CN216638463U - Coiling mechanism of polyester filament production usefulness - Google Patents
Coiling mechanism of polyester filament production usefulness Download PDFInfo
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- CN216638463U CN216638463U CN202122467826.7U CN202122467826U CN216638463U CN 216638463 U CN216638463 U CN 216638463U CN 202122467826 U CN202122467826 U CN 202122467826U CN 216638463 U CN216638463 U CN 216638463U
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- plate
- sliding
- sliding groove
- polyester filament
- winding device
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Abstract
The utility model discloses a winding device for producing polyester filament yarns, which comprises: the automatic winding and unwinding device comprises a rack, a supporting plate, a motor, a winding roller, a front plate, a rear plate, a cutting mechanism and a clamping mechanism, wherein the supporting plate is symmetrically arranged at the end part of the rack, the motor is arranged on the supporting plate, the winding roller is matched with the motor and arranged on the supporting plate, the front plate is arranged at the front end of the rack, the rear plate is arranged at the rear end of the rack, the cutting mechanism is arranged between the front plate and the rear plate, and the clamping mechanism is arranged at the side end of the cutting mechanism.
Description
Technical Field
The utility model belongs to the technical field of polyester filament yarn production, and particularly relates to a winding device for polyester filament yarn production.
Background
Polyester filament yarn is an important variety of synthetic fiber. The polyester filament yarn has wide application, and plays an irreplaceable role in the industries of traditional clothes and the like. When the polyester filament yarns are industrially produced, professional equipment is needed, the processed polyester filament yarns need to be wound and cut off through a bobbin, and the like, so that the rate of industrial production can be increased due to good thread cutting equipment.
Among the prior art, because the processing dacron filament yarn after accomplishing needs to carry out the receipts line of a line section of thick bamboo, traditional receipts line mode often adopts artifical cutting processing, lacks the equipment that cuts off, can't satisfy the enterprise to the tangent line of dacron filament yarn promote automation and reduce the requirement of cost of labor.
SUMMERY OF THE UTILITY MODEL
The utility model provides a winding device for producing polyester filaments, aiming at overcoming the defects of the prior art.
In order to achieve the purpose, the utility model adopts the following technical scheme: a coiling mechanism of polyester filament production usefulness includes: the frame is located the backup pad that frame tip symmetry set up sets up motor in the backup pad, with the motor cooperatees and sets up wind-up roll in the backup pad is located the front bezel of frame front end is located the back plate of frame rear end is located cutting mechanism on the back plate is located the clamping mechanism of cutting mechanism side.
Furthermore, cutting mechanism is including locating electric putter on the front bezel locates first spout on front bezel and the back plate can slide in the first spout and with electric putter fixed connection's slide bar locates cutter unit on the slide bar cooperates cutter unit sets up the spacing subassembly of slide bar both sides.
Furthermore, the cutter assembly comprises a cutter groove arranged at the top of the sliding rod and a cutter arranged in the cutter groove.
Furthermore, the limiting assembly comprises a second sliding groove arranged on the side edge of the cutter groove, a sliding plate arranged in the second sliding groove, and a fixing part arranged on the sliding rod in a matching manner with the sliding plate; the end part of the sliding plate is provided with a baffle.
Furthermore, the fixing part comprises a through hole which is arranged at the top of the sliding rod and communicated with the second sliding groove, a first screw hole which is arranged on the sliding plate, a second screw hole which is arranged below the second sliding groove, a bolt which is matched with the first screw hole and the second screw hole, and a positioning part which is matched with the sliding rod and arranged on the bolt.
Furthermore, a positioning groove is formed in the periphery of the second screw hole, a third sliding groove is formed in the bolt, the positioning piece can slide in the third sliding groove, and a positioning spring is arranged between the positioning piece and the third sliding groove; the locating piece lower extreme can slide in the third spout, the locating piece top is equipped with the inclined plane, the top on inclined plane aligns with the lateral wall of bolt, the bottom protrusion in the bolt lateral wall on inclined plane.
Furthermore, the clamping mechanism comprises a fourth sliding groove arranged on the front plate and the rear plate, an upper plate capable of sliding in the fourth sliding groove, a lower plate fixed between the bottoms of the fourth sliding grooves, and a return assembly arranged on the upper plate; electromagnets are arranged at the front end and the rear end of the lower plate; the bottom of the upper plate is provided with iron blocks at the front end and the rear end.
Furthermore, guide wheels are arranged at two ends of the lower plate.
Furthermore, the return assembly is arranged on the upper plate and comprises a return spring between the fourth sliding grooves, the return spring is arranged on the periphery of the limiting plate connected with the upper plate, and the limiting groove is formed in the bottom of the fourth sliding groove.
Furthermore, the upper plate and the lower plate are provided with limiting strips.
In conclusion, the filament at the end of the discharging roller can be clamped, the motor stops, the winding roller does not move, the length of the filament between the clamping mechanism and the winding roller is ensured, and the filament can be cut off through the cutting mechanism.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of the limiting assembly.
Fig. 3 is a schematic structural view of the clamping mechanism.
In the figure: the device comprises a machine frame 1, a support plate 10, a motor 11, a wind-up roll 12, a front plate 2, a rear plate 20, an electric push rod 3, a first sliding groove 21, a sliding rod 30, a cutter groove 31, a cutter 32, a second sliding groove 33, a sliding plate 34, a baffle 35, a through hole 36, a first screw hole 37, a second screw hole 38, a bolt 4, a positioning piece 40, a positioning groove 39, a third sliding groove 41, a positioning spring 42, an inclined plane 43, a fourth sliding groove 51, an upper plate 6, a lower plate 7, a guide wheel 8, a return spring 60, a limiting plate 61, a limiting groove 52 and a limiting strip 9.
Detailed Description
As shown in fig. 1-3, a winding device for producing polyester filament yarn comprises: frame 1 locates 1 right-hand member portion symmetry of frame sets up backup pad 10 fixes motor 11 in backup pad 10, with motor 11 fixed connection just can be in pivoted wind-up roll 12 is located in the backup pad 10 the front bezel 2 of 1 front end of frame is located the back plate 20 of 1 rear end of frame, front bezel 2 and the symmetrical setting of back plate 20 can be in the cutting mechanism on front bezel 2 and back plate 20, locate the clamping mechanism of cutting mechanism side.
Specifically, cutting mechanism includes electric putter 3 of vertical fixation on front bezel 2, and the symmetry is located two first spouts 21 on front bezel 2 and the back plate 20 can slide in first spout 21 and with electric putter 3 fixed connection's slide bar 30 locates cutter unit on the slide bar 30 cooperates cutter unit sets up the spacing subassembly in slide bar 30 both sides.
Specifically, the cutter assembly comprises a cutter groove 31 arranged at the top of the sliding rod 30, and a cutter 32 arranged in the cutter groove 31.
When the thread cutting is needed, the motor 11 stops rotating, the electric push rod 3 drives the slide rod 30 to slide in the first slide groove 21 from top to bottom, and the filament is cut off by the cutter 32.
Specifically, the limiting assemblies are arranged in two groups, namely a front group and a rear group, and each limiting assembly comprises a second sliding groove 33 arranged at the front end and the rear end of the cutter groove 31, a sliding plate 34 capable of sliding back and forth in the second sliding groove 33, and a fixed part arranged on the sliding rod 30 in a matching manner with the sliding plate 34; a baffle 35 is arranged at the end part of the sliding plate 34; the shutter 35 facilitates the sliding of the slide 34 in the second chute 33.
Specifically, the fixing component includes a through hole 36 disposed at the top of the sliding rod 30 and communicated with the second sliding slot 33, a first screw hole 37 disposed on the sliding plate 34, a second screw hole 38 disposed below the second sliding slot 33, a bolt 4 engaged with the first screw hole 37 and the second screw hole 38, and a positioning member 40 engaged with the sliding rod 30 and disposed on the bolt 4.
The bolt 4 is matched with the first screw hole 37 and the second screw hole 38 to fix the sliding plate 34 and limit two ends of the cutter 32; after the bolt 4 is removed, the cutter can be removed for repair or replacement by sliding the slide plate 34 in the second slide groove 33.
Specifically, a positioning groove 39 is arranged on the periphery of the second screw hole 38, a third sliding groove 41 is arranged on the bolt 4, the positioning element 40 can slide in the third sliding groove 41, and a positioning spring 42 is arranged between the positioning element 40 and the third sliding groove 41; the lower end of the positioning member 40 can slide in the third sliding groove 41, the top end of the positioning member 40 is provided with an inclined surface 43, the top end of the inclined surface 43 is aligned with the side wall of the bolt 4, and the bottom end of the inclined surface 43 protrudes out of the side wall of the bolt 4.
The head of the bolt 4 is non-circular, and the bolt 4 can be driven to rotate by sleeving the head of the bolt 4 with a tool; when the tool is sleeved at the head of the bolt 4, the positioning part is extruded through the end part of the tool and is completely extruded into the third sliding groove 41, after the bolt 4 rotates to the position, the tool is disassembled, the positioning part without pressure can pop out the positioning part 40 through the resilience force of the positioning spring 42, and the bottom of the positioning part 40 is scratched into the positioning groove 39 to prevent the bolt 4 from loosening.
Specifically, the clamping mechanism comprises a fourth sliding groove 51 arranged on the front plate 2 and the rear plate 20, an upper plate 6 capable of sliding in the fourth sliding groove 51, and a lower plate 7 fixed between the bottoms of the fourth sliding groove 51, wherein an electromagnet is arranged at the end part of the lower plate 7, and can attract the upper plate 6 at the upper end to move downwards after being electrified; the return assembly is arranged on the upper plate 6; guide wheels 8 are arranged at two ends of the lower plate 7; the return assembly comprises a return spring 60 arranged between the upper plate 6 and the fourth sliding chute 51, a limiting plate 61 arranged around the return spring 60 and connected with the upper plate 6, and a limiting groove 52 arranged at the bottom of the fourth sliding chute 51; and the upper plate 6 and the lower plate 7 are provided with limit strips 9.
The guide wheels 8 prevent the filaments from coming into contact with the upper plate 6 and the lower plate 7; the limiting plate 61 can limit the transverse movement interval of the return spring 60; the limiting strip 9 can clamp the filament more firmly.
Before the cutter 32 moves downwards, the electromagnet is electrified to attract the upper plate 6 to move downwards, filaments close to the pay-off roller are clamped by the limiting strips 9, when the cutter 32 moves downwards, the pay-off roller cannot be driven to pay off continuously, the filaments can be fixed, and the end parts of the filaments are convenient to fix with the take-up roller; after cutting, the electromagnet is powered off, and the upper plate 6 is returned through the return spring 60.
Claims (10)
1. The utility model provides a coiling mechanism of polyester filament production usefulness which characterized in that: the method comprises the following steps: frame (1), locate backup pad (10) that frame (1) tip symmetry set up sets up motor (11) in backup pad (10), with motor (11) cooperate to set up wind-up roll (12) on backup pad (10) are located front bezel (2) of frame (1) front end are located back plate (20) of frame (1) rear end are located cutting mechanism between front bezel (2) and back plate (20) is located the clamping mechanism of cutting mechanism side.
2. The winding device for producing the polyester filament yarns according to claim 1, characterized in that: cutting mechanism is including locating electric putter (3) on front bezel (2) locates first spout (21) on front bezel (2) and back plate (20) can slide in first spout (21) and with electric putter (3) fixed connection's slide bar (30) are located cutter unit spare on slide bar (30), the cooperation cutter unit spare sets up the spacing subassembly of slide bar (30) both sides.
3. The winding device for producing the polyester filament yarns according to claim 2, characterized in that: the cutter component comprises a cutter groove (31) formed in the top of the sliding rod (30), and a cutter (32) arranged in the cutter groove (31).
4. The winding device for producing the polyester filament yarns according to claim 3, characterized in that: the limiting assembly comprises a second sliding groove (33) arranged on the side edge of the cutter groove (31), a sliding plate (34) arranged in the second sliding groove (33), and a fixing part which is matched with the sliding plate (34) and arranged on the sliding rod (30); the end part of the sliding plate (34) is provided with a baffle plate (35).
5. The winding device for producing the polyester filament yarns according to claim 4, characterized in that: the fixing part comprises a through hole (36) which is arranged at the top of the sliding rod (30) and communicated with the second sliding groove (33), a first screw hole (37) which is arranged on the sliding plate (34), a second screw hole (38) which is arranged below the second sliding groove (33), a bolt (4) which is matched with the first screw hole (37) and the second screw hole (38), and a positioning part (40) which is matched with the sliding rod (30) and arranged on the bolt (4).
6. The winding device for producing the polyester filament yarns according to claim 5, characterized in that: a positioning groove (39) is formed in the periphery of the second screw hole (38), a third sliding groove (41) is formed in the bolt (4), the positioning piece (40) can slide in the third sliding groove (41), and a positioning spring (42) is arranged between the positioning piece (40) and the third sliding groove (41); the lower end of the positioning piece (40) can slide in the third sliding groove (41), an inclined plane (43) is arranged at the top end of the positioning piece (40), the top end of the inclined plane (43) is aligned with the side wall of the bolt (4), and the bottom end of the inclined plane (43) protrudes out of the side wall of the bolt (4).
7. The winding device for producing the polyester filament yarns according to claim 1, characterized in that: the clamping mechanism comprises a fourth sliding groove (51) arranged on the front plate (2) and the rear plate (20), an upper plate (6) capable of sliding in the fourth sliding groove (51), a lower plate (7) fixed between the bottoms of the fourth sliding groove (51), and a return assembly arranged on the upper plate (6); electromagnets are arranged at the front end and the rear end of the lower plate (7); the upper plate (6) is provided with iron blocks at the bottom of the front end and the rear end.
8. The winding device for producing the polyester filament yarns according to claim 7, characterized in that: guide wheels (8) are arranged at two ends of the lower plate (7).
9. The winding device for producing polyester filaments according to claim 7, wherein the winding device comprises: return assembly is including locating upper plate (6) with return spring (60) between fourth spout (51) are located return spring (60) all around and with limiting plate (61) that upper plate (6) link to each other locate spacing groove (52) of fourth spout (51) bottom.
10. The winding device for producing the polyester filament yarns according to claim 7, characterized in that: and the upper plate (6) and the lower plate (7) are provided with limiting strips (9).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122467826.7U CN216638463U (en) | 2021-10-13 | 2021-10-13 | Coiling mechanism of polyester filament production usefulness |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122467826.7U CN216638463U (en) | 2021-10-13 | 2021-10-13 | Coiling mechanism of polyester filament production usefulness |
Publications (1)
Publication Number | Publication Date |
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CN216638463U true CN216638463U (en) | 2022-05-31 |
Family
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Family Applications (1)
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CN202122467826.7U Active CN216638463U (en) | 2021-10-13 | 2021-10-13 | Coiling mechanism of polyester filament production usefulness |
Country Status (1)
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CN (1) | CN216638463U (en) |
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2021
- 2021-10-13 CN CN202122467826.7U patent/CN216638463U/en active Active
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