Twisting machine for nylon yarn processing

By designing a rotating and storage structure, the problem of cumbersome operation when changing yarn bobbins in twisting machines is solved, enabling flexible storage and positioning of yarn bobbins and improving the ease of operation and stability of twisting machines.

CN121344833APending Publication Date: 2026-01-16HAIAN HENGYE SILK
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Patent Information

Application Number
CN202511587112.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-11-03
Publication Date
2026-01-16

AI Technical Summary

Technical Problem

Existing twisting machines are cumbersome to operate when changing different numbers of yarn bobbins, lack flexibility, and affect twisting efficiency and stability.

Method used

A twisting machine including a rotating structure, a folding structure, and a storage structure was designed. By combining a flip handle and a U-shaped plate, flexible storage and positioning of the yarn spool can be achieved, and efficient twisting and winding of nylon yarn can be achieved through a winding structure and a drawing structure.

Benefits of technology

It enables convenient spool changing and flexible twisting process, improves twisting efficiency and stability, and adapts to the needs of different numbers of nylon yarns.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of twisting machines, and discloses a twisting machine for nylon yarn processing, which comprises a twisting table, a winding structure is arranged on the left side of the upper surface of the twisting table, and a vertical plate is fastened on the right side of the upper surface of the twisting table through a bolt; a rotating structure is arranged at the top end of the vertical plate; the rotating structure comprises a rotating column rotationally penetrating through the top end of the vertical plate, a first motor is installed above the right side face of the vertical plate, one end of an output shaft of the first motor is connected with the rotating column, a plurality of overturning handles are arranged on the rotating column through a folding structure, one end of each overturning handle is provided with a U-shaped plate, one end of each U-shaped plate is provided with a first wire guiding structure, and the other end of each U-shaped plate is provided with a second wire guiding structure. The rotating structure is used for driving multiple groups of polyamide yarns to rotate and twist, the folding handle and the storage structure can be sequentially overturned on the rotating column in cooperation with the folding structure, the corresponding number of yarn barrels are stored through the storage structure, and the polyamide yarns are twisted, so that time and labor are saved during operation, and use is more flexible.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of a twisting machine, in particular to a twisting machine for processing polyamide yarns. BACKGROUND

[0002] The twisting machine is a textile mechanical equipment for twisting a plurality of yarns into one, and is mainly used for processing yarns or twisted yarns into linear products for weaving and knitting; the polyamide yarns are processed by using the twisting machine. The twisting machine in the prior art is provided with a mounting plate, and the mounting plate is uniformly provided with a fixing mechanism, so that the distribution of the coils is more uniform, the quality of the twisted yarns is improved, the fixing mechanism is convenient for fixing the coils, the coils are prevented from falling off during the twisting process, the output rate of the yarns is uniform, the stability of the device is improved, the cleaning device arranged above the second support can clean the twisted yarns, the surface of the yarns is more clean, the quality of the yarn production is improved, the electric pneumatic cylinder arranged on one side of the first fixing seat can adjust the distance between the driving roller and the driven roller, the tightness of the yarn winding is improved, the yarn winding is more compact, and the yarn is prevented from falling off during use. However, during actual twisting, different numbers of polyamide yarns need to be twisted according to different twisting needs, different numbers of yarn barrels need to be stored on the twisting machine, and when the number of the yarn barrels to be stored is large, different mounting plates need to be replaced, so that the operation is more troublesome, the use flexibility needs to be improved, and therefore, there is room for improvement. SUMMARY

[0003] In order to solve the problems in the background art, the application provides a twisting machine for processing polyamide yarns.

[0004] The twisting machine for processing polyamide yarns provided by the application adopts the following technical scheme: The twisting machine for processing polyamide yarns comprises a twisting table, a winding structure is arranged on the left side of the upper surface of the twisting table, and a vertical plate is fastened to the right side of the upper surface of the twisting table through bolts; A rotating structure is arranged at the top end of the vertical plate; The rotating structure comprises a rotating column penetrating through the top end of the vertical plate, a first motor is installed above the right side surface of the vertical plate, one end of the output shaft of the first motor is connected with the rotating column, a plurality of turnover handles are arranged on the rotating column through folding structures, one end of each of the turnover handles is provided with a U-shaped plate, one end of the U-shaped plate is provided with a first yarn guide structure, and a storage structure is arranged in the U-shaped plate; The folding structure comprises a fixing disc mounted at the other end of the rotating column, the fixing disc and the rotating column are hollow structures, a plurality of first grooves are formed in the side surface of the fixing disc, a first rotating shaft is rotatably connected to the groove wall of each first groove, a gear is sleeved on the first rotating shaft, a first rotating block is fixedly sleeved at the two ends of the first rotating shaft, the first rotating block is connected to one end of the turnover handle, a penetrating strip is movably inserted into the groove wall of each first groove, a driving strip is arranged on one side surface of the penetrating strip, a gear is arranged on the driving strip and engaged with the gear, one end of each penetrating strip inserted into the fixing disc is connected with a driving plate, a horizontal groove is formed in each driving plate, the lengths of the plurality of horizontal grooves gradually increase, a driving groove is formed in the driving plate and communicated with one end of the horizontal groove, a first electric push rod is mounted on the inner wall of the other end of the rotating column, a moving block is arranged at one end of the output shaft of the first electric push rod, a plurality of connecting rods are connected to the side surface of the moving block, one end of the connecting rod is connected to a driving ring, and the driving ring movably penetrates through the horizontal groove.

[0005] Preferably, the storage structure comprises a second groove formed in one side surface of the U-shaped plate, a second rotating shaft is rotatably connected between the groove walls on the two sides of the second groove, a second rotating block is fixedly sleeved on the second rotating shaft, one end of the second rotating block is connected to a disc, one side surface of the disc is connected to a storage rod, and a positioning structure is arranged in the U-shaped plate.

[0006] Preferably, the positioning structure comprises a first fixing plate connected to the U-shaped plate, one end of the storage rod is movably inserted into the U-shaped plate, a first through groove is formed in the front and rear side surfaces of the U-shaped plate, a third rotating shaft is rotatably connected to the groove wall of the first through groove, a clamping block is fixedly sleeved on the third rotating shaft, a torsion spring is connected between the clamping block and the groove wall of the first through groove, the clamping block is clamped on the storage rod, and a pressing block is connected to the top end of the side surface of each clamping block and penetrates through the first through groove.

[0007] Preferably, the first wire guide structure comprises a second fixing plate fastened to one end of the U-shaped plate by a screw.

[0008] Preferably, the winding structure comprises a supporting table arranged on the left side of the twisting table, a moving seat is arranged on the supporting table through a pull-open structure, a fixed seat is fixedly mounted on the supporting table close to the rear edge, a second motor is mounted on the fixed seat, a rotating rod is arranged on one end of the output shaft of the second motor through a rotating structure, a winding drum is arranged on the rotating rod through a pushing material abutting structure, a sleeve is mounted on one side top end of the moving seat, one end of the rotating rod is movably inserted into the sleeve, the supporting table is arranged on the twisting table through a position adjusting structure, and a second wire guide structure is arranged on the right side surface of the supporting table.

[0009] Preferably, the second wire drawing structure comprises two first mounting plates connected on one side of the support table, a wire drawing roller is arranged between the two first mounting plates, a second mounting plate is mounted on the side of the support table close to the first mounting plate, a circular ring is mounted between the two second mounting plates, the inner wall of the circular ring movably penetrates through two extrusion plates, an end block is arranged at the end of the extrusion plate penetrating out of the circular ring, a first spring is connected between the end block and the circular ring, a U-shaped block is arranged at the other end of the extrusion plate, and a second wire drawing wheel is arranged in the U-shaped block.

[0010] Preferably, the position adjusting structure comprises an adjusting groove opened on the left side of the top of the twisting table, a moving plate is arranged on the middle of the bottom of the support table, the moving plate is slidingly arranged in the adjusting groove, a screw rod is rotatably inserted into the adjusting groove, the screw rod penetrates through a threaded groove opened on the moving plate, and a handle is mounted at the end of the screw rod penetrating out of the twisting table.

[0011] Preferably, the pulling open structure comprises a pulling open groove opened on the top of the support table, a moving seat is slidingly arranged in the pulling open groove, a pull rod is connected to the moving seat, a pull ring is arranged at the end of the pull rod penetrating out of the support table, a second spring is sleeved on the pull rod, and the two ends of the second spring are connected to the moving seat and the groove wall of the pulling open groove respectively.

[0012] Preferably, the rotating structure comprises a turnover seat mounted at one end of the output shaft of the second motor, a fourth rotating shaft is rotatably penetrated through the turnover seat, a third rotating block is fixedly sleeved on the fourth rotating shaft, a limiting disc is connected to one end of the third rotating block, and the limiting disc is mounted at one end of the rotating rod.

[0013] Preferably, the pushing material abutting structure comprises an inner groove opened in the rotating rod, a penetrating hole is opened on the groove wall of the inner groove, an abutting plate is movably inserted into the penetrating hole, a limiting plate is arranged on the side of the abutting plate, a pressure receiving groove is opened on one side of the abutting plate inserted into the inner groove, a second electric push rod is mounted on the inner wall of one end of the inner groove, a moving rod is connected to one end of the output shaft of the second electric push rod, an extrusion strip is arranged on the moving rod, one end surface of the extrusion strip is an inclined surface, a second through groove is opened in the rotating rod and communicates with the inner groove, a driving block is mounted at one end of the moving rod, a pushing disc is arranged on the driving block, and the pushing disc is movably sleeved on the rotating rod.

[0014] In summary, the present application has the following beneficial technical effects: 1、The present application sets rotating structure, folding structure and storage structure, the rotating structure is used for driving multiple groups of nylon wire to rotate and twist, and the folding structure is used for sequentially folding the folding handle and the storage structure on the rotating column, the storage structure is used for storing corresponding number of wire barrels, and the nylon wire is twisted, which is time-saving and labor-saving in operation and flexible in use. 2、The present application sets the positioning structure and the first wire guide structure in the U-shaped plate, the positioning structure can position the storage rod of the storage structure, so that the storage rod can be turned out from the U-shaped plate when the positioning is released, the operation of replacing the silk bobbin is more convenient, and the first wire guide structure can guide the nylon filament on the silk bobbin during twisting; 3、The present application sets the winding structure and the second wire guide structure, the winding structure winds the nylon filament after twisting, and the second wire guide structure guides the nylon filament after twisting; 4、The present application sets the rotating structure, the moving seat is arranged on the support table through the pull-open structure, the rotating rod can be directly turned out from the fixed seat after the moving seat is pulled open on the support table, so that the winding drum can be conveniently replaced; 5、The present application sets the pushing and abutting structure, when the winding drum is sleeved on the rotating rod, the pushing and abutting structure can automatically abut the winding drum on the rotating rod, so that the rotating rod can smoothly drive the winding drum to rotate for winding, and the winding drum can be automatically pushed out of the rotating rod for discharging during the process of loosening the winding drum on the rotating rod, the structure is simple and the function is practical; 6、The present application sets the position adjusting structure, the distance between the support table and the silk bobbin is adjusted through the position adjusting structure, so that the tightness of the twisted thread can be flexibly adjusted according to actual conditions. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a structure schematic diagram of a twisting machine for nylon filament processing in the embodiment of the present application; Figure 2 is a structure schematic diagram of the vertical plate in the embodiment of the present application; Figure 3 is an enlarged view of the structure at A of Figure 2 in the embodiment of the present application; Figure 4 is a structure schematic diagram of the U-shaped plate in the embodiment of the present application; Figure 5 is an enlarged view of the structure at B of Figure 4 in the embodiment of the present application; Figure 6 is a structure schematic diagram of the rotating column in the embodiment of the present application; Figure 7 is an enlarged view of the structure at C of Figure 6 in the embodiment of the present application; Figure 8 is a structure schematic diagram of the support table in the embodiment of the present application; Figure 9 is an enlarged view of the structure at D of Figure 8 in the embodiment of the present application; Figure 10is a structural schematic view of the winding structure in the embodiment of the present application; Figure 11 is a structural schematic view of the inside of the rotating rod in the embodiment of the present application; Figure 12 is a structural schematic view of the inside of the rotating rod in the embodiment of the present application Figure 11 is an enlarged view of the structure at E of the embodiment of the present application.

[0016] Mark explanation: 1, twisting table; 2, vertical plate; 3, rotating column; 4, fixed disc; 5, turnover handle; 6, U-shaped plate; 7, first groove; 8, first rotating block; 9, gear; 10, through strip; 11, driving strip; 12, driving plate; 13, first electric push rod; 14, moving block; 15, connecting rod; 16, driving ring; 17, transverse groove; 18, driving groove; 19, second rotating shaft; 20, second groove; 21, second rotating block; 22, disc; 23, storage rod; 24, first fixed plate; 25, third rotating shaft; 26, first through groove; 27, clamping block; 28, pressing block; 29, second fixed plate; 30, first yarn guide wheel; 31, support table; 32, fixed seat; 33, moving seat; 34, second motor; 35, first mounting plate; 36, yarn guide roller; 37, second mounting plate; 38, circular ring; 39, extrusion plate; 40, end block; 41, first spring; 42, U-shaped block; 43, second yarn guide wheel; 44, adjusting groove; 45, screw; 46, moving plate; 47, handle; 48, pulling groove; 49, second spring; 50, pull rod; 51, pull ring; 52, rotating rod; 53, sleeve; 54, winding drum; 55, turnover seat; 56, third rotating block; 57, limiting disc; 58, second electric push rod; 59, moving rod; 60, extrusion strip; 61, abutting plate; 62, pressure receiving groove; 63, limiting plate; 64, through hole; 65, second through groove; 66, pushing disc; 67, inner groove. DETAILED DESCRIPTION

[0017] The following will be described in detail in combination with the accompanying Figures 1-12 The present application is further described in detail.

[0018] With reference to Figures 1-12 , the embodiment of the present application discloses a twisting machine for polyamide yarn processing, which comprises a twisting table 1, a winding structure is arranged on the upper left side of the twisting table 1, and a vertical plate 2 is fastened on the upper right side of the twisting table 1 through bolts; A rotating structure is arranged at the top end of the vertical plate 2; The rotating structure comprises a rotating column 3 penetrating through the top end of the vertical plate 2, a first motor (not shown in the figure) is installed on the upper right side surface of the vertical plate 2, one end of the output shaft of the first motor is connected with the rotating column 3, a plurality of turnover handles 5 are arranged on the rotating column 3 through folding structures, one end of each of the turnover handles 5 is provided with a U-shaped plate 6, one end of the U-shaped plate 6 is provided with a first yarn guide structure, and a storage structure is arranged in the U-shaped plate 6; The folding structure comprises a fixing disc 4 mounted at the other end of the rotating column 3, the fixing disc 4 and the rotating column 3 are hollow structures, a plurality of first grooves 7 are formed in the side surface of the fixing disc 4, a first rotating shaft is rotatably connected to the groove wall of each first groove 7, a gear 9 is sleeved on the first rotating shaft, a first rotating block 8 is fixedly sleeved on the two ends of the first rotating shaft, the first rotating block 8 is connected to one end of the turnover handle 5, a penetrating strip 10 is movably inserted into the groove wall of each first groove 7, a driving strip 11 is arranged on one side surface of the penetrating strip 10, a gear is arranged on the driving strip 11 and is in meshing connection with the gear 9, the one end of each penetrating strip 10 inserted into the fixing disc 4 is connected with a driving plate 12, a horizontal groove 17 is formed in each driving plate 12, the lengths of the plurality of horizontal grooves 17 are increased in sequence, a driving groove 18 is formed in the driving plate 12 and is in communication with one end of the horizontal groove 17, a first electric push rod 13 is mounted on the inner wall of the end of the rotating column 3 away from the fixing disc 4, a moving block 14 is arranged at the output shaft of the first electric push rod 13, a plurality of connecting rods 15 are connected to the side surface of the moving block 14, one end of the connecting rod 15 is connected to a driving ring 16, and the driving ring 16 movably penetrates through the horizontal groove 17; The storage structure comprises a second groove 20 formed in one side surface of the U-shaped plate 6, a second rotating shaft 19 is rotatably connected between the groove walls of the two sides of the second groove 20, a second rotating block 21 is fixedly sleeved on the second rotating shaft 19, one end of the second rotating block 21 is connected to a disc 22, one side surface of the disc 22 is connected to a storage rod 23, and a positioning structure is arranged in the U-shaped plate 6; The positioning structure comprises a first fixing plate 24 connected to the U-shaped plate 6, one end of the storage rod 23 is movably inserted into the U-shaped plate 6, a first through groove 26 is formed in the front and rear side surfaces of the U-shaped plate 6, a third rotating shaft 25 is rotatably connected to the groove wall of the first through groove 26, a clamping block 27 is fixedly sleeved on the third rotating shaft 25, a torsion spring is connected between the clamping block 27 and the groove wall of the first through groove 26, the clamping block 27 is clamped on the storage rod 23, and the top ends of the two clamping blocks 27 away from each other are connected with pressing blocks 28 penetrating through the first through groove 26; The first wire leading structure comprises a second fixed plate 29 fastened to one end of the U-shaped plate 6 by a screw, and a first wire leading wheel 30 arranged at the top end of the second fixed plate 29. Before twisting, the first electric push rod 13 in the rotating column 3 is started to drive the moving block 14 to move towards the fixed disc 4, and the moving block 14 drives the driving ring 16 to move in the transverse groove 17. Since the lengths of the transverse grooves 17 on the driving plates 12 are different, the driving ring 16 moves forward and backward in the driving grooves 18 in sequence. By extruding the groove walls of the driving grooves 18 by the driving ring 16, the corresponding driving plates 12 are pushed to move away from the moving block 14. The movement of the driving plates 12 drives the corresponding penetrating strips 10 and driving strips 11 to move on the fixed disc 4 as a whole. The first rotating shaft, the first rotating block 8 and the turnover handle 5 are driven to rotate and fold on the rotating column 3 as a whole through the gear 9. In this way, the number of the unfolded turnover handle 5 on the fixed disc 4 can be flexibly adjusted according to the actual number of nylon filaments to be twisted. After adjustment, the nylon filament bobbin to be twisted is sleeved on the storage rod 23, and then the one end of the storage rod 23 is rotated into the first fixed plate 24 with the second rotating shaft 19 as the axis. During the process of rotating the storage rod 23 into the first fixed plate 24, the storage rod 23 first extrudes the clamping block 27, and then drives the two clamping blocks 27 to rotate about the third rotating shaft 25. When the storage rod 23 is completely inserted into the first fixed plate 24, the clamping blocks 27 are reset under the elastic force of the torsional spring, so that the clamping blocks 27 can position the storage rod 23 rotated into the first fixed plate 24. Then the one end of the nylon filament on the bobbin is wound around the first wire leading wheel 30.

[0019] Referring to Figures 8-12 The winding structure comprises a support table 31 arranged on the left side of the twisting table 1, a moving seat 33 arranged on the support table 31 through a pull-open structure, a fixed seat 32 fixedly installed on the support table 31 near the rear edge, a second motor 34 installed on the fixed seat 32, a rotating rod 52 arranged on the output shaft of the second motor 34 through a rotating structure, a winding drum 54 arranged on the rotating rod 52 through a pushing material abutting structure, a sleeve 53 installed on one side of the moving seat 33, and the one end of the rotating rod 52 movably inserted into the sleeve 53. The support table 31 is arranged on the twisting table 1 through a position adjusting structure, and a second wire leading structure is arranged on the right side of the support table 31. The second wire leading structure comprises two first installation plates 35 connected to the side surface of the support table 31, a wire leading roller 36 arranged between the two first installation plates 35, a second installation plate 37 installed on the side surface of the support table 31 near the first installation plate 35, a circular ring 38 installed between the two second installation plates 37, two extrusion plates 39 movably penetrating through the inner wall of the circular ring 38, end blocks 40 arranged at the ends of the extrusion plates 39 penetrating out of the circular ring 38, first springs 41 connected between the end blocks 40 and the circular ring 38, U-shaped blocks 42 arranged at the other ends of the extrusion plates 39, and second wire leading wheels 43 arranged in the U-shaped blocks 42. The position adjusting structure comprises an adjusting groove 44 formed on the left side of the twisting table 1, a moving plate 46 arranged in the middle of the supporting table 31, the moving plate 46 being slidingly arranged in the adjusting groove 44, a screw rod 45 being rotatably inserted into the adjusting groove 44, the screw rod 45 being rotatably arranged through a threaded groove formed on the moving plate 46, and a handle 47 being arranged at one end of the screw rod 45 which is arranged out of the twisting table 1; The pulling-apart structure comprises a pulling-apart groove 48 formed on the upper side of the supporting table 31, a moving seat 33 being slidingly arranged in the pulling-apart groove 48, a pull rod 50 being connected to the moving seat 33, a pull ring 51 being arranged at one end of the pull rod 50 which is movably arranged out of the supporting table 31, a second spring 49 being sleeved on the pull rod 50, and two ends of the second spring 49 being connected to the moving seat 33 and the groove wall of the pulling-apart groove 48 respectively; The rotating structure comprises a turnover seat 55 arranged at one end of the output shaft of the second motor 34, a fourth rotating shaft being rotatably arranged in the turnover seat 55, a third rotating block 56 being fixedly sleeved on the fourth rotating shaft, and a limiting disc 57 being connected to one end of the third rotating block 56 and arranged at one end of the rotating rod 52. The pushing-resisting structure comprises an inner groove 67 formed in the rotating rod 52, a through hole 64 being formed in the groove wall of the inner groove 67, a resisting plate 61 being movably inserted into the through hole 64, a limiting plate 63 being arranged on the side of the resisting plate 61, a pressure receiving groove 62 being formed on one side of the resisting plate 61 which is inserted into the inner groove 67, the second electric push rod 58 being arranged at one end of the inner wall of the inner groove 67, the moving rod 59 being connected to the output shaft of the second electric push rod 58, the extruding strip 60 being arranged on the moving rod 59, the end surface of the extruding strip 60 being an inclined surface, the second through groove 65 being formed in the rotating rod 52 and communicating with the inner groove 67, the driving block being arranged at one end of the moving rod 59, the pushing disc 66 being arranged on the driving block and movably sleeved on the rotating rod 52. First, the moving seat 33 is moved in the pulling-apart groove 48 by pulling the pull rod 50 with the pull ring 51, the second spring 49 is compressed, the sleeve 53 on the moving seat 33 is moved away from one end of the rotating rod 52, then the rotating rod 52 is rotated out from between the fixed seat 32 and the moving seat 33, then the winding drum 54 is sleeved on the rotating rod 52, the rotating rod 52 is reset, the pull ring 51 is released, the moving seat 33 is reversely moved and reset under the elastic force of the second spring 49, the sleeve 53 on the moving seat 33 is sleeved on one end of the rotating rod 52, the rotating rod 52 is supported, then the second electric push rod 58 in the inner groove 67 is started to drive the moving rod 59 to move, the moving rod 59 drives the inclined surface of the extruding strip 60 to abut against the pressure receiving groove 62, the resisting plate 61 is moved in the through hole 64, the winding drum 54 is automatically resisted on the rotating rod 52, the nylon yarn which passes through the first yarn guide wheel 30 is wound around the yarn guide roller 36, then the nylon yarn which passes through the two second yarn guide wheels 43 is wound on the winding drum 54, the second motor 34 is started to drive the winding drum 54 to rotate, so that the twisted nylon yarn is wound.

[0020] The implementation principle of the twisting machine for processing nylon yarns is as follows: firstly, the first electric push rod 13 in the rotating column 3 is started to drive the moving block 14 to move towards the fixed disc 4, the moving block 14 drives the driving ring 16 to move in the transverse groove 17, since the lengths of the transverse grooves 17 on the driving plates 12 are different, the driving ring 16 moves forward and backward in the driving grooves 18 in sequence when moving, the driving ring 16 extrudes the groove walls of the driving grooves 18 to drive the corresponding driving plates 12 to move away from the moving block 14, the movement of the driving plates 12 drives the corresponding penetrating strips 10 and driving strips 11 to move on the fixed disc 4 as a whole, the first rotating shaft, the first rotating block 8 and the turnover handle 5 are driven to rotate and fold on the rotating column 3 as a whole through the gear 9, so that the number of the unfolded turnover handle 5 on the fixed disc 4 can be flexibly adjusted according to the actual number of nylon yarns to be twisted, after the adjustment, the nylon yarn bobbin to be twisted is sleeved on the storage rod 23, then the storage rod 23 is rotated into the first fixed plate 24 as a whole with the second rotating shaft 19 as the axis, in the process of rotating into the first fixed plate 24, the storage rod 23 first extrudes the clamping block 27 to drive the two clamping blocks 27 to rotate about the third rotating shaft 25, when the storage rod 23 is completely inserted into the first fixed plate 24, the clamping blocks 27 are reset under the elastic force of the torsional spring, so that the clamping blocks 27 can position the storage rod 23 rotated into the first fixed plate 24, then one end of the nylon yarn on the bobbin is wound around the first yarn guide wheel 30, then the pull ring 51 is pulled to drive the pull rod 50 to move, the moving seat 33 moves in the pull-away groove 48, extrudes the second spring 49 to compress, the sleeve 53 on the moving seat 33 is moved away from one end of the rotating rod 52, then the rotating rod 52 is rotated out from between the fixed seat 32 and the moving seat 33 with the fourth rotating shaft as the axis, then the winding bobbin 54 for winding is sleeved on the rotating rod 52, the rotating rod 52 is reset, the pull ring 51 is released, the moving seat 33 is reversely moved and reset under the elastic force of the second spring 49, the sleeve 53 on the moving seat 33 is sleeved on one end of the rotating rod 52 to support the rotating rod 52, then the second electric push rod 58 in the inner groove 67 is started to drive the moving rod 59 to move, the moving rod 59 drives one end of the extruding strip 60 to abut against the pressure groove 62, drives the abutting plate 61 to move in the through hole 64, automatically abuts against the winding bobbin 54 on the rotating rod 52, and then one end of the nylon yarn wound around the first yarn guide wheel 30 is wound around the yarn guide roller 36 from below, then one end of the nylon yarn passing through the two second yarn guide wheels 43 is wound on the winding bobbin 54, the second motor 34 is started to drive the winding bobbin 54 to rotate, at the same time, the first motor on the vertical plate 2 is started to drive the rotating column 3 to rotate, so that the twisting and winding of the nylon yarn can be realized.

[0021] The above are preferred embodiments of the present application, which do not limit the protection scope of the present application, therefore: any equivalent changes made on the structure, shape and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A twisting machine for processing of nylon yarns, comprising a twisting station (1), characterized in that: The twisting table (1) is provided with a winding structure on the left side, and the twisting table (1) is fastened to the right side through a bolt; The vertical plate (2) is provided with a rotating structure at the top end; The rotating structure comprises a rotating column (3) penetrating through the top end of the vertical plate (2), a first motor is installed above the right side surface of the vertical plate (2), one end of the output shaft of the first motor is connected with the rotating column (3), a plurality of turnover handles (5) are arranged on the rotating column (3) through a folding structure, one end of each of the turnover handles (5) is provided with a U-shaped plate (6), one end of the U-shaped plate (6) is provided with a first wire guide structure, and a storage structure is arranged in the U-shaped plate (6); The folding structure comprises a fixed disc (4) installed at the other end of the rotating column (3), the fixed disc (4) and the rotating column (3) are both hollow structures, a plurality of first grooves (7) are formed in the side surface of the fixed disc (4), each first groove (7) is rotatably connected with a first rotating shaft, a gear (9) is sleeved on the first rotating shaft, a first rotating block (8) is fixedly sleeved on both ends of the first rotating shaft, the first rotating block (8) is connected with one end of the turnover handle (5), a through strip (10) is movably arranged in each first groove (7), a driving strip (11) is arranged on one side surface of the through strip (10), the driving strip (11) is provided with gear teeth meshing with the gear (9), one end of each through strip (10) inserted into the fixed disc (4) is connected with a driving plate (12), a horizontal groove (17) is formed in each driving plate (12), the lengths of the plurality of horizontal grooves (17) increase gradually, a driving groove (18) is formed in the driving plate (12) and communicates with one end of the horizontal groove (17), a first electric push rod (13) is installed on the inner wall of the end of the rotating column (3) away from the fixed disc (4), one end of the output shaft of the first electric push rod (13) is provided with a moving block (14), a plurality of connecting rods (15) are connected with the side surface of the moving block (14), one end of the connecting rod (15) is connected with a driving ring (16), and the driving ring (16) movably penetrates through the horizontal groove (17).

2. A twisting machine for processing nylon yarn according to claim 1, characterized in that: The storage structure comprises a second groove (20) formed in one side surface of the U-shaped plate (6), a second rotating shaft (19) is rotatably connected between the groove walls of the second groove (20), a second rotating block (21) is fixedly sleeved on the second rotating shaft (19), one end of the second rotating block (21) is connected with a disc (22), one side surface of the disc (22) is connected with a storage rod (23), and a positioning structure is arranged in the U-shaped plate (6).

3. A twisting machine for processing nylon yarn according to claim 2, characterized in that: The positioning structure comprises a first fixed plate (24) connected to the U-shaped plate (6), one end of the storage rod (23) is movably inserted into the U-shaped plate (6), first through grooves (26) are formed in the front and rear sides of the U-shaped plate (6), the groove wall of the first through groove (26) is rotatably connected to a third rotating shaft (25), a clamping block (27) is fixedly sleeved on the third rotating shaft (25), a torsional spring is connected between the clamping block (27) and the groove wall of the first through groove (26), the clamping block (27) is clamped on the storage rod (23), and the top ends of the two clamping blocks (27) away from each other are connected to pressing blocks (28) penetrating out of the first through groove (26).

4. A twisting machine for processing nylon yarn according to claim 1, characterized in that: The first wire guiding structure comprises a second fixed plate (29) fastened on one end of the U-shaped plate (6) by a screw.

5. A twisting machine for processing nylon yarn according to claim 1, characterized in that: The winding structure comprises a supporting table (31) arranged on the left side of the twisting table (1), a moving seat (33) is arranged on the supporting table (31) by a pull-apart structure, a fixed seat (32) is fixedly installed on the supporting table (31) close to the rear edge, a second motor (34) is installed on the fixed seat (32), a rotating rod (52) is arranged on one end of the output shaft of the second motor (34) by a rotating structure, a winding drum (54) is arranged on the rotating rod (52) by a material pushing and abutting structure, a sleeve (53) is installed on one side of the top end of the moving seat (33), one end of the rotating rod (52) is movably inserted into the sleeve (53), the supporting table (31) is arranged on the twisting table (1) by a position adjusting structure, and a second wire guiding structure is arranged on the right side of the supporting table (31).

6. A twisting machine for processing nylon yarn according to claim 5, characterized in that: The second wire guiding structure comprises two first installation plates (35) connected to one side of the supporting table (31), a wire guiding roller (36) is arranged between the two first installation plates (35), a second installation plate (37) is installed on one side of the supporting table (31) close to the first installation plate (35), a circular ring (38) is installed between the two second installation plates (37), two extrusion plates (39) are movably arranged on the inner wall of the circular ring (38), end blocks (40) are arranged on one end of the extrusion plates (39) penetrating out of the circular ring (38), first springs (41) are connected between the end blocks (40) and the circular ring (38), U-shaped blocks (42) are arranged on the other ends of the extrusion plates (39), and second wire guiding wheels (43) are arranged in the U-shaped blocks (42).

7. A twisting machine for processing nylon yarn according to claim 5, characterized in that: The position adjusting structure comprises an adjusting groove (44) formed on the left side of the upper surface of the twisting table (1), a moving plate (46) is arranged in the middle of the lower surface of the supporting table (31), the moving plate (46) is slidably arranged in the adjusting groove (44), a screw rod (45) is rotatably inserted into the adjusting groove (44), the screw rod (45) penetrates through a threaded groove formed on the moving plate (46), and a handle (47) is installed on one end of the screw rod (45) penetrating out of the twisting table (1).

8. A twisting machine for processing nylon yarn according to claim 5, characterized in that: The pull-apart structure is a pull-apart groove (48) opened on the support table (31), the moving seat (33) is slidingly arranged in the pull-apart groove (48), the pull rod (50) is connected to the moving seat (33), the pull rod (50) is movably arranged through the support table (31) at one end and provided with a pull ring (51), the second spring (49) is sleeved on the pull rod (50), and the two ends of the second spring (49) are connected to the moving seat (33) and the groove wall of the pull-apart groove (48) respectively.

9. A twisting machine for processing nylon yarn according to claim 5, characterized in that: The rotating structure comprises a turnover seat (55) mounted at one end of the output shaft of the second motor (34), a fourth rotating shaft rotatably arranged in the turnover seat (55), a third rotating block (56) fixedly sleeved on the fourth rotating shaft, and a limiting disc (57) connected to one end of the third rotating block (56). The limiting disc (57) is mounted at one end of the rotating rod (52).

10. A twisting machine for processing nylon yarn as claimed in claim 5 wherein: The pushing material abutting structure comprises an inner groove (67) opened in the rotating rod (52), a through hole (64) opened in the groove wall of the inner groove (67), an abutting plate (61) movably inserted into the through hole (64), a limiting plate (63) arranged on the side surface of the abutting plate (61), a pressure receiving groove (62) opened on one side surface of the abutting plate (61) inserted into the inner groove (67), a second electric push rod (58) mounted on the inner wall at one end of the inner groove (67), a moving rod (59) connected to the output shaft of the second electric push rod (58), an extrusion strip (60) arranged on the moving rod (59), an inclined surface formed on one end surface of the extrusion strip (60), a second through groove (65) communicated with the inner groove (67) and opened in the rotating rod (52), a driving block mounted at one end of the moving rod (59), and a pushing disc (66) arranged on the driving block and movably sleeved on the rotating rod (52).