A polyester fabric anti-wrinkle winding device
By using a suspended chain drive mechanism and a vertical winding design for the clamping components, combined with a clamping, rolling, and ironing mechanism, the problem of sagging and unevenness of polyester fabric during horizontal winding is solved, achieving a high-quality winding effect and saving space.
Patent Information
- Application Number
- CN202510167154.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-15
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2045-02-15
AI Technical Summary
Existing polyester fabric winding equipment tends to cause the fabric to sag or become uneven during horizontal winding, affecting the winding quality and requiring a large amount of space.
Vertical winding is achieved using a suspended chain drive mechanism and clamping components, combined with a clamping rolling component and ironing mechanism to clamp and iron the polyester fabric to reduce wrinkles. The spiral design of the suspended chain drive mechanism reduces space occupation.
It enables vertical winding of polyester fabric, reduces wrinkles and dents, improves winding quality, and saves space.
Smart Images

Figure CN119660450B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fabric winding technology, specifically a polyester fabric anti-wrinkle winding device. Background Technology
[0002] The take-up section of a roll material processing production line mechanically winds raw materials into rolls. It is widely used in paper rolls, cloth rolls, plastic rolls, and metal roll processing production lines. It is designed in various ways according to actual process requirements. Common types include simple winding machines and hydraulic winding machines. Winding machines generally have strict requirements on the inner diameter, outer diameter, thickness, and width of the roll material.
[0003] Patent publication number CN111348462B discloses a textile fabric conveying device, including a conveyor with a take-up roller on one side. The conveyor includes an active conveyor roller, a driven conveyor roller, a conveyor belt, and a conveyor frame. Multiple fixed components are evenly spaced on the conveyor belt. A water removal component, an ironing component, and a smoothing component are arranged above the conveyor belt. The smoothing component includes a first drive roller and a second transmission roller. The first drive roller and the second transmission roller are connected by a drive belt. The drive belt and the conveyor belt are spaced apart. Electrical connectors are attached to the drive belt. The electrical connectors are multiple electrically connected pieces, and the electrically connected pieces are connected to an electrostatic eliminator. Patent publication number CN117068835B discloses a winding device for finished textile fabric. This patent guides the fabric as it passes through the first and second unfolding rollers by setting threaded sections on them. The degree of guidance varies depending on the thread pitch; the larger the thread pitch, the greater the degree of guidance. That is, the thread pitch is positively correlated with the degree of guidance. Therefore, setting different pitches on the first unfolding roller, sleeve, and second unfolding roller allows for matching with the displacement required for different points on the fabric to move away from the fabric centerline. This ensures that the degree of guidance from the first and second unfolding rollers towards the fabric centerline gradually increases as the fabric is guided. This prevents greater deformation of fabric closer to the centerline, avoids loss of elasticity in fabric closer to the centerline, and maximizes the reasonable unfolding of the fabric. It also prevents damage to the fabric from over-unfolding, enabling direct winding of wrinkled fabric, reducing the processing steps for wrinkled fabric, and improving the winding effect of wrinkled fabric.
[0004] Although the aforementioned patent can unfold the fabric, avoid directly rolling up wrinkled fabric, and also eliminate static electricity, it still has the following drawbacks: 1. When rolling horizontally, the fabric is directly affected by gravity, which may cause the fabric to sag or become uneven, thus affecting the quality of the roll; 2. At present, polyester fabric rolling equipment requires a large area to place the equipment, which occupies too much space and wastes resources. Summary of the Invention
[0005] The purpose of this invention is to provide a polyester fabric anti-wrinkle winding device, which aims to solve the problem in the prior art where the fabric is subjected to the direct action of gravity during horizontal winding, which may cause the fabric to sag or become uneven, thereby affecting the winding quality.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: the polyester fabric anti-wrinkle winding device includes a fixed box, a suspension chain transmission mechanism assembled on the fixed box, multiple clamping components spaced apart and driven below the suspension chain transmission mechanism, an anti-wrinkle component provided on the fixed box, and a winding drum detachably provided on the fixed box.
[0007] The clamping assembly holds a polyester fabric at its lower part;
[0008] The fixed box is equipped with a mounting base for assembling the take-up drum, so that the take-up drum can be installed on the fixed box and removed from the fixed box.
[0009] One end of the polyester fabric is connected to a take-up drum, so that the take-up drum can wind up the polyester fabric.
[0010] The anti-wrinkle assembly includes a clamping rolling assembly and an ironing mechanism;
[0011] The clamping rolling assembly clamps the polyester fabric on both sides to reduce wrinkles. The ironing mechanism clamps the polyester fabric on both sides and is located to the right of the clamping rolling assembly to eliminate wrinkles on the polyester fabric.
[0012] Preferably, the clamping assembly includes a first driving device mounted on the suspension chain transmission mechanism, a first bidirectional lead screw connected to the first driving device, and clamping plates threadedly connected to the first bidirectional lead screw and arranged opposite to each other, so that the two clamping plates can move in opposite or opposite directions.
[0013] The two clamping plates are clamped onto the polyester fabric.
[0014] Preferably, the mounting base is provided with a threaded hole, and the winding drum is provided with a through hole corresponding to the threaded hole. The mounting base and the winding drum are fixedly connected by bolts that fit into the threaded hole.
[0015] Preferably, a second driving device is fixedly provided on the fixed box, and the output shaft of the second driving device is fixedly connected to the mounting base to make the mounting base rotate.
[0016] Preferably, the clamping rolling assembly includes an inner wall abutment assembly and an outer wall abutment assembly disposed on the fixed box;
[0017] The positions of the inner wall abutment component and the outer wall abutment component can be adjusted. The inner wall abutment component and the outer wall abutment component cooperate with each other to clamp polyester fabrics of different sizes.
[0018] Preferably, the inner sidewall abutment assembly includes a secondary gear rotatably mounted on the bottom wall of the fixed box, a third drive device fixed on the bottom wall of the fixed box, and an adjustment assembly that is connected to the multiple secondary gears in a transmission.
[0019] A main gear is fixedly mounted on the output shaft of the third drive device. The main gear meshes with the auxiliary gear, causing the auxiliary gear to rotate.
[0020] When the secondary gear rotates, it can drive the adjusting component to expand or contract.
[0021] Preferably, the adjustment assembly includes an arc-shaped plate, a connecting rod fixedly disposed above the arc-shaped plate, and a movable column fixedly disposed above the connecting rod;
[0022] The auxiliary gear has an arc-shaped hole that is open at both the top and bottom, and the fixed box has a through hole for the connecting rod to slide.
[0023] The movable column is installed through the arc-shaped hole. When the secondary gear rotates, the movable column can move along the arc-shaped hole, causing the connecting rod to move along the extension direction of the through hole to adjust the position of the arc-shaped plate.
[0024] Preferably, the outer wall abutment assembly includes a telescopic drive device hinged to the bottom wall of the fixed box, a hinge block hinged to the other end of the telescopic drive device, and a vertical rod fixedly connected to the hinge block.
[0025] The vertical rod is rotatably mounted on the fixed box, and a fixed frame is fixedly mounted at the lower end of the vertical rod. Rolling wheels are rotatably mounted on the fixed frame, and the rolling wheels cooperate with the arc plate to clamp and compress the polyester fabric.
[0026] Preferably, the ironing mechanism includes a second bidirectional lead screw rotatably mounted on the bottom wall of the fixed box, a movable block threadedly connected to the second bidirectional lead screw, and a roller rotatably mounted on the movable block;
[0027] A fourth driving device is fixedly installed on the inner bottom wall of the fixed box. The output end of the fourth driving device is connected to one end of the second bidirectional lead screw, so that the second bidirectional lead screw rotates.
[0028] The inner bottom wall of the fixed box is provided with a sliding groove for the movable block to slide in a limited position.
[0029] Preferably, a fifth driving device is fixedly provided on the rear movable block, and the output shaft of the fifth driving device passes through the movable block and is connected to the roller drive to make the rear roller rotate.
[0030] The rear roller is equipped with an ironing component, and the rear roller has air holes for venting hot air to iron the polyester fabric.
[0031] The beneficial effects are: 1. Under the action of the clamping component, the polyester fabric moves along the suspension chain transmission mechanism, so that the polyester fabric is wound in a vertical state, avoiding the polyester fabric from sagging or becoming uneven due to the direct action of gravity. When wound in a vertical state, the polyester fabric can maintain better tension and flatness under the action of gravity, reducing the generation of wrinkles and dents, thereby improving the overall quality of winding.
[0032] 2. The suspended chain drive mechanism spirally winds up the polyester fabric, eliminating the need for a larger lateral space required for the winding equipment, unlike horizontal winding, thus reducing space requirements and saving costs.
[0033] 3. The clamping components on the suspended chain transmission mechanism can evenly clamp the polyester fabric on the edge, drive the first drive device to start, and the output shaft of the first drive device can drive the first bidirectional screw to rotate, so that the two clamping plates move in opposite or opposite directions to clamp the polyester fabric, ensuring that the polyester fabric will not break during the winding process. After the winding is completed, the clamping components are released to make the winding shape neat, easy to store and transport.
[0034] 4. By setting up the inner and outer wall abutment components, pressure can be applied to the polyester fabric by squeezing it with the rollers and the arc plate. This pressure helps to temporarily eliminate the gaps in the polyester fabric, thereby reducing or eliminating wrinkles on the surface of the polyester fabric. It can also increase the smoothness and flatness of the polyester fabric. In addition, by adjusting the distance between the rollers and the arc plate, it can be applied to polyester fabrics of different thicknesses, improving versatility and adaptability.
[0035] 5. The ironing components are designed so that the high temperature during ironing increases the flexibility of the polyester fabric, making it easier to stretch and smooth. At the same time, the pressure applied by the iron helps overcome the friction between the fibers in the polyester fabric, reducing fiber curl and thus eliminating wrinkles. Attached Figure Description
[0036] Figure 1 This is a schematic diagram of the structure of the fixing box of the present invention assembled on the ceiling wall of the house;
[0037] Figure 2 This is a cross-sectional structural schematic diagram of the fixing box of the present invention;
[0038] Figure 3 This is a schematic diagram of the structure of the polyester fabric being conveyed under the action of the overhead chain transmission mechanism of the present invention;
[0039] Figure 4This is a schematic diagram of the polyester fabric conveying process of the present invention;
[0040] Figure 5 This is a schematic diagram of the clamping assembly of the present invention;
[0041] Figure 6 This is a schematic diagram of the structure of the outer wall abutment component of the present invention;
[0042] Figure 7 This is a schematic diagram of the ironing assembly of the present invention;
[0043] Figure 8 This is a schematic diagram of the inner wall abutment component of the present invention;
[0044] Figure 9 This is a schematic diagram of the structure of the adjustment component of the present invention;
[0045] Figure 10 This is a schematic diagram of the structure of the winding drum of the present invention mounted on the mounting base;
[0046] Figure 11 This is a schematic diagram of the polyester fabric motion drive of the present invention.
[0047] In the diagram: 1. Suspended chain transmission mechanism; 2. Clamping assembly; 201. First drive device; 202. First bidirectional lead screw; 203. Clamping plate; 3. Winding drum; 4. Polyester fabric; 5. Mounting base; 601. Inner side wall abutment assembly; 6011. Secondary gear; 6012. Third drive device; 602. Outer side wall abutment assembly; 6021. Telescopic drive device; 6022. Hinge block; 6023. Vertical rod; 7. Ironing mechanism; 701. Second bidirectional lead screw; 702. Moving block; 703. Roller; 8. Fixed box; 9. Adjustment assembly; 901. Arc plate; 902. Connecting rod; 903. Moving column; 10. Main gear; 11. Arc hole; 12. Through hole; 13. Fixed frame; 14. Rolling wheel; 15. Fourth drive device; 16. Fifth drive device. Detailed Implementation
[0048] The following description, in conjunction with the accompanying drawings, further illustrates a specific embodiment of the polyester fabric anti-wrinkle winding device of the present invention.
[0049] This embodiment aims to provide a polyester fabric anti-wrinkle winding device, mainly used for winding polyester fabric 4 in a vertical state, which can reduce wrinkles and save space. At present, when winding polyester fabric 4, it is often placed horizontally. Due to gravity, the polyester fabric 4 will sag or become uneven, affecting the winding quality.
[0050] like Figure 1-11As shown, the polyester fabric 4 anti-wrinkle winding device includes a fixed box 8 installed on the ceiling wall of the house, a suspension chain transmission mechanism 1 assembled on the fixed box 8, multiple clamping components 2 spaced apart and driven below the suspension chain transmission mechanism 1, anti-wrinkle components provided on the fixed box 8, and a winding drum 3 detachably installed on the fixed box 8.
[0051] In this embodiment, the structure and principle of the suspended chain transmission mechanism 1 are existing technologies and will not be described in detail here.
[0052] like Figure 10 As shown, a mounting base 5 for assembling the take-up drum 3 is fixedly provided on the fixed box 8, so that the take-up drum 3 can be installed on the fixed box 8 and removed from the fixed box 8. When the take-up drum 3 is winding, one end of the polyester fabric 4 is connected to the take-up drum 3, so that the rotation of the take-up drum 3 can drive the polyester fabric 4 to be wound.
[0053] Specifically, a second drive device is fixedly installed on the fixed box 8. The output shaft of the second drive device is fixedly connected to the mounting base 5, causing the mounting base 5 to rotate. When the second drive device is started, it can drive the mounting base 5 to rotate. Since the winding drum 3 is installed on the mounting base 5, it can drive the winding drum 3 to rotate, thereby winding the polyester fabric 4 onto the winding drum 3.
[0054] like Figure 11 As shown, the polyester fabric 4 is initially in a horizontal state, and the suspension chain transmission mechanism 1 also has a horizontal orientation corresponding to the polyester fabric 4. The polyester fabric 4 is clamped by the clamping assembly 2, so that the polyester fabric 4 moves along the extension direction of the suspension chain transmission mechanism 1.
[0055] like Figure 3 As shown, the clamping assembly 2 of the suspended chain transmission mechanism 1 can clamp and transport the polyester fabric 4.
[0056] The polyester fabric 4 is conveyed by the suspension chain drive mechanism 1 and the clamping assembly 2. During the conveying process, the clamping rolling assembly and the ironing mechanism 7 are set up so that the clamping rolling assembly clamps the polyester fabric 4 on both sides to reduce wrinkles on the polyester fabric 4. The ironing mechanism 7 is clamped on both sides of the polyester fabric 4 and is located on the right side of the clamping rolling assembly to eliminate wrinkles on the polyester fabric 4.
[0057] In this embodiment, the structure and principle of the ironing mechanism 7 are existing technologies and will not be described in detail here.
[0058] In this embodiment, as Figure 5As shown, the clamping assembly 2 includes a first drive device 201 mounted on the suspension chain transmission mechanism 1, a first bidirectional lead screw 202 connected to the first drive device 201, and clamping plates 203 threadedly connected to the first bidirectional lead screw 202 and arranged opposite to each other. Driving the first drive device 201 to start it up allows the output end of the first drive device 201 to drive the first bidirectional lead screw 202 to rotate, causing the two clamping plates 203 to move in opposite or opposite directions. Since the two clamping plates 203 are threadedly connected to the first bidirectional lead screw 202, the distance between the two clamping plates 203 can be adjusted so that the two clamping plates 203 are clamped on the polyester fabric 4.
[0059] In this embodiment, the multiple clamping components 2 on the suspension chain transmission mechanism 1 are all autonomously controlled by a computer. The computer is equipped with a controller and an algorithm for controlling the opening and closing of the multiple clamping components 2. The structure and principle of controlling the opening and closing of the clamping components 2 are existing technologies and will not be described in detail here.
[0060] like Figure 10 As shown, the mounting base 5 and the winding drum 3 are connected by bolts.
[0061] Specifically, the mounting base 5 is provided with a threaded hole, and the take-up drum 3 is provided with a through hole corresponding to the threaded hole. The mounting base 5 and the take-up drum 3 are fixedly connected by bolts that fit into the threaded hole. The bolts pass through the through hole and fit into the threaded hole. The take-up drum 3 is installed on the mounting base 5. When the take-up drum 3 is fully wound and needs to be disassembled, the bolts are removed and the take-up drum 3 can be removed. In this embodiment, the take-up drum 3 is fitted on the mounting base 5.
[0062] like Figure 3 , Figure 6-9 As shown, during the conveying process, the clamping rolling assembly can squeeze the polyester fabric 4 to make it flat.
[0063] Specifically, the clamping rolling assembly includes an inner wall abutment component 601 and an outer wall abutment component 602 disposed on the fixed box 8; the positions of the inner wall abutment component 601 and the outer wall abutment component 602 can be adjusted, and the inner wall abutment component 601 and the outer wall abutment component 602 cooperate with each other to clamp polyester fabrics 4 of different sizes. In this embodiment, by adjusting the inner wall abutment component 601 and the outer wall abutment component 602, different polyester fabrics 4 can be clamped, and the polyester fabrics 4 can also be clamped.
[0064] like Figure 8As shown, the inner wall abutment assembly 601 includes a secondary gear 6011 rotatably mounted on the inner bottom wall of the fixed box 8, a third drive device 6012 fixedly mounted on the inner bottom wall of the fixed box 8, and an adjustment assembly 9 that is connected to the multiple secondary gears 6011 in a transmission manner. The third drive device 6012 is started, so that the output end of the third drive device 6012 drives the main gear 10 to rotate. The main gear 10 is fixedly mounted on the output shaft of the third drive device 6012. The main gear 10 meshes with the secondary gears 6011, causing the secondary gears 6011 to rotate. When the secondary gears 6011 rotate, they can drive the adjustment assembly 9 to expand or contract. Since the main gears 10 mesh with the secondary gears 6011, they can drive the secondary gears 6011 to rotate.
[0065] like Figure 9 As shown, the adjustment assembly 9 includes an arc-shaped plate 901, a connecting rod 902 fixed above the arc-shaped plate 901, and a movable column 903 fixed above the connecting rod 902. The secondary gear 6011 has an arc-shaped hole 11 that is open from top to bottom, and the fixed box 8 has a through hole 12 for the connecting rod 902 to slide. When the secondary gear 6011 rotates, it will drive the arc-shaped hole 11 on the secondary gear 6011 to rotate together. Since the movable column 903 slides in the arc-shaped hole 11, when the arc-shaped hole 11 rotates, it can drive the movable column 903 to move along the arc-shaped hole 11. The movable column 903 is set through the arc-shaped hole 11. When the secondary gear 6011 rotates, the movable column 903 can move along the arc-shaped hole 11, so that the connecting rod 902 moves along the extension direction of the through hole 12. The movement of the movable column 903 will drive the arc-shaped plate 901 through the connecting rod 902, so as to adjust the position of the arc-shaped plate 901.
[0066] like Figure 6 As shown, the outer wall abutment assembly 602 includes a telescopic drive device 6021 hinged to the bottom wall of the fixed box 8, a hinge block 6022 hinged to the other end of the telescopic drive device 6021, and a vertical rod 6023 fixedly connected to the hinge block 6022. The telescopic drive device 6021 is activated, so that the output end of the telescopic drive device 6021 can drive the hinge block 6022 to rotate. The vertical rod 6023 is rotatably mounted on the fixed box 8. A fixed frame 13 is fixedly mounted at the lower end of the vertical rod 6023. A rolling wheel 14 is rotatably mounted on the fixed frame 13. The rolling wheel 14 cooperates with the arc plate 901 to clamp and squeeze the polyester fabric 4. The vertical rod 6023 swings under the action of the hinge block 6022 to drive the rolling wheel 14 to swing, thereby adjusting the position of the rolling wheel 14.
[0067] In this embodiment, by adjusting the position of the arc plate 901 and the rolling wheel 14, the spacing can be adjusted, which is suitable for polyester fabrics 4 of different thicknesses.
[0068] In other embodiments, an electric telescopic rod, lead screw, and slider can also be used to clamp and adjust the spacing of the polyester fabric 4.
[0069] like Figure 7 As shown, the ironing mechanism 7 can iron the polyester fabric 4 at high temperature, which can increase the flexibility of the fabric fibers, making the fibers easier to stretch and smooth.
[0070] Specifically, the ironing mechanism 7 includes a second bidirectional lead screw 701 rotatably mounted on the inner bottom wall of the fixed box 8, a movable block 702 threadedly connected to the second bidirectional lead screw 701, and a roller 703 rotatably mounted on the movable block 702. A fourth driving device 15 is fixedly mounted on the inner bottom wall of the fixed box 8. Driving the fourth driving device 15 to start it enables the fourth driving device 15 to drive the second bidirectional lead screw 701 to rotate. The output end of the fourth driving device 15 is connected to one end of the second bidirectional lead screw 701 to drive the second bidirectional lead screw 701 to rotate. A sliding groove is provided on the inner bottom wall of the fixed box 8 for the movable block 702 to slide in a limited position. When the second bidirectional lead screw 701 rotates, the two movable blocks 702 can move along the limiting sliding groove in opposite or opposite directions to adjust the distance between the two rollers 703 and improve adaptability.
[0071] A fifth drive device 16 is fixedly installed on the rear movable block 702. The output shaft of the fifth drive device 16 passes through the movable block 702 and is connected to the roller 703 for transmission, so that the rear roller 703 rotates. The fifth drive device 16 is activated, so that it can drive the corresponding roller 703 to rotate. An ironing component is provided inside the rear roller 703. The rear roller 703 has air holes for venting hot air, so that the polyester fabric 4 can be ironed. Due to the air holes on the rear roller 703, the high temperature hot air generated by the ironing component can be discharged onto the polyester fabric 4.
[0072] In this embodiment, the structure and principle of the ironing component are existing technologies and will not be described in detail here.
[0073] In other embodiments, the output end of the fifth drive device 16 may also be connected to another roller 703, or there may be two fifth drive devices 16, which are installed on corresponding moving blocks 702.
[0074] Working principle: First, the polyester fabric 4 is horizontally conveyed to the platform. The take-up drum 3 is assembled on the mounting base 5 by bolts. Then, the suspension chain transmission mechanism 1 is started. Under the control of the computer, the clamping component 2 can open and close to clamp the polyester fabric 4. When the take-up drum 3 is winding, one end of the polyester fabric 4 is connected to the take-up drum 3, so that the rotation of the take-up drum 3 can drive the polyester fabric 4 to be wound. During the winding process, the third drive device 6012 is activated, causing its output end to drive the secondary gear 6011 to rotate. The rotation of the secondary gear 6011 causes the arc-shaped hole 11 on it to rotate as well. Since the moving column 903 slides within the arc-shaped hole 11, its rotation drives the moving column 903 to move along the arc-shaped hole 11. This movement of the moving column 903, in turn, drives the arc-shaped plate 901 via the connecting rod 902, thus adjusting its position. The telescopic drive device 6021 is then activated, causing its output end to drive the hinge block 6022 to rotate. The vertical rod 6023 swings under the action of the hinge block 6022, causing the rolling wheel 14 to swing, thus adjusting its position. By adjusting the positions of the arc-shaped plate 901 and the rolling wheel 14, the spacing can be adjusted, clamping the polyester fabric 4. The fourth drive device 15 is started, which drives the second bidirectional lead screw 701 to rotate. When the second bidirectional lead screw 701 rotates, it causes the two moving blocks 702 to move along the limiting slide groove in opposite or opposite directions to adjust the distance between the two rollers 703 so that the rollers 703 contact the polyester fabric 4. Then, the output shaft of the fifth drive device 16 passes through the moving block 702 and is connected to the roller 703, causing the rear roller 703 to rotate. The fifth drive device 16 is started, which drives the corresponding roller 703 to rotate. Due to the air holes on the rear roller 703, the high-temperature hot air generated by the ironing component can be discharged onto the polyester fabric 4 to eliminate wrinkles on the polyester fabric 4. When the take-up drum 3 is full and needs to be disassembled, the bolts are removed and the take-up drum 3 can be removed.
[0075] The embodiments of the present invention described above do not constitute a limitation on the scope of protection of the present invention. The basic concept of the present invention is that by winding the polyester fabric 4 in a vertical state, the flatness of the polyester fabric 4 can be better guaranteed, wrinkles and depressions can be reduced, and the winding quality can be improved. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the scope of protection of the claims of the present invention.
Claims
1. A polyester fabric anti-wrinkle winding device, characterized in that, Includes a fixed box (8), a suspension chain drive mechanism (1) mounted on the fixed box (8), multiple clamping components (2) spaced apart and driven below the suspension chain drive mechanism (1), an anti-wrinkle component mounted on the fixed box (8), and a winding drum (3) detachably mounted on the fixed box (8). The clamping assembly (2) holds a polyester fabric (4) below it. The fixed box (8) is fixedly provided with a mounting base (5) for assembling the take-up drum (3), so that the take-up drum (3) can be installed on the fixed box (8) and removed from the fixed box (8); One end of the polyester fabric (4) is connected to the winding drum (3) so that the winding drum (3) can wind up the polyester fabric (4); The anti-wrinkle assembly includes a clamping rolling assembly and an ironing mechanism (7); The clamping rolling assembly clamps the polyester fabric (4) on both sides to reduce wrinkles on the polyester fabric (4), and the ironing mechanism (7) clamps the polyester fabric (4) on both sides and is located on the right side of the clamping rolling assembly to eliminate wrinkles on the polyester fabric (4). The clamping rolling assembly includes an inner wall abutment assembly (601) and an outer wall abutment assembly (602) disposed on the fixed box (8). The positions of the inner wall abutment component (601) and the outer wall abutment component (602) can be adjusted. The inner wall abutment component (601) and the outer wall abutment component (602) cooperate with each other to clamp polyester fabrics (4) of different sizes. The inner sidewall abutment assembly (601) includes a secondary gear (6011) rotatably mounted on the inner bottom wall of the fixed box (8), a third drive device (6012) fixed on the inner bottom wall of the fixed box (8), and an adjustment assembly (9) that is connected to the multiple secondary gears (6011) in a transmission. The main gear (10) is fixedly provided on the output shaft of the third drive device (6012). The main gear (10) meshes with the auxiliary gear (6011) to make the auxiliary gear (6011) rotate. When the secondary gear (6011) rotates, it can drive the adjustment component (9) to expand or contract; The adjustment assembly (9) includes an arc plate (901), a connecting rod (902) fixed above the arc plate (901), and a movable column (903) fixed above the connecting rod (902). The auxiliary gear (6011) has an arc-shaped hole (11) that is open from top to bottom, and the fixed box (8) has a through hole (12) for the connecting rod (902) to slide. The movable column (903) is set through the arc-shaped hole (11). When the auxiliary gear (6011) rotates, the movable column (903) can move along the arc-shaped hole (11), so that the connecting rod (902) can move along the extension direction of the through hole (12) to adjust the position of the arc-shaped plate (901).
2. The polyester fabric anti-wrinkle winding device according to claim 1, characterized in that, The clamping assembly (2) includes a first drive device (201) mounted on the suspension chain transmission mechanism (1), a first bidirectional lead screw (202) connected to the first drive device (201) and a clamping plate (203) threadedly connected to the first bidirectional lead screw (202) and arranged opposite to each other, so that the two clamping plates (203) can move in opposite or opposite directions; The two clamping plates (203) are clamped onto the polyester fabric (4).
3. The polyester fabric anti-wrinkle winding device according to claim 2, characterized in that, The mounting base (5) is provided with a threaded hole, and the winding drum (3) is provided with a through hole corresponding to the threaded hole. The mounting base (5) and the winding drum (3) are fixedly connected by bolts that fit the threaded hole.
4. The polyester fabric anti-wrinkle winding device according to claim 3, characterized in that, The fixed box (8) is equipped with a second driving device, and the output shaft of the second driving device is fixedly connected to the mounting base (5) so that the mounting base (5) can rotate.
5. The polyester fabric anti-wrinkle winding device according to claim 1, characterized in that, The outer wall abutment assembly (602) includes a telescopic drive device (6021) hinged to the inner bottom wall of the fixed box (8), a hinge block (6022) hinged to the other end of the telescopic drive device (6021), and a vertical rod (6023) fixedly connected to the hinge block (6022). The vertical rod (6023) is rotatably mounted on the fixed box (8). The lower end of the vertical rod (6023) is fixedly provided with a fixed frame (13). The fixed frame (13) is rotatably provided with a rolling wheel (14). The rolling wheel (14) cooperates with the arc plate (901) to clamp and squeeze the polyester fabric (4).
6. The polyester fabric anti-wrinkle winding device according to claim 1, characterized in that, The ironing mechanism (7) includes a second bidirectional lead screw (701) rotatably mounted on the bottom wall of the fixed box (8), a moving block (702) threadedly connected to the second bidirectional lead screw (701), and a roller (703) rotatably mounted on the moving block (702). A fourth driving device (15) is fixedly installed on the inner bottom wall of the fixed box (8). The output end of the fourth driving device (15) is connected to one end of the second bidirectional lead screw (701) to make the second bidirectional lead screw (701) rotate. The inner bottom wall of the fixed box (8) is provided with a sliding groove for the movable block (702) to be limited and slid.
7. A polyester fabric anti-wrinkle winding device according to claim 6, characterized in that, A fifth drive device (16) is fixedly provided on the rear movable block (702). The output shaft of the fifth drive device (16) passes through the movable block (702) and is connected to the roller (703) for transmission, so that the rear roller (703) rotates. The rear roller (703) is equipped with an ironing component, and the rear roller (703) has an air hole for venting hot air to iron the polyester fabric (4).
Citation Information
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