Special-shaped section polyester fiber winding device
The spooling device for asymmetrical cross-section polyester fibers automates spool handling, reducing manual labor by using hydraulic and electric motors to facilitate easy spool attachment and detachment, enhancing operational efficiency.
Patent Information
- Application Number
- CN202421966613.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-14
AI Technical Summary
The existing special-shaped cross-section polyester fiber winding device requires manual operation by workers when disassembling and replacing the winding wheel, which increases labor intensity.
A winding device including a bracket, hydraulic cylinder, motor and card block is designed. The hydraulic cylinder and motor drive the card block and screw to realize the automatic installation and removal of the winding wheel, and the fibers are ensured uniformly wound with the guide.
Automatic disassembly and replacement of winding wheels is realized, reducing manpower demand, improving operating efficiency and uniformity of fiber winding.
Smart Images

Figure CN223102358U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of polyester fiber winding, in particular to a winding device for profiled-section polyester fibers. Background Technique
[0002] Polyester is one of the varieties of synthetic fibers. When processing profiled-section polyester fibers, a winding device is needed to wind the profiled-section polyester fibers. After the winding wheel is fully wound with profiled-section polyester fibers, the winding wheel needs to be removed and a new winding wheel needs to be installed to continue winding the profiled-section polyester fibers. During the disassembly and replacement process of the winding wheel, workers need to manually disassemble and carry the winding wheel, which increases the labor intensity of workers. Therefore, a winding device for profiled-section polyester fibers is proposed to facilitate the disassembly and replacement of the winding wheel and save manpower. Content of the Utility Model
[0003] Aiming at the problems in the prior art, the utility model provides a winding device for profiled-section polyester fibers.
[0004] The technical solution adopted by the utility model to solve its technical problems is a winding device for profiled-section polyester fibers, including a bracket. A hydraulic cylinder is fixed at the top end of the bracket. A support is arranged inside the bracket. The piston rod of the hydraulic cylinder is connected to the support. Two baffles are arranged inside the support. A first motor is fixed on one side of the support. The output shaft of the first motor is connected to a bidirectional lead screw through a coupling. Threaded holes adapted to the bidirectional lead screw are formed in both of the two baffles. A second motor is fixed on the baffle close to the first motor. Two clamping blocks are arranged below the bidirectional lead screw. The clamping block close to the second motor is connected to the output shaft of the second motor. The clamping block far from the second motor is rotatably connected to the baffle far from the second motor. A box body is arranged below the support. A plurality of winding wheels are arranged inside the box body. Slots adapted to the ends of the clamping blocks are formed on both sides of the plurality of winding wheels. A handrail is fixed on one side of the box body. A guiding member is arranged on the side of the support far from the handrail. Casters are installed at the four corners of the bottom ends of the support and the box body.
[0005] By adopting the above technical solutions, the casters at the bottom end of the bracket and the box body facilitate the movement of the bracket and the box body. The piston rod of the hydraulic cylinder drives the support to move vertically, capable of adjusting the heights of the support, the baffle plate and the clamping block. After the winding wheel is located between the two clamping blocks, the output shaft of the first motor drives the bidirectional lead screw to rotate, and the two baffle plates move towards each other. The ends of the two clamping blocks are inserted into the clamping grooves on both sides of the winding wheel, facilitating the installation of the winding wheel. The piston rod of the hydraulic cylinder drives the support to move upward, and the output shaft of the second motor drives the clamping block close to the second motor to rotate, and the winding wheel rotates accordingly, realizing the winding of the profiled-section polyester fiber. After the winding wheel is fully wound with the profiled-section polyester fiber, the piston rod of the hydraulic cylinder drives the support to move downward, and the output shaft of the first motor drives the bidirectional lead screw to rotate in the reverse direction. The ends of the two clamping blocks are disengaged from the clamping grooves on both sides of the winding wheel, facilitating the removal of the winding wheel. The winding wheel fully wound with the profiled-section polyester fiber falls into the box body, facilitating the storage of the winding wheel. There is no need for workers to manually disassemble and carry the winding wheel, saving manpower.
[0006] Specifically, the guiding member includes a stop block and a sliding block. There are two stop blocks, and both of the two stop blocks are connected to the support. A third motor is fixed on the stop block close to the second motor. The output shaft of the third motor is connected to a threaded rod through a coupling. A threaded hole adapted to the threaded rod and a through groove for the profiled-section polyester fiber to pass through are formed on the sliding block. A cross bar is fixed between the two stop blocks, and a through hole adapted to the cross bar is formed on the sliding block.
[0007] By adopting the above technical solutions, one end of the profiled-section polyester fiber is passed through the through groove on the sliding block and wound around the winding wheel. The output shaft of the third motor drives the threaded rod to rotate, and the sliding block reciprocates between the two stop blocks, facilitating the uniform winding of the profiled-section polyester fiber on the winding wheel.
[0008] Specifically, two guide rods are fixed inside the support, and two through holes adapted to the guide rods are formed on both of the two baffle plates.
[0009] By adopting the above technical solutions, the arrangement of the guide rods can improve the stability of the two baffle plates.
[0010] Specifically, two vertical rods are fixed at the top end of the support, and the top ends of the two vertical rods penetrate through the bracket.
[0011] By adopting the above technical solutions, the arrangement of the vertical rods can improve the stability of the support.
[0012] Specifically, a notch is provided on one side of the box body away from the armrest. A vertical plate is provided inside the notch. Clamping grooves adapted to the vertical plate are formed on both of the two symmetrically arranged vertical inner walls of the box body. A guide plate is fixed on one side of the box body away from the armrest.
[0013] By adopting the above technical solutions, by lifting the vertical plate, it is convenient to transfer the winding wheel in the box body to the ground through the notch and the guide plate.
[0014] Advantages of the utility model:
[0015] (1) For the winding device of profiled-section polyester fiber of the utility model, the caster wheels at the bottom end of the support and the box body facilitate the movement of the support and the box body. The piston rod of the hydraulic cylinder drives the support to move vertically, which can adjust the heights of the support, the baffle and the clamping block. After the winding wheel is located between the two clamping blocks, the output shaft of the first motor drives the bidirectional lead screw to rotate, and the two baffles move towards each other. The ends of the two clamping blocks are inserted into the clamping grooves on both sides of the winding wheel, which is convenient for the installation of the winding wheel. The piston rod of the hydraulic cylinder drives the support to move upward, and the output shaft of the second motor drives the clamping block close to the second motor to rotate, and the winding wheel rotates accordingly, realizing the winding of the profiled-section polyester fiber. After the winding wheel is wound with the profiled-section polyester fiber, the piston rod of the hydraulic cylinder drives the support to move downward, and the output shaft of the first motor drives the bidirectional lead screw to rotate in the reverse direction. The ends of the two clamping blocks are disengaged from the clamping grooves on both sides of the winding wheel, which is convenient for the removal of the winding wheel. The winding wheel wound with the profiled-section polyester fiber falls into the box body, which is convenient for the storage of the winding wheel. There is no need for workers to manually disassemble and carry the winding wheel, saving manpower.
[0016] (2) For the winding device of profiled-section polyester fiber of the utility model, one end of the profiled-section polyester fiber passes through the through groove on the slider and is wound around the winding wheel. The output shaft of the third motor drives the threaded rod to rotate, and the slider reciprocates between the two stoppers, which is conducive to winding the profiled-section polyester fiber evenly on the winding wheel. Description of the drawings
[0017] The following further describes the utility model with reference to the drawings and embodiments.
[0018] Figure 1 It is the structural schematic diagram of the utility model;
[0019] Figure 2 It is the front view of the support of the utility model;
[0020] Figure 3 It is the structural schematic diagram of the guiding member of the utility model.
[0021] In the figure: 1, support; 2, vertical rod; 3, hydraulic cylinder; 4, support; 5, baffle; 6, guiding member; 60, stopper; 61, cross bar; 62, threaded rod; 63, slider; 64, third motor; 7, winding wheel; 8, vertical plate; 9, guide plate; 10, box body; 11, handrail; 12, first motor; 13, bidirectional lead screw; 14, guide rod; 15, second motor; 16, clamping block. Detailed implementation manners
[0022] In order to make the technical means, creative features, achieved objectives and functions realized by the present utility model easy to understand, the present utility model will be further described below in conjunction with specific embodiments.
[0023] For the convenience of replacing the winding wheel 7 and saving manpower, as an embodiment of the present utility model, as Figure 1 、 Figure 2 shown, a special-shaped cross-section polyester fiber winding device described in the present utility model includes a bracket 1. The top end of the bracket 1 is fixed with a hydraulic cylinder 3 by bolts. A support 4 is arranged inside the bracket 1. The piston rod of the hydraulic cylinder 3 is connected to the support 4 by bolts. Two baffles 5 are arranged inside the support 4. One side of the support 4 is fixed with a first motor 12 by bolts. The output shaft of the first motor 12 is connected to a bidirectional lead screw 13 through a coupling. Threaded holes adapted to the bidirectional lead screw 13 are formed on both of the two baffles 5. A second motor 15 is fixed to the baffle 5 close to the first motor 12 by bolts. Two clamping blocks 16 are arranged below the bidirectional lead screw 13. The clamping block 16 close to the second motor 15 is connected to the output shaft of the second motor 15 by bolts. The clamping block 16 far from the second motor 15 is rotatably connected to the baffle 5 far from the second motor 15. A box body 10 is arranged below the support 4. A plurality of winding wheels 7 are arranged inside the box body 10. Slots adapted to the ends of the clamping blocks 16 are formed on both sides of the plurality of winding wheels 7. A handrail 11 is welded and fixed to one side of the box body 10. A guiding member 6 is arranged on one side of the support 4 away from the handrail 11. Casters are installed at the four corners of the bottom ends of the bracket 1 and the box body 10.
[0024] When in use, the casters at the bottom of the bracket 1 and the box body 10 are conducive to the movement of the bracket 1 and the box body 10, the piston rod of the hydraulic cylinder 3 drives the support 4 to move vertically, and the height of the support 4, the baffle 5 and the block 16 can be adjusted. After the winding wheel 7 in the box body 10 is located between the two blocks 16, the output shaft of the first motor 12 drives the bidirectional screw rod 13 to rotate, and the two baffles 5 move toward each other. The ends of the two blocks 16 are inserted into the grooves on both sides of the winding wheel 7, which is convenient for the installation of the winding wheel 7. The piston rod of the hydraulic cylinder 3 drives the support 4 to move upward, and the output shaft of the second motor 15 drives the block 16 close to the second motor 15 to rotate, and the winding wheel 7 rotates accordingly to realize the winding of the special-section polyester fiber. After the winding wheel 7 is fully wound with the special-section polyester fiber, the hydraulic cylinder 3 drives the support 4 to move upward, and the output shaft of the second motor 15 drives the block 16 close to the second motor 15 to rotate, and the winding wheel 7 rotates accordingly, so as to realize the winding of the special-section polyester fiber. The piston rod of the cylinder 3 drives the support 4 to move downward, and the output shaft of the first motor 12 drives the bidirectional screw 13 to rotate in the opposite direction. The ends of the two blocks 16 are disengaged from the slots on both sides of the winding wheel 7, which is convenient for removing the winding wheel 7. The winding wheel 7 wound with the special-shaped polyester fiber falls into the box 10, which is convenient for storing the winding wheel 7. When replacing the new winding wheel 7, the piston rod of the hydraulic cylinder 3 drives the support 4 to move vertically and pushes the bracket 1 to move. After the new winding wheel 7 is located between the two blocks 16, the output shaft of the first motor 12 drives the bidirectional screw 13 to rotate, and the two baffles 5 move toward each other. The ends of the two blocks 16 are inserted into the slots on both sides of the winding wheel 7, which is convenient for installing the winding wheel 7. There is no need for workers to manually disassemble and carry the winding wheel, saving manpower.
[0025] In order to make the special-shaped cross-section polyester fiber evenly wound on the winding wheel 7, for example, Figure 3 As shown, the guide member 6 includes a block 60 and a slider 63, two blocks 60 are provided, both blocks 60 are welded to the support 4, a third motor 64 is fixed to the block 60 close to the second motor 15 by bolts, the output shaft of the third motor 64 is connected to a threaded rod 62 through a coupling, the slider 63 is provided with a screw hole matched with the threaded rod 62 and a through groove for the special-section polyester fiber to pass through, a cross bar 61 is welded and fixed between the two blocks 60, and the slider 63 is provided with a through hole matched with the cross bar 61.
[0026] When in use, one end of the polyester fiber with a special cross-section is passed through the through slot on the slider 63 and wound around the winding wheel 7. When winding begins, the output shaft of the third motor 64 drives the threaded rod 62 to rotate, and the slider 63 reciprocates between the two blocks 60, which is conducive to evenly winding the polyester fiber with a special cross-section around the winding wheel 7.
[0027] In order to improve the stability of the baffle 5, for example, Figure 2 As shown, two guide rods 14 are welded and fixed in the support 4 , and two through holes matching the guide rods 14 are formed on the two baffles 5 .
[0028] To improve the stability of the support 4, exemplary, as Figure 1 shown, two vertical rods 2 are fixedly welded to the top end of the support 4, and the top ends of the two vertical rods 2 penetrate through the support 1.
[0029] To facilitate the transfer of the winding wheel 7 in the box 10 to the ground, exemplary, as Figure 1 shown, a notch is provided on one side of the box 10 away from the armrest 11. A vertical plate 8 is provided in the notch, and clamping grooves adapted to the vertical plate 8 are formed in two symmetrically arranged vertical inner walls of the box 10. A guide plate 9 is fixedly welded to the side of the box 10 away from the armrest 11.
[0030] During use, lift the vertical plate 8 and push the winding wheel 7. The winding wheel 7 rolls towards the notch, and it is convenient to transfer the winding wheel 7 in the box 10 to the ground through the notch and the guide plate 9.
[0031] When the present utility model is in use, the casters at the bottom ends of the support 1 and the box 10 facilitate the movement of the support 1 and the box 10. The piston rod of the hydraulic cylinder 3 drives the support 4 to move vertically, and the height of the support 4, the baffle 5 and the clamping block 16 can be adjusted. After the winding wheel 7 in the box 10 is located between the two clamping blocks 16, the output shaft of the first motor 12 drives the bidirectional lead screw 13 to rotate, and the two baffles 5 move towards each other. The ends of the two clamping blocks 16 are inserted into the clamping grooves on both sides of the winding wheel 7, which facilitates the installation of the winding wheel 7. The piston rod of the hydraulic cylinder 3 drives the support 4 to move upward. One end of the profiled-section polyester fiber is passed through the through groove on the slider 63 and wound around the winding wheel 7. The output shaft of the second motor 15 drives the clamping block 16 close to the second motor 15 to rotate, and the winding wheel 7 rotates accordingly. The output shaft of the third motor 64 drives the threaded rod 62 to rotate, and the slider 63 reciprocates between the two stoppers 60, which is conducive to evenly winding the profiled-section polyester fiber on the winding wheel 7;
[0032] After the winding wheel 7 is wound with the profiled-section polyester fiber, the piston rod of the hydraulic cylinder 3 drives the support 4 to move downward. The output shaft of the first motor 12 drives the bidirectional lead screw 13 to rotate in the reverse direction, and the ends of the two clamping blocks 16 are disengaged from the clamping grooves on both sides of the winding wheel 7, which facilitates the removal of the winding wheel 7. The winding wheel 7 wound with the profiled-section polyester fiber falls into the box 10, which is convenient for the storage of the winding wheel 7;
[0033] When replacing the new winding wheel 7, the piston rod of the hydraulic cylinder 3 drives the support 4 to move vertically, and pushes the support 1 to move. After the new winding wheel 7 is located between the two clamping blocks 16, the output shaft of the first motor 12 drives the bidirectional lead screw 13 to rotate, and the two baffles 5 move towards each other. The ends of the two clamping blocks 16 are inserted into the clamping grooves on both sides of the winding wheel 7, which facilitates the installation of the winding wheel 7. There is no need for workers to manually disassemble and carry the winding wheel, saving manpower.
[0034] The basic principles, main features and advantages of the present utility model have been shown and described above. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of protection required by the present utility model. The scope of protection required by the present utility model is defined by the appended claims and their equivalents. The content not described in detail in the present utility model belongs to the well-known prior art in the art.
Claims
1. A winding device for profiled-section polyester fibers, characterized in that, It includes a bracket (1), a hydraulic cylinder (3) is fixed at the top end of the bracket (1), a support (4) is arranged inside the bracket (1), the piston rod of the hydraulic cylinder (3) is connected to the support (4), two baffles (5) are arranged inside the support (4), a first motor (12) is fixed on one side of the support (4), the output shaft of the first motor (12) is connected with a bidirectional lead screw (13) through a coupling, screw holes adapted to the bidirectional lead screw (13) are formed on both of the two baffles (5), a second motor (15) is fixed on the baffle (5) close to the first motor (12), two clamping blocks (16) are arranged below the bidirectional lead screw (13), the clamping block (16) close to the second motor (15) is connected to the output shaft of the second motor (15), and the clamping block (16) far from the second motor (15) is rotatably connected to the baffle (5) far from the second motor (15). A box body (10) is arranged below the support (4), a plurality of winding wheels (7) are arranged inside the box body (10), clamping grooves adapted to the ends of the clamping blocks (16) are formed on both sides of the plurality of winding wheels (7), a handrail (11) is fixed on one side of the box body (10), a guiding member (6) is arranged on the side of the support (4) far from the handrail (11), and casters are installed at the four corners of the bottom ends of the bracket (1) and the box body (10).
2. The winding device for profiled-section polyester fibers according to claim 1, characterized in that, The guiding member (6) includes a stop block (60) and a slider (63). There are two stop blocks (60), and both of the two stop blocks (60) are connected to the support (4). A third motor (64) is fixed on the stop block (60) close to the second motor (15), the output shaft of the third motor (64) is connected with a threaded rod (62) through a coupling, a screw hole adapted to the threaded rod (62) and a through groove for a profiled-section polyester fiber to pass through are formed on the slider (63), a cross bar (61) is fixed between the two stop blocks (60), and a through hole adapted to the cross bar (61) is formed on the slider (63).
3. The profiling cross-section polyester fiber winding device according to claim 1, wherein, Two guide rods (14) are fixed inside the support (4), and two through holes adapted to the guide rods (14) are formed on both of the two baffles (5).
4. A winding device for profiled-section polyester fibers according to claim 1, wherein, Two vertical rods (2) are fixed at the top end of the support (4), and the top ends of the two vertical rods (2) penetrate through the bracket (1).
5. A winding device for profiled-section polyester fibers according to claim 1, characterized in that, A notch is arranged on the side of the box body (10) far from the handrail (11), a vertical plate (8) is arranged inside the notch, clamping grooves adapted to the vertical plate (8) are formed on the two symmetrically arranged vertical inner walls of the box body (10), and a guide plate (9) is fixed on the side of the box body (10) far from the handrail (11).