CN205062290U - Yarn device is received in afterturn - Google Patents

Yarn device is received in afterturn Download PDF

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Publication number
CN205062290U
CN205062290U CN201520700080.1U CN201520700080U CN205062290U CN 205062290 U CN205062290 U CN 205062290U CN 201520700080 U CN201520700080 U CN 201520700080U CN 205062290 U CN205062290 U CN 205062290U
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China
Prior art keywords
afterturn
axle
belt pulley
frame
rove
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Withdrawn - After Issue
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CN201520700080.1U
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Chinese (zh)
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赵凯
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Individual
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Individual
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Abstract

The utility model provides a yarn device is received in afterturn belongs to spinning machine technical field. It includes that the admission machine constructs, afterturn mechanism, but the last afterturn axle of afterturn mechanism and lower afterturn axle horizontal slip setting are in the frame, and upper and lower tangent setting, it is provided with soon to opposite afterturn stripe with lower afterturn axle surface to go up the afterturn axle, the one end that goes up the connecting rod articulates on last swing bearing, the other end articulates the one end at last afterturn axle, down the one end of connecting rod hinges under on the swing bearing, the other end articulates the one end of afterturn axle under, be provided with the helical shape guide way more than two or two on the guiding axle that the admission machine constructs, one side of guiding axle is provided with the second belt pulley with the axle center, second belt pulley and first belt pulley are connected through the drive belt, first belt pulley and driving motor coaxial coupling, the roving axle passes through pressure spring near on the guiding axle. The utility model discloses the realization is evenly convoluteed the roving of afterturn one -tenth epaxially in the roving, and simple structure is with low costs.

Description

Yarn feeding device is received in a kind of afterturn
Technical field
The utility model relates to technical field of textile machine, and particularly yarn feeding device is received in a kind of afterturn.
Background technology
Wool spinning is spinning process process wool fibre being processed into yarn.Wool fibre, based on wool, also comprises the special animal hair fibers such as goat cashmere, the rabbit hair, mohair, yak hair.Wool spinning process also can be used for that wool type chemical fiber purely spins, blending and natural fibre blended with other.Spin with pure the wool fabric, knitted fabric, woollen blanket etc. of knitting system with blending wool yarn, there is warming, moisture absorption, springiness and the feature such as wear-resisting.The main process of wool spinning is: first the mixed hair ratio that the raw material such as wool fibre and chemical fibre is arranged according to product mixed, then the wool fibre after mixing oiling is carried out combing, impurity elimination by wool spinning roller and clearer card, form fleece, the fleece exported passes through paving hair curtain by Overbridge device, fleece is converted into band shape, back and forth be laid on fortune hair curtain, enter next connection carding machine after mixed and continue combing, the fleece being joined combing machine for fur output by most end is divided into a lot of fillet through itemize mechanism, be wound in after becoming rove by rubbing plate afterturn on rove axle, process finally by fine sand operation.At present in order to the rove after allowing afterturn complete evenly is wound on rove axle, all to be swung back and forth realization by rove axle by swing mechanism, complex structure, cost is high.
Utility model content
The purpose of this utility model is to provide a kind of afterturn and receives yarn feeding device, and the rove realized afterturn becomes evenly is wound on rove axle, and structure is simple, and cost is low.
The utility model solves the technical scheme that its technical problem adopts:
Yarn feeding device is received in a kind of afterturn, and it comprises frame, take-up mechanism, afterturn mechanism, described take-up mechanism is arranged on the front side of afterturn mechanism, and described afterturn mechanism comprises oscillating motor, bent axle, flying wheel, upper connecting rod, lower link, upper gantry pillars, lower swing bearing, upper afterturn axle, lower afterturn axle, described upper afterturn axle and lower afterturn axle can horizontally slip and be arranged in frame, and upper and lower tangent setting, described upper afterturn axle and lower afterturn axle surface are provided with the contrary afterturn striped of rotation direction, described bent axle is also rotatably arranged in frame, and and upper afterturn axle, lower afterturn axle is vertical, described bent axle is coaxially connected with oscillating motor, described upper gantry pillars and lower swing bearing are all rotatably arranged on bent axle, and staggered 180 degree, one end of described upper connecting rod is hinged on gantry pillars, and the other end is hinged on one end of afterturn axle, one end of described lower link is hinged on lower swing bearing, the other end is hinged on one end of lower afterturn axle, and described flying wheel concentric is arranged on the upper end of bent axle, and described take-up mechanism comprises drive motors, first belt pulley, second belt pulley, drive belt, the axis of guide, rove axle, shaft stool, holddown spring, the described axis of guide is rotatably arranged in frame, the described axis of guide is provided with two or more spiral gathering sill, the side concentric of the described axis of guide is provided with the second belt pulley, described second belt pulley is connected by driving belt with the first belt pulley, described first belt pulley is coaxially connected with drive motors, described rove axle is rotatably arranged on the upper end of shaft stool, the lower end of described shaft stool is hinged in frame, described holddown spring two ends are connecting axle bearing and frame respectively, and described rove axle is abutted against on the axis of guide by holddown spring.
Further, the other end of described upper afterturn axle and lower afterturn axle is all provided with positive stop.
Further, described drive motors is stepper motor.
The utility model compared to the prior art, have the following advantages and effect: drive motors drives the first belt pulley quick rotation, then by driving belt and the second belt pulley to drive axis of guide quick rotation, rove axle rove realized in afterturn mechanism under the axis of guide drives travels forward, and evenly receives yarn.Oscillating motor drives crank rotation simultaneously, and upper gantry pillars and lower swing bearing drive upper afterturn axle and lower afterturn axle to swing back and forth by upper connecting rod and lower link, and itemize afterturn is become rove.Upper afterturn axle and lower afterturn axle surface are provided with the contrary afterturn striped of rotation direction, and the afterturn striped that rotation direction is contrary is conducive to realizing the quick afterturn to wool top.Flying wheel concentric is arranged on the upper end of bent axle, is conducive to the smooth rotation realizing bent axle.The axis of guide is provided with two or more spiral gathering sill, gathering sill achieves and is wound on uniformly on rove axle by rove.Drive motors is stepper motor, and the rotating speed of motor, the position of stopping only depending on pulse signal frequencyand umber of pulse, and not by the impact of load change, stable.Rove axle abuts against on the axis of guide by holddown spring, is conducive to receiving yarn.The rove that the utility model realizes afterturn becomes evenly is wound on rove axle, and structure is simple, and cost is low.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is top view of the present utility model.
Fig. 3 is the structural scheme of mechanism of the utility model afterturn mechanism.
In figure: 1. frame, 2. take-up mechanism, 3. afterturn mechanism, 4. oscillating motor, 5. bent axle, 6. flying wheel, 7. go up connecting rod, 8. lower link, 9. go up gantry pillars, 10. lower swing bearing, afterturn axle on 11., 12. times afterturn axles, 13. drive motors, 14. first belt pulleys, 15. second belt pulleys, 16. drive belt, 17. axis of guides, 18. rove axles, 19. shaft stools, 20. holddown springs, 21. gathering sills, 22. positive stops.
Detailed description of the invention
Below in conjunction with accompanying drawing, also by embodiment, the utility model is described in further detail, and following examples are that the utility model is not limited to following examples to explanation of the present utility model.
As shown in Figure 1, Figure 2 and Figure 3, yarn feeding device is received in a kind of afterturn, and it comprises frame 1, take-up mechanism 2, afterturn mechanism 3, and afterturn mechanism 3 achieves and wool top afterturn is become rove, afterturn is effective, and the rove that take-up mechanism 2 achieves afterturn becomes evenly is wound on rove axle 18.Described take-up mechanism 2 is arranged on the front side of afterturn mechanism 3.Described afterturn mechanism 3 comprises oscillating motor 4, bent axle 5, flying wheel 6, upper connecting rod 7, lower link 8, upper gantry pillars 9, lower swing bearing 10, upper afterturn axle 11, lower afterturn axle 12, described upper afterturn axle 11 and lower afterturn axle 12 can horizontally slip and be arranged in frame 1, and upper and lower tangent setting, described upper afterturn axle 11 and lower afterturn axle 12 surface are provided with the contrary afterturn striped of rotation direction, and the afterturn striped that rotation direction is contrary is conducive to realizing the quick afterturn to wool top.The other end of described upper afterturn axle 11 and lower afterturn axle 12 is all provided with positive stop 22, effectively limits the side-to-side movement scope of afterturn axle 11 and lower afterturn axle 12.Described bent axle 5 is also rotatably arranged in frame 1, and vertical with upper afterturn axle 11, lower afterturn axle 12.Described bent axle 5 is coaxially connected with oscillating motor 4, and described upper gantry pillars 9 and lower swing bearing 10 are all rotatably arranged on bent axle 5, and staggered 180 degree.One end of described upper connecting rod 7 is hinged on gantry pillars 9, and the other end is hinged on one end of afterturn axle 11, and one end of described lower link 8 is hinged on lower swing bearing 10, and the other end is hinged on one end of lower afterturn axle 12.Described flying wheel 6 concentric is arranged on the upper end of bent axle 5, is conducive to the smooth rotation realizing bent axle 5.Described take-up mechanism 2 comprises drive motors 13, first belt pulley 14, second belt pulley 15, drives belt 16, the axis of guide 17, rove axle 18, shaft stool 19, holddown spring 20, the described axis of guide 17 is rotatably arranged in frame 1, the described axis of guide 17 is provided with two or more spiral gathering sill 21, and gathering sill 21 achieves and is wound on uniformly on rove axle 18 by rove.The side concentric of the described axis of guide 17 is provided with the second belt pulley 15, described second belt pulley 15 is connected by driving belt 16 with the first belt pulley 14, described first belt pulley 14 is coaxially connected with drive motors 13, described drive motors 13 is stepper motor, and the rotating speed of motor, the position of stopping only depending on pulse signal frequencyand umber of pulse, and not by the impact of load change, stable.Described rove axle 18 is rotatably arranged on the upper end of shaft stool 19, the lower end of described shaft stool 19 is hinged in frame 1, described holddown spring 20 two ends are connecting axle bearing 19 and frame 1 respectively, and described rove axle 18 is abutted against on the axis of guide 17 by holddown spring 20, is conducive to receiving yarn.
Pass through technique scheme, when yarn feeding device use is received in a kind of afterturn of the utility model, drive motors 13 drives the first belt pulley 14 quick rotation, then by driving belt 16 and the second belt pulley 15 to drive the axis of guide 17 quick rotation, rove axle 18 rove realized in afterturn mechanism 3 under the axis of guide 17 drives travels forward, and evenly receives yarn.Oscillating motor 4 is with dynamic crankshaft 5 to rotate simultaneously, and upper gantry pillars 9 and lower swing bearing 10 drive upper afterturn axle 11 and lower afterturn axle 12 to swing back and forth by upper connecting rod 7 and lower link 8, and itemize afterturn is become rove.The rove that the utility model realizes afterturn becomes evenly is wound on rove axle 18, and structure is simple, and cost is low.
Above content described in this description is only to the explanation of the utility model example.The utility model person of ordinary skill in the field can make various amendment or supplements or adopt similar mode to substitute to described specific embodiment; only otherwise depart from the content of the utility model description or surmount this scope as defined in the claims, protection domain of the present utility model all should be belonged to.

Claims (3)

1. a yarn feeding device is received in afterturn, it is characterized in that: it comprises frame, take-up mechanism, afterturn mechanism, described take-up mechanism is arranged on the front side of afterturn mechanism, and described afterturn mechanism comprises oscillating motor, bent axle, flying wheel, upper connecting rod, lower link, upper gantry pillars, lower swing bearing, upper afterturn axle, lower afterturn axle, described upper afterturn axle and lower afterturn axle can horizontally slip and be arranged in frame, and upper and lower tangent setting, described upper afterturn axle and lower afterturn axle surface are provided with the contrary afterturn striped of rotation direction, described bent axle is also rotatably arranged in frame, and and upper afterturn axle, lower afterturn axle is vertical, described bent axle is coaxially connected with oscillating motor, described upper gantry pillars and lower swing bearing are all rotatably arranged on bent axle, and staggered 180 degree, one end of described upper connecting rod is hinged on gantry pillars, and the other end is hinged on one end of afterturn axle, one end of described lower link is hinged on lower swing bearing, the other end is hinged on one end of lower afterturn axle, and described flying wheel concentric is arranged on the upper end of bent axle, and described take-up mechanism comprises drive motors, first belt pulley, second belt pulley, drive belt, the axis of guide, rove axle, shaft stool, holddown spring, the described axis of guide is rotatably arranged in frame, the described axis of guide is provided with two or more spiral gathering sill, the side concentric of the described axis of guide is provided with the second belt pulley, described second belt pulley is connected by driving belt with the first belt pulley, described first belt pulley is coaxially connected with drive motors, described rove axle is rotatably arranged on the upper end of shaft stool, the lower end of described shaft stool is hinged in frame, described holddown spring two ends are connecting axle bearing and frame respectively, and described rove axle is abutted against on the axis of guide by holddown spring.
2. yarn feeding device is received in a kind of afterturn according to claim 1, it is characterized in that: the other end of described upper afterturn axle and lower afterturn axle is all provided with positive stop.
3. yarn feeding device is received in a kind of afterturn according to claim 1, it is characterized in that: described drive motors is stepper motor.
CN201520700080.1U 2015-09-11 2015-09-11 Yarn device is received in afterturn Withdrawn - After Issue CN205062290U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520700080.1U CN205062290U (en) 2015-09-11 2015-09-11 Yarn device is received in afterturn

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520700080.1U CN205062290U (en) 2015-09-11 2015-09-11 Yarn device is received in afterturn

Publications (1)

Publication Number Publication Date
CN205062290U true CN205062290U (en) 2016-03-02

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CN201520700080.1U Withdrawn - After Issue CN205062290U (en) 2015-09-11 2015-09-11 Yarn device is received in afterturn

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105177773A (en) * 2015-09-11 2015-12-23 赵凯 Yarn twisting and winding device
CN107366056A (en) * 2017-08-31 2017-11-21 浙江依蕾毛纺织有限公司 A kind of delivery device
CN110127439A (en) * 2019-04-23 2019-08-16 浙江秋黎服饰有限公司 A kind of wool top transmission winding device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105177773A (en) * 2015-09-11 2015-12-23 赵凯 Yarn twisting and winding device
CN107366056A (en) * 2017-08-31 2017-11-21 浙江依蕾毛纺织有限公司 A kind of delivery device
CN110127439A (en) * 2019-04-23 2019-08-16 浙江秋黎服饰有限公司 A kind of wool top transmission winding device

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Granted publication date: 20160302

Effective date of abandoning: 20170412