CN205346478U - 8 font fibre pendulum silk machine - Google Patents

8 font fibre pendulum silk machine Download PDF

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Publication number
CN205346478U
CN205346478U CN201521052500.6U CN201521052500U CN205346478U CN 205346478 U CN205346478 U CN 205346478U CN 201521052500 U CN201521052500 U CN 201521052500U CN 205346478 U CN205346478 U CN 205346478U
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China
Prior art keywords
power source
longitudinally
driving mechanism
swing arm
drive mechanism
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Active
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CN201521052500.6U
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Chinese (zh)
Inventor
李忠伟
李忠辉
安军
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Changzhou Dongxi Automation Technology Co Ltd
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Changzhou Dongxi Automation Technology Co Ltd
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Priority to CN201521052500.6U priority Critical patent/CN205346478U/en
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Abstract

The utility model discloses a 8 font fibre pendulum silk machine, it includes: the swinging arms, be used for the installation to carry out the play silk stand pipe that leads to the cellosilk on the swinging arms, horizontal drive mechanism, vertical transmission mechanism, the power supply, the power supply is connected with vertical drive mechanism transmission with horizontal drive mechanism respectively, horizontal drive mechanism and vertical drive mechanism are connected with the swinging arms transmission respectively, and when power supply action and through horizontal drive mechanism drive swinging arms horizontal reciprocal when swinging one time, the power supply passes through vertical transmission mechanism drive swinging arms reciprocal swing twice vertical. The utility model discloses a 8 fonts of cellosilk are put to put evenly neatly, make it obtain good thermal treatment effect in thermal treatment technology.

Description

8-shaped fiber yarn swaying machine
Technical field
This utility model relates to a kind of 8-shaped fiber yarn swaying machine.
Background technology
At present, in spinning production line, the cellosilk of finished product is through frequently with shape modes of emplacement back and forth, this modes of emplacement, in Post isothermal treatment technique, makes cellosilk be unfavorable for obtaining best thermal effectiveness, finds through research, when cellosilk is 8-shaped placement, its thermal effectiveness is best, but in prior art, but without equipment cellosilk 8-shaped can put.
Utility model content
Technical problem to be solved in the utility model is the defect overcoming prior art, it is provided that a kind of 8-shaped fiber yarn swaying machine, it achieves filametntary 8-shaped and puts, and puts uniformly neat so that it is obtain good thermal effectiveness in Technology for Heating Processing.
In order to solve above-mentioned technical problem, the technical solution of the utility model is: a kind of 8-shaped fiber yarn swaying machine, and it includes:
Swing arm, for installing the wire vent guide pipe that cellosilk is led on described swing arm;
Transverse transmission mechanism;
Longitudinal drive mechanism;
Power source, described power source is in transmission connection with transverse transmission mechanism and longitudinal drive mechanism respectively, and described transverse transmission mechanism and longitudinal drive mechanism are in transmission connection with swing arm respectively;And when power source action and when driving swing arm reciprocally swinging one time in the horizontal by transverse transmission mechanism, described power source drives swing arm reciprocally swinging twice in the vertical by longitudinal drive mechanism.
Further providing the concrete structure of a kind of concrete transverse transmission mechanism, described transverse transmission mechanism includes:
Teeter bar, the middle part of described teeter bar is for rotating fixed position, and the middle part of described swing arm is hinged on teeter bar;
Reciprocally swinging driving mechanism, described reciprocally swinging driving mechanism is connected between the end of power source and teeter bar, in order to when power source action, and transverse reciprocating wobbling action is done in the end that power source orders about teeter bar by transverse reciprocating swing driving mechanism.
Further provide the concrete structure of a kind of concrete reciprocally swinging driving mechanism, described reciprocally swinging driving mechanism includes spill spin block and traveller, described spill spin block is arranged on the output shaft of power source, described traveller is arranged on spill spin block, and traveller is offset to the rotation axis of spill spin block, having chute on described teeter bar, described traveller is sliding to be fitted in chute.
Adjustable further for the transverse reciprocating amplitude of fluctuation enabling swing arm, described reciprocally swinging driving mechanism also includes lateral adjustments screw, described lateral adjustments screw is threadedly attached on spill spin block, and lateral adjustments screw is threaded connection with traveller simultaneously, described traveller is sliding to be fitted on spill spin block, traveller relative position on spill spin block is regulated, thus regulating the reciprocally swinging amplitude of teeter bar by screwing lateral adjustments screw on spill spin block.
Further providing the concrete structure of a kind of longitudinal drive mechanism, described longitudinal drive mechanism includes:
Longitudinally reciprocating motion assembly, described longitudinally reciprocating motion assembly is provided with traverse motion chute;
Longitudinally reciprocal driving mechanism, longitudinally reciprocal driving mechanism is connected between power source and longitudinally reciprocating motion assembly, in order to when power source action, and power source orders about longitudinally reciprocating motion assembly by longitudinally reciprocal driving mechanism and does longitudinally reciprocal rectilinear motion;
With lever, described one end with lever is hinged with described swing arm, and the other end with lever is stuck in traverse motion chute, and when power source action, with lever relative to longitudinally reciprocating motion assembly traverse motion in traverse motion chute.
Further provide the concrete structure of a kind of longitudinally reciprocal driving mechanism, described longitudinally reciprocal driving mechanism includes transmission component, swiveling wheel, slide block and connecting rod, power source drives swiveling wheel to rotate by transmission component, slide block is arranged on swiveling wheel, one end of connecting rod is hinged on slide block, the other end of connecting rod and longitudinally reciprocating motion member hinges.
Adjustable further for the longitudinally reciprocal amplitude of fluctuation making swing arm, described longitudinally reciprocal driving mechanism also includes longitudinally regulating screw, the described screw that longitudinally regulates is threadedly attached on swiveling wheel, and longitudinally regulate screw to be threaded connection with slide block simultaneously, described slide block is sliding to be fitted on swiveling wheel, screw adjusting slider relative position on swiveling wheel is longitudinally regulated, thus regulating the longitudinally reciprocal rectilinear motion amplitude of longitudinally reciprocating motion assembly by screwing on swiveling wheel.
Further provide the structure of a kind of concrete transmission component, described transmission component includes active rotation axle, bevel gear pair and driven rotating shaft, the output shaft of active rotation axle and power source is in transmission connection, one bevel gear of bevel gear pair is arranged on active rotation axle, another bevel gear of bevel gear pair is arranged on driven rotating shaft, and described swiveling wheel is arranged on driven rotating shaft.
After have employed technique scheme, cellosilk is led by the wire vent guide pipe on swing arm, when power source action, when power source drives swing arm reciprocally swinging one time in the horizontal by transverse transmission mechanism, described power source drives swing arm reciprocally swinging twice in the vertical by longitudinal drive mechanism, thus the cellosilk gone out from wire vent guide pipe being put into the structure of 8-shaped, thus putting uniformly neat so that it is obtain good thermal effectiveness in Technology for Heating Processing;Additionally, this utility model is provided with lateral adjustments screw and longitudinally regulates screw, by screwing the horizontal amplitude of oscillation of lateral adjustments screw scalable wrapping wire, by screwing the longitudinal amplitude of oscillation longitudinally regulating screw scalable wrapping wire, wrapping wire feature size can also be regulated and by regulating the speed of motor by the length of replacing wire vent guide pipe, reach to control by regulating wire winding speed the purpose of yield.
Accompanying drawing explanation
Fig. 1 is the structural representation of 8-shaped fiber yarn swaying machine of the present utility model.
Detailed description of the invention
In order to make content of the present utility model be easier to be clearly understood, below according to specific embodiment and in conjunction with accompanying drawing, this utility model is described in further detail.
As it is shown in figure 1, a kind of 8-shaped fiber yarn swaying machine, it includes:
Swing arm 1, for installing the wire vent guide pipe 2 that cellosilk is led on described swing arm 1;
Transverse transmission mechanism;
Longitudinal drive mechanism;
Power source 3, described power source 3 is in transmission connection with transverse transmission mechanism and longitudinal drive mechanism respectively, and described transverse transmission mechanism and longitudinal drive mechanism are in transmission connection with swing arm 1 respectively;And when power source 3 action and when driving swing arm 1 reciprocally swinging one time in the horizontal by transverse transmission mechanism, described power source 3 drives swing arm 1 reciprocally swinging twice in the vertical by longitudinal drive mechanism.Cellosilk is led by the wire vent guide pipe 2 on swing arm 1, when power source 3 action, when power source 3 drives swing arm 1 reciprocally swinging one time in the horizontal by transverse transmission mechanism, described power source 3 drives swing arm 1 reciprocally swinging twice in the vertical by longitudinal drive mechanism, thus the cellosilk gone out from wire vent guide pipe 2 being put into the structure of 8-shaped, thus putting uniformly neat so that it is obtain good thermal effectiveness in Technology for Heating Processing;This utility model can also regulate wrapping wire feature size and by regulating the speed of motor by the length of replacing wire vent guide pipe 2, reaches to control the purpose of yield by regulating wire winding speed.
As it is shown in figure 1, described transverse transmission mechanism includes:
Teeter bar 4, the middle part of described teeter bar 4 is for rotating fixed position, and the middle part of described swing arm 1 is hinged on teeter bar 4;
Reciprocally swinging driving mechanism, described reciprocally swinging driving mechanism is connected between the end of power source 3 and teeter bar 4, during with box lunch power source 3 action, transverse reciprocating wobbling action is done in the end that power source 3 orders about teeter bar 4 by transverse reciprocating swing driving mechanism.
As shown in Figure 1, described reciprocally swinging driving mechanism includes spill spin block 5 and traveller 6, described spill spin block 5 is arranged on the output shaft of power source 3, described traveller 6 is arranged on spill spin block 5, and traveller 6 is offset to the rotation axis of spill spin block 5, having chute 41 on described teeter bar 4, described traveller 6 is sliding to be fitted in chute 41.
As shown in Figure 1, described reciprocally swinging driving mechanism also includes lateral adjustments screw 7, described lateral adjustments screw 7 is threadedly attached on spill spin block 5, and lateral adjustments screw 7 is threaded connection with traveller 6 simultaneously, described traveller 6 is sliding to be fitted on spill spin block 5, the traveller 6 relative position on spill spin block 5 is regulated, thus regulating the reciprocally swinging amplitude of teeter bar 4 by screwing lateral adjustments screw 7 on spill spin block 5.This utility model is provided with lateral adjustments screw 7, by screwing the horizontal amplitude of oscillation of lateral adjustments screw 7 scalable wrapping wire.
The operation principle of transverse transmission mechanism is as follows: power source 3 action, block 5 is rotated rotate, so that traveller 6 does eccentric rotational motion, swing thus driving the end of teeter bar 4 to do transverse reciprocating, owing to the middle part of teeter bar 4 is for rotating fixed position, thus driving swing arm 1 reciprocally swinging in the horizontal once.
As it is shown in figure 1, described longitudinal drive mechanism includes:
Longitudinally reciprocating motion assembly 8, described longitudinally reciprocating motion assembly 8 is provided with traverse motion chute 81;
Longitudinally reciprocal driving mechanism, longitudinally reciprocal driving mechanism is connected between power source 3 and longitudinally reciprocating motion assembly 8, in order to when power source 3 action, and power source 3 orders about longitudinally reciprocating motion assembly 8 by longitudinally reciprocal driving mechanism and does longitudinally reciprocal rectilinear motion;
With lever 9, described one end with lever 9 is hinged with described swing arm 1, and the other end with lever 9 is stuck in traverse motion chute 81, and when power source 3 action, with lever 9 relative to longitudinally reciprocating motion assembly 8 traverse motion in traverse motion chute 81.
As shown in Figure 1, described longitudinally reciprocal driving mechanism includes transmission component, swiveling wheel 101, slide block 102 and connecting rod 103, power source 3 drives swiveling wheel 101 to rotate by transmission component, slide block 102 is arranged on swiveling wheel 101, one end of connecting rod 103 is hinged on slide block 102, and the other end of connecting rod 103 is hinged with longitudinally reciprocating motion assembly 8.
As shown in Figure 1, described longitudinally reciprocal driving mechanism also includes longitudinally regulating screw 104, the described screw 104 that longitudinally regulates is threadedly attached on swiveling wheel 101, and longitudinally regulate screw 104 to be threaded connection with slide block 102 simultaneously, described slide block 102 is sliding to be fitted on swiveling wheel 101, screw 104 adjusting slider 102 relative position on swiveling wheel 101 is longitudinally regulated, thus regulating the longitudinally reciprocal rectilinear motion amplitude of longitudinally reciprocating motion assembly 8 by screwing on swiveling wheel 101.This utility model is provided with and longitudinally regulates screw 104, by screwing the longitudinal amplitude of oscillation longitudinally regulating screw 104 scalable wrapping wire.
As shown in Figure 1, described transmission component includes active rotation axle 105, bevel gear pair 106 and driven rotating shaft 107, the output shaft of active rotation axle 105 and power source 3 is in transmission connection, one bevel gear of bevel gear pair 106 is arranged on active rotation axle 105, another bevel gear of bevel gear pair 106 is arranged on driven rotating shaft 107, and described swiveling wheel 101 is arranged on driven rotating shaft 107.
The operation principle of longitudinal drive mechanism is as follows: power source 3 action, wheel 101 rotation is rotated by transmission component, then pass through slide block 102 and connecting rod 103 drives the longitudinally reciprocal rectilinear motion of longitudinally reciprocating motion assembly 8, thus driving with lever 9 action, swing arm 1 is finally driven to do longitudinally reciprocal swing, owing to longitudinally reciprocating motion assembly 8 being provided with traverse motion chute 81, swing arm 1 is realized when doing longitudinally reciprocal swing thereby through with lever 9, also do transverse reciprocating to swing simultaneously, and swing arm transverse reciprocating swings once, longitudinally reciprocal swing twice.
As it is shown in figure 1, described power source 3 is motor, but it is not limited to this.
Particular embodiments described above; this utility model is solved the technical problem that, technical scheme and beneficial effect have further described; it is it should be understood that; the foregoing is only specific embodiment of the utility model; it is not limited to this utility model; all within spirit of the present utility model and principle, any amendment of making, equivalent replacement, improvement etc., should be included within protection domain of the present utility model.

Claims (9)

1. a 8-shaped fiber yarn swaying machine, it is characterised in that it includes:
Swing arm (1), described swing arm (1) is upper for installing the wire vent guide pipe (2) that cellosilk is led;
Transverse transmission mechanism;
Longitudinal drive mechanism;
Power source (3), described power source (3) is in transmission connection with transverse transmission mechanism and longitudinal drive mechanism respectively, and described transverse transmission mechanism and longitudinal drive mechanism are in transmission connection with swing arm (1) respectively;And when power source (3) action and when driving swing arm (1) reciprocally swinging one time in the horizontal by transverse transmission mechanism, described power source (3) drives swing arm (1) reciprocally swinging twice in the vertical by longitudinal drive mechanism.
2. 8-shaped fiber yarn swaying machine according to claim 1, it is characterised in that: described transverse transmission mechanism includes:
Teeter bar (4), the middle part of described teeter bar (4) is for rotating fixed position, and the middle part of described swing arm (1) is hinged on teeter bar (4);
Reciprocally swinging driving mechanism, described reciprocally swinging driving mechanism is connected between the end of power source (3) and teeter bar (4), during with box lunch power source (3) action, transverse reciprocating wobbling action is done in the end that power source (3) orders about teeter bar (4) by transverse reciprocating swing driving mechanism.
3. 8-shaped fiber yarn swaying machine according to claim 2, it is characterized in that: described reciprocally swinging driving mechanism includes spill spin block (5) and traveller (6), described spill spin block (5) is arranged on the output shaft of power source (3), described traveller (6) is arranged on spill spin block (5), and traveller (6) is offset to the rotation axis of spill spin block (5), having chute (41) on described teeter bar (4), described traveller (6) is sliding to be fitted in chute (41).
4. 8-shaped fiber yarn swaying machine according to claim 3, it is characterized in that: described reciprocally swinging driving mechanism also includes lateral adjustments screw (7), described lateral adjustments screw (7) is threadedly attached on spill spin block (5), and lateral adjustments screw (7) is threaded connection with traveller (6) simultaneously, described traveller (6) is sliding to be fitted on spill spin block (5), the traveller (6) relative position on spill spin block (5) is regulated by screwing lateral adjustments screw (7) on spill spin block (5), thus regulating the reciprocally swinging amplitude of teeter bar (4).
5. 8-shaped fiber yarn swaying machine according to claim 1 and 2, it is characterised in that: described longitudinal drive mechanism includes:
Longitudinally reciprocating motion assembly (8), described longitudinally reciprocating motion assembly (8) is provided with traverse motion chute (81);
Longitudinally reciprocal driving mechanism, longitudinally reciprocal driving mechanism is connected between power source (3) and longitudinally reciprocating motion assembly, during with box lunch power source (3) action, power source (3) orders about longitudinally reciprocating motion assembly (8) by longitudinally reciprocal driving mechanism and does longitudinally reciprocal rectilinear motion;
With lever (9), described one end with lever (9) is hinged with described swing arm (1), and the other end with lever (9) is stuck in traverse motion chute (81), and when power source (3) action, with lever (9) relative to longitudinally reciprocating motion assembly (8) traverse motion in traverse motion chute (81).
6. 8-shaped fiber yarn swaying machine according to claim 5, it is characterized in that: described longitudinally reciprocal driving mechanism includes transmission component, swiveling wheel (101), slide block (102) and connecting rod (103), power source (3) drives swiveling wheel (101) to rotate by transmission component, slide block (102) is arranged on swiveling wheel (101), one end of connecting rod (103) is hinged on slide block (102), and the other end of connecting rod (103) is hinged with longitudinally reciprocating motion assembly (8).
7. 8-shaped fiber yarn swaying machine according to claim 6, it is characterized in that: described longitudinally reciprocal driving mechanism also includes longitudinally regulating screw (104), described longitudinal direction regulates screw (104) and is threadedly attached on swiveling wheel (101), and longitudinally regulate screw (104) to be threaded connection with slide block (102) simultaneously, described slide block (102) is sliding to be fitted on swiveling wheel (101), longitudinally screw (104) adjusting slider (102) relative position on swiveling wheel (101) is regulated by screwing on swiveling wheel (101), thus regulating the longitudinally reciprocal rectilinear motion amplitude of longitudinally reciprocating motion assembly (8).
8. the 8-shaped fiber yarn swaying machine according to claim 6 or 7, it is characterized in that: described transmission component includes active rotation axle (105), bevel gear pair (106) and driven rotating shaft (107), the output shaft of active rotation axle (105) and power source (3) is in transmission connection, one bevel gear of bevel gear pair (106) is arranged on active rotation axle (105), another bevel gear of bevel gear pair (106) is arranged on driven rotating shaft (107), and described swiveling wheel (101) is arranged on driven rotating shaft (107).
9. 8-shaped fiber yarn swaying machine according to claim 1, it is characterised in that: described power source (3) is motor.
CN201521052500.6U 2015-12-16 2015-12-16 8 font fibre pendulum silk machine Active CN205346478U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201521052500.6U CN205346478U (en) 2015-12-16 2015-12-16 8 font fibre pendulum silk machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201521052500.6U CN205346478U (en) 2015-12-16 2015-12-16 8 font fibre pendulum silk machine

Publications (1)

Publication Number Publication Date
CN205346478U true CN205346478U (en) 2016-06-29

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201521052500.6U Active CN205346478U (en) 2015-12-16 2015-12-16 8 font fibre pendulum silk machine

Country Status (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105417273A (en) * 2015-12-16 2016-03-23 常州东曦自动化科技有限公司 8-shaped fiber yarn swaying machine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105417273A (en) * 2015-12-16 2016-03-23 常州东曦自动化科技有限公司 8-shaped fiber yarn swaying machine
CN105417273B (en) * 2015-12-16 2018-05-25 常州东曦自动化科技有限公司 8-shaped fiber yarn swaying machine

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