CN211446033U - Multifunctional bobbin driving assembly - Google Patents
Multifunctional bobbin driving assembly Download PDFInfo
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- CN211446033U CN211446033U CN201922316272.3U CN201922316272U CN211446033U CN 211446033 U CN211446033 U CN 211446033U CN 201922316272 U CN201922316272 U CN 201922316272U CN 211446033 U CN211446033 U CN 211446033U
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Abstract
The utility model discloses a multi-functional spool drive assembly relates to spinning machine technical field, including the mount pad, the mounting hole, the fixed column, lift driving motor, the mounting groove, the reduction gear support, the reduction gear, the slider, the screw thread slider, the spout, the lift post, the screw rod, lead yarn ring installation piece, lead yarn ring, the middle part groove, damping spring, the guide post, the installation piece, rotary driving motor, flange axle, the fixed axle, the supporting disk, the bearing, the damping groove, top spring, flexible post, the direction spout, the direction slider, the pivot, the yarn tubular column, spray the support, the fixing base, the oral siphon, the shower nozzle. The utility model relates to a scheme is applicable to the drive of spool, has guaranteed the even wetting of yarn at the winding in-process through the design of shower head, has ensured the steady rotation of spool through bottom damping spring and top damping spring's design, and the design through automatic rising formula thread guide ring has made things convenient for the winding orderliness of yarn.
Description
Technical Field
The utility model belongs to the technical field of the spinning machine technique and specifically relates to a multi-functional spool drive assembly.
Background
At present, a rigid driving pipe column mechanism is generally adopted for driving the bobbin, vibration is easily generated when a machine runs at a high speed, the bobbin falls off or yarn winding is uneven, wetting is needed after the bobbin is wound at present, and the mode of wetting by water is generally uneven.
SUMMERY OF THE UTILITY MODEL
In order to overcome the above-mentioned defect that exists among the prior art, the utility model provides a multi-functional spool drive assembly.
The utility model provides a technical scheme that its technical problem adopted is: a multifunctional bobbin driving assembly comprises a mounting seat, a mounting hole, a fixing column, a lifting driving motor, a mounting groove, a reducer support, a reducer, a sliding block, a threaded sliding block, a sliding groove, a lifting column, a screw rod, a yarn guide ring mounting block, a yarn guide ring, a middle groove, a damping spring, a guide column, a mounting block, a rotary driving motor, a connecting flange shaft, a fixing shaft, a supporting plate, a bearing, a damping groove, a top spring, a telescopic column, a guide sliding groove, a guide sliding block, a rotating shaft, a yarn column, a spraying support, a fixing seat, a water inlet pipe, a spraying pipe and a nozzle, wherein the mounting hole is formed in the upper end face of the mounting seat, the fixing column is rigidly mounted at the right side position of the upper end face of the mounting seat, the lifting driving motor is rigidly mounted at the bottom of the mounting groove, the mounting groove is, the power input end of the speed reducer is rigidly connected with the power output end of a lifting driving motor, the sliding blocks are symmetrically and rigidly mounted on the side wall of the bottom of a lifting column in groups of 2, the screw is rigidly mounted on the power output shaft of the speed reducer, the thread sliding block is mounted on the screw in a matched manner, the thread sliding block is rigidly mounted at the bottom of a screw groove arranged in a hollow part in the lifting column, the lifting column is mounted on a sliding groove in a matched manner through the sliding block, the sliding groove is arranged on the inner wall of a fixed column, the yarn guide ring mounting block is rigidly mounted at the top end of the lifting column, the yarn guide ring is rigidly mounted on the yarn guide ring mounting block, the fixed seat is rigidly mounted at the middle position of the mounting seat, the middle groove is arranged at the hollow part in the fixed seat, the damping spring is nested and mounted at the periphery of the guide column, the connecting flange shaft is connected and arranged between the power output shaft of the rotary driving motor and the bottom surface of the fixed shaft, the fixed shaft is arranged at the hollow part in the mounting block in a matching way through a supporting disc and a bearing, the damping groove is arranged at the hollow part in the top of the fixed shaft, the top spring is nested on the periphery of the telescopic column, the telescopic column is connected and arranged between the bottom surface of the damping groove and the bottom surface of the rotating shaft, the guide sliding blocks are divided into 2 groups and are rigidly and symmetrically arranged on the side wall of the bottom of the rotating shaft, the guide sliding chutes are arranged inside the top of the fixed shaft, the rotating shaft is arranged in the damping groove through the guide sliding groove and the guide sliding block in a matching way, the yarn pipe column is rigidly arranged at the top end of the rotating shaft, the spray support is rigidly mounted on the left side wall of the upper portion of the fixing seat, the water inlet pipe is mounted at the longitudinal tail end of the spray support, the spray pipe is rigidly mounted at the tail end of the water inlet pipe, and the spray head is rigidly mounted on the spray pipe.
According to the multifunctional bobbin driving assembly, the guide columns are divided into 4 groups and are uniformly distributed and connected between the bottom surface of the mounting block and the bottom surface of the middle groove.
The head end of the water inlet pipe is connected with the high-pressure water supply source.
In the multifunctional bobbin driving assembly, the spray heads are divided into 6-12 groups and are longitudinally and uniformly arranged at two sides of the joint of the spray pipe and the water inlet pipe.
The beneficial effects of the utility model are that, the utility model relates to a scheme is applicable to the drive of spool, has guaranteed the even wetting of yarn at the winding in-process through the design of shower head, has ensured the steady rotation of spool through bottom damping spring and top damping spring's design, and the design through automatic rising formula thread guide ring has made things convenient for the winding orderliness of yarn.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic view of the overall structure of the present invention.
In the drawing, 1, an installation seat, 2, an installation hole, 3, a fixed column, 4, a lifting driving motor, 5, an installation groove, 6, a reducer support, 7, a reducer, 8, a sliding block, 9, a threaded sliding block, 10, a sliding groove, 11, a lifting column, 12, a screw rod, 13, a yarn guide ring installation block, 14, a yarn guide ring, 15, a middle groove, 16, a damping spring, 17, a guide column, 18, an installation block, 19, a rotary driving motor, 20, a connecting flange shaft, 21, a fixed shaft, 22, a support plate, 23, a bearing, 24, a damping groove, 25, a top spring, 26, a telescopic column, 27, a guide sliding groove, 28, a guide sliding block, 29, a rotating shaft, 30, a spool column, 31, a spray support, 32, a fixed seat, 33, a water inlet pipe, 34, a spray pipe and 35 spray heads are arranged.
Detailed Description
In order to more clearly illustrate the technical solution of the present invention, the following provides a further description of the present invention with reference to the accompanying drawings, and obviously, the following described drawings are only one embodiment of the present invention, and for those skilled in the art, other embodiments can be obtained according to the drawings and the embodiment without any creative work, and all belong to the protection scope of the present invention.
A multifunctional bobbin driving assembly comprises a mounting seat 1, a mounting hole 2, a fixed column 3, a lifting driving motor 4, a mounting groove 5, a reducer support 6, a reducer 7, a sliding block 8, a threaded sliding block 9, a sliding groove 10, a lifting column 11, a screw 12, a yarn guide ring mounting block 13, a yarn guide ring 14, a middle groove 15, a damping spring 16, a guide column 17, a mounting block 18, a rotary driving motor 19, a connecting flange shaft 20, a fixed shaft 21, a supporting plate 22, a bearing 23, a damping groove 24, a top spring 25, a telescopic column 26, a guide sliding groove 27, a guide sliding block 28, a rotating shaft 29, a bobbin column 30, a spraying support 31, a fixed seat 32, a water inlet pipe 33, a spraying pipe 34 and a spraying nozzle 35, wherein the mounting hole 2 is formed in the upper end face of the mounting seat 1, the fixed column 3 is rigidly mounted at the right side position of the upper end face of the mounting seat 1, the lifting driving, the installation groove 5 is arranged in the hollow part of the fixed column 3, the speed reducer 7 is fixedly arranged on the shell of the lifting driving motor 4 through the speed reducer bracket 6, the power input end of the speed reducer 7 is rigidly connected with the power output end of the lifting driving motor 4, the sliding blocks 8 are symmetrically and rigidly arranged on the side wall of the bottom of the lifting column 11 in groups of 2, the screw 12 is rigidly arranged on the power output shaft of the speed reducer 7, the threaded sliding block 9 is arranged on the screw 12 in a matching way, the threaded sliding block 9 is rigidly arranged on the bottom of the screw groove arranged in the hollow part of the lifting column 11, the lifting column 11 is arranged on the sliding groove 10 in a matching way through the sliding block 8, the sliding groove 10 is arranged on the inner wall of the fixed column 3, the yarn guide ring installation block 13 is rigidly arranged at the top end of the lifting column 11, the, the middle groove 15 is arranged in the hollow part in the fixed seat 32, the damping spring 16 is arranged at the periphery of the guide post 17 in a nested manner, the guide post 17 is connected and arranged between the bottom surface of the installation block 18 and the bottom surface of the middle groove 15, the rotary driving motor 19 is rigidly arranged at the bottom of the motor installation groove arranged in the installation block 18, the connecting flange shaft 20 is connected and arranged between the power output shaft of the rotary driving motor 19 and the bottom surface of the fixed shaft 21, the fixed shaft 21 is arranged at the hollow part in the installation block 18 through the supporting disc 22 and the bearing 23 in a matched manner, the damping groove 24 is arranged at the hollow part in the top of the fixed shaft 21, the top spring 25 is arranged at the periphery of the telescopic post 26 in a nested manner, the telescopic post 26 is connected and arranged between the bottom surface of the damping groove 24 and the bottom surface of the rotating shaft 29, the guide sliders, the rotating shaft 29 is installed on the damping groove 24 through the guide sliding groove 27 and the guide sliding block 28 in a matched mode, the yarn column 30 is installed at the top end of the rotating shaft 29 in a rigid mode, the spraying support 31 is installed on the left side wall of the upper portion of the fixing base 32 in a rigid mode, the water inlet pipe 33 is installed at the longitudinal tail end of the spraying support 31, the spraying pipe 34 is installed at the tail end of the water inlet pipe 33 in a rigid mode, and the spray head 35 is installed on the.
In detail, the guide posts 17 are uniformly distributed and connected between the bottom surface of the mounting block 18 and the bottom surface of the middle groove 15 in groups of 4 and in an annular array, the head end of the water inlet pipe 33 is connected with a high-pressure water supply source, and the spray heads 35 are longitudinally and uniformly distributed and mounted on two sides of the joint of the spray pipe 34 and the water inlet pipe 33 in groups of 8.
The above embodiments are only exemplary embodiments of the present invention, and are not intended to limit the present invention, and the protection scope of the present invention is defined by the claims. Various modifications and equivalents of the invention can be made by those skilled in the art within the spirit and scope of the invention, and such modifications and equivalents should also be considered as falling within the scope of the invention.
Claims (4)
1. A multifunctional bobbin driving assembly comprises a mounting seat (1), a mounting hole (2), a fixing column (3), a lifting driving motor (4), a mounting groove (5), a reducer support (6), a reducer (7), a sliding block (8), a threaded sliding block (9), a sliding groove (10), a lifting column (11), a screw rod (12), a yarn guide ring mounting block (13), a yarn guide ring (14), a middle groove (15), a damping spring (16), a guide column (17), a mounting block (18), a rotary driving motor (19), a connecting flange shaft (20), a fixing shaft (21), a supporting plate (22), a bearing (23), a damping groove (24), a top spring (25), a telescopic column (26), a guide sliding groove (27), a guide sliding block (28), a rotating shaft (29), a yarn pipe column (30), a spraying support (31), a fixing seat (32), a water inlet pipe (33), Shower (34), shower nozzle (35), its characterized in that: the mounting hole (2) is arranged on the upper end face of the mounting seat (1), the fixing column (3) is rigidly mounted at the right side position of the upper end face of the mounting seat (1), the lifting driving motor (4) is rigidly mounted at the bottom of the mounting groove (5), the mounting groove (5) is arranged in the hollow part of the fixing column (3), the speed reducer (7) is fixedly mounted on the shell of the lifting driving motor (4) through a speed reducer support (6), the power input end of the speed reducer (7) is rigidly connected to the power output end of the lifting driving motor (4), the sliding blocks (8) are symmetrically and rigidly mounted on the side wall of the bottom of the lifting column (11) in 2 groups, the screw rod (12) is rigidly mounted on the power output shaft of the speed reducer (7), the threaded sliding block (9) is mounted on the screw rod (12) in a matched mode, the threaded sliding block (9) is rigidly mounted at, the lifting column (11) is installed on the sliding groove (10) through the sliding block (8) in a matched mode, the sliding groove (10) is arranged on the inner wall of the fixing column (3), the yarn guide ring installation block (13) is rigidly installed at the top end of the lifting column (11), the yarn guide ring (14) is rigidly installed on the yarn guide ring installation block (13), the fixing seat (32) is rigidly installed at the middle position of the installation seat (1), the middle groove (15) is arranged in the hollow part of the inner part of the fixing seat (32), the damping spring (16) is installed on the periphery of the guide column (17) in a nested mode, the guide column (17) is installed between the bottom surface of the installation block (18) and the bottom surface of the middle groove (15) in a connected mode, the rotary driving motor (19) is rigidly installed at the bottom of the motor installation groove arranged in the installation block (18), and the connecting flange shaft (20) is installed between the power output shaft of the rotary driving, the fixed shaft (21) is arranged in the hollow part of the inner part of the mounting block (18) through the matching of a supporting plate (22) and a bearing (23), the shock absorption groove (24) is arranged in the hollow part of the top part of the fixed shaft (21), the top spring (25) is arranged at the periphery of the telescopic column (26) in a nested manner, the telescopic column (26) is connected and arranged between the bottom surface of the shock absorption groove (24) and the bottom surface of the rotating shaft (29), the guide sliding blocks (28) are arranged on the side wall of the bottom part of the rotating shaft (29) in a rigid and symmetrical manner in groups of 2, the guide sliding groove (27) is arranged in the inner part of the top part of the fixed shaft (21), the rotating shaft (29) is arranged in the shock absorption groove (24) through the guide sliding groove (27) and the guide sliding block (28) in a matching manner, the yarn column (30) is rigidly arranged at the top end of the rotating shaft (29, the spray pipe (34) is rigidly arranged at the tail end of the water inlet pipe (33), and the spray head (35) is rigidly arranged on the spray pipe (34).
2. A multifunctional bobbin driving assembly as claimed in claim 1, wherein the guide posts (17) are uniformly arranged in 4 groups of annular arrays between the bottom surface of the mounting block (18) and the bottom surface of the middle groove (15).
3. A multi-functional bobbin driving assembly according to claim 1, wherein the head end of the water inlet pipe (33) is connected to a high pressure water supply.
4. The multifunctional bobbin driving assembly as claimed in claim 1, wherein the spray heads (35) are longitudinally and uniformly arranged at two sides of the joint of the spray pipe (34) and the water inlet pipe (33) in 6-12 groups.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922316272.3U CN211446033U (en) | 2019-12-21 | 2019-12-21 | Multifunctional bobbin driving assembly |
Applications Claiming Priority (1)
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CN201922316272.3U CN211446033U (en) | 2019-12-21 | 2019-12-21 | Multifunctional bobbin driving assembly |
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CN211446033U true CN211446033U (en) | 2020-09-08 |
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CN201922316272.3U Active CN211446033U (en) | 2019-12-21 | 2019-12-21 | Multifunctional bobbin driving assembly |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2022104853A1 (en) * | 2020-11-21 | 2022-05-27 | 苏州宸浩纺织科技有限公司 | Cotton thread winding device for textiles |
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2019
- 2019-12-21 CN CN201922316272.3U patent/CN211446033U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
WO2022104853A1 (en) * | 2020-11-21 | 2022-05-27 | 苏州宸浩纺织科技有限公司 | Cotton thread winding device for textiles |
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