CN111908248B - Pay-off rack for spinning of accurate direction - Google Patents

Pay-off rack for spinning of accurate direction Download PDF

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Publication number
CN111908248B
CN111908248B CN202010963088.2A CN202010963088A CN111908248B CN 111908248 B CN111908248 B CN 111908248B CN 202010963088 A CN202010963088 A CN 202010963088A CN 111908248 B CN111908248 B CN 111908248B
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China
Prior art keywords
plate
frame
circular
pay
hole
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CN202010963088.2A
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Chinese (zh)
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CN111908248A (en
Inventor
陈佳敏
吴奇勋
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Jiaxing Juteng Information Technology Co.,Ltd.
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Jiaxing Juteng Information Technology Co ltd
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Publication of CN111908248A publication Critical patent/CN111908248A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H49/00Unwinding or paying-out filamentary material; Supporting, storing or transporting packages from which filamentary material is to be withdrawn or paid-out
    • B65H49/18Methods or apparatus in which packages rotate
    • B65H49/20Package-supporting devices
    • B65H49/32Stands or frameworks
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H49/00Unwinding or paying-out filamentary material; Supporting, storing or transporting packages from which filamentary material is to be withdrawn or paid-out
    • B65H49/36Securing packages to supporting devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H57/00Guides for filamentary materials; Supports therefor
    • B65H57/06Annular guiding surfaces; Eyes, e.g. pigtails
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/30Handled filamentary material
    • B65H2701/31Textiles threads or artificial strands of filaments

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  • Preliminary Treatment Of Fibers (AREA)

Abstract

The invention discloses an accurately-guided pay-off rack for spinning, which comprises a concave-shaped frame and an output rack, wherein the output rack is fixed in the frame; a plurality of output racks arranged along a length direction of the frame; the lead frame is pivoted in the frame; the lead frames are arranged along the height direction of the frame; the carding frame is pivoted at the lower part of one side of the frame and is positioned at one side of the lead frame, which is far away from the output frame; the wire passing plate is pivoted in the carding frame; the plurality of wire passing plates are arranged along the height direction of the carding frame; the output frame comprises a round bar-shaped supporting rod and a base, and the base is round-table-shaped and is screwed at the lower end of the supporting rod by threads; the pay-off rack is screwed on the support rod by threads; a plurality of pay off racks are distributed along the axial direction of the supporting rod.

Description

Pay-off rack for spinning of accurate direction
Technical Field
The invention relates to the technical field of textile equipment, in particular to an accurately-guided pay-off rack for spinning.
Background
When spinning the thread in a textile mill, the thread needs to be placed on a pay-off rack. When a plurality of lines are needed and the types of the lines are more, the lines need to be placed at different positions. In the use process, different types of threads need to be respectively guided to different positions so as to realize the weaving process and manufacture products with different styles. The existing textile rack can not adjust the direction and the position of the threads placed at different positions in the using process so as to meet the textile requirement. However, the existing textile rack cannot be adjusted according to the actual textile requirements.
Therefore, the pay-off rack for spinning that provides an accurate direction, it can place and guide a large amount of braided wires simultaneously, and can adjust the direction of unwrapping wire as required, satisfies the unwrapping wire needs under the multiple condition.
Disclosure of Invention
The invention aims to provide an accurately-guided pay-off rack for spinning, which solves the problem that the pay-off direction of the existing pay-off rack for spinning cannot be adjusted according to needs.
In order to achieve the purpose, the technical scheme of the invention is as follows:
the utility model provides a pay off rack is used in weaving of accurate direction, includes the frame of character cut in bas-relief shape, still includes:
an output frame fixed within the frame; a plurality of output racks arranged along a length direction of the frame;
the lead frame is pivoted in the frame; the lead frames are arranged along the height direction of the frame;
the carding frame is pivoted at the lower part of one side of the frame and is positioned at one side of the lead frame, which is far away from the output frame;
the wire passing plate is pivoted in the carding frame; the plurality of wire passing plates are arranged along the height direction of the carding frame;
the output frame includes the bracing piece of round bar shape, still includes:
the base is in a circular truncated cone shape and is screwed at the lower end of the supporting rod by threads;
the pay-off rack is screwed on the support rod by threads; a plurality of pay off racks are distributed along the axial direction of the supporting rod.
Preferably, the pay-off rack comprises a circular cover plate and a circular bottom plate, and further comprises:
the rotating shaft is in a round rod shape and is pivoted between the cover plate and the bottom plate;
a sealing cover which is circular; the two sealing covers are fixed on the upper part and the lower part of the rotating shaft;
an outer cylinder which is cylindrical; the outer cylinder is sleeved on the rotating shaft and is pivoted between the two sealing covers; a first circular wire releasing hole is formed in the outer cylinder;
the side wall of the outer cylinder is screwed with a spherical reversing ball by screw threads, and the reversing ball is screwed with a circular reversing ring by screw threads.
Preferably, the reversing ball comprises a spherical main ball body, and a circular access hole is arranged in the main ball body along the radial direction of the main ball body; a circular leading-out hole penetrates through the main ball body along the radial direction of the main ball body; the leading-out hole penetrates through the main sphere;
one end of the inlet hole extends out of the main sphere, and the other end of the inlet hole extends to the sphere center of the main sphere and is communicated with the leading-out hole;
preferably, the reversing ring comprises a ring body in the shape of a circular ring; a circular lead-out hole is arranged in the ring body along the radial direction of the ring body in a penetrating way; the plurality of extraction holes are distributed along the circumferential direction of the ring body.
Preferably, the side plate comprises a rectangular first plate body; a plurality of round mounting holes are arranged in the first plate body in a penetrating mode.
Preferably, the lead frame includes a rectangular plate body, and further includes:
a support base fixed to a lower side of the plate body; the two supporting seats are respectively positioned at the two ends of the plate body;
a conduit tube pivotally connected within the board body; a plurality of conduits are arranged along the length direction of the plate body;
an adjusting rod fixed on the lower side of the plate body;
and the first nut is screwed at the end part of the adjusting rod.
Preferably, the supporting seat comprises a triangular supporting block, and further comprises:
the lifting plate is slidably arranged on the upper part of the supporting block in a penetrating way;
a first screw screwed in the support block and onto the lifting plate by means of a thread;
and the lining plate is rectangular and is hinged at the top end of the lifting plate.
Preferably, the lifting plate comprises a rectangular second plate body, and a circular fixing hole is arranged in the second plate body in a penetrating manner; the plurality of fixing holes are arranged along the axial direction of the second plate body.
Preferably, the wire guide tube comprises a round tubular outer tube, and further comprises:
the mounting plate is disc-shaped and screwed into the inner cavity of the outer pipe by threads; a plurality of circular locking holes are arranged in the mounting disc in a penetrating manner; the number of the mounting discs is more than or equal to 2;
an inner tube that is circular and is disposed through the locking hole.
Preferably, the wire passing plate includes a quarter-cylindrical main body, and further includes:
a support tube which is a circular tube and is screwed at one end of the main body;
a handle which is in a round rod shape and is pivoted in the supporting tube;
a wire inlet plate which is cuboid and is hinged on one side of the plane of the main body; a wire inlet hole is arranged on the wire inlet plate in a penetrating way;
the wire outlet hole is arranged in the main body in a penetrating manner and is communicated with the wire inlet hole of the wire inlet plate; the end of the wire outlet hole, which is directly contacted with the wire inlet plate, is linear, and the end of the wire hole, which extends out of the main body, is arc-shaped.
The invention has the following advantages:
(1) the wire wound on the rotating shaft is led out from the first wire releasing hole, enters the inlet hole and then enters the outlet hole. The leading-out hole is driven by the rotating ring body, so that the leading-out hole is aligned with the leading-out hole. And then the wire led out from the leading-out hole is output along the leading-out hole. The plurality of leading-out holes correspond to different directions respectively, and the wires can be led out from the leading-out holes at different positions according to actual use requirements, so that the requirements of leading-out wires in the plurality of directions are met. The direction of the lead-out wire can be adjusted by rotating the reversing ring and the reversing ball, and the requirements of the lead in various directions and positions are met.
(2) And sliding the lifting plate along the height direction of the supporting block, and then rotating the first screw rod, wherein the end part of the first screw rod is screwed to the supporting block, so that the position of the supporting block is fixed. The lifting plate rises or falls and simultaneously drives the lining plate to rise or fall, and the lining plate drives the plate body to rise or fall, so that the inclination angle of the plate body can be adjusted. The plate body rotates and drives the conduit to rotate, so that the direction and the inclination angle of the conduit can be adjusted, and the requirement of downward paying-off in multiple directions is met.
(3) A plurality of lines are respectively led out from a plurality of line outlet holes, each line outlet hole plays a role in guiding one of the lines, and the condition that the plurality of lines are wound together to cause knotting and disorder is avoided. When the novel fishing gear is used, the handle is rotated and drives the main body to rotate, and the main body plays a role in guiding a line penetrating and arranged in the main body.
Drawings
FIG. 1 is a schematic view of a precision oriented spinning pay-off stand of the present invention.
Fig. 2 is a schematic view of an output bay of the present invention.
FIG. 3 is a schematic view of the pay-off stand of the present invention.
Fig. 4 is a schematic view of the reversing ball and reversing ring of the present invention.
Fig. 5 is a cross-sectional view of the reversing ball and reversing ring of the present invention.
Fig. 6 is a schematic view of a side panel of the present invention.
Fig. 7 is a diagram illustrating a lead frame according to the present invention.
FIG. 8 is a schematic view of the support base of the present invention.
Fig. 9 is a schematic view of the lifter plate of the present invention.
Figure 10 is a schematic view of a conduit according to the present invention.
Figure 11 is a schematic view of a conduit according to the present invention.
Fig. 12 is a schematic view of a wire passing panel of the present invention 1.
Fig. 13 is a schematic view 2 of a wire passing panel of the present invention.
Fig. 14 is a schematic view of a wire passing panel of the present invention 3.
1-an output frame; 11-a support bar; 12-a pay-off rack; 121-a cover plate; 122-a rotating shaft; 123-a sealing cover; 124-outer cylinder; 125-a bottom plate; 126-a reversing ball; 1261-main sphere; 1262-an entry well; 1263-an exit orifice; 127-a commutation ring; 1271-ring body; 1272-outlet hole; 13-a base; 2-side plate; 21-a first plate body; 22-mounting holes; 3-a lead frame; 31-a support seat; 311-a lifter plate; 3111-a second plate; 31112-fixing holes; 312-a support block; 313-a first screw; 314-a liner plate; 32-plate body; 33-a conduit; 331-inner tube; 332-an outer tube; 333-mounting a disc; 34-an adjusting rod; 35-a first nut; 4-a carding frame; 5-a wire passing plate; 51-a handle; 52-support tube; 53-a body; 54-a line feeding board; 55-outlet hole.
Detailed Description
The following examples are intended to illustrate the invention but are not intended to limit the scope of the invention.
Examples
In order to make the technical means, the original characteristics, the achieved purposes and the effects of the invention easy to understand, the invention is further described with reference to the figures and the specific embodiments.
The high pressure resistant press jig of the present invention will be described in detail with reference to fig. 1 to 14.
The pay-off rack for spinning of accurate direction of this embodiment includes frame 2 of character cut in bas-relief shape, still includes output frame 1. The output frame 1 is screwed and fixed in the frame 2 by screw threads; the plurality of output racks 1 are arranged along the longitudinal direction of the frame 2. The lead frame 3 is pivoted in the frame 2, and two ends of the lead frame 3 are respectively pivoted in the frame 2. The plurality of lead frames 3 are arranged along the height direction of the frame 2. The comb frame 4 is rectangular, the comb frame 4 being pivoted to the lower part of one side of the frame 2, the comb frame 4 being situated on the side of the lead frame 3 facing away from the output frame 1. The wire passing plate 5 is rectangular, and the wire passing plate 5 is pivoted in the carding frame 4. The plurality of wire passing boards 5 are arranged along the height direction of the carding frame 4.
The operating principle of the spinning pay-off rack with accurate guiding function is as follows:
in use, after the comb frame 4 is rotated in the vertical direction, both ends of the comb frame 4 are respectively bolted to both ends of the two frames 2. The wire guide plates 5 and the lead frames 3 are aligned one by one in the horizontal direction. The wire is wound around the output frame 1, and the wire is passed through the lead frame 3, passed through the corresponding wire passing plate 5, and used. The wire passing plate 5 and the lead frame 3 play a role in guiding and supporting the wire conveying process, the wire passing plate 5 and the lead frame 3 play a good role in guiding, and the problem that knotting between wires and disordered silk yarn conveying are caused due to mutual winding between the wires led out from different output frames 1 is avoided.
The output frame 1 includes a support rod 11 having a circular rod shape. The output frame 1 further comprises a base 13, wherein the base 13 is in a circular truncated cone shape and is screwed at the lower end of the supporting rod 11 through threads. The pay-off rack 12 is screwed on the support rod 11 by threads; a plurality of payoff stands 12 are distributed along the axial direction of the support rod 11.
During the use, all can twine the line on every pay off rack 12, twine the line respectively on different pay off racks 12, a plurality of pay off racks 12 install respectively in different positions along the axial of bracing piece 11, and this kind of line just begins the dispersion from different height position, and carries away through the position of corresponding carding frame 4 and line board 5. The multi-position simultaneous conveying line can improve the paying-off efficiency and meet the requirement of large-scale production.
The pay-off stand 12 includes a circular cover plate 121 and a circular bottom plate 125. The pay-off stand 12 further comprises a rotating shaft 122, wherein the rotating shaft 122 is in a round bar shape and is pivoted between the cover plate 121 and the bottom plate 125. The plurality of rotation shafts 122 are distributed along a circumferential direction of the cover plate 121. The sealing cap 123 is circular; two sealing covers 123 are screwed and fixed on the upper and lower parts of the rotating shaft 122 respectively. The outer cylinder 124 is cylindrical; the outer cylinder 124 is sleeved on the rotating shaft 122, and the outer cylinder 124 is pivoted between the two sealing covers 123; a first circular wire releasing hole is formed in the outer cylinder 124.
A spherical reversing ball 126 is screwed to the side wall of the outer cylinder 124, and an annular reversing ring 127 is screwed to the reversing ball 126.
The reversing ball 126 includes a spherical main ball 1261 with a circular access hole 1262 formed radially therein along the main ball 1261. A circular outlet hole 1263 is formed radially in the main ball 1261; an exit orifice 1263 extends through the main ball 1261. One end of inlet bore 1262 extends beyond main sphere 1261 and the other end of inlet bore 1262 extends to the center of main sphere 1261 and is in communication with exit bore 1263.
The commutation ring 127 includes a ring body 1271 in the shape of a circular ring; a circular lead-out hole 1272 is arranged in the ring body 1271 along the radial direction; the plurality of outlet holes 1272 are distributed along the circumferential direction of the ring body 1271.
In use, the wire is wound around the shaft 122 and the outer sleeve 124 is fitted over the outside of the wire. When the thread is pulled, the thread protrudes from the circular hole formed in the outer cylinder 124, and then the thread is continuously stretched. Meanwhile, the rotation shaft 122 rotates to facilitate the winding thereof to be released first.
After installation, access hole 1262 is aligned with the first line-discharge hole. The wire wound around the spool 122 exits the first wire exit hole and enters the entry hole 1262 and then enters the exit hole 1263. The outlet hole 1272 is driven by rotating the ring body 1271 so that the outlet hole 1272 and the outlet hole 1263 are aligned. The wire then exits the exit hole 1263 along the exit hole 1272. The lead-out holes 1272 correspond to different directions respectively, and wires can be led out from the lead-out holes 1272 at different positions according to actual use requirements, so that the requirements of lead-out wires in multiple directions are met. The direction of the lead-out wire can be adjusted by rotating the reversing ring 127 and the reversing ball 126, so that the requirements of lead wires in various directions and positions are met.
The side plate 2 comprises a rectangular first plate body 21; a plurality of circular mounting holes 22 are bored in the first plate body 21. The end of the lead frame 3 is pivotally connected to the mounting hole 22.
The lead frame 3 includes a rectangular plate 32. The lead frame 3 comprises a support seat 31, and the support seat 31 is hinged and fixed on the lower side of a plate body 32; two support seats 31 are respectively provided at both ends of the plate body 32. The conduit 33 is pivoted in the plate body 32; a plurality of conduits 33 are arranged along the length of the plate 32. The adjustment lever 34 is a circular rod, and the adjustment lever 34 is fixed to the lower side of the plate body 32 by a bolt. A first nut 35 is screwed onto the end of the adjusting rod 34.
The support seat 31 includes a triangular support block 312. The supporting seat 31 further includes a lifting plate 311, and the lifting plate 311 is slidably inserted into the upper portion of the supporting block 312. The plurality of lifting plates 311 are arranged along the length direction of the top surface of the supporting block 312.
The first screw 313 is screwed into the support block 312, and an end of the first screw 313 is screwed to the lifting plate 311. The plurality of first screws 313 are arranged along the length direction of the supporting block 312. The first screws 313 and the lifting plates 311 are aligned one by one. The liner 314 is rectangular and the liner 314 is hinged to the top of the lifter plate 311. The backing plate 314 is hinged to the underside of the plate body 32.
The lifting plate 311 includes a rectangular second plate 3111, and a circular fixing hole 31112 is formed in the second plate 3111; the plurality of fixing holes 31112 are arranged along the axial direction of the second plate body 3111. After installation, the first screw 313 is screwed into the fixing hole 31112, so as to fix the position of the lifting plate 311.
In use, the adjustment lever 34 is rotated to rotate the plate 32, and the wire guide 33 is rotated while the plate 32 is rotated. The wire extends from the conduit 33 and the conduit 33 guides the wire passing therethrough. The adjusting rod 34 is rotated to drive the conduit 33 to rotate by a certain angle, so that the leading-out direction of the wire can be adjusted, and the wire outlet direction can be adjusted. A plurality of conduit 33 align with pay off rack 12 one by one respectively, can lead from the line that pay off rack 12 was drawn forth, play fine guide effect, avoided the line that draws forth from different pay off racks 12 to twine together, appear the confusion.
In use, the lifting plate 311 is slid in the height direction of the supporting block 312, and then the first screw 313 is rotated, and the end of the first screw 313 is screwed to the supporting block 312, thereby fixing the position of the supporting block 312. The lifting plate 311 ascends or descends and simultaneously drives the lining plate 314 to ascend or descend, and the lining plate 314 drives the plate body 32 to ascend or descend, so that the inclination angle of the plate body 32 is adjusted. The plate body 32 rotates and drives the conduit 33 to rotate, so that the direction and the inclination angle of the conduit 33 can be adjusted, and the requirement of downward paying-off in multiple directions is met.
The conduit 33 includes an outer tube 332 in the shape of a circular tube. The conduit 33 further comprises a mounting plate 333, the mounting plate 333 is disc-shaped, and the mounting plate 333 is screwed into the inner cavity of the outer tube 332; a plurality of circular locking holes are formed in the mounting plate 333; the number of the mounting disks 333 is 2 or more. The inner tube 331 is a circular tube, and the inner tube 331 is inserted into the locking hole and fixed by screwing.
In use, the thread enters the inner tube 331 and the inner tube 331 provides a good guide for the thread passing therethrough. The plurality of wires may be respectively inserted into the plurality of different inner tubes 331, and each inner tube 331 guides different wires, thereby preventing the different wires from being entangled together. If the wire is supported at only one point, a single support point will cause a greater compressive force on the wire, and the wire will tend to break under the greater compressive force. The inner tube 331 is elongated and supports the thread inserted therein, ensuring stability and safety of the thread without easily breaking the thread.
The wire passing plate 5 includes a quarter-cylindrical body 53. The wire guide panel 5 further includes a support pipe 52, and the support pipe 52 is a circular pipe shape and is screwed at one end of the main body 53. The handle 51 is of a round bar shape and is pivoted within the support tube 52. The wire inlet plate 54 is cuboid, and the wire inlet plate 54 is hinged to one side of the plane of the main body 53; a circular wire inlet hole is formed in the wire inlet plate 54. An outlet hole 55 is arranged in the main body 53, and the outlet hole 55 is communicated with the inlet hole of the inlet plate 54. The end of the outlet hole 55 directly contacting the inlet plate 54 is linear, and the end of the outlet hole 55 extending out of the main body 53 is arc-shaped.
The wire exits the conduit 33 and enters the wire entry plate 54, then enters the wire exit hole 55 along the wire entry hole, and finally exits the body 53 along the wire exit hole 55. The inlet plate 54 and outlet hole 55 guide the wire. A plurality of wires are respectively led out from a plurality of wire outlet holes 55, each wire outlet hole 55 plays a role in guiding one of the wires, and the condition that the plurality of wires are twisted together to cause knotting and disorder is avoided. When the novel fishing line guide device is used, the handle 51 is rotated, the handle 51 rotates and drives the main body 53 to rotate, and the main body 53 plays a role in guiding a line penetrating through the main body 53.
Although the invention has been described in detail above with reference to a general description and specific examples, it will be apparent to one skilled in the art that modifications or improvements may be made thereto based on the invention. Accordingly, such modifications and improvements are intended to be within the scope of the invention as claimed.

Claims (7)

1. A spinning pay-off rack with accurate guiding, which is characterized in that,
comprising a frame (2) in the shape of a Chinese character 'ao', further comprising:
an output frame (1) fixed in the frame (2); a plurality of output racks (1) are arranged along the length direction of the frame (2);
a lead frame (3) pivoted in the frame (2); a plurality of lead frames (3) are arranged along the height direction of the frame (2);
a carding frame (4) which is pivoted at the lower part of one side of the frame (2) and is positioned at one side of the lead frame (3) which is far away from the output frame (1);
a thread passing plate (5) which is pivoted in the carding frame (4); the plurality of wire passing plates (5) are arranged along the height direction of the carding frame (4);
the output frame (1) comprises a round rod-shaped support rod (11) and further comprises:
a base (13) which is in a circular truncated cone shape and is screwed at the lower end of the support rod (11) by a thread;
the pay-off rack (12) is screwed on the support rod (11) by threads; a plurality of pay-off stands (12) are distributed along the axial direction of the support rod (11);
pay off rack (12) include circular shape apron (121) and circular shape bottom plate (125), still include:
a rotating shaft (122) which is in a round rod shape and is pivoted between the cover plate (121) and the bottom plate (125);
a sealing cover (123) which is circular; two sealing covers (123) are fixed on the upper part and the lower part of the rotating shaft (122);
an outer cylinder (124) that is cylindrical; the outer cylinder (124) is sleeved on the rotating shaft (122) and is pivoted between the two sealing covers (123); a first round wire releasing hole is formed in the outer cylinder (124);
a spherical reversing ball (126) is screwed on the side wall of the outer cylinder (124) by screw threads, and a circular reversing ring (127) is screwed on the reversing ball (126) by screw threads;
the reversing ball (126) comprises a spherical main ball body (1261), and a circular inlet hole (1262) is arranged in the main ball body (1261) along the radial direction; a circular guide hole (1263) is formed in the main ball (1261) along the radial direction; a guide hole (1263) penetrates through the main ball (1261);
one end of the inlet hole (1262) extends out of the main sphere (1261), and the other end of the inlet hole (1262) extends to the center of the main sphere (1261) and is communicated with the outlet hole (1263);
the commutation ring (127) comprises a ring body (1271) in the shape of a circular ring; a circular lead-out hole (1272) is arranged in the ring body (1271) along the radial direction; a plurality of lead-out holes (1272) are distributed along the circumferential direction of the ring body (1271).
2. The precisely-oriented pay-off stand for spinning as defined in claim 1,
the frame (2) comprises a rectangular first plate body (21); a plurality of circular mounting holes (22) are formed in the first plate body (21).
3. The precisely-oriented pay-off stand for spinning as defined in claim 1,
the lead frame (3) comprises a rectangular plate body (32) and further comprises:
a support base (31) fixed to the lower side of the plate body (32); the two supporting seats (31) are respectively positioned at two ends of the plate body (32);
a conduit (33) pivotally connected within the plate (32); a plurality of conduits (33) arranged along the length of the plate (32);
an adjusting lever (34) fixed to the lower side of the plate body (32);
and a first nut (35) screwed to an end of the adjustment rod (34).
4. The precisely-oriented pay-off stand for spinning as defined in claim 3,
the supporting seat (31) comprises a triangular supporting block (312) and further comprises:
a lifting plate (311) which is slidably inserted through the upper part of the supporting block (312);
a first screw (313) screwed into the support block (312) and onto the lifting plate (311) by means of a thread;
a liner plate (314) which is rectangular and hinged on the top end of the lifting plate (311).
5. The precisely-oriented spinning pay-off stand of claim 4,
the lifting plate (311) comprises a rectangular second plate body (3111), and a circular fixing hole (31112) is formed in the second plate body (3111) in a penetrating mode; the plurality of fixing holes (31112) are arranged in the axial direction of the second plate body (3111).
6. The precisely-oriented spinning pay-off stand of claim 5,
the conduit (33) comprises a circular tube-shaped outer tube (332) and further comprises:
a mounting plate (333) which is disk-shaped and screwed into the inner cavity of the outer tube (332); a plurality of circular locking holes are arranged in the mounting disc (333) in a penetrating way; the number of the mounting discs (333) is more than or equal to 2;
an inner tube (331) that is circular and passes through the locking hole.
7. The precisely-oriented pay-off stand for spinning as defined in claim 6,
the wire passing plate (5) comprises a quarter-cylinder-shaped main body (53) and further comprises:
a support tube (52) which is tubular and screwed at one end of the main body (53);
a handle (51) which is in the shape of a round bar and is pivoted in the support tube (52);
a wire inlet plate (54) which is rectangular parallelepiped and is hinged to one side of the plane of the main body (53); a wire inlet hole is arranged on the wire inlet plate (54) in a penetrating way;
an outlet hole (55) which is arranged in the main body (53) in a penetrating way and is communicated with the wire inlet hole of the wire inlet plate (54); one end of the wire outlet hole (55) which is directly contacted with the wire inlet plate (54) is linear, and one end of the wire outlet hole (55) which extends out of the main body (53) is arc-shaped.
CN202010963088.2A 2020-09-14 2020-09-14 Pay-off rack for spinning of accurate direction Active CN111908248B (en)

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Application Number Priority Date Filing Date Title
CN202010963088.2A CN111908248B (en) 2020-09-14 2020-09-14 Pay-off rack for spinning of accurate direction

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Application Number Priority Date Filing Date Title
CN202010963088.2A CN111908248B (en) 2020-09-14 2020-09-14 Pay-off rack for spinning of accurate direction

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CN111908248A CN111908248A (en) 2020-11-10
CN111908248B true CN111908248B (en) 2021-12-14

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Citations (5)

* Cited by examiner, † Cited by third party
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CN205772512U (en) * 2016-05-12 2016-12-07 夏庆磊 Assembled thread releaser
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