CN208776065U - High-precision Y shape weaving winding shaping bobbin-winding machine of spool - Google Patents

High-precision Y shape weaving winding shaping bobbin-winding machine of spool Download PDF

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Publication number
CN208776065U
CN208776065U CN201821119931.3U CN201821119931U CN208776065U CN 208776065 U CN208776065 U CN 208776065U CN 201821119931 U CN201821119931 U CN 201821119931U CN 208776065 U CN208776065 U CN 208776065U
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tube
precision
winding
spool
rack
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黄大毛
罗邦友
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Zhejiang Taihe Textile Machinery Co Ltd
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Zhejiang Taihe Textile Machinery Co Ltd
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Abstract

The utility model belongs to technical field of textile equipment more particularly to a kind of high-precision Y shape weaving winding shaping bobbin-winding machine of spool.The utility model, including rack, fixed seat of yarn-unwinding tube is fixed at rack lower section, the rack upper section is equipped with active winding motor, it further include the Y tube being connect with active winding motor driven, the side of roller unit and Y tube fits, and roller unit can be moved or be rotated along the side of Y tube.The utility model can realize the once-forming of Y tube, save processing step, reduce production cost, and the utility model is driven using gapless drive rod, high-precision wire rail moving roller ensures the mobile consistency of roller and Y tube.

Description

High-precision Y shape weaving winding shaping bobbin-winding machine of spool
Technical field
The utility model belongs to technical field of textile equipment more particularly to a kind of high-precision Y shape weaving spool is once wound Shape bobbin-winding machine.
Background technique
The major function of bobbin-winding machine is to be connected the less cylinder yarn of capacity or reeled yarn by winder, be made into capacity compared with Big bobbin, bobbin can be used for warping and twist, quilling, dyeing, the weft yarn on shuttleless loom and knitting yarn etc., conventional The structure of cylinder yarn line is that cylindrical thread layers are formed in bobbin external peripheral surface, since bobbin is also cylindrical, so cylinder yarn In winding shaping, the thread layers of bobbin both ends end face area are easy to collapse line, the forming of cylinder yarn line are not only influenced, after also giving Continuous yarn unwinding causes difficulty, therefore foregoing problems is solved as bobbin by using Y tube, but existing bobbin-winding machine can not The one-pass molding for realizing Y tube, increases operating procedure, brings inconvenience to production.
For example, Chinese utility model patent discloses a kind of hank rewinder [application number: 201420570612.X], The utility model includes rack, reeled yarn frame, reeled yarn overfeeding motor, finish oil disc, yarn probe, tension sensor, filar guide, winding head And winding motor;Wherein, the reeled yarn frame, finish oil disc, yarn probe, tension sensor, filar guide and winding head from lower and On be sequentially arranged in rack;The reeled yarn overfeeding motor connects and drives reeled yarn frame, and tension sensor to be electrically connected, and The revolving speed of reeled yarn overfeeding motor is adjusted by tension sensor;The winding motor connects and drives winding head.
The utility model solves the problems, such as the tension fluctuation of doff process, realizes constant winding tension, and then to meet Each ingot yarn all keeps an identical Yarn reeling tension, but still has the above problem.
Utility model content
The purpose of this utility model is in view of the above-mentioned problems, providing a kind of high-precision Y shape weaving winding shaping of spool Bobbin-winding machine.
In order to achieve the above objectives, the utility model uses following technical proposal:
A kind of high-precision Y shape weaving winding shaping bobbin-winding machine of spool, including rack, fixed seat of yarn-unwinding tube are fixed at Rack lower section, the rack upper section are equipped with active winding motor, further include the Y tube connecting with active winding motor driven, sieve The side of unit and Y tube is drawn to fit, and roller unit can be moved or be rotated along the side of Y tube.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the roller unit includes and rack The high-precision wire rail being fixedly connected, sliding block are slidably connected with high-precision wire rail, and the sliding block upper surface is fixedly connected with roller peace Loading board, the both ends of roller mounting plate are symmetrically arranged with link block, and roller is extended towards the direction close to Y tube in one end of link block Mounting plate, roller are located between two pieces of link blocks, and are rotatablely connected with link block, and the roller fits with Y tube, further includes Driving mechanism, the driving mechanism are connected with the side of link block, and sliding block can be driven to move reciprocatingly along high-precision wire rail.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the driving mechanism includes that fixation is set Double-directional rotary motor on the rack is set, driving piece is connect with Double-directional rotary motor driven, drive rod one end and driving piece rotation Connection, the other end are connected with the side of link block.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the drive rod includes one end and drives The outer loop bar of movable plate rotation connection and one end are located in outer loop bar, and the other end extends outer loop bar and is connected with the side of link block The built-in bar connect, the rotation relative to outer loop bar can occur for the built-in bar, and built-in bar is located at part and housing in outer loop bar The inner surface palette of bar.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the Y tube includes being integrally formed Pedestal and tube body, the pedestal is in truncated cone-shaped, and tube body is connected to the cross-sectional area small end of pedestal.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the cross-sectional area of the tube body is from leaning on Nearly pedestal gradually becomes smaller to far from pedestal.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the side of the tube body cross section with The angle α of vertical direction is less than or equal to 8 degree.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, it is further fixedly arranged in the rack Overfeeding wheel and tension detector, the yarn exported from fixed seat of yarn-unwinding tube successively pass through overfeeding wheel, tension detector and roller list Member arrives Y tube.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the tension detector includes and machine The mounting rack that frame is fixedly connected, pressure tester are fixedly connected on mounting rack, and the pressure tester surface is fixedly connected with Pressure transmits screw rod, tests rotating plate and mounting rack is rotatablely connected, and rotating test rotating plate can make test rotating plate be pressed on pressure biography Screw surface is passed, the yarn exported from fixed seat of yarn-unwinding tube passes through test rotating plate.
In above-mentioned high-precision Y shape weaving winding shaping bobbin-winding machine of spool, the rack is fixedly connected with limit Plate has limit hole on the limit plate.
Compared with prior art, utility model has the advantages that
1, the utility model can realize the once-forming of Y tube, save processing step, reduce production cost.
2, the utility model is driven using gapless drive rod, and high-precision wire rail moving roller ensures roller and Y tube Mobile consistency.
3, the utility model is equipped with tension detector, can carry out real-time monitoring to yarn tension in use, prevent The problem of yarn breakage occurs.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model;
Fig. 2 is the structural schematic diagram of roller unit;
Fig. 3 is the cross-sectional view of drive rod;
Fig. 4 is the structural schematic diagram of Y tube;
Fig. 5 is the structural schematic diagram of tension detector;
In figure: rack 1, fixed seat of yarn-unwinding tube 2, active winding motor 3, Y tube 4, roller unit 5, overfeeding wheel 6, tension inspection Survey device 7, limit plate 8, limit hole 9, pedestal 41, tube body 42, high-precision wire rail 51, sliding block 52, roller mounting plate 53, link block 54, roller 55, driving mechanism 56, Double-directional rotary motor 57, driving piece 58, drive rod 59, mounting rack 71, pressure tester 72, Test rotating plate 73, pressure transmits screw rod 74, outer loop bar 591, built-in bar 592.
Specific embodiment
The utility model is described in more detail with reference to the accompanying drawings and detailed description.
Winding shaping bobbin-winding machine of spool as shown in Figure 1, a kind of high-precision Y shape is weaved, including rack 1, spool is fixed Seat 2 is fixed at 1 lower section of rack, and 1 upper section of rack is equipped with active winding motor 3, further includes and active winding motor 3 The Y tube 4 of drive connection, starting active winding motor 3 can make Y tube 4 rotate, so that yarn is wound to 4 table of Y tube Face, roller unit 5 and the side of Y tube 4 fit, and Y tube 4 can drive roller unit 5 that passive rotation occurs when rotating, and Roller unit 5 can be moved or be rotated along the side of Y tube 4, to realize the once-forming of Y tube, save technique Step reduces production cost.
In conjunction with shown in Fig. 2 and Fig. 3, the roller unit 5 includes the high-precision wire rail 51 being fixedly connected with rack 1, sliding block 52 are slidably connected with high-precision wire rail 51, and 52 upper surface of sliding block is fixedly connected with roller mounting plate 53, roller mounting plate 53 Both ends be symmetrically arranged with link block 54, roller mounting plate 53 is extended towards the direction close to Y tube 4 in one end of link block 54, Roller 55 is located between two pieces of link blocks 54, and is rotatablely connected with link block 54, and the roller 55 fits with Y tube 4, also wraps Driving mechanism 56 is included, the driving mechanism 56 is connected with the side of link block 54, and sliding block 52 can be driven along high-precision wire rail 51 move reciprocatingly, and the driving mechanism 56 includes the Double-directional rotary motor 57 that is fixed in rack 1, driving piece 58 and double It is drivingly connected to rotary electric machine 57,59 one end of drive rod and driving piece 58 are rotatablely connected, the side phase of the other end and link block 54 Connection, the drive rod 59 include that one end is located in outer loop bar 591 with the outer loop bar 591 for driving piece 58 to be rotatablely connected and one end, The built-in bar 592 that the other end extends outer loop bar 591 and is connected with the side of link block 54, the built-in bar 592 can be sent out The raw rotation relative to outer loop bar 591, and built-in bar 592 is located at the inner surface sealing of part and outer loop bar 591 in outer loop bar 591 Fitting.
Double-directional rotary motor 57 can be along both direction alternate rotation clockwise or counterclockwise, so that driving piece 58 occurs one The swing in angular range is determined, to drive drive rod 59 that sliding block 54 is pushed to reciprocatingly slide along high-precision wire rail 51, due to interior Hiding bar 592 is located at part and the inner surface palette of outer loop bar 591 in outer loop bar 591, therefore transmission accuracy can be improved, it is ensured that High-precision wire rail moving roller ensures the mobile consistency of roller and Y tube.
As shown in figure 4, the Y tube 4 includes integrally formed pedestal 41 and tube body 42, the pedestal 41 is in truncated cone-shaped, Tube body 42 is connected to the cross-sectional area small end of pedestal 41, in this way, the thread layers bottom face of the cylinder yarn line after forming fits like a glove On the tapered surface of pedestal 41, yarn coil is generated when moving back solution and is slid down, also only by 41 holding of pedestal, without generating The case where being caught by the bottom face of thread layers, thus drastically reduces breakage phenomena.
Preferably, the cross-sectional area of the tube body 42 gradually becomes smaller from close to pedestal 41 to far from pedestal 41, the tube body The angle α of the sides of 42 cross sections and vertical direction is less than or equal to 8 degree, so that the outer circumference surface of the thread layers after forming is Up-small and down-big cone, this structure can substantially reduce resistance when subsequent yarn unwinding, and then can be further reduced disconnected Head, this is because moving back the traveller position passed through of yarn that solution comes out from cylinder yarn line is top in cylinder yarn line and in bobbin Axis on, if the outer circumference surface of thread layers is cylindrical, the yarn for moving back the movement that solution comes out is easy excircle with thread layers Face scrapes, and causes frictional force larger, end breakage rate is naturally high, and the outer circumference surface of present thread layers is changed to up-small and down-big circular cone Shape is just matched with the radiation motion profile for moving back the yarn that solution comes out, this has been significantly reduced the yarn and yarn of movement The frictional force of the outer circumference surface of layer, also just considerably reduces the end breakage rate of yarn.
Referring to figure 1 and figure 5, it is further fixedly arranged on overfeeding wheel 6 and tension detector 7 in the rack 1, from spool The yarn exported in fixing seat 2 successively passes through overfeeding wheel 6, tension detector 7 and roller unit 5 to Y tube 4, tension detector 7 The problem of real-time monitoring being carried out to yarn tension in use, prevent yarn breakage.
Specifically, the tension detector 7 includes the mounting rack 71 being fixedly connected with rack 1, and pressure tester 72 is solid Surely be connected on mounting rack 71,72 surface of pressure tester be fixedly connected with pressure transmitting screw rod 74, test rotating plate 73 with Mounting rack 71 is rotatablely connected, and rotating test rotating plate 73 can make test rotating plate 73 be pressed on pressure transmitting 74 surface of screw rod, from yarn The yarn exported in pipe fixing seat 2 passes through test rotating plate 73, and yarn passes through test rotating plate 73, so test turns when tension variation Plate 73 can also change to the pressure of pressure transmitting screw rod 74, this variation can be captured by pressure tester 72, use Person adjusts active winding motor 3 according to the data that pressure tester 72 is tested if necessary, to guarantee that yarn tension is not too big Or it is too small.
As shown in Figure 1, the rack 1 is fixedly connected with limit plate 8, there is limit hole 9 on the limit plate 8, yarn is logical Limit hole 9 is crossed, such limit hole 9 can play the role of certain collect to yarn.
The specific embodiments described herein are merely examples of the spirit of the present invention.The utility model institute Belonging to those skilled in the art can make various modifications or additions to the described embodiments or using similar Mode substitute, but without departing from the spirit of the present application or beyond the scope of the appended claims.
Although rack 1, fixed seat of yarn-unwinding tube 2, active winding motor 3, Y tube 4, roller unit is used more herein 5, overfeeding wheel 6, tension detector 7, limit plate 8, limit hole 9, pedestal 41, tube body 42, high-precision wire rail 51, sliding block 52, roller Mounting plate 53, link block 54, roller 55, driving mechanism 56, Double-directional rotary motor 57, driving piece 58, drive rod 59, mounting rack 71, the terms such as pressure tester 72, test rotating plate 73, pressure transmitting screw rod 74, outer loop bar 591, built-in bar 592, but do not arrange A possibility that except other terms are used.The use of these items is only for be more convenient to describe and explain the sheet of the utility model Matter;It is contrary to the spirit of the present invention to interpret them as any one of the additional limitations.

Claims (10)

  1. Winding shaping bobbin-winding machine of spool 1. a kind of high-precision Y shape is weaved, including rack (1), fixed seat of yarn-unwinding tube (2) fixation are set It sets in rack (1) lower section, rack (1) upper section is equipped with active winding motor (3), it is characterised in that: further include and actively roll up The Y tube (4) being drivingly connected around motor (3), roller unit (5) and the side of Y tube (4) fit, and roller unit (5) can Mobile or rotation occurs along the side of Y tube (4).
  2. Winding shaping bobbin-winding machine of spool 2. high-precision Y shape as described in claim 1 is weaved, it is characterised in that: sieve Drawing unit (5) includes the high-precision wire rail (51) being fixedly connected with rack (1), and sliding block (52) and high-precision wire rail (51) sliding connect It connects, sliding block (52) upper surface is fixedly connected with roller mounting plate (53), and the both ends of roller mounting plate (53) are symmetrically arranged with One end of link block (54), link block (54) is extended roller mounting plate (53) towards the direction close to Y tube (4), roller (55) It is rotatablely connected between two pieces of link blocks (54), and with link block (54), the roller (55) fits with Y tube (4), also Including driving mechanism (56), the driving mechanism (56) is connected with the side of link block (54), and can drive sliding block (52) edge High-precision wire rail (51) moves reciprocatingly.
  3. Winding shaping bobbin-winding machine of spool 3. high-precision Y shape as claimed in claim 2 is weaved, it is characterised in that: the drive Motivation structure (56) includes the Double-directional rotary motor (57) being fixed on rack (1), driving piece (58) and Double-directional rotary motor (57) it is drivingly connected, drive rod (59) one end and driving piece (58) rotation connection, the other end are connected with the side of link block (54) It connects.
  4. Winding shaping bobbin-winding machine of spool 4. high-precision Y shape as claimed in claim 3 is weaved, it is characterised in that: the drive Lever (59) includes that the outer loop bar (591) of one end and driving piece (58) rotation connection and one end are located in outer loop bar (591), another The built-in bar (592) for extending outer loop bar (591) and being connected with the side of link block (54) is held, the built-in bar (592) can The rotation relative to outer loop bar (591) occurs, and built-in bar (592) is located at part and outer loop bar (591) in outer loop bar (591) Inner surface palette.
  5. Winding shaping bobbin-winding machine of spool 5. high-precision Y shape as described in claim 1 is weaved, it is characterised in that: the Y shape Pipe (4) includes integrally formed pedestal (41) and tube body (42), and the pedestal (41) is in truncated cone-shaped, and tube body (42) is connected to pedestal (41) cross-sectional area small end.
  6. Winding shaping bobbin-winding machine of spool 6. high-precision Y shape as claimed in claim 5 is weaved, it is characterised in that: the pipe The cross-sectional area of body (42) gradually becomes smaller from close to pedestal (41) to far from pedestal (41).
  7. Winding shaping bobbin-winding machine of spool 7. high-precision Y shape as claimed in claim 6 is weaved, it is characterised in that: the pipe The side of body (42) cross section and the angle α of vertical direction are less than or equal to 8 degree.
  8. Winding shaping bobbin-winding machine of spool 8. high-precision Y shape as described in claim 1 is weaved, it is characterised in that: the machine Overfeeding wheel (6) and tension detector (7) are further fixedly arranged on frame (1), the yarn exported from fixed seat of yarn-unwinding tube (2) successively passes through Overfeeding wheel (6), tension detector (7) and roller unit (5) are crossed to Y tube (4).
  9. Winding shaping bobbin-winding machine of spool 9. high-precision Y shape as claimed in claim 8 is weaved, it is characterised in that: described Force detector (7) includes the mounting rack (71) being fixedly connected with rack (1), and pressure tester (72) is fixedly connected on mounting rack (71) on, pressure tester (72) surface is fixedly connected with pressure transmitting screw rod (74), tests rotating plate (73) and mounting rack (71) it is rotatablely connected, and rotating test rotating plate (73) can make test rotating plate (73) be pressed on pressure transmitting screw rod (74) surface, from The yarn exported on fixed seat of yarn-unwinding tube (2) passes through test rotating plate (73).
  10. Winding shaping bobbin-winding machine of spool 10. high-precision Y shape as described in claim 1 is weaved, it is characterised in that: the machine Frame (1) is fixedly connected with limit plate (8), has limit hole (9) on the limit plate (8).
CN201821119931.3U 2018-07-16 2018-07-16 High-precision Y shape weaving winding shaping bobbin-winding machine of spool Active CN208776065U (en)

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Application Number Priority Date Filing Date Title
CN201821119931.3U CN208776065U (en) 2018-07-16 2018-07-16 High-precision Y shape weaving winding shaping bobbin-winding machine of spool

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821119931.3U CN208776065U (en) 2018-07-16 2018-07-16 High-precision Y shape weaving winding shaping bobbin-winding machine of spool

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111392501A (en) * 2020-03-30 2020-07-10 浙江凯成智能设备股份有限公司 Horn tube embroidery thread tray cone winder
CN112723011A (en) * 2020-12-29 2021-04-30 浙江理工大学 Large package tower type cone yarn and electronic forming method and device thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111392501A (en) * 2020-03-30 2020-07-10 浙江凯成智能设备股份有限公司 Horn tube embroidery thread tray cone winder
CN112723011A (en) * 2020-12-29 2021-04-30 浙江理工大学 Large package tower type cone yarn and electronic forming method and device thereof

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