CN203294921U - Bobbin split-winding machine - Google Patents
Bobbin split-winding machine Download PDFInfo
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- CN203294921U CN203294921U CN2013203511601U CN201320351160U CN203294921U CN 203294921 U CN203294921 U CN 203294921U CN 2013203511601 U CN2013203511601 U CN 2013203511601U CN 201320351160 U CN201320351160 U CN 201320351160U CN 203294921 U CN203294921 U CN 203294921U
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Abstract
The utility model provides a bobbin split-winding machine and belongs to the technical field of textiles. The bobbin split-winding machine solves the technical problems that bobbin split-winding machines existing in the prior art are uneven in winding and not high in winding efficiency. The bobbin split-winding machine comprises a machine frame. A first mounting plate and a second mounting plate are fixed on the machine frame. A plurality of first bobbin inserting rods used for placing a main bobbin are fixed on the first mounting plate. A plurality of second bobbin inserting rods used for placing an auxiliary bobbin are arranged on the second mounting plate. One end of each second bobbin inserting rod is provided with a driving mechanism which can drive the second bobbin inserting rod to rotate. The other end of each second bobbin inserting rod is an inserting end. A yarn guide rod which can guide yarn on the first bobbin inserting rods to the second bobbin inserting rods is arranged between the first bobbin inserting rods and the second bobbin inserting rods. The yarn guide rod is arranged parallel to the second bobbin inserting rods. One end of the yarn guide rod is provided with a through hole, and the yarn can pass through the through hole. The yarn guide rod is further provided with a telescopic mechanism which can drive the yarn guide rod to move up and down. The bobbin split-winding machine has the advantages of being uniform in winding and high in winding efficiency.
Description
Technical field
The utility model belongs to textile technology field, relates to a kind of line cylinder separate winding machine.
Background technology
Yarn is the continuous thread-shaped body of making take various textile fibress as raw material, and it is thin and soft, and has the textile process of adaptation and the needed key property of final products use.Yarn is mainly used in weaving woven, knitted fabric, knitted fabric and part supatex fabric, small part directly exists with wire textiles form, as all kinds of sewing threads, wool knitting yarn, floss silk, cotton rope and other, use mixedly line, it is requisite raw MAT'L in textile industry and clothes industry.
While from the market yarn being bought, normally yarn is wound around on online cylinder, not only coil turn is many for such line cylinder, and is bulky, and if while directly using it on product, also the phenomenon of tiing a knot can easily appear.So people must lay out these yarns come from the line cylinder minute, be wound in various small-sized line cylinders and go, so that people use.
At present, people normally utilize line cylinder separate winding machine to carry out the branching box winding to the yarn bought on market.But there are the problems such as coiling is inhomogeneous, winding efficiency is not high in existing line cylinder separate winding machine more.So, for those skilled in the art, need existing line cylinder separate winding machine is improved, so that can being wound into branching box more uniformly, the yarn on the line cylinder gets on.
The utility model content
The purpose of this utility model is to have the problems referred to above for existing technology, has proposed a kind of line cylinder separate winding machine, this line cylinder separate winding machine have the yarn on the main line cylinder can be wound on the by-pass cylinder and be wound around efficiency high, be wound around uniform characteristics.
the purpose of this utility model can realize by following technical proposal: a kind of line cylinder separate winding machine, comprise frame, on described frame, be fixed with adapter plate one and the adapter plate two that is arranged on adapter plate one oblique upper, on described adapter plate one, be fixed with some be used to placing the insertion tube bar one of main line cylinder, on described adapter plate two, be provided with some be used to placing the insertion tube bar two of by-pass cylinder, it is characterized in that, one end of described insertion tube bar two is provided with and can drives the driver train that insertion tube bar two rotates, the other end of described insertion tube bar two is insertion end, between described insertion tube bar one and insertion tube bar two, be provided with and the yarn on insertion tube bar one can be imported to the conductor rod on insertion tube bar two, described conductor rod and insertion tube bar two be arranged in parallel, on one end of described conductor rod, offer a through hole that can supply yarn to pass through, and also be provided with and can drive the telescoping mechanism that conductor rod moves up and down on described conductor rod.
The principle of work of this line cylinder separate winding machine is such, on insertion tube bar one, places the main line cylinder, on insertion tube bar two, place the by-pass cylinder, and the yarn that will be positioned on the main line cylinder causes on the by-pass cylinder by conductor rod; By driver train, insertion tube bar two is rotated, by telescoping mechanism, drive conductor rod and move up and down, yarn is moved up and down in winding process, thereby the by-pass cylinder that is wound into of Yarn homogeneous is got on.
in above-mentioned line cylinder separate winding machine, described telescoping mechanism comprises motor one, screw mandrel, nut, bearing, elevator and infrared induction probe, one end of described screw mandrel is connected with the output shaft of described motor one by coupler, the other end of described screw mandrel is fixed with the termination piece, described nut is fixed in the inner ring of described bearing, the outer ring of described bearing is fixed on elevator, one end of above-mentioned conductor rod is fixed on described elevator, described nut thread is connected on screw mandrel, directly over described adapter plate two, be fixed with adapter plate three, described motor one is fixed on adapter plate three, and the output shaft of described motor one straight down, the sidepiece of described adapter plate three also is fixed with and can makes the guide rail of elevator along the straight line oscilaltion, described infrared induction probe is fixed on the other end of conductor rod, described insertion tube bar two is provided with one can produce the induction region of induction with described infrared induction probe, the projection of described infrared induction probe on the insertion tube bar is in described induction region, described infrared induction probe is connected with motor one by circuit.
Starter motor one, output shaft rotation, and drive simultaneously screw mandrel and rotate, the nut that is threaded on screw mandrel will carry out lifting up and down, oscilaltion also can occur in the elevator that is connected with nut by bearing, and, under the effect of guide rail, elevator is on the same straight line all the time and carries out lifting, lifting also will occur along with the lifting of elevator in conductor rod.Because an end of conductor rod is equipped with the infrared induction probe, when an end of sensing conductor rod when the infrared ray inductive probe is in outside the induction region on insertion tube bar two, will reverse by autocommand motor one, thereby an end of conductor rod is in the induction region on insertion tube bar two always in lifting process, thereby yarn is carried out be wound around uniformly in order on the by-pass cylinder.
As another situation, in above-mentioned line cylinder separate winding machine, described telescoping mechanism comprises cylinder one, one end of above-mentioned conductor rod is fixed on the piston rod of cylinder one, directly over described adapter plate two, be fixed with adapter plate, described cylinder one is fixed on adapter plate, and the piston rod of described cylinder one straight down.Cylinder one work, drive piston rod flexible back and forth, also can drive simultaneously the conductor rod that is fixed on piston rod flexible back and forth, and the head of conductor rod will move around in the correspondence coiling zone on the by-pass cylinder, thus being wound on the by-pass cylinder Yarn homogeneous.
In above-mentioned line cylinder separate winding machine, one side of described frame also is fixed with column, the upper end of described column is fixed with stay bearing plate, the below of described stay bearing plate is provided with dust boot, between described stay bearing plate and dust boot, also be provided with a cylinder two that dust boot oscilaltion and location are lived, described cylinder two is fixed on stay bearing plate, and described dust boot adopts glass material to make.Dust boot can be protected the operation of motor one and motor two, thus being wound on the by-pass cylinder that is placed on insertion tube bar two of making that yarn can be stable.Dust boot employing glass material is made and is conducive to people's observation.
In above-mentioned line cylinder separate winding machine, described driver train comprises the motor two that is fixed on adapter plate two belows, on described adapter plate two, offer mounting hole, the output shaft of described motor two passes mounting hole and straight up, one end of described insertion tube bar two is connected with the output shaft of motor by coupler, and the other end of described insertion tube bar two is insertion end.By starter motor two, just can drive two rotations of insertion tube bar, thereby orderly being wound into of yarn is placed on the by-pass cylinder on insertion tube bar two, and improve winding efficiency.
In above-mentioned line cylinder separate winding machine, on described column, be fixed with PLC Programmable Logic Controller and master cock, described PLC Programmable Logic Controller is connected with master cock with motor one, motor two, cylinder two by circuit respectively.When motor one and motor two start simultaneously, by the PLC Programmable Logic Controller, will order cylinder two work, thereby dust boot is pushed into to the position that insertion tube bar two is installed, the winding of yarn on protection by-pass cylinder.Master cock is in case of emergency braking motor one, motor two and cylinder two also.
In above-mentioned line cylinder separate winding machine, on described adapter plate two, also be fixed with number of turns counting machine, described number of turns counting machine is connected with described motor two by circuit.By number of turns counting machine, just can manually set the rotation number of turns of motor, thus when electric machine rotation when specifying the number of turns, motor will stop operating automatically.
In above-mentioned line cylinder separate winding machine, the lower end of described insertion tube bar two has non-circular installation portion, and the upper end of described insertion tube bar two is removably fixed with and can prevents that the by-pass cylinder breaks away from the stopper of insertion tube bar two.The by-pass cylinder is installed on the installation portion of insertion tube bar two, just can prevents that by-pass cylinder and insertion tube bar two from relatively rotating, thereby by stable being wound on the by-pass cylinder of yarn; And stopper can prevent that secondary coil effect due to centnifugal force in twirl breaks away from insertion tube bar two.
In above-mentioned line cylinder separate winding machine, on described frame, also be fixed with a depression bar, and described depression bar is in the oblique upper of insertion tube bar one.Depression bar is conducive to yarn is pressed to frame inside, reduces the space that yarn and frame form, thereby be conducive to dust boot, the part yarn is closed in cover body fully.
In above-mentioned line cylinder separate winding machine, described insertion tube bar one and insertion tube bar two all adopt steel material to make, and described insertion tube bar one all is welded on adapter plate one.Adopt welding manner not only simple to operate, and fixed.
Compared with prior art, this line cylinder separate winding machine has the following advantages:
1, the utility model drives conductor rod at the uniform velocity lifting up and down by motor one, thereby make the yarn of introducing by conductor rod can be in the at the uniform velocity lifting up and down of the outside of by-pass cylinder, just yarn can be wound into smoothly and uniformly to the by-pass cylinder gone up, and drive two rotations of insertion tube bar by motor two, can improve the winding efficiency of yarn.
2, the utility model is by arranging dust boot on column; can protect the operation of motor one and motor two; to prevent from being subject to the interference of dust or foreign material in the yarn winding process; thereby what make that yarn can be more stable is wound on the by-pass cylinder that is placed on insertion tube bar two, is wound around environment safer.
3, the utility model, by clamping ring counter on motor two, just can be controlled yarn is wound around on the by-pass cylinder the number of turns automatically, thereby better control yarn, is wrapped in the volume on the by-pass cylinder.
The accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the structural representation of telescoping mechanism in the utility model;
Fig. 3 is the sectional arrangement drawing of motor two and insertion tube bar two in the utility model.
In figure, 1, frame; 2, adapter plate one; 3, the insertion tube bar one; 4, adapter plate two; 5, the insertion tube bar two; 51, installation portion; 52, stopper; 6, conductor rod; 61, through hole; 7, adapter plate three; 8, motor one; 9, screw mandrel; 10, nut; 11, bearing; 12, elevator; 13, infrared induction probe; 14, stop piece; 15, guide rail; 16, column; 17, stay bearing plate; 18, dust boot; 19, cylinder two; 20, motor two; 21, PLC Programmable Logic Controller; 22, master cock; 23, number of turns counting machine; 24, depression bar.
The specific embodiment
Be below specific embodiment of the utility model by reference to the accompanying drawings, the technical solution of the utility model is further described, but the utility model be not limited to these embodiment.
Embodiment mono-
as shown in Figure 1, a kind of line cylinder separate winding machine, comprise frame 1, on frame 1, be fixed with adapter plate 1 and adapter plate 24, and adapter plate 24 is in the oblique upper of adapter plate 1, on adapter plate 1, be fixed with some be used to placing the insertion tube bar 1 of main line cylinder, on adapter plate 24, be provided with some be used to placing the insertion tube bar 25 of by-pass cylinder, one end of insertion tube bar 25 is provided with and can drives the driver train that insertion tube bar 25 rotates, the other end of insertion tube bar 25 is insertion end, between insertion tube bar 1 and insertion tube bar 25, be provided with and the yarn on insertion tube bar 1 can be imported to the conductor rod 6 on insertion tube bar 25, conductor rod 6 be arranged in parallel with insertion tube bar 25, on one end of conductor rod 6, offer a through hole 61 that can supply yarn to pass through, and also be provided with and can drive the telescoping mechanism that conductor rod 6 moves up and down on conductor rod 6.
as shown in Figure 2, telescoping mechanism comprises motor 1, screw mandrel 9, nut 10, bearing 11, elevator 12 and infrared induction probe 13, one end of screw mandrel 9 is connected with the output shaft of motor 1 by coupler, the other end of screw mandrel 9 is fixed with and stops piece 14, nut 10 is fixed in the inner ring of bearing 11, the outer ring of bearing 11 is fixed on a side of elevator 12, one end of conductor rod 6 is fixed on elevator 12, nut 10 is threaded on screw mandrel 9, directly over adapter plate 24, be fixed with adapter plate 37, motor 1 is fixed on adapter plate 37, and the output shaft of motor 1 straight down, the sidepiece of adapter plate 37 also is fixed with and can makes the guide rail 15 of elevator 12 along the straight line oscilaltion, guide rail 15 be arranged in parallel with conductor rod 6, and guide rail 15 offers chute on along its length, the opposite side of elevator 12 also is fixed with slide block, slide block acts in this chute, infrared induction probe 13 is fixed on the other end of conductor rod 6, insertion tube bar 25 is provided with one and can pops one's head in and 13 produce the induction region of induction with infrared induction, the projection of infrared induction probe 13 on the insertion tube bar is in induction region, and infrared induction probe 13 is connected with motor 1 by circuit.Starter motor 1, output shaft rotation, and drive simultaneously screw mandrel 9 and rotate, the nut 10 that is threaded on screw mandrel 9 will carry out lifting up and down, oscilaltion also can occur in the elevator 12 that is connected with nut 10 by bearing 11, and, under the effect of guide rail 15 and slide block, elevator 12 is on the same straight line all the time and carries out lifting, lifting also will occur along with the lifting of elevator 12 in conductor rod 6.Because an end of conductor rod 6 is equipped with infrared induction probe 13, when an end of sensing conductor rod 6 when infrared ray inductive probe 13 is in outside the induction region on insertion tube bar 25, will reverse by autocommand motor 1, thereby an end of conductor rod 6 is in the induction region on insertion tube bar 25 always in lifting process, thereby yarn is carried out be wound around uniformly in order on the by-pass cylinder.
As shown in Figure 3, driver train comprises the motor 2 20 that is fixed on adapter plate 24 belows, on adapter plate 24, offer mounting hole, the output shaft of motor 2 20 passes mounting hole and straight up, one end of insertion tube bar 25 is connected with the output shaft of motor by coupler, and the other end of insertion tube bar 25 is insertion end.By starter motor 2 20, just can drive insertion tube bar 25 and rotate, thereby orderly being wound into of yarn is placed on the by-pass cylinder on insertion tube bar 25.Concrete, the lower end of insertion tube bar 25 has non-circular installation portion 51, and the upper end of insertion tube bar 25 is removably fixed with and can prevents that the by-pass cylinder breaks away from the stopper 52 of insertion tube bar 25.In the present embodiment, the cross section of installation portion 51 is the equilateral triangle shape, in the by-pass cylinder, offers the jack that cross section is the equilateral triangle shape, and this jack can be corresponding with installation portion 51.The by-pass cylinder is installed on the installation portion 51 of insertion tube bar 25, just can prevents that by-pass cylinder and insertion tube bar 25 from relatively rotating, thereby by stable being wound on the by-pass cylinder of yarn.On the periphery of insertion tube bar 25 upper ends, offer outside thread, and in stopper 52, offer a tapped bore that can be complementary with insertion tube bar 25, mode by screw thread fit is fixed on stopper 52 upper end of insertion tube bar 25, just can prevent that secondary coil effect due to centnifugal force in twirl breaks away from insertion tube bar 25.On adapter plate 24, also be fixed with number of turns counting machine 23, and number of turns counting machine 23 is connected with motor 2 20 by circuit.By number of turns counting machine 23, just can manually set the rotation number of turns of motor, thus when electric machine rotation when specifying the number of turns, motor will stop operating automatically.
One side of frame 1 also is fixed with column 16, the upper end of column 16 is fixed with stay bearing plate 17, the below of stay bearing plate 17 is provided with dust boot 18, between stay bearing plate 17 and dust boot 18, also is provided with a cylinder 2 19 that dust boot 18 oscilaltions and location are lived, and cylinder 2 19 is fixed on stay bearing plate 17.Dust boot 18 can be protected the operation of motor 1 and motor 2 20, thus being wound on the by-pass cylinder that is placed on insertion tube bar 25 of making that yarn can be stable.In the present embodiment, dust boot 18 adopts glass material to make, and is beneficial to people and observes.On column 16, be fixed with PLC Programmable Logic Controller 21 and master cock 22, PLC Programmable Logic Controller 21 is connected with motor 1, motor 2 20, cylinder 2 19 and master cock 22 by circuit respectively.When motor 1 and motor 2 20 start simultaneously, by PLC Programmable Logic Controller 21, will order cylinder 2 19 work, thereby dust boot 18 is pushed into to the position that insertion tube bar 25 is installed, the winding of yarn on protection by-pass cylinder.Master cock 22 is in case of emergency braking motor 1, motor 2 20 and cylinder 2 19 also.
In the present embodiment, on frame 1, also be fixed with a depression bar 24, and depression bar 24 is in the oblique upper of insertion tube bar 1.Depression bar 24 is conducive to yarn is pressed to frame 1 inside, reduces the space that yarn and frame 1 form, thereby be conducive to dust boot 18, the part yarn is closed in cover body fully.Insertion tube bar 1 and insertion tube bar 25 all adopt steel material to make, and insertion tube bar 1 all is welded on adapter plate 1, adopt welding manner not only simple to operate, and fixed.
The principle of work of this line cylinder separate winding machine is such, on insertion tube bar 1, places the main line cylinder, on insertion tube bar 25, place the by-pass cylinder, and the yarn that will be positioned on the main line cylinder causes on the by-pass cylinder by conductor rod 6; Open motor 2 20, drive insertion tube bar 25 and rotate, open motor 1, just can drive conductor rod 6 and move up and down, yarn is moved up and down in winding process, thereby the by-pass cylinder that is wound into of Yarn homogeneous is got on.
Embodiment bis-
The present embodiment is basic identical with structure and the principle of embodiment mono-, different place is: in the present embodiment two, telescoping mechanism comprises cylinder one, one end of conductor rod 6 is fixed on the piston rod of cylinder one, directly over adapter plate 24, be fixed with adapter plate, cylinder one is fixed on adapter plate, and the piston rod of cylinder one straight down.When cylinder one work, it is flexible back and forth that cylinder will drive piston rod, also can drive simultaneously the conductor rod 6 that is fixed on piston rod flexible back and forth, the head of conductor rod 6 will move around in the correspondence coiling zone on the by-pass cylinder, thus being wound on the by-pass cylinder Yarn homogeneous.
Specific embodiment described herein is only to the explanation for example of the utility model spirit.The utility model person of ordinary skill in the field can make various modifications or supplements or adopt similar mode to substitute described specific embodiment, but can't depart from spirit of the present utility model or surmount the defined scope of appended claims.
Although this paper has more used 1, frame; 2, adapter plate one; 3, the insertion tube bar one; 4, adapter plate two; 5, the insertion tube bar two; 51, installation portion; 52, stopper; 6, conductor rod; 61, through hole; 7, adapter plate three; 8, motor one; 9, screw mandrel; 10, nut; 11, bearing; 12, elevator; 13, infrared induction probe; 14, stop piece; 15, guide rail; 16, column; 17, stay bearing plate; 18, dust boot; 19, cylinder two; 20, motor two; 21, PLC Programmable Logic Controller; 22, master cock; 23, number of turns counting machine; 24, the term such as depression bar, but do not get rid of the possibility of using other term.Using these terms is only in order to describe more easily and explain essence of the present utility model; They are construed to any additional restriction is all contrary with the utility model spirit.
Claims (10)
1. line cylinder separate winding machine, comprise frame (1), on described frame (1), be fixed with adapter plate one (2) and be arranged on the adapter plate two (4) of adapter plate one (2) oblique upper, on described adapter plate one (2), be fixed with some insertion tube bars one (3) be used to placing the main line cylinder, on described adapter plate two (4), be provided with some insertion tube bars two (5) be used to placing the by-pass cylinder, it is characterized in that, one end of described insertion tube bar two (5) is provided with and can drives the driver train that insertion tube bar two (5) rotates, the other end of described insertion tube bar two (5) is insertion end, between described insertion tube bar one (3) and insertion tube bar two (5), be provided with and the yarn on insertion tube bar one (3) can be imported to the conductor rod (6) on insertion tube bar two (5), described conductor rod (6) be arranged in parallel with insertion tube bar two (5), on one end of described conductor rod (6), offer a through hole (61) that can supply yarn to pass through, and also be provided with and can drive the telescoping mechanism that conductor rod (6) moves up and down on described conductor rod (6).
2. line cylinder separate winding machine according to claim 1, it is characterized in that, described telescoping mechanism comprises motor one (8), screw mandrel (9), nut (10), bearing (11), elevator (12) and infrared induction probe (13), one end of described screw mandrel (9) is connected with the output shaft of described motor one (8) by coupler, the other end of described screw mandrel (9) is fixed with and stops piece (14), described nut (10) is fixed in the inner ring of described bearing (11), the outer ring of described bearing (11) is fixed on elevator (12), one end of above-mentioned conductor rod (6) is fixed on described elevator (12), described nut (10) is threaded on screw mandrel (9), directly over described adapter plate two (4), be fixed with adapter plate three (7), described motor one (8) is fixed on adapter plate three (7), and the output shaft of described motor one (8) straight down, the sidepiece of described adapter plate three (7) also is fixed with and can makes the guide rail (15) of elevator (12) along the straight line oscilaltion, described infrared induction probe (13) is fixed on the other end of conductor rod (6), described insertion tube bar two (5) is provided with one can produce with described infrared induction probe (13) induction region of induction, the projection of described inductive probe on the insertion tube bar is in described induction region, described inductive probe is connected with motor one (8) by circuit.
3. line cylinder separate winding machine according to claim 1, it is characterized in that, described telescoping mechanism comprises cylinder one, one end of above-mentioned conductor rod (6) is fixed on the piston rod of cylinder one, directly over described adapter plate two (4), be fixed with adapter plate, described cylinder one is fixed on adapter plate, and the piston rod of described cylinder one straight down.
4. line cylinder separate winding machine according to claim 1 and 2, it is characterized in that, one side of described frame (1) also is fixed with column (16), the upper end of described column (16) is fixed with stay bearing plate (17), the below of described stay bearing plate (17) is provided with dust boot (18), between described stay bearing plate (17) and dust boot (18), also be provided with a cylinder two (19) that dust boot (18) oscilaltion and location are lived, it is upper that described cylinder two (19) is fixed on stay bearing plate (17), and described dust boot (18) adopts glass material to make.
5. line cylinder separate winding machine according to claim 1, it is characterized in that, described driver train comprises the motor two (20) that is fixed on adapter plate two (4) belows, on described adapter plate two (4), offer mounting hole, the output shaft of described motor two (20) passes mounting hole and straight up, one end of described insertion tube bar two (5) is connected with the output shaft of motor by coupler, and the other end of described insertion tube bar two (5) is insertion end.
6. line cylinder separate winding machine according to claim 5, it is characterized in that, on column (16), be fixed with PLC Programmable Logic Controller (21) and master cock (22), described PLC Programmable Logic Controller (21) is connected with motor one (8), motor two (20), cylinder two (19) and master cock (22) by circuit respectively.
7. line cylinder separate winding machine according to claim 5, is characterized in that, on described adapter plate two (4), also is fixed with number of turns counting machine (23), and described number of turns counting machine (23) is connected with described motor two (20) by circuit.
8. line cylinder separate winding machine according to claim 1 and 2, it is characterized in that, the lower end of described insertion tube bar two (5) has non-circular installation portion (51), and the upper end of described insertion tube bar two (5) is removably fixed with and can prevents that the by-pass cylinder breaks away from the stopper (52) of insertion tube bar two (5).
9. line cylinder separate winding machine according to claim 1 and 2, is characterized in that, on described frame (1), also is fixed with a depression bar (24), and described depression bar (24) is in the oblique upper of insertion tube bar one (3).
10. line cylinder separate winding machine according to claim 1 and 2, is characterized in that, described insertion tube bar one (3) and insertion tube bar two (5) all adopt steel material to make, and described insertion tube bar one (3) all is welded on adapter plate one (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN2013203511601U CN203294921U (en) | 2013-06-18 | 2013-06-18 | Bobbin split-winding machine |
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CN2013203511601U CN203294921U (en) | 2013-06-18 | 2013-06-18 | Bobbin split-winding machine |
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CN2013203511601U Expired - Fee Related CN203294921U (en) | 2013-06-18 | 2013-06-18 | Bobbin split-winding machine |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103287915A (en) * | 2013-06-18 | 2013-09-11 | 海宁市盛祥线业有限公司 | Bobbin shunt-wound machine |
CN106006196A (en) * | 2016-07-11 | 2016-10-12 | 浙江汇豪科技有限公司 | Device for preventing spool from having large end and small end and calibration method for starting point and finish point positions of strokes of yarn guide hooks |
CN113857099A (en) * | 2021-10-12 | 2021-12-31 | 江西大林纺织有限公司 | Spinning branching device |
-
2013
- 2013-06-18 CN CN2013203511601U patent/CN203294921U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103287915A (en) * | 2013-06-18 | 2013-09-11 | 海宁市盛祥线业有限公司 | Bobbin shunt-wound machine |
CN106006196A (en) * | 2016-07-11 | 2016-10-12 | 浙江汇豪科技有限公司 | Device for preventing spool from having large end and small end and calibration method for starting point and finish point positions of strokes of yarn guide hooks |
CN113857099A (en) * | 2021-10-12 | 2021-12-31 | 江西大林纺织有限公司 | Spinning branching device |
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Granted publication date: 20131120 Termination date: 20140618 |
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