Cloth imprinting device for textile processing

By designing a fabric imprinting device for textile processing including a frame, hydraulic cylinder, suspension rack, rolling mechanism and repair mechanism, the problems of low manual operation efficiency and low imprinting quality in the prior art are solved, and the efficient and high-quality fabric imprinting effect is achieved.

CN120042016APending Publication Date: 2025-05-27XINJIANG CARD XINLONG APPAREL WEAVING CO LTD
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Patent Information

Application Number
CN202510190612.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

When the existing textile embossing device imprints the fabric, the manual operation efficiency is low, which can easily lead to overlapping of the mismatch and the embossing, affecting the quality of the imprint, and may cause unsightly marks.

Method used

A fabric imprinting device for textile processing including a frame, a table plate, a gantry, a hydraulic cylinder, a suspension frame, a rolling mechanism, a repair mechanism, an unwinding mechanism, a guide mechanism and a winding mechanism are designed. The device is driven by a hydraulic cylinder and a servo motor to realize continuous rolling imprinting, and is equipped with a repair mechanism and a guide mechanism to improve the quality and efficiency of imprinting.

Benefits of technology

Efficient fabric embossing is achieved, reducing manual operation errors, improving imprint quality and efficiency, and removing imprint marks through repair mechanisms, improving the overall imprinting effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of textile processing, in particular to a cloth imprinting device for textile processing. The cloth imprinting device for textile processing comprises a rack, the suspension frame is fixedly installed at the telescopic ends of the two sets of first hydraulic cylinders, a rolling mechanism is installed on the suspension frame, the rolling mechanism comprises a supporting shaft rotationally installed on the suspension frame, the supporting shaft is sleeved with a multi-edge mold frame, upper pressing plates are installed on all the faces of the multi-edge mold frame, and lower pressing plates are installed on all the faces of the multi-edge mold frame. A first servo motor for driving the supporting shaft to rotate is installed on the suspension frame, and a repairing mechanism is arranged on the portion, located on the rear side of the multi-edge formwork, of the suspension frame. And the number of the second hydraulic cylinders is two, the two second hydraulic cylinders are installed on the rack, a lower die frame is fixedly installed at the telescopic ends of the two second hydraulic cylinders together, and a lower pressing plate is embedded in the lower die frame. The cloth impressing device for textile processing has the advantages of being high in impressing efficiency and high in impressing quality.
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Description

Technical Field

[0001] The present invention relates to the technical field of textile processing, and particularly relates to a cloth stamping device for textile processing. Background Technique

[0002] Textiles are products woven from textile fibers. They are divided into two major categories: shuttle-woven fabrics and knitted fabrics. Industrial textiles have a wide range of applications and many varieties. Common ones include tarpaulins, gun covers, filter cloths, roadbed cloths, etc. They can be classified into three major categories according to their uses: clothing textiles, decorative textiles, and industrial supplies. With the increasing requirements for the quality of life, the quality and appearance requirements for textiles are getting higher and higher.

[0003] Among them, stamping patterns and designs on textile fabrics in advance makes them more beautiful. The stamping process refers to pressing the required patterns and patterns on the clothing fabric through a special process. Usually, the pressed part is concave, and the unpressed part is convex, forming a good texture effect on the fabric. However, when the existing stamping devices stamp the cloth, the operator places the cloth on the stamping part one by one in sequence. In this way, the manual pulling and stamping efficiency is low, and it is difficult to match the speed of mechanical unwinding and stamping, which easily leads to misalignment and stamping overlap, affecting the overall stamping quality. Moreover, there are imprints at the stamping joints, resulting in an unattractive stamping.

[0004] Therefore, it is necessary to provide a new cloth stamping device for textile processing to solve the above technical problems. Summary of the Invention

[0005] To solve the above technical problems, the present invention provides a cloth stamping device for textile processing with high stamping efficiency and high stamping quality.

[0006] The cloth stamping device for textile processing provided by the present invention includes: a frame, and a table plate mounted on the frame. A gantry is installed in the middle of the table plate, and a through groove is provided directly below the gantry on the table plate. Two groups of hydraulic cylinders I are symmetrically installed on the gantry;

[0007] A suspension hanger is fixedly installed at the telescopic ends of the two groups of hydraulic cylinders I, and a rolling mechanism is installed on the suspension hanger. The rolling mechanism includes a support shaft rotatably installed on the suspension hanger. A multi-faceted die holder is sleeved on the support shaft. Upper pressing plates are installed on each surface of the multi-faceted die holder. A servo motor I for driving the support shaft to rotate is installed on the suspension hanger. A repair mechanism is provided at the rear of the multi-faceted die holder on the suspension hanger;

[0008] There are two hydraulic cylinders, which are arranged in two groups. The two groups of the second hydraulic cylinders are installed on the frame, and the telescopic ends of the two groups of the second hydraulic cylinders are jointly and fixedly installed with a lower die holder. A lower pressing plate is embedded in the lower die holder, and an ironing plate is installed on the rear side of the lower pressing plate on the lower die holder;

[0009] The unwinding mechanism for unwinding the rolled textile fabric by stamping is installed on the frame and is located in front of the multi-faceted die holder;

[0010] The guiding mechanism for guiding and conveying the fabric by stamping is installed on the gantry;

[0011] The winding mechanism for winding the fabric by stamping is installed on the frame and is located behind the multi-faceted die holder.

[0012] Preferably, an arc chamfer is provided between two adjacent prism faces of the multi-faceted die holder.

[0013] Preferably, the repair mechanism includes guide rods. There are two groups of the guide rods, and the two groups of guide rods are installed on the rear side of the suspension bracket. A cross plate one is slidably installed on the two groups of guide rods. A lead screw is rotatably installed on the suspension bracket. The cross plate one is provided with a threaded through hole threadedly connected with the lead screw, and electric rods are symmetrically installed on the cross plate one. The telescopic ends of the electric rods are fixedly installed with pressing and restoring members.

[0014] Preferably, the pressing and restoring member includes a cross plate two. The cross plate two is fixedly connected with the telescopic end of the electric rod, and a plurality of connecting springs are installed at the bottom end of the cross plate two. One ends of the plurality of connecting springs departing from the cross plate two are fixedly installed with an installation frame. A pressing roller is rotatably installed on the installation frame, and a swing cylinder for driving the pressing roller to rotate is installed on the installation frame.

[0015] Preferably, a plurality of insertion rods are installed on the installation frame, and one ends of the plurality of insertion rods departing from the installation frame are inserted into through holes opened in the cross plate two.

[0016] Preferably, a plurality of balls are evenly installed on the pressing roller.

[0017] Preferably, the unwinding mechanism includes a bracket. The bracket is fixedly installed at one end of the table board, and three guiding rollers are installed on the bracket. Support arms are symmetrically installed at the bottom end of the bracket. A threaded sleeve is rotatably installed on the support arm through a bearing. A screw rod is threadedly installed in the threaded sleeve. One end of the screw rod is fixedly installed with a rotating handle, and the other end of the screw rod is installed with a chuck.

[0018] Preferably, the guiding mechanism includes a sliding frame which is slidably mounted on the gantry. Auxiliary rollers are symmetrically installed at both ends of the sliding frame. Limiting springs are fixedly installed at the four corners of the sliding frame, and the ends of the limiting springs away from the sliding frame are fixedly connected to the platen. One end of the sliding frame is rotatably installed with a bidirectional threaded rod, and a limiting rod is rotatably installed above the bidirectional threaded rod on the sliding frame. Clamping plates are symmetrically and threadedly installed on the bidirectional threaded rod, and through holes for slidably cooperating with the limiting rod are formed in the clamping plates.

[0019] Preferably, a handwheel is fixedly installed at one end of the bidirectional threaded rod, and anti-slip lines are provided on the handwheel.

[0020] Preferably, the winding mechanism includes supporting end seats which are symmetrically installed at the other end of the platen. A rotating shaft is installed on the supporting end seats, and a winding shaft is detachably connected to the rotating shaft. End plates are installed at both ends of the winding shaft, and a servo motor II for driving the rotating shaft to rotate is installed on the supporting end seats.

[0021] Compared with the related art, the fabric embossing device for textile processing provided by the present invention has the following beneficial effects:

[0022] 1. The present invention provides a fabric embossing device for textile processing. A rolling mechanism is arranged on the suspension bracket. With the cooperation of the hydraulic cylinder II, the lower die holder and the lower pressing plate, continuous rolling embossing is realized. And a repair mechanism is arranged after embossing. The repair mechanism uses the cooperation of the guide rod, the first cross plate, the lead screw, the electric rod, the pressing and restoring member, the second cross plate, the connecting spring, the mounting frame, the insertion rod, the pressing roller, the ball and the swing cylinder, which is convenient for repairing and erasing the embossing marks, and improves the embossing quality;

[0023] 2. By arranging the unwinding mechanism and the winding mechanism, continuous and rapid embossing is facilitated. During embossing, with the cooperation of the sliding frame, the auxiliary rollers, the limiting springs, the bidirectional threaded rod, the limiting rod and the clamping plates of the guiding mechanism, the stable transmission and embossing of the fabric are facilitated, and the embossing quality and efficiency of the fabric are further improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a schematic structural diagram of a preferred embodiment of the fabric embossing device for textile processing provided by the present invention;

[0025] Figure 2 It is a schematic structural diagram of the unwinding mechanism of the fabric embossing device for textile processing provided by the present invention;

[0026] Figure 3 It is a schematic structural diagram of the rolling mechanism provided by the present invention;

[0027] Figure 4 It is a schematic structural diagram of another perspective of the rolling mechanism provided by the present invention;

[0028] Figure 5 Schematic structural diagram of the lower die holder installed on the second hydraulic cylinder provided by the present invention;

[0029] Figure 6 Schematic structural diagram of the guiding mechanism provided by the present invention;

[0030] Figure 7 is Figure 4 Partial enlarged view of A shown in.

[0031] Reference numerals in the figure: 1, frame; 11, platen; 12, gantry; 13, first hydraulic cylinder; 101, through groove; 2, suspension bracket; 3, rolling mechanism; 31, support shaft; 32, multi-faceted die holder; 33, upper pressure plate; 34, first servo motor; 4, repair mechanism; 41, guide rod; 42, first cross plate; 43, lead screw; 44, electric rod; 45, pressing member; 451, second cross plate; 452, connecting spring; 453, mounting bracket; 454, insertion rod; 455, pressing roller; 456, ball; 457, swing cylinder; 5, second hydraulic cylinder; 6, lower die holder; 61, lower pressure plate; 62, ironing plate; 7, unwinding mechanism; 71, bracket; 72, guide roller; 73, support arm; 74, threaded sleeve; 75, screw rod; 76, turning handle; 77, chuck; 8, guiding mechanism; 81, sliding frame; 82, auxiliary roller; 83, limiting spring; 84, bidirectional threaded rod; 85, limiting rod; 86, clamping plate; 841, hand wheel; 9, winding mechanism; 91, support end seat; 92, rotating shaft; 93, second servo motor; 94, winding shaft; 95, end plate. Detailed implementation manners

[0032] In order to make the objectives, technical solutions and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0033] The following describes the specific implementation of the present invention in detail with reference to specific embodiments.

[0034] Please refer to Figures 1 to 7 , a cloth embossing device for textile processing provided by an embodiment of the present invention. The cloth embossing device for textile processing includes:

[0035] A frame 1, and a platen 11 erected on the frame 1. A gantry 12 is installed in the middle of the platen 11, and a through groove 101 is opened directly below the gantry 12 on the platen 11. Two groups of first hydraulic cylinders 13 are symmetrically installed on the gantry 12;

[0036] The suspension hanger 2 is fixedly installed at the telescopic ends of two sets of hydraulic cylinders 13, and a rolling mechanism 3 is installed on the suspension hanger 2. The rolling mechanism 3 includes a support shaft 31 rotatably installed on the suspension hanger 2. A multi-faceted die holder 32 is sleeved on the support shaft 31. Upper pressing plates 33 are installed on each surface of the multi-faceted die holder 32. A servo motor 34 for driving the support shaft 31 to rotate is installed on the suspension hanger 2. A repair mechanism 4 is provided at the rear side of the multi-faceted die holder 32 on the suspension hanger 2;

[0037] There are two sets of hydraulic cylinders 5. The two sets of hydraulic cylinders 5 are installed on the frame 1, and the telescopic ends of the two sets of hydraulic cylinders 5 are jointly and fixedly installed with a lower die holder 6. A lower pressing plate 61 is embedded in the lower die holder 6, and an ironing plate 62 is installed at the rear side of the lower pressing plate 61 on the lower die holder 6;

[0038] The unwinding mechanism 7 for unwinding the rolled textile fabric for embossing is installed on the frame 1 and is located in front of the multi-faceted die holder 32;

[0039] The guiding mechanism 8 for guiding and conveying the fabric for embossing is installed on the gantry 12;

[0040] The winding mechanism 9 for winding the fabric after embossing is installed on the frame 1 and is located at the rear side of the multi-faceted die holder 32.

[0041] It should be noted that: during use, the rolled fabric to be embossed is placed on the unwinding mechanism 7, and then guided through the lower part of the gantry 12 by the guiding mechanism 8. The suspension hanger 2 driven by the driving hydraulic cylinder 13 drives the rolling mechanism 3 to move to the embossing station. Then, the driving hydraulic cylinder 5 drives the lower die holder 6 to move upward, and the driving lower pressing plate 61 presses the fabric against the upper pressing plate 33 to complete the embossing. After embossing, control the hydraulic cylinder 5 to contract and reset, and then control the servo motor 34 to drive the support shaft 31 to rotate, thereby driving the multi-faceted die holder 32 to rotate. When rotating, drive the fabric to be conveyed backward until the upper pressing plate 33 on another facet contacts the fabric, and then drive the hydraulic cylinder 5 to extend to emboss again. During embossing, the conveyed fabric uses the repair mechanism 4 to remove and repair the indentation at the boundary between the upper pressing plate 33 and the lower pressing plate 61. After repair, use the winding mechanism 9 to automatically wind up, thereby completing automatic embossing and winding, and improving the speed and quality of fabric embossing.

[0042] Among them, an arc chamfer is provided between two adjacent facets of the multi-faceted die holder 32, which facilitates the rotation and attachment conveyance of the multi-faceted die holder 32 when driving the fabric to be conveyed backward, and avoids scratching the fabric caused by the sharp corners.

[0043] In the embodiment of the present invention, please refer to Figures 1 to 7, the repair mechanism 4 includes guide rods 41. There are two groups of guide rods 41, and the two groups of guide rods 41 are installed on the rear side of the suspension bracket 2. A first cross plate 42 is slidably installed on the two groups of guide rods 41. A lead screw 43 is rotatably installed on the suspension bracket 2. The first cross plate 42 is provided with a threaded through hole for threaded connection with the lead screw 43. Electric rods 44 are symmetrically installed on the first cross plate 42, and a pressing member 45 is fixedly installed at the telescopic end of the electric rod 44;

[0044] The pressing member 45 includes a second cross plate 451. The second cross plate 451 is fixedly connected to the telescopic end of the electric rod 44. A plurality of connecting springs 452 are installed at the bottom end of the second cross plate 451. A mounting bracket 453 is fixedly installed at the end of the plurality of connecting springs 452 away from the second cross plate 451. A pressing roller 455 is rotatably installed on the mounting bracket 453. A swing cylinder 457 for driving the pressing roller 455 to rotate is installed on the mounting bracket 453. A plurality of balls 456 are evenly installed on the pressing roller 455;

[0045] It should be noted that when the repair mechanism 4 is in use, by rotating the lead screw 43 to drive the first cross plate 42 to slide on the guide rod 41, the entire pressing member 45 is adjusted to move to the indentation part of the fabric. After moving, the electric rod 44 is driven to expand and contract, driving the second cross plate 451 to move downward. When the second cross plate 451 moves, the mounting bracket 453 is driven to the repair station through the connecting spring 452. Then, the swing cylinder 457 is driven to drive the pressing roller 455 to swing alternately. Thus, when the fabric passes through the pressing roller 455, under the drive of the second hydraulic cylinder 5, the die holder 6 drives the ironing plate 62 to press the indentation against the pressing roller 455. Therefore, when the pressing roller 455 swings alternately, the balls 456 are driven to roll and eliminate the boundary indentation synchronously.

[0046] Among them, a plurality of insertion rods 454 are installed on the mounting bracket 453. One end of the plurality of insertion rods 454 away from the mounting bracket 453 is inserted into the through hole opened in the second cross plate 451. In this way, when the mounting bracket 453 moves under the drive of the connecting spring 452, the mounting bracket 453 can keep the mounting bracket 453 moving vertically by using the insertion rods 454, improving the stable pressing of the boundary indentation.

[0047] In the embodiment of the present invention, please refer to Figures 1 to 7 , the unwinding mechanism 7 includes a bracket 71. The bracket 71 is fixedly installed at one end of the table board 11. Three guide rollers 72 are installed on the bracket 71. Support arms 73 are symmetrically installed at the bottom end of the bracket 71. A threaded sleeve 74 is rotatably installed on the support arm 73 through a bearing. A screw rod 75 is installed with internal threads in the threaded sleeve 74. A rotating handle 76 is fixedly installed at one end of the screw rod 75. A chuck 77 is installed at the other end of the screw rod 75;

[0048] The guide mechanism 8 includes a sliding frame 81, which is slidably mounted on the gantry 12, and auxiliary rollers 82 are symmetrically mounted at both ends of the sliding frame 81, and limit springs 83 are fixedly mounted at the four corners of the sliding frame 81, and one end of the limit spring 83 away from the sliding frame 81 is fixedly connected to the table 11, and a bidirectional threaded rod 84 is rotatably mounted on one end of the sliding frame 81, and a limit rod 85 is rotatably mounted on the sliding frame 81 above the bidirectional threaded rod 84, and a clamping plate 86 is symmetrically threadedly mounted on the bidirectional threaded rod 84, and the clamping plate 86 is provided with a through hole that is slidably matched with the limit rod 85, and a hand wheel 841 is fixedly mounted on one end of the bidirectional threaded rod 84, and the hand wheel 841 is provided with anti-slip grooves;

[0049] The winding mechanism 9 includes a support end seat 91, which is symmetrically installed on the other end of the table 11. A rotating shaft 92 is installed on the support end seat 91, and a reel 94 is detachably connected to the rotating shaft 92. End plates 95 are installed at both ends of the reel 94. A servo motor 93 for driving the rotating shaft 92 to rotate is installed on the support end seat 91.

[0050] The cloth roll is then clamped on the clamping plate 77 by adjusting the spacing between the two clamping plates 77 during movement, and then one end of the cloth passes through the three sets of guide rollers 72, and then passes through the auxiliary roller 82 at one end of the guide mechanism 8. The cloth passing through the auxiliary roller 82 is guided by two clamping plates 86 to the bottom of the gantry 12, and then embossed and repaired. After the embossing is completed, it is pulled onto the reel 94, and then after one embossing is completed, the servo motor 93 is driven to drive the rotating shaft 92 to drive the reel 94 to automatically reel. After all the embossing and reeling are completed, the reel 94 is removed and replaced with a new reel 94.

[0051] The distance between the two clamping plates 86 is further adjusted by rotating the hand wheel 841 to drive the bidirectional threaded rod 84 to rotate, thereby driving the two clamping plates 86 to move toward each other along the limiting rod 85 to complete the distance adjustment, so that the distance is adapted to the width of the cloth to complete the positioning and guiding.

[0052] The working principle of the cloth imprinting device for textile processing provided by the present invention is as follows:

[0053] During use, place the roll of fabric to be embossed between the two clamping plates 77. Then, rotate the handle 76 to drive the screw rod 75 to rotate (at this time, the threaded sleeve 74 needs to be fixed and stopped by hand), so that the screw rod 75 moves along the threaded sleeve 74, and then adjust the distance between the two clamping plates 77 during the movement, clamp the reel of the roll of fabric on the clamping plates 77. Then, pass one end of the fabric through the three groups of guide rollers 72, and then through the auxiliary roller 82 at one end of the guiding mechanism 8. The fabric passing through the auxiliary roller 82 is limited and guided by the two clamping plates 86 and conveyed to the lower part of the gantry 12. Then, drive the hydraulic cylinder 13 to drive the suspension bracket 2 to drive the rolling mechanism 3 to move to the embossing station. Then, drive the hydraulic cylinder 5 to drive the lower die holder 6 to move upward, and drive the lower pressing plate 61 to press the fabric onto the upper pressing plate 33 to complete the embossing. After embossing, control the hydraulic cylinder 5 to contract and reset. Then, control the servo motor 34 to drive the support shaft 31 to rotate, so as to drive the multi-faceted die holder 32 to rotate. When rotating, drive the fabric to be conveyed backward until the upper pressing plate 33 on another facet contacts the fabric. Then, drive the hydraulic cylinder 5 to extend again for embossing. During embossing, the conveyed fabric uses the repair mechanism 4 to remove and repair the boundary indentations of the upper pressing plate 33 and the lower pressing plate 61. After repair, it is pulled to the incoming reel 94. Then, after one embossing is completed, drive the servo motor 93 to drive the accompanying you through the rotating shaft 92 to drive the reel 94 to automatically wind up. After all embossing and winding are completed, remove the reel 94 and replace it with a new reel 94;

[0054] Further, when the repair mechanism 4 is in use, rotate the lead screw 43 to drive the cross plate 42 to slide on the guide rod 41, so as to adjust the entire pressing and restoring part 45 to move to the indentation part of the fabric. After moving, drive the electric rod 44 to expand and contract, and drive the cross plate 451 to move downward. When the cross plate 451 moves, drive the mounting frame 453 to the repair station through the connecting spring 452. Then, drive the swing cylinder 457 to drive the pressing roller 455 to swing alternately. Thus, when the fabric passes through the pressing roller 455, under the drive of the hydraulic cylinder 5, the lower die holder 6 drives the ironing plate 62 to press the indentation at the pressing roller 455. Thus, when the pressing roller 455 swings alternately, drive the balls 456 to roll and eliminate the boundary indentations synchronously.

[0055] The circuits and controls involved in the present invention are all prior arts and will not be elaborated here too much.

[0056] The above are only the embodiments of the present invention, and thus do not limit the patent scope of the present invention. All equivalent structural or equivalent process transformations made by using the content of the specification and drawings of the present invention, or directly or indirectly applied to other related technical fields, are equally included in the patent protection scope of the present invention.

Claims

1. A cloth imprinting device for textile processing, comprising: A frame (1), and a platform (11) mounted on the frame (1), a gantry (12) being mounted in the middle of the platform (11), and a through slot (101) being provided on the platform (11) directly below the gantry (12), and two groups of hydraulic cylinders (13) being symmetrically mounted on the gantry (12); It is characterized by further comprising: A suspension frame (2) is fixedly mounted on the telescopic ends of two groups of hydraulic cylinders (13), and a rolling mechanism (3) is mounted on the suspension frame (2), the rolling mechanism (3) comprises a support shaft (31) rotatably mounted on the suspension frame (2), a multi-faceted mold frame (32) is sleeved on the support shaft (31), and upper pressing plates (33) are mounted on each surface of the multi-faceted mold frame (32), a servo motor (34) for driving the support shaft (31) to rotate is mounted on the suspension frame (2), and a repair mechanism (4) is provided on the rear side of the suspension frame (2) located on the multi-faceted mold frame (32); The hydraulic cylinders (5) are provided in two groups. The two groups of the hydraulic cylinders (5) are mounted on the frame (1), and the telescopic ends of the two groups of the hydraulic cylinders (5) are fixedly mounted with a lower mold frame (6). A lower pressing plate (61) is embedded on the lower mold frame (6), and an ironing plate (62) is mounted on the lower mold frame (6) at the rear side of the lower pressing plate (61); An unwinding mechanism (7) is used for unwinding the rolled textile fabric after printing, and the unwinding mechanism (7) is installed on the frame (1) and is located at the front side of the multi-faceted mold frame (32); A guide mechanism (8), the guide mechanism (8) used for guiding and conveying the cloth during imprinting is installed on the gantry (12); A winding mechanism (9) for printing and winding cloth is installed on the frame (1) and is located at the rear side of the multi-faceted mold frame (32).

2. The cloth imprinting device for textile processing according to claim 1, characterized in that: A circular arc chamfer is provided between two adjacent edge faces of the multi-edge mold frame (32).

3. The cloth imprinting device for textile processing according to claim 1, characterized in that: The repair mechanism (4) comprises a guide rod (41), wherein the guide rod (41) is provided with two groups, the two groups of guide rods (41) are mounted on the rear side of the suspension frame (2), and a transverse plate (42) is slidably mounted on the two groups of guide rods (41), a lead screw (43) is rotatably mounted on the suspension frame (2), the transverse plate (42) is provided with a threaded through hole for threaded connection with the lead screw (43), and an electric rod (44) is symmetrically mounted on the transverse plate (42), and a pressing member (45) is fixedly mounted on the telescopic end of the electric rod (44).

4. The cloth imprinting device for textile processing according to claim 3, characterized in that: The pressing component (45) includes a second horizontal plate (451), the second horizontal plate (451) is fixedly connected to the telescopic end of the electric rod (44), and is rotatably installed on the upper side and a plurality of connecting springs (452) are installed at the bottom end of the second horizontal plate (451), and a mounting frame (453) is fixedly installed at one end of the plurality of connecting springs (452) away from the second horizontal plate (451), and the mounting frame (453) is a pressure roller (455), and a swing cylinder (457) for driving the pressure roller (455) to rotate is installed on the mounting frame (453).

5. The cloth imprinting device for textile processing according to claim 4, characterized in that: A plurality of insertion rods (454) are installed on the mounting frame (453), and one end of the plurality of insertion rods (454) away from the mounting frame (453) is inserted into a through hole provided in the second horizontal plate (451).

6. The cloth imprinting device for textile processing according to claim 4, characterized in that: A plurality of balls (456) are evenly mounted on the pressure roller (455).

7. The cloth imprinting device for textile processing according to claim 1, characterized in that: The unwinding mechanism (7) comprises a bracket (71), the bracket (71) is fixedly mounted on one end of the table (11), and three groups of guide rollers (72) are mounted on the bracket (71), a support arm (73) is symmetrically mounted at the bottom end of the bracket (71), a threaded sleeve (74) is rotatably mounted on the support arm (73) via a bearing, a screw (75) is mounted on the inner thread of the threaded sleeve (74), a rotating handle (76) is fixedly mounted on one end of the screw (75), and a chuck (77) is mounted on the other end of the screw (75).

8. The cloth imprinting device for textile processing according to claim 1, characterized in that: The guide mechanism (8) comprises a sliding frame (81), the sliding frame (81) is slidably mounted on the gantry frame (12), and auxiliary rollers (82) are symmetrically mounted at both ends of the sliding frame (81), and limit springs (83) are fixedly mounted at four corners of the sliding frame (81), and one end of the limit spring (83) away from the sliding frame (81) is fixedly connected to the table (11), a bidirectional threaded rod (84) is rotatably mounted on one end of the sliding frame (81), and a limit rod (85) is rotatably mounted on the sliding frame (81) above the bidirectional threaded rod (84), and a clamping plate (86) is symmetrically threadedly mounted on the bidirectional threaded rod (84), and the clamping plate (86) is provided with a through hole that is slidably matched with the limit rod (85).

9. The cloth imprinting device for textile processing according to claim 8, characterized in that: A hand wheel (841) is fixedly mounted on one end of the bidirectional threaded rod (84), and the hand wheel (841) is provided with anti-slip grooves.

10. The cloth imprinting device for textile processing according to claim 1, characterized in that: The winding mechanism (9) comprises a support end seat (91), the support end seat (91) is symmetrically mounted on the rear end of the table (11), a rotating shaft (92) is mounted on the support end seat (91), a reel (94) is detachably connected to the rotating shaft (92), end plates (95) are mounted at both ends of the reel (94), and a servo motor (93) for driving the rotating shaft (92) to rotate is mounted on the support end seat (91).