CN211897530U - Yarn rod tail wire shearing mechanism - Google Patents

Yarn rod tail wire shearing mechanism Download PDF

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Publication number
CN211897530U
CN211897530U CN201921819245.1U CN201921819245U CN211897530U CN 211897530 U CN211897530 U CN 211897530U CN 201921819245 U CN201921819245 U CN 201921819245U CN 211897530 U CN211897530 U CN 211897530U
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China
Prior art keywords
shearing
yarn
tail
stick
yarn stick
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CN201921819245.1U
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Chinese (zh)
Inventor
张家春
王强
马海涛
韩孝春
司守国
黄建军
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Hangzhou Ruiguan Technology Co Ltd
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Hangzhou Ruiguan Technology Co Ltd
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Abstract

The utility model discloses a yarn stick tail shearing mechanism, which comprises a bod, set up the feed inlet that supplies the yarn stick to get into and the discharge gate that supplies the yarn stick output on the organism, the organism is including being used for carrying out the shearing station of cuting to yarn stick tail to and be used for carrying the material conveying unit through shearing station department and export via the discharge gate from the yarn stick that the feed inlet got into, it is provided with the shearing unit to cut station department. The material conveying unit comprises a material groove used for loading yarn rods and a rotary driving mechanism used for driving the material groove to rotate so that the yarn rods can rotate to the shearing station, and the discharge port is located on one side of the machine body corresponding to the rotating direction of the material groove. The utility model discloses in can be continuous carry the yarn stick, carry out continuous tail-line shearing to each yarn stick, form a shearing assembly line, improved the processing treatment efficiency of yarn stick greatly.

Description

Yarn rod tail wire shearing mechanism
Technical Field
The utility model belongs to the technical field of the textile processing, concretely relates to yarn stick tail wire shearing mechanism.
Background
In an industrial process, yarn production generally comprises the following steps: (1) a spinning stage: typically ring spinning, to produce a yarn rod comprising a yarn rod body and yarn wound onto the yarn rod; (2) a winding step: the yarn is unwound from the body of the rod, cleaned of defects and rewound into a package containing a greater quantity of yarn. The winding process is much faster than spinning, so that a small number of winding units or stations, about several tens, can complete the production of a large number of yarn units, about several thousands. Generally, in a yarn bar tube from a spinning machine, a yarn end is wound around a yarn bar tube package or the bottom of the tube by a predetermined number of turns, and the yarn end cut by a pair of scissors is inserted into the inside of the tube. The existing cutting devices have low cutting efficiency because the yarn end (yarn end) needs to be cut first before the yarn end is inserted.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a yarn stick tail wire shearing mechanism improves tail wire shearing efficiency.
The technical scheme of the utility model is that: the utility model provides a yarn stick tail shearing mechanism, includes the organism, set up the feed inlet that supplies the yarn stick to get into and the discharge gate that supplies the yarn stick output on the organism, the organism is including being used for carrying out the shearing station of cuting to yarn stick tail to and be used for carrying the material conveying unit through shearing station department and export via the discharge gate from the yarn stick that the feed inlet got into, it is provided with the shearing unit to cut station department.
The utility model discloses well yarn stick gets into through feed inlet department, through shearing the station under the transport of conveying unit, shearing station department, the tail-wire of shearing unit on to the yarn stick is sheared, cuts after accomplishing, through the discharge gate output.
The utility model discloses well material conveying unit's structural style has a plurality ofly, as preferred, material conveying unit rotates so that the yarn stick rotates to the rotary driving mechanism who cuts station department including the silo that is used for loading the yarn stick and being used for driving the silo, the discharge gate is located organism and one side that the silo direction of rotation corresponds. The utility model discloses in can get into the silo through the feed inlet, then the rotation of rotary driving mechanism drive silo for the yarn stick is rotatory to shearing station department and cuts, cuts after accomplishing, and the silo continues to rotate, then under the effect of combining self gravity in rotatory in-process, falls down from the silo, and discharge via the discharge gate department.
The utility model discloses in, the silo is rotatory to the in-process of shearing the station with the yarn stick, comes down from the silo in order to prevent that the yarn stick, as preferred, one side that the organism is relative with the discharge gate position is provided with the guard flap who is used for preventing that the yarn stick from dropping from the silo.
The utility model discloses well silo's structural style has the multiple, in order to improve machining efficiency, as preferred, the silo is separated for a plurality of along circumference arranges, and can correspond with the feed inlet position storage area respectively under rotary driving mechanism's drive. Yarn rods can be continuously conveyed through each material storage area, and the treatment efficiency is improved.
The utility model discloses well shearing station, the position setting mode of feed inlet and discharge gate etc. has a plurality ofly, for example, it is located the organism top to cut the station, the feed inlet is located two sides of organism respectively, rotatory silo, make one of them storage area correspond with the feed inlet position, then the yarn stick gets into in this storage area, then rotatory silo, make the storage area who carries the yarn stick rotate to organism top department, cut station department promptly, then cut the unit and carry out the tail wire to this yarn stick and cut, after the shearing is accomplished, the silo continues to rotate along the original direction, under the effect of gravity, drop and discharge gate department discharge from the silo.
The utility model discloses well storage area's structural style also has the multiple quantity condition, as preferred, storage area is four.
Preferably, the rotary drive mechanism comprises a stepper motor. When rotating through step motor drive silo, can set up step-by-step size, for example when storage area is four, during the feeding, the yarn stick is located the below, cuts the station and is located the top, so step motor can drive the rotatory 90 degrees in storage area, can make the yarn stick rotate to shearing station department, and adjacent storage area then rotates simultaneously to feeding department, can improve conveying efficiency through this kind of mode.
The utility model discloses well shear unit's structural style has a plurality ofly, as preferred, shear unit is including being used for sucking the mechanism of induced drafting that the tail-wire on the yarn stick has been inhaled and being used for shearing the mechanism of shearing of the tail-wire that the mechanism of induced drafting has been inhaled. The utility model discloses in can suck the tail-wire on the yarn stick through the mechanism that induced drafts, then the mechanism was sheared to the rethread can. The utility model discloses well shearing mechanism cuts the cylinder of piece shearing movement including shearing the piece and drive. The air suction mechanism can adopt various structural forms, such as connection with a suction fan.
Preferably, the air suction mechanism comprises an air suction sleeve arranged on the machine body and positioned at the shearing unit, an air suction connecting pipe connected with the air suction sleeve and an external air suction machine, and a valve arranged on the air suction connecting pipe. The utility model discloses in induced draft the cover can adopt telescopic cover structural style that induced drafts, induced draft the cover and take the inlet scoop to move forward through the cylinder, the gate is opened simultaneously, because induced draft take over is connected with the suction fan, after opening the valve, inhales the tail-wire on the yarn stick, the tail-wire is under the effect of suction, drifts about to induced draft cover department, then the tail-wire shearing that the mechanism will drift about.
In order to facilitate the cutting of the tail, a pressing mechanism for pressing the yarn rod conveyed to the cutting station is preferably further included. Before the tail-wire is cut, the utility model discloses in can also compress tightly the yarn stick through hold-down mechanism, prevent that the yarn stick from removing to in the shearing of yarn stick tail-wire.
The utility model discloses well hold-down mechanism's structural style has a plurality ofly, as preferred, hold-down mechanism includes the clamp plate and is used for driving the cylinder that compresses tightly that the clamp plate removed.
Compared with the prior art, the beneficial effects of the utility model are embodied in:
the utility model discloses in can be continuous carry the yarn stick, carry out continuous tail-line shearing to each yarn stick, form a shearing assembly line, improved the processing treatment efficiency of yarn stick greatly.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view of another view angle of the present invention.
Detailed Description
As shown in fig. 1 and 2, the utility model discloses a machine body, set up the feed inlet 1 that supplies the yarn stick to get into and supply the discharge gate 2 of yarn stick output on the machine body, the machine body is including being used for carrying out the shearing station of cuting to the yarn stick tail wire to and be used for carrying the yarn stick that gets into from feed inlet 1 and through the material conveying unit who cuts station department and export via discharge gate 2, cuts station department and is provided with the shearing unit.
The utility model discloses well yarn stick gets into through 1 departments of feed inlet, through shearing the station under the transport of conveying unit, shearing station department, the tail-wire of shearing unit on to the yarn stick is sheared, cuts after accomplishing, exports through discharge gate 2.
The utility model discloses well material conveying unit's structural style has a plurality ofly, for example the material conveying unit including be used for loading yarn excellent silo 3 and be used for driving 3 rotations of silo so that the yarn excellent rotates to the rotary driving mechanism who cuts station department, discharge gate 2 is located the organism and the 3 one side that the direction of rotation corresponds of silo. The utility model discloses in can get into in the silo 3 through feed inlet 1, then the rotation driving mechanism drive silo 3 is rotatory for the yarn stick is rotatory to shearing station department and cuts, cuts after accomplishing, and silo 3 continues to rotate, then under the effect of combining self gravity in rotatory in-process, falls down from silo 3, and discharge 2 departments via the discharge gate. In order to facilitate the shearing of the tail wire, the utility model discloses in still including being used for carrying to the hold-down mechanism 8 that the yarn stick of shearing station department compressed tightly. Before the tail-wire is cut, the utility model discloses in can also compress tightly the yarn stick through hold-down mechanism 8, prevent that the yarn stick from removing to in the shearing of yarn stick tail-wire. The utility model discloses well hold-down mechanism 8's structural style has a plurality ofly, and hold-down mechanism 8 includes the clamp plate and is used for driving the cylinder that compresses tightly that the clamp plate removed for example.
The utility model discloses in, silo 3 is rotatory to the in-process of shearing the station with the yarn stick, in order to prevent that the yarn stick from droing from silo 3, is provided with the guard flap 4 that is used for preventing that the yarn stick from dropping from silo 3 in the organism one side relative with 2 positions of discharge gate.
The utility model discloses well silo 3's structural style has a plurality ofly, and in order to improve machining efficiency, under the general condition, silo 3 separates for a plurality of along circumference arrange, and can respectively with the storage area that feed inlet 1 position corresponds under rotary driving mechanism's drive. The utility model discloses well storage area's structural style also has the multiple quantity condition, and storage area is four for example, the utility model discloses in can be through the continuous transport yarn stick in each storage area, improve the treatment effeciency.
The utility model discloses well shearing station, the position setting mode of feed inlet 1 and discharge gate 2 etc. has a plurality ofly, for example, shearing station is located the organism top, feed inlet 1 is located two sides of organism respectively, rotatory silo 3, make one of them storage area correspond with feed inlet 1 position, then the yarn stick gets into in this storage area, then rotatory silo 3, make the storage area who carries the yarn stick rotate to organism top department, cut station department promptly, then cut the unit and carry out the tail wire to this yarn stick and cut, after the shearing is accomplished, silo 3 continues to rotate along the original direction, under the effect of gravity, come off and discharge from discharge gate 2 from silo 3.
In addition, the middle rotation driving mechanism 10 of the present invention includes a stepping motor. When rotating through step motor drive silo 3, can set up step-by-step size, for example when storage area is four, during the feeding, the yarn stick is located the below, cuts the station and is located the top, so step motor can drive storage area rotatory 90 degrees, can make the yarn stick rotate to cutting station department, and adjacent storage area then rotates to feeding department simultaneously, can improve conveying efficiency through this kind of mode.
The utility model discloses well shearing unit's structural style has a plurality ofly, the utility model discloses well shearing unit is including being used for the mechanism that induced drafts that the tail-wire on the yarn stick was inhaled and being used for shearing the mechanism 5 that shears of the tail-wire that the mechanism that induced drafts was inhaled. The utility model discloses in can suck up the tail-wire on the yarn stick through the mechanism that induced drafts, then the rethread is sheared 5 and is can. The utility model discloses well shearing mechanism 5 is including shearing the piece and the cylinder of drive shearing part shearing movement. The air suction mechanism can adopt various structural forms, such as connection with a suction fan.
In addition, as shown in fig. 1 and fig. 2, the utility model discloses well mechanism of induced drafting is including setting up on the organism and being located the cover 6 that induced drafts of shearing unit department, being connected with the cover 6 that induced drafts and being connected with outside suction fan and the valve 9 that sets up on the takeover 7 that induced drafts. The utility model discloses in induced draft cover 6 can adopt the telescopic cover 6 structural style that induced drafts, induced draft takeover 7 is connected with the suction fan, after opening the valve, has inhaled the tail-wire on the yarn stick, the tail-wire is under the effect of suction, drifts away to induced draft cover 6 departments, then shears the tail-wire that mechanism 5 will drift away and cut.

Claims (10)

1. The utility model provides a yarn stick tail wire shearing mechanism, includes the organism, its characterized in that, set up the feed inlet that supplies the yarn stick to get into and the discharge gate that supplies the yarn stick output on the organism, the organism is including being used for carrying out the shearing station of cuting to yarn stick tail wire to and be used for carrying the material conveying unit through shearing station department and export via the discharge gate from the yarn stick that the feed inlet got into, it is provided with the shearing unit to cut station department.
2. The yarn bar tail shearing device as recited in claim 1, wherein the material conveying unit comprises a chute for loading the yarn bar and a rotary driving mechanism for driving the chute to rotate so as to rotate the yarn bar to the shearing station, and the discharge port is positioned on a side of the machine body corresponding to a rotating direction of the chute.
3. The apparatus according to claim 2, wherein the trough is divided into a plurality of storage areas arranged along the circumferential direction and corresponding to the positions of the feeding ports respectively under the driving of the rotary driving mechanism.
4. The apparatus according to claim 3, wherein the number of the magazine areas is four.
5. The yarn bar tail shearing device as claimed in any one of claims 2 to 4, wherein a protective baffle for preventing the yarn bar from falling off the trough is arranged on the side of the machine body opposite to the discharge port.
6. The apparatus of claim 2, wherein the rotary drive mechanism comprises a stepper motor.
7. The yarn bar tail shearing device according to any one of claims 1 to 4 and 6, wherein the shearing unit comprises an air suction mechanism for sucking up the tail on the yarn bar and a shearing mechanism for shearing the tail sucked up by the air suction mechanism.
8. The apparatus for cutting the end of a yarn bar according to claim 7, wherein the air suction mechanism comprises an air suction sleeve disposed on the body at the cutting unit, an air suction nozzle connected to the air suction sleeve and connected to an external air suction fan, and a valve disposed on the air suction nozzle.
9. The yarn bar tail cutting device of claim 8 further comprising a hold down mechanism for holding down a yarn bar fed to the cutting station.
10. The apparatus of claim 9, wherein the hold-down mechanism comprises a platen and a hold-down cylinder for driving the platen to move.
CN201921819245.1U 2019-10-28 2019-10-28 Yarn rod tail wire shearing mechanism Active CN211897530U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921819245.1U CN211897530U (en) 2019-10-28 2019-10-28 Yarn rod tail wire shearing mechanism

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921819245.1U CN211897530U (en) 2019-10-28 2019-10-28 Yarn rod tail wire shearing mechanism

Publications (1)

Publication Number Publication Date
CN211897530U true CN211897530U (en) 2020-11-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921819245.1U Active CN211897530U (en) 2019-10-28 2019-10-28 Yarn rod tail wire shearing mechanism

Country Status (1)

Country Link
CN (1) CN211897530U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110747621A (en) * 2019-10-28 2020-02-04 杭州锐冠科技有限公司 Yarn rod tail wire shearing mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110747621A (en) * 2019-10-28 2020-02-04 杭州锐冠科技有限公司 Yarn rod tail wire shearing mechanism

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