee 8 towards the cleaning boss 301, ensuring that the flattening squeegee 8 can closely fit the fabric and continuously flatten the fabric. At positions near the bottom on both left and right sides of the open end of the flattening squeegee 8, there are evenly spaced cleaning strips 804. The cleaning strips 804 are made of elastic material. When the fabric passes through, the elastic cleaning strips 804 will contact the fabric. Using their elastic deformation can better adapt to the surface undulations of the fabric and conduct preliminary cleaning on the fabric, removing some loose impurities and dust on the surface. The cleaning strips 804 are distributed in an open "V" shape, which can cover a wider fabric range and improve the cleaning efficiency.
[0027] Embodiment 2, on the basis of Embodiment 1, the dust suction frame 9 is fixedly connected with a dust suction head 901 through a dust suction pipe. The dust suction head 901 is located above the operation frame 3. On one side of the dust suction head 901 close to the fabric output end, there is a "V"-shaped collection baffle 902. On the collection baffle 902, there are two third buffer rods 903 vertically arranged symmetrically left and right. The upper ends of the third buffer rods 903 are vertically slidably hung on the dust suction head 901 through connecting ear plates 904. The connecting ear plates 904 are fixedly connected to the dust suction head 901. A third spring 905 is sleeved on the third buffer rod 903. The third spring 905 provides a downward thrust for the collection baffle 902 all the time. The bottom of the collection baffle 902 contacts the passing fabric to collect the lint on the fabric to the dust suction head 901 for suction treatment. On one side of the dust suction head 901 close to the fabric output end, there is a "V"-shaped collection baffle 902. On the collection baffle 902, there are two third buffer rods 903 vertically arranged symmetrically left and right. The upper ends of the third buffer rods 903 are vertically slidably hung on the dust suction head 901 through connecting ear plates 904, and the connecting ear plates 904 are fixedly connected to the dust suction head 901. A third spring 905 is sleeved on the third buffer rod 903. The third spring 905 provides a downward thrust for the collection baffle 902 all the time, so that the bottom of the collection baffle 902 contacts the passing fabric. When the fabric is conveyed, the collection baffle 902 will move up and down with the undulation of the fabric, and always keep in contact with the fabric, guiding the lint and other impurities on the fabric to the dust suction head 901, and sucking and treating these impurities through the suction of the dust suction head 901, so as to achieve the purpose of removing the lint on the fabric surface and improving the cleaning quality of the fabric.
[0028] The working principle of this embodiment: First, the textile fabric to be cleaned is fed from one side of the frame 1 and is conveyed to the upper operation frame 3 by the upper and lower groups of mutually parallel and meshing conveying rollers 2. The upper conveying roller 2 conveys the fabric to the upper operation frame 3. The fabric passes through the upper operation frame 3 and then passes downward and reversely through the lower operation frame 3 at the other end. At the fabric output end of each operation frame 3, the motor 5 connected to the lower conveying roller 2 drives the fabric to move forward.
[0029] On the operating frame 3, near the end of the fabric input, the pre-treatment frame 6 plays a role. The pre-treatment frame 6 lies horizontally on the operating frame 3 in a "冂" shape, and the correction side column 602 is vertically rotated and installed in the anti-stuck groove 601 of the inner side wall at both ends. The correction wheel 603 at the middle of the correction side column 602 can prevent the edge of the fabric from warping and deflecting, and the edge of the fabric is in the chamfered position at the lower end of the correction wheel 603. The buffer seat 7 on the pre-treatment frame 6 is vertically slidably connected to the pre-treatment frame 6 through the first buffer rod 701, and the first spring 702 is sleeved on the first buffer rod 701 to provide the buffer seat 7 with a thrust toward the fabric conveying end. The flattening scraper 8 below the buffer seat 7 is in a "V" shape with the tip facing the fabric conveying end, and its bottom is against the top of the fabric, and provides thrust toward the cleaning boss 301 through the second buffer rod 802 and the second spring 803 on the cross support plate 801. At the same time, the cleaning strips 804 at the bottom of both sides of the open end of the scraper 8 are flattened to perform preliminary cleaning on the fabric as it passes by.
[0030] During the conveying process, the fabric will pass through the cleaning boss 301. The cleaning boss 301 is fixed upward on the operating frame 3, and its upper end surface is higher than the fabric conveying height between the conveying rollers 2, and the fabric between the two sets of conveying rollers 2 is stretched tight, and the edges at both ends of the top are rounded to avoid damaging the fabric.
[0031] At the end near the fabric output, the dust rack 9 is connected to the dust head 901 through the dust pipe, and the dust head 901 is above the operating rack 3. The collecting baffle 902 on the side of the dust head 901 near the fabric output end is in a "V" shape, and is vertically slidably mounted on the dust head 901 through the third buffer rod 903 and the third spring 905. The third spring 905 provides a downward thrust for the collecting baffle 902, so that its bottom contacts the fabric, and the lint on the fabric is collected to the dust head 901 for suction treatment, thereby completing the efficient cleaning of the textile fabric.
[0032] In this article, there are a few points to note: 1. The drawings of the embodiments of the present invention only involve structures related to the embodiments of the present invention, and other structures can refer to the general design.
[0033] 2. In the absence of conflict, the embodiments of the present invention and the features therein may be combined with each other to obtain new embodiments.
[0034] The above are only specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.
Claims
1. An efficient cleaning device for textile fabrics, comprising: The frame (1) is a rectangular parallelepiped structure welded from stainless steel square tubes, a control box (4) is mounted on one side of the outer wall of the frame (1), and the frame (1) is characterized in that upper and lower operating frames (3) are provided on the frame (1) and are parallel to each other, the structures on the operating frames (3) are consistent, but the distribution directions of the structures thereon are opposite; a group of conveying rollers (2) are respectively provided on the frames (1) at both ends of the operating frames (3), each group of conveying rollers (2) is composed of two, which are parallel to each other and meshed in an upper and lower manner, and the textile fabric to be cleaned passes through the meshing portion of each group of conveying rollers (2), and the textile fabric is first The cloth passes through the upper operating frame (3) and passes through the lower operating frame (3) from the other end in the opposite direction. The conveying roller (2) at the lower side of the cloth output end of each operating frame (3) is connected to a motor (5), and the motor (5) is installed on the frame (1) to convey the cloth. A pre-treatment frame (6) is transversely arranged at one end of the operating frame (3) close to the cloth input. A buffer seat (7) is arranged on the pre-treatment frame (6) horizontally toward the cloth delivery end. A flattening scraper (8) is arranged downward on the buffer seat (7). A dust collecting frame (9) is arranged at one end of the operating frame (3) close to the cloth output.
2. The highly efficient cleaning device for a textile fabric according to claim 1, wherein, A cleaning boss (301) is fixedly provided upwardly on the operating frame (3); the upper end surface of the cleaning boss (301) is higher than the cloth conveying height between the conveying rollers (2); the cloth between the two sets of conveying rollers (2) is supported and tightened by the cleaning boss (301); and both ends of the top of the cleaning boss (301) have rounded edges.
3. The high-efficiency cleaning device for a textile fabric according to claim 1, characterized in that, The pre-processing frame (6) is a "冂"-shaped structure lying horizontally on the operating frame (3), and anti-stuck grooves (601) are respectively provided on the inner side walls at both ends of the pre-processing frame (6), and a correction side column (602) is vertically rotatably installed in the anti-stuck groove (601), and a correction wheel (603) for preventing the edge of the cloth from warping and deviating is fixedly provided at the upper middle part of the correction side column (602), and the lower end of the correction wheel (603) is a chamfered structure, and the edge of the conveyed fabric is located at the lower end position of the correction wheel (603).
4. The highly efficient cleaning device for a textile fabric according to claim 1, characterized in that, The buffer seat (7) is vertically and symmetrically provided with a first buffer rod (701), the first buffer rod (701) is vertically and slidably connected to the pre-processing frame (6), a plug is provided at the end of the first buffer rod (701), and a first spring (702) is sleeved on the first buffer rod (701) between the buffer seat (7) and the pre-processing frame (6) to always provide the buffer seat (7) with a thrust toward the fabric conveying end.
5. The highly efficient cleaning device for textile fabrics according to claim 2, characterized in that, The flattening scraper (8) is a "V"-shaped structure with its tip facing the fabric conveying end. The bottom of the flattening scraper (8) abuts against the top of the fabric passing through. A horizontal support plate (801) is fixedly embedded in the flattening scraper (8). A second buffer rod (802) is fixedly arranged on the horizontal support plate (801) in a symmetrical manner and vertically upward. The upper end of the second buffer rod (802) passes through the buffer seat (7). A second spring (803) is mounted on the second buffer rod (802) between the horizontal support plate (801) and the buffer seat (7). The second spring (803) always provides the flattening scraper (8) with a thrust toward the cleaning boss (301).
6. The efficient cleaning device for a textile fabric according to claim 1, characterized in that, On the left and right sides of the open end of the flattening squeegee (8) near the bottom, there are evenly spaced cleaning strips (804) provided. The cleaning strips (804) are made of elastic material. The bottom of the cleaning strips (804) is in contact with the passing fabric. The cleaning strips (804) on the left and right sides are distributed in an open "V" shape.
7. The high-efficiency cleaning device for a textile fabric according to claim 1, characterized in that, The dust suction frame (9) is fixedly connected with a dust suction head (901) through a dust suction pipe. The dust suction head (901) is above the operation frame (3). On one side of the dust suction head (901) close to the fabric output end, there is a "V"-shaped collection baffle (902). Two third buffer rods (903) are vertically and symmetrically arranged on the collection baffle (902). The upper ends of the third buffer rods (903) are vertically slidably hung on the dust suction head (901) through connecting ear plates (904). The connecting ear plates (904) are fixedly connected with the dust suction head (901). A third spring (905) is sleeved on the third buffer rod (903). The third spring (905) provides a downward thrust for the collection baffle (902) all the time. The bottom of the collection baffle (902) is in contact with the passing fabric to collect the lint on the fabric to the dust suction head (901) for suction treatment.