CN103938331A - Interlacing yarn forming device - Google Patents

Interlacing yarn forming device Download PDF

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Publication number
CN103938331A
CN103938331A CN201410181544.2A CN201410181544A CN103938331A CN 103938331 A CN103938331 A CN 103938331A CN 201410181544 A CN201410181544 A CN 201410181544A CN 103938331 A CN103938331 A CN 103938331A
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CN
China
Prior art keywords
yarn
arm
hole
locking device
groove
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Granted
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CN201410181544.2A
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Chinese (zh)
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CN103938331B (en
Inventor
陈祥基
陈经锐
李的好
利文海
马德皓
郑燕芳
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Beautiful Scientific And Technical Industry Co Ltd Of Fujian Wan Jia
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Beautiful Scientific And Technical Industry Co Ltd Of Fujian Wan Jia
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Priority to CN201410181544.2A priority Critical patent/CN103938331B/en
Publication of CN103938331A publication Critical patent/CN103938331A/en
Application granted granted Critical
Publication of CN103938331B publication Critical patent/CN103938331B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The invention relates to an interlacing yarn forming device. The interlacing yarn forming device comprises yarn tensioning devices and an air injection device, wherein the two yarn tensioning devices correspond to one air injection device; each yarn tensioning device comprises a support, a fixing groove, a movable device and an enamel clamping piece, the fixing groove is longitudinally formed in the support, and an opening is formed in the front side face of the fixing groove; the movable device comprises a movable rod, a supporting rod, a guide wire, a pulley and an article containing base, the movable rod is arranged on the inner wall face of one side wall of the fixing groove, the upper end of the movable rod extends out of the fixing groove, one end of the supporting rod is fixed to the upper end of the movable rod, one end of the guide wire is fixed to the other end of the supporting rod, the other end of the guide wire winds through the pulley and is connected with the article containing base, the clamping piece comprises two or more bent grabbing parts same in length and a connecting rod, and the air injection device comprises an air stream pipe into which high-pressure air stream is fed, a plurality of branch pipes distributed on the air stream pipe, a jet nozzle, a locking device and a spring. The interlacing yarn forming device has the advantages of being small in amount of consumed air, favorable for forming interlacing joints of interlacing yarn, convenient and fast to operate and the like.

Description

Interlacing yarn shaped device
Technical field
The present invention relates to a kind of interlacing yarn shaped device.
Background technology
Tighten two yarns after stretching, high pressure draught blow under sth. made by twisting effect, interval is mutually bonding, forms with the periodic strand of network knot, this strand is called interlacing yarn.On the one hand, in the production process of interlacing yarn, for spraying the key position that the nozzle of the air jet system of high pressure draught, particularly air jet system is interlacing yarn forming technology, the quality of its performance, is determining all many-sides such as complexity of finished silk quality, air consumption and operation; On the other hand, because just often more fluffy, crude and curling from line cylinder yarn out, if two fluffy curling yarns are directly entered for spraying the air jet system of high pressure draught, can not be well bonding, and interlacing effect is bad, interlacing knot skewness; Therefore, be necessary to design and a kind ofly integrate thread tension device and for spraying the interlacing yarn shaped device of the air jet system of high pressure draught, make effective, the interlacing knot moderate length of the interlacing of the interlacing yarn that forms, interlacing knot is evenly distributed and it is low to move back knot rate, this interlacing yarn shaped device also should have the feature that air consumption is few in addition.
Summary of the invention
The object of the present invention is to provide and a kind ofly integrate thread tension device and for spraying the interlacing yarn shaped device of the air jet system of high pressure draught.
Object of the present invention is achieved through the following technical solutions: a kind of interlacing yarn shaped device, is characterized in that: it comprises thread tension device and air jet system, and 2 cover thread tension devices are corresponding to 1 cover air jet system; Described thread tension device comprises support, be longitudinally located on support and leading flank arranges holddown groove, head and 1 pair or 1 pair of above enamel intermediate plate longitudinally distributing of opening;
Described head comprises motion bar, pole, leading line, pulley and storage seat, described motion bar is arranged on the internal face of a wherein sidewall of holddown groove and can rotates around the axle center of self, holddown groove is extended in the upper end of motion bar, the upper end of motion bar and pole are fixed on perpendicular to motion bar in one end of pole, the other end of pole is fixed in one end of described leading line, the other end of leading line is walked around pulley and is connected with storage seat, its middle pulley is fixedly arranged on from holddown groove wherein the extended extension rod of outside wall surface of a sidewall, extension rod is positioned at the upper end of holddown groove and extends towards the rear of holddown groove, the leading line of walking around sheave segment is parallel with motion bar,
Described intermediate plate comprises 2 or 2 above identical curved grabbing and connecting rod of length, described curved cross section of grabbing is an isosceles trapezoid that there is no bottom, and the middle part on trapezoidal upper base cave inward into one circular-arc, above curved of 2 or 2 grabbed alignment, equidistant, parallel distribution from top to down, described connecting rod is 2, and 2 connecting rods are connected to curved trapezoidal two waist bottoms of grabbing and connecting rod by 2 or 2 above curved formation intermediate plates that are connected to form one of grabbing; The upper base of every pair of intermediate plate is staggered in opposite directions, and one of them intermediate plate is fixed in by self a connecting rod on the internal face of a wherein sidewall of holddown groove and forms clamp sheet, another intermediate plate is fixed in the moving intermediate plate of formation on motion bar by the connecting rod of self, and then moving intermediate plate can be rotated according to the axis of its connecting rod; Moving intermediate plate curved grabbed circular-arc position and clamp sheet, and curved to grab circular-arc position upper and lower when overlapping, between form and can penetrate the also through hole A of tensioning for yarn;
Described air jet system comprise be connected with high pressure draught gas flow tube, several are distributed in arm, nozzle, locking device and spring in gas flow tube, the tubular axis of described arm and the tubular axis of gas flow tube are perpendicular, and the bottom of arm is connected with the tube wall of gas flow tube and arm is connected with gas flow tube, described locking device offers for middle the thin plate that through hole B and length are greater than arm pipe external diameter, in one end of thin plate, extend downwards one with the perpendicular extension thin slice of thin plate, thin plate is integral formation locking device with extension slice-shaped, the size of the diameter of described through hole B and the bore of arm matches, the upper end of described arm is provided with transverse concave groove, the both sides of groove are provided with and can be limited to the chute in groove for the sheet section of locking device, the both sides of groove are placed in respectively chute, the sheet section of locking device can be slided in transverse concave groove, the through hole B of locking device communicates with the pore of arm, described spring is between the extension thin slice of arm and locking device, and one end of spring is fixed in the pipe outside wall surface of arm, and the other end of spring is fixed on and extends on thin slice,
Described nozzle comprises yarn-guide tube and the blast tube that can penetrate for yarn, and the tubular axis line of yarn-guide tube and the tubular axis line of blast tube are perpendicular, and the middle part of yarn-guide tube is connected with the upper end of blast tube, and blast tube is communicated with yarn-guide tube; The diameter of described blast tube equates with the internal diameter of arm, on blast tube top, outer tube wall is provided with annular stop groove, insert in through hole B and arm pore successively the bottom of blast tube, make when slide-and-lock device, when the axis of arm is departed from the center of circle of through hole B, the edge of through hole B is stuck in the annular stop groove of blast tube.
Compared to prior art, the invention has the advantages that: 1) the present invention integrates thread tension device and for spraying the air jet system of high pressure draught, the interlacing of the interlacing yarn therefore obtaining with this invention is effective, interlacing knot moderate length, interlacing knot is evenly distributed and it is low to move back knot rate.2) the present invention also has advantages of that air consumption is few.3) because the cross section of yarn-guide tube pore of the present invention be shaped as inverted water-drop-shaped, so be more conducive to the formation of swirl gas, make it to be more conducive to the formation of network knot.4) simple operation of the present invention: on the one hand, thread tension device of the present invention is simple to operate only need add counterweight on storage seat, just can reach the object that clamps intermediate plate, thereby make from the yarn tensioning of through hole A process; On the other hand, air jet system of the present invention in use, only need first Compress Spring that nozzle is inserted in the arm with locking device, then trip spring, allow locking device slide, the edge of the through hole B of locking device is stuck in the annular stop groove of blast tube, thereby nozzle is fixed, pass into afterwards high pressure draught just can, and locking device can remain in the annular stop groove that is stuck in blast tube.
Accompanying drawing explanation
Fig. 1 is the structural representation of a kind of embodiment of thread tension device of the present invention.
Fig. 2 is the position relationship schematic diagram of arm of the present invention and gas flow tube.
Fig. 3 is the structural representation of a kind of embodiment of locking device of the present invention.
Fig. 4 is a kind of view that locking device of the present invention and arm are used in conjunction with.
Fig. 5 is the front view of Fig. 4.
Fig. 6 is the another kind of view that locking device of the present invention and arm are used in conjunction with.
Fig. 7 is the structural representation of a kind of embodiment of nozzle of the present invention.
Fig. 8 is the use view of air jet system of the present invention.
Label declaration: 1 support, 2 holddown grooves, 3 are curvedly grabbed, 4 connecting rods, 5 through hole A, 6 motion bars, 7 poles, 8 leading lines, 9 pulleys, 10 storage seats, 11 gas flow tube, 12 arms, 13 locking devices, 14 yarn-guide tubes, 15 blast tubes, 16 fixed bars, 17 enamel circles, 18 projections, 19 spacing holes, 20 yarns, 21 interlacing yarns, 22 grooves, 23 through hole B, 24 extension rods, 25 springs, 26 limited impressions.
The specific embodiment
Below in conjunction with Figure of description and embodiment, content of the present invention is elaborated:
As shown in Fig. 1 and 8: a kind of interlacing yarn shaped device, it comprises thread tension device and air jet system, and 2 cover thread tension devices are corresponding to 1 cover air jet system; In Fig. 8,2 yarns 20 pass also tensioning from through hole A5, the enamel circle 17 of 2 cover thread tension devices respectively, penetrate in yarn-guide tube 14 pores of same air jet system, high pressure draught out flows to arm 12 from gas flow tube 11, ejection from blast tube 15, and spray in the pore of yarn-guide tube 14, high pressure draught is under the effect of yarn-guide tube 14 pores, form eddy current, the swirl gas forming rushes on two yarns 20 that are arranged in yarn-guide tube 14 pores, make two yarns 20 intervals mutually bonding, form the interlacing yarn 21 with periodically network is tied.
As shown in Figure 1: described thread tension device comprises support 1, be longitudinally located on support 1 and leading flank arranges holddown groove 2, head and 1 pair or 1 pair of above enamel intermediate plate longitudinally distributing of opening; Because just, from the often more fluffy bending of line cylinder yarn 20 out, use the intermediate plate of enamel material can prevent the appearance of hook yarn phenomenon, and yarn 20 can be clamped and tensionings, for later stage yarn 20 enters air jet system, form interlacing yarn 21 and prepare;
As shown in Figure 1: described head comprises motion bar 6, pole 7, leading line 8, pulley 9 and storage seat 10, described motion bar 6 is arranged on the internal face of a wherein sidewall of holddown groove 2 and can rotates around the axle center of self, holddown groove 2 is extended in the upper end of motion bar 6, the upper end of motion bar 6 and pole 7 are fixed on perpendicular to motion bar 6 in one end of pole 7, the other end of pole 7 is fixed in one end of described leading line 8, the other end of leading line 8 is walked around pulley 9 and is connected with storage seat 10, its middle pulley 9 is fixedly arranged on from holddown groove 2 wherein the extended extension rod 24 of outside wall surface of a sidewall, extension rod 24 is positioned at the upper end of holddown groove and extends towards the rear of holddown groove 2, the leading line 8 of walking around pulley 9 parts is parallel with motion bar 6,
Described intermediate plate comprises that identical curved of the above length of 2 or 2 grab 3 and connecting rod 4, described curved 3 the cross section of grabbing is an isosceles trapezoid that there is no bottom, and the middle part on trapezoidal upper base cave inward into one circular-arc, above curved of 2 or 2 grabbed 3 alignment, equidistant, parallel distributions from top to down, described connecting rod 4 is 2, and 2 connecting rods 4 are connected to curved 3 trapezoidal two waist bottoms and the connecting rod 4 of grabbing by 2 or 2 above curved 3 formation intermediate plates that are connected to form one of grabbing; The upper base of every pair of intermediate plate is staggered in opposite directions, and one of them intermediate plate is fixed in by self a connecting rod 4 on the internal face of a wherein sidewall of holddown groove 2 and forms clamp sheet, another intermediate plate is fixed in the moving intermediate plate of formation on motion bar 6 by the connecting rod 4 of self, and then moving intermediate plate can be rotated according to the axis of its connecting rod 4; Moving intermediate plate curved grabbed 3 circular-arc positions and clamp sheet, and the curved 3 circular-arc positions of grabbing are upper and lower when overlapping, between form and can penetrate the also through hole A5 of tensioning for yarn 20;
In Fig. 1, article one, just from line cylinder out and fluffy curling yarn 20, from being positioned at the enamel circle 17 of holddown groove 2 tops, pass, under the guide effect of enamel circle 17, penetrate through hole A5, from being positioned at the enamel circle 17 of holddown groove 2 belows, pass afterwards, if add counterweight on storage seat 10, leading line 8 is drawn, impel pole 7 counterclockwise to rotate, once pole 7 rotates counterclockwise, drive motion bar 6 also counterclockwise to rotate, thereby the intermediate plate being connected with motion bar 6 is moved counterclockwise, through hole A5 will diminish gradually like this, and then clamping yarn 20, thereby by yarn 20 tensionings from through hole 5 processes.By applying the counterweight of different model, clamp sheet can have different gears from the clamping degree between moving intermediate plate, and the size of through hole A5 has different gears, can regulate as required the size of through hole A5, thereby adjusts the tensioning degree to yarn 20.
As shown in Fig. 2, Fig. 3, Fig. 4, Fig. 5, Fig. 6, Fig. 7: as described in air jet system comprise be connected with high pressure draught gas flow tube 11, several are distributed in arm 12, nozzle, locking device 13 and spring 25 in gas flow tube 11, the tubular axis of described arm 12 and the tubular axis of gas flow tube 11 are perpendicular, and the bottom of arm 12 is connected with the tube wall of gas flow tube 11 and arm 12 is connected with gas flow tube 11, described locking device 13 is that centre offers through hole B23 and length is greater than the thin plate that arm 12 is managed external diameters, in one end of thin plate, extend downwards one with the perpendicular extension thin slice of thin plate, thin plate is integral and forms locking device 13 with extension slice-shaped, the size of the bore of the diameter of described through hole B23 and arm 12 matches, the upper end of described arm 12 is provided with transverse concave groove 22, the both sides of groove 22 are provided with and can be limited to the chute in groove 22 for the sheet section of locking device 13, the both sides of groove 22 are placed in respectively chute, the sheet section of locking device 13 can be slided in transverse concave groove 22, the through hole B23 of locking device 13 communicates with the pore of arm 12, described spring 25 is between arm 12 and the extension thin slice of locking device 13, and one end of spring 25 is fixed in the pipe outside wall surface of arm 12, and the other end of spring 25 is fixed on and extends on thin slice,
Described nozzle comprises yarn-guide tube 14 and the blast tube 15 that can penetrate for yarn 20, and the tubular axis line of yarn-guide tube 14 and the tubular axis line of blast tube 15 are perpendicular, and the middle part of yarn-guide tube 14 is connected with the upper end of blast tube 15, and blast tube 15 is communicated with yarn-guide tube 14; The diameter of described blast tube 15 equates with the internal diameter of arm 12, at blast tube 15 top outer tube walls, be provided with annular stop groove 26, insert in through hole B23 and arm 12 pores successively the bottom of blast tube 15, make when slide-and-lock device 13, when the axis of arm 12 is departed from the center of circle of through hole B23, the edge of through hole B23 is stuck in the annular stop groove 26 of blast tube 15.
As shown in Figure 4, Figure 5, when artificial Compress Spring 25, the projection 18 of arm 12 is positioned at one end of spacing hole 19, and the center of circle of through hole B23 is positioned on the axis of arm 12, now the blast tube of nozzle 15 can be inserted in the pore of through hole B23 and arm 12, follow trip spring 25, there is reset and get back to the length of spring 25 own in spring 25, in the process resetting at spring 25, locking device 13 will be in groove 22 slip, until the projection 18 of arm 12 is while being positioned at the other end of spacing hole 19, locking device 13 stops sliding, spring 25 is in natural length, as Fig. 6, shown in Fig. 8, now the axis of arm 12 is departed from the center of circle of through hole B23, the edge of the through hole B23 of locking device 13 just can be stuck in the annular stop groove 26 of blast tube 15 like this, and nozzle is fixed in the pore of arm 12, prevent high pressure draught, nozzle is washed to arm 12.When high pressure draught constantly sprays, locking device 13 can slide unavoidably, but because there is the existence of spring 25, as long as it is that spring 25 1 is when compressed that locking device 13 1 slides, spring 25 can reset at once, locking device 13 can be remained be stuck in state in the annular stop groove 26 of blast tube 15, prevent that nozzle from being washed from arm 12.
As need take out nozzle, as long as artificial Compress Spring 25, allow the edge of through hole B23 leave the annular stop groove 26 of blast tube 15, just nozzle can be taken out.
As shown in Figure 1: described thread tension device also comprises yarn-guiding loop, described yarn-guiding loop lays respectively at the above and below of holddown groove 2, described yarn-guiding loop comprises fixed bar 16 and the enamel circle 17 that can pass for yarn 20, one end of described fixed bar 16 is fixed on support 1, the other end of fixed bar 16 and enamel circle 17 are connected to form one, described enamel circle 17 aligns with through hole A5, yarn 20 is passed after the enamel circle 17 of the yarn-guiding loop that is positioned at holddown groove 2 tops, penetrate through hole A5, from being positioned at the enamel circle 17 of the yarn-guiding loop of holddown groove 2 belows, pass afterwards.Shown enamel circle 17 has guide effect, and because its smooth surface can effectively prevent the appearance of hook yarn phenomenon.
As Fig. 4, shown in Fig. 6: the upper end of described arm 12, the side of arm 12 pores is provided with the projection 18 perpendicular to arm 12 upper ends, on locking device 13, the side of through hole B23 is provided with the spacing hole 19 that width and protruding 18 sizes match, described spacing hole 19 be shaped as strip shape, and parallel with the glide direction of locking device 13, make along groove 22, to slide into projection 18 while being positioned at one end of spacing hole 19 when locking device 13, the center of circle of through hole B23 is positioned on the axis of arm 12, when locking device 13 slides into projection 18 while being positioned at the other end of spacing hole 19 along groove 22, the axis of arm 12 is departed from the center of circle of through hole B23.
As shown in Figure 7: the cross section of described yarn-guide tube 14 pores be shaped as inverted water-drop-shaped.
Just because of the cross section of yarn-guide tube 14 pores be shaped as inverted water-drop-shaped, can form swirl gas after making high pressure draught enter the pore of yarn-guide tube 14, make it to be more conducive to the formation of network knot.

Claims (4)

1. an interlacing yarn shaped device, is characterized in that: it comprises thread tension device and air jet system, and 2 cover thread tension devices are corresponding to 1 cover air jet system; Described thread tension device comprises support (1), is longitudinally located at holddown groove (2), head and 1 pair or the 1 pair of above enamel intermediate plate longitudinally distributing that the upper and leading flank of support (1) arranges opening;
Described head comprises motion bar (6), pole (7), leading line (8), pulley (9) and storage seat (10), described motion bar (6) is arranged on the internal face of a wherein sidewall of holddown groove (2) and can rotates around the axle center of self, holddown groove (2) is extended in the upper end of motion bar (6), the upper end of motion bar (6) and pole (7) are fixed on perpendicular to motion bar (6) in one end of pole (7), the other end of pole (7) is fixed in one end of described leading line (8), the other end of leading line (8) is walked around pulley (9) and is connected with storage seat (10), its middle pulley (9) is fixedly arranged on from holddown groove (2) wherein the extended extension rod of outside wall surface (24) of a sidewall, extension rod (24) is positioned at the upper end of holddown groove (2) and extends towards the rear of holddown groove (2), the leading line (8) of walking around pulley (9) part is parallel with motion bar (6),
Described intermediate plate comprises 2 or 2 above identical curved grabbing (3) and connecting rods (4) of length, the cross section of described curved grabbing (3) is an isosceles trapezoid that there is no bottom, and the middle part on trapezoidal upper base cave inward into one circular-arc, more than 2 or 2 curved grabbing (3) alignd from top to down, equidistant, parallel distribution, described connecting rod (4) is 2, and 2 connecting rods (4) are connected to the trapezoidal two waist bottoms of curved grabbing (3) and connecting rod (4) by 2 or 2 above curved grabbing (3) the formation intermediate plate that is connected to form one; The upper base of every pair of intermediate plate is staggered in opposite directions, and one of them intermediate plate is fixed in by self a connecting rod (4) on the internal face of a wherein sidewall of holddown groove (2) and forms clamp sheet, another intermediate plate is fixed in the moving intermediate plate of the upper formation of motion bar (6) by the connecting rod (4) of self, and then moving intermediate plate can be rotated according to the axis of its connecting rod (4); The moving circular-arc position of curved grabbing (3) of intermediate plate and the circular-arc position of curved grabbing (3) of clamp sheet are upper and lower when overlapping, between form and can supply yarn (20) to penetrate the also through hole A (5) of tensioning;
Described air jet system comprise be connected with high pressure draught gas flow tube (11), several are distributed in arm (12), nozzle, locking device (13) and spring (25) in gas flow tube (11), the tubular axis of the tubular axis of described arm (12) and gas flow tube (11) is perpendicular, and the bottom of arm (12) is connected with the tube wall of gas flow tube (11) and arm (12) is connected with gas flow tube (11), described locking device (13) offers the thin plate that through hole B (23) and length are greater than arm (12) pipe external diameter for centre, in one end of thin plate, extend downwards one with the perpendicular extension thin slice of thin plate, thin plate is integral and forms locking device (13) with extension slice-shaped, the size of the bore of the diameter of described through hole B (23) and arm (12) matches, the upper end of described arm (12) is provided with transverse concave groove (22), the both sides of groove (22) are provided with and can supply the sheet section of locking device (13) to be limited to the chute in groove (22), the both sides of groove (22) are placed in respectively chute, the sheet section of locking device (13) can be slided in transverse concave groove (22), the through hole B (23) of locking device (13) communicates with the pore of arm (12), described spring (25) is positioned between arm (12) and the extension thin slice of locking device (13), one end of spring (25) is fixed in the pipe outside wall surface of arm (12), and the other end of spring (25) is fixed on and extends on thin slice,
Described nozzle comprises yarn-guide tube (14) and the blast tube (15) that can supply yarn (20) to penetrate, the tubular axis line of the tubular axis line of yarn-guide tube (14) and blast tube (15) is perpendicular, the middle part of yarn-guide tube (14) is connected with the upper end of blast tube (15), and blast tube (15) is communicated with yarn-guide tube (14); The diameter of described blast tube (15) equates with the internal diameter of arm (12), on blast tube (15) top, outer tube wall is provided with annular stop groove (26), insert in through hole B (23) and arm (12) pore successively the bottom of blast tube (15), make when slide-and-lock device (13), when the axis of arm (12) is departed from the center of circle of through hole B (23), the edge of through hole B (23) is stuck in the annular stop groove (26) of blast tube (15).
2. interlacing yarn shaped device according to claim 1, it is characterized in that: described thread tension device also comprises yarn-guiding loop, described yarn-guiding loop lays respectively at the above and below of holddown groove (2), described yarn-guiding loop comprises fixed bar (16) and the enamel circle (17) that can supply yarn (20) to pass, one end of described fixed bar (16) is fixed on support (1), the other end of fixed bar (16) and enamel circle (17) are connected to form one, described enamel circle (17) aligns with through hole A (5), make yarn (20) through being positioned at after the enamel circle (17) of yarn-guiding loop of holddown groove (2) top, penetrate through hole A (5), from being positioned at the enamel circle (17) of the yarn-guiding loop of holddown groove (2) below, pass afterwards.
3. interlacing yarn shaped device according to claim 1, it is characterized in that: the upper end of described arm (12), the side of arm (12) pore is provided with the projection (18) perpendicular to arm (12) upper end, on locking device (13), the side of through hole B (23) is provided with width and the spacing hole (19) that matches of projection (18) size, described spacing hole (19) be shaped as strip shape, and parallel with the glide direction of locking device (13), make when locking device (13) slides into projection (18) and is positioned at one end of spacing hole (19) along groove (22), the center of circle of through hole B (23) is positioned on the axis of arm (12), when locking device (13) slides into projection (18) and is positioned at the other end of spacing hole (19) along groove (22), the axis of arm (12) is departed from the center of circle of through hole B (23).
4. the air jet system for interlacing yarn moulding according to claim 1, is characterized in that: the cross section of described yarn-guide tube (14) pore be shaped as inverted water-drop-shaped.
CN201410181544.2A 2014-04-30 2014-04-30 Interlacing yarn shaped device Expired - Fee Related CN103938331B (en)

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Application Number Priority Date Filing Date Title
CN201410181544.2A CN103938331B (en) 2014-04-30 2014-04-30 Interlacing yarn shaped device

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Application Number Priority Date Filing Date Title
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CN103938331B CN103938331B (en) 2016-03-02

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3468114A (en) * 1967-07-13 1969-09-23 Nelson Silk Ltd Method of and apparatus for making an interlaced yarn
US4598538A (en) * 1984-09-14 1986-07-08 Moore Jr George F Method and apparatus for producing an air texturized yarn
US5008992A (en) * 1988-10-15 1991-04-23 Barmag Ag Method of producing a bulked composite yarn
US5014404A (en) * 1989-01-12 1991-05-14 Smith Kenneth M Air entangled yarn
US6209298B1 (en) * 1998-05-19 2001-04-03 Bridgestone Corporation Process for the manufacture of a dipped tire cord fabric made of organic fiber cords including cord joint portions
EP1818433A1 (en) * 2006-02-10 2007-08-15 Aiki Riotech Corporation Yarn processing nozzle
CN102162156A (en) * 2010-02-24 2011-08-24 林耿霈 Yarn twisting device preventing nozzle blockage
CN202220234U (en) * 2011-08-11 2012-05-16 浙江恒逸高新材料有限公司 Net forming device used for producing interlaced yarn
CN203795060U (en) * 2014-04-30 2014-08-27 福建万家丽科技实业有限公司 Air injection device for forming interlacing yarns

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3468114A (en) * 1967-07-13 1969-09-23 Nelson Silk Ltd Method of and apparatus for making an interlaced yarn
US4598538A (en) * 1984-09-14 1986-07-08 Moore Jr George F Method and apparatus for producing an air texturized yarn
US5008992A (en) * 1988-10-15 1991-04-23 Barmag Ag Method of producing a bulked composite yarn
US5014404A (en) * 1989-01-12 1991-05-14 Smith Kenneth M Air entangled yarn
US6209298B1 (en) * 1998-05-19 2001-04-03 Bridgestone Corporation Process for the manufacture of a dipped tire cord fabric made of organic fiber cords including cord joint portions
EP1818433A1 (en) * 2006-02-10 2007-08-15 Aiki Riotech Corporation Yarn processing nozzle
CN102162156A (en) * 2010-02-24 2011-08-24 林耿霈 Yarn twisting device preventing nozzle blockage
CN202220234U (en) * 2011-08-11 2012-05-16 浙江恒逸高新材料有限公司 Net forming device used for producing interlaced yarn
CN203795060U (en) * 2014-04-30 2014-08-27 福建万家丽科技实业有限公司 Air injection device for forming interlacing yarns

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