CN108217321A - Ejection type conducting wire nozzle assembly and conducting wire nozzle system - Google Patents

Ejection type conducting wire nozzle assembly and conducting wire nozzle system Download PDF

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Publication number
CN108217321A
CN108217321A CN201810178778.XA CN201810178778A CN108217321A CN 108217321 A CN108217321 A CN 108217321A CN 201810178778 A CN201810178778 A CN 201810178778A CN 108217321 A CN108217321 A CN 108217321A
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CN
China
Prior art keywords
conducting wire
ejector
wire nozzle
tubulose
ejection type
Prior art date
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Pending
Application number
CN201810178778.XA
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Chinese (zh)
Inventor
张晓亚
王雁平
李方前
李志杰
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Guangdong Institute Of Technology
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Guangdong Institute Of Technology
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Institute Of Technology filed Critical Guangdong Institute Of Technology
Priority to CN201810178778.XA priority Critical patent/CN108217321A/en
Publication of CN108217321A publication Critical patent/CN108217321A/en
Pending legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H57/00Guides for filamentary materials; Supports therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H54/00Winding, coiling, or depositing filamentary material
    • B65H54/70Other constructional features of yarn-winding machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2701/00Handled material; Storage means
    • B65H2701/30Handled filamentary material
    • B65H2701/31Textiles threads or artificial strands of filaments

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Jet Pumps And Other Pumps (AREA)

Abstract

The present invention relates to technical field of textile machine, more particularly, to a kind of ejection type conducting wire nozzle assembly and conducting wire nozzle system.The ejection type conducting wire nozzle assembly includes tubulose casing, the first ejector, the second ejector and conducting wire nozzle;First ejector and second ejector are set in tubulose casing, keep at a distance to form the helical pitch slided for conducting wire nozzle therebetween;Conducting wire nozzle is slidably disposed in the tubulose casing between first ejector and the second ejector.The ejection type conducting wire nozzle assembly is simple in structure, saves manufacture cost;Shock and the resistance of motion are reduced, noise is smaller, while achieves higher movement velocity;Also, resistance very little of the conducting wire nozzle in tubulose casing, the first ejector and the second ejector drive the commutation moment of conducting wire nozzle, and energy consumption is small, and consumption is relatively low.

Description

Ejection type conducting wire nozzle assembly and conducting wire nozzle system
Technical field
The present invention relates to technical field of textile machine, more particularly, to a kind of ejection type conducting wire nozzle assembly and conducting wire nozzle system System.
Background technology
Ejection type conducting wire nozzle assembly is commonly used in textile machine, using it is more be coil winding machine.Coil winding machine is by three parts Composition:Drive the winding motor assembly of spool rotation;The ejection type conducting wire nozzle assembly of coiling shape is controlled, control coiling dynamics Tension sensor;Three Partial coordination actions can wind a ball of string for different flower pattern.China largely uses mechanical guide wire Nozzle device;It is conducting wire nozzle device that the more advanced equipment of small part, which is had begun using number,;Weigh the finger of digital conducting wire nozzle device It indicates:Economy, noise, power consumption, speed, service life, helical pitch adjustability, reentry point time (the smaller the better), level of digital etc. Index.The labyrinth and economy of existing conducting wire nozzle device are particularly thorny, particularly thorny between speed and noise;It is and every Performance indicator is not ideal enough, and how to improve the performance indicator of conducting wire nozzle is to perplex a problem of researcher.
The information for being disclosed in the background technology part is merely intended to deepen understanding of the general background technology to the present invention, and It is not construed as recognizing or implies that the information forms the prior art known to those skilled in the art in any form.
Invention content
One of the objects of the present invention is to provide a kind of ejection type conducting wire nozzle assemblies, solve existing conducting wire nozzle device knot Structure is complicated, and the technical issues of the performance and not ideal enough economy of conducting wire nozzle device.
The second object of the present invention is to provide a kind of conducting wire nozzle system solve existing conducting wire nozzle apparatus structure and answer It is miscellaneous, and the technical issues of the performance and not ideal enough economy of conducting wire nozzle device.
For one of above-mentioned purpose, the present invention provides following technical scheme:
A kind of ejection type conducting wire nozzle assembly provided by the invention, including:Tubulose casing, the first ejector, the second ejector And conducting wire nozzle;
First ejector and second ejector are set in the tubulose casing, keep at a distance therebetween with Form the helical pitch slided for the conducting wire nozzle;
The conducting wire nozzle is slidably disposed in the tubulose between first ejector and second ejector In casing.
As a kind of further technical solution, first ejector is fixed in the tubulose casing, and described second Ejector is movably disposed in the tubulose casing, and the tubulose casing is provided with to fix second ejector Fixation kit.
As a kind of further technical solution, the fixation kit includes dead ring and fastening screw, the fastening spiral shell Silk is threadedly connected to the dead ring;
The tubulose casing is provided with elongated slot along the conducting wire nozzle moving direction, and the fastening screw is supported across the elongated slot To be fixed on second ejector.
As a kind of further technical solution, the radial side of the conducting wire nozzle is provided with conducting wire disk, the conducting wire Disk passes through the elongated slot to stretch out outside the tubulose casing.
As a kind of further technical solution, the tubulose casing include first fix end cap, second fix end cap with And tubulose slideway, the first fixation end cap and second fix the both ends that end cap is fixed on the tubulose slideway;
First ejector, second ejector and the conducting wire nozzle are set in the tubulose slideway.
As a kind of further technical solution, the first fixation end cap and the second fixation end cap are respectively arranged with Band threaded bore, the band threaded bore are used to connect external equipment.
As a kind of further technical solution, first ejector is towards the side of the conducting wire nozzle, described second The axial both sides of ejector towards the side of the conducting wire nozzle, the conducting wire nozzle are respectively arranged with yielding rubber pad.
For the two of above-mentioned purpose, the present invention provides following technical scheme:
The present invention provides a kind of conducting wire nozzle system, including control device and as weighed any of above-mentioned technical proposal offer The ejection type conducting wire nozzle assembly;
The control device includes controller and detection module, drive module, the detection module and the driving mould Block is connected respectively with the controller;
The detection module is used to detect the run duration of the conducting wire nozzle and the position of the conducting wire nozzle;
The drive module is drivingly connected first ejector, second ejector.
As a kind of further technical solution, the detection module includes permanent magnetism piece and hall device, the permanent magnetism piece It is set in the conducting wire nozzle, two hall devices are respectively arranged at first ejector towards the one of the conducting wire nozzle Side and second ejector are towards the side of the conducting wire nozzle;
Two hall devices are connected with the controller.
As a kind of further technical solution, the control device further includes the letter being connected respectively with the controller Number input module, display screen and signal output module.
Compared with prior art, ejection type conducting wire nozzle assembly and conducting wire nozzle system provided by the invention can be obtained and following be had Beneficial effect:
A kind of ejection type conducting wire nozzle assembly provided by the invention drives conducting wire nozzle by the first ejector and the second ejector It is moved back and forth in tubulose casing, it is simple in structure, save manufacture cost;Remove traditional screw-nut, rack-and-pinion not only saves Shock and the resistance of motion are reduced in cost-saving, and noise is smaller, while achieves higher movement velocity;Also, conducting wire nozzle is in tubulose Resistance very little in casing, the first ejector and the second ejector drive commutation moment of conducting wire nozzle, and energy consumption is small, consume compared with It is low.
A kind of conducting wire nozzle system provided by the invention provides any including control device and such as above-mentioned technical proposal Ejection type conducting wire nozzle assembly can obtain the attainable all advantageous effects of ejection type conducting wire nozzle assembly institute, pass through closed loop control System stablizes reciprocating rate, realizes high-precision control.
Other features and advantages of the present invention will illustrate in the following description, also, partly become from specification It obtains it is clear that being understood by implementing the present invention.The purpose of the present invention and other advantages are in specification, claims And specifically noted structure is realized and is obtained in attached drawing.
Description of the drawings
It, below will be to specific in order to illustrate more clearly of the specific embodiment of the invention or technical solution of the prior art Embodiment or attached drawing needed to be used in the description of the prior art are briefly described, it should be apparent that, in being described below Attached drawing is some embodiments of the present invention, for those of ordinary skill in the art, before not making the creative labor It puts, can also be obtained according to these attached drawings other attached drawings.
Fig. 1 is a kind of dimensional structure diagram of ejection type conducting wire nozzle assembly provided in an embodiment of the present invention;
Fig. 2 is a kind of course of work schematic diagram of ejection type conducting wire nozzle assembly provided in an embodiment of the present invention;
Fig. 3 is a kind of control structure schematic diagram of conducting wire nozzle system provided in an embodiment of the present invention.
Icon:The first ejectors of 1-;The second ejectors of 2-;3- conducting wire nozzles;31- conducting wire disks;32- permanent magnetism pieces; 41- dead rings;42- fastening screws;51- first fixes end cap;52- second fixes end cap;53- tubulose slideways;531- Elongated slot;The first hall devices of 61-;The second hall devices of 62-;7- yielding rubber pads;8- controllers;91- first drives mould Block;The second drive modules of 92-;10-485 communication modules;11- display screens.
Specific embodiment
Technical scheme of the present invention is clearly and completely described below in conjunction with attached drawing, it is clear that described implementation Example is part of the embodiment of the present invention, instead of all the embodiments.Based on the embodiments of the present invention, ordinary skill Personnel's all other embodiments obtained without making creative work, shall fall within the protection scope of the present invention.
In the description of the present invention, it should be noted that term " " center ", " on ", " under ", "left", "right", " vertical ", The orientation or position relationship of the instructions such as " level ", " interior ", " outer " be based on orientation shown in the drawings or position relationship, merely to Convenient for the description present invention and simplify description rather than instruction or imply signified device or element must have specific orientation, With specific azimuth configuration and operation, therefore it is not considered as limiting the invention.In addition, term " first ", " second ", " third " is only used for description purpose, and it is not intended that instruction or hint relative importance.
In the description of the present invention, it should be noted that unless otherwise clearly defined and limited, term " installation ", " phase Even ", " connection " should be interpreted broadly, for example, it may be being fixedly connected or being detachably connected or be integrally connected;It can To be mechanical connection or be electrically connected;It can be directly connected, can also be indirectly connected by intermediary, Ke Yishi Connection inside two elements.For the ordinary skill in the art, above-mentioned term can be understood at this with concrete condition Concrete meaning in invention.
The specific embodiment of the present invention is described in detail below in conjunction with attached drawing.It should be understood that this place is retouched The specific embodiment stated is merely to illustrate and explain the present invention, and is not intended to restrict the invention.
With reference to Fig. 1-3, the embodiment of the present invention provides a kind of ejection type conducting wire nozzle assembly, including:Tubulose casing, the first bullet Emitter 1, the second ejector 2 and conducting wire nozzle 3;
First ejector 1 and the second ejector 2 are set in tubulose casing, keep at a distance led with being formed therebetween The helical pitch that line nozzle 3 slides;
Conducting wire nozzle 3 is slidably disposed in the tubulose casing between the first ejector 1 and the second ejector 2.
Tubulose casing is cylindrical structure, and inner hollow forms cylindrical cavity.First ejector 1 and the second ejector 2 with And conducting wire nozzle 3 is the cylindrical shape to match with cylindrical cavity, to be set in tubulose casing.
In work, conducting wire nozzle 3 needs to move back and forth, tubulose casing, that is, shape between the first ejector 1 and the second ejector 2 Into the helical pitch s moved for conducting wire nozzle 3, conducting wire nozzle 3 is past in the tubulose casing between the first ejector 1 and the second ejector 2 Multiple mobile, the first ejector 1 and the second ejector 2 are used to that conducting wire nozzle 3 to be driven to change the direction of motion.
After starter, the first ejector 1 launches conducting wire nozzle 3 to the second ejector 2, when conducting wire nozzle 3 reaches the second bullet Emitter 2, the second ejector 2 act, and conducting wire nozzle 3 is launched to the first ejector 1, in cycles, realizes that conducting wire nozzle 3 is back and forth transported It is dynamic.
The conducting wire nozzle 3 of slip is only only being contacted in the both ends stress of whole device, the first ejector 1 or the second ejector 2 Moment effect conducting wire nozzle 3, conducting wire nozzle 3 collides the reaction force and first that the first ejector 1 or the second ejector 2 generate at one end The thrust that 1 or second ejector 2 of ejector provides forms the resultant force that conducting wire nozzle 3 is moved to negative direction;Take full advantage of reaction Power reaches energy saving purpose.It is to fall counterforce counteraction in contrast to existing conducting wire nozzle device, then can just does reversed fortune Dynamic, theoretically, ejection type conducting wire nozzle assembly provided by the present invention is only a quarter of existing apparatus energy consumption.
A kind of ejection type conducting wire nozzle assembly provided in an embodiment of the present invention is can be seen that, passes through the first ejector 1 and second Ejector 2 drives conducting wire nozzle 3 to be moved back and forth in tubulose casing, simple in structure, saves manufacture cost;Remove traditional leading screw silk Mother, rack-and-pinion not only save cost, reduce shock and the resistance of motion, and noise is smaller, while achieve higher movement speed Degree;Also, resistance very little of the conducting wire nozzle 3 in tubulose casing, the commutation of the first ejector 1 and the second ejector 2 to conducting wire nozzle 3 Moment drives, and energy consumption is small, and consumption is relatively low.
In at least one embodiment of the invention, the first ejector 1 is fixed in tubulose casing, and the second ejector 2 is movable Ground is set in tubulose casing, and tubulose casing is provided with the fixation kit for fixing the second ejector 2.
First ejector 1 is fixed in pipeline casing, and the relative position of the two cannot be adjusted.And the second ejector 2 can live It is set to dynamicly in tubulose casing, the second ejector 2 can be moved relative to tubulose casing.When the opposite tubulose of the second ejector 2 Casing changes position, then the distance between the first ejector 1 and the second ejector 2 change, then is moved for conducting wire nozzle 3 Helical pitch changes, and therefore, can be achieved with by adjusting position of second ejector 2 in tubulose casing reciprocal to conducting wire nozzle 3 The helical pitch of movement is adjusted.
After second ejector 2 is adjusted to suitable position, the second ejector 2 is consolidated with tubulose casing with fixation kit It is fixed, to determine the distance between the first ejector 1 and the second ejector 2, and then determine the reciprocating motion helical pitch of conducting wire nozzle 3.
Fixation kit at least one embodiment of the present invention includes dead ring 41 and fastening screw 42,42 spiral shell of fastening screw Line is connected to dead ring 41;Tubulose casing is provided with elongated slot 531 along 3 moving direction of conducting wire nozzle, and fastening screw 42 passes through elongated slot 531 It is against on the second ejector 2 to be fixed.
Dead ring 41 is sheathed on tubulose casing, and fastening screw 42 is threadedly connected on the dead ring 41,41 energy of dead ring Enough axial movements with fastening screw 42 on tubulose casing.
After second ejector 2 is adjusted to the position needed, tightened relative ring 41 tightens fastening screw 42, fastening screw 42 It is against on the second ejector 2 across tubulose casing, until being fixed the second ejector 2 in tubulose casing, makes the second bullet It will not be moved between emitter 2 and tubulose casing.
Fastening screw 42 needs to fix the second ejector 2 across tubulose casing, will also be with the mobile phase of the second ejector 2 Tubulose casing is moved.Movement is realized in order to facilitate fastening screw 42 and across tubulose casing, is provided on tubulose casing With elongated slot 531, which extends along the moving direction of conducting wire nozzle 3, and fastening screw 42 passes through the elongated slot 531 to fix second Ejector 2, meanwhile, trip bolt can be moved with the movement of the second ejector 2 in elongated slot 531.
The radial side of conducting wire nozzle 3 in at least one embodiment of the present invention is provided with conducting wire disk 31, the conducting wire disk 31 pass through elongated slot 531 to stretch out outside tubulose casing.
In use, gently stir conducting wire disk 31 outside device, cylindrical conductor nozzle 3 can the first ejector 1 with It is slided in tubulose casing between second ejector 2.
In at least one embodiment of the invention, tubulose casing include first fix end cap 51, second fix end cap 52 and Tubulose slideway 53, the first fixation end cap 51 and second fix the both ends that end cap 52 is fixed on tubulose slideway 53;First ejector 1, Second ejector 2 and conducting wire nozzle 3 are set in tubulose slideway 53.
First, which fixes end cap 51 and second, fixes end cap 52 by the closed at both ends of tubulose slideway 53, and three forms total External frame.
As a kind of preferred embodiment, the first fixation end cap 51 and second fixes end cap 52 and is respectively arranged with band screw thread Hole, band threaded bore are used to connect external equipment.
Wherein, the quantity with threaded bore is two, when the first fixation end cap 51 is for connecting external equipment, passes through screw By external equipment with being connected with threaded bore, the company of the ejection type conducting wire nozzle assembly and other devices in the present embodiment is realized It connects.Correspondingly, when the second fixation end cap 52 is for connecting external equipment, external equipment is connect with threaded bore by screw Get up, realize the connection of the ejection type conducting wire nozzle assembly and other devices in the present embodiment.
In at least one embodiment of the invention, the first ejector 1 is towards the side of conducting wire nozzle 3, the second ejector 2 towards leading The side of line nozzle 3, the axial both sides of conducting wire nozzle 3 are respectively arranged with yielding rubber pad 7.
At work, conducting wire nozzle 3 moves back and forth between the first ejector 1 and the second ejector 2, and by the first ejector 1 and second ejector 2 provide change the direction of motion driving force, 3 and first ejector 1 of conducting wire nozzle, conducting wire nozzle 3 and second ejection Contact and the effect of power are generated between device 2, yielding rubber pad 7 can reduce mutual shock, reduce the resistance of motion.
To sum up, ejection type conducting wire nozzle assembly provided in an embodiment of the present invention has following technical advantage:
1st, it is simple in structure, remove traditional screw-nut, rack-and-pinion, save manufacture cost;
2nd, reduce shock and the resistance of motion, the noise of device operation is smaller, while achieves higher movement velocity;
3rd, the conducting wire nozzle 3 slided is only only contacted in the both ends stress of device, the first ejector 1 or the second ejector 2 at this Moment acts on conducting wire nozzle 3, conducting wire nozzle 3 collide at one end the reaction force that the first ejector 1 or the second ejector 2 generate and The thrust that first ejector 1 or the second ejector 2 provide forms the resultant force that conducting wire nozzle 3 is moved to negative direction;It takes full advantage of anti- Active force reaches energy saving purpose.
The embodiment of the present invention also provides a kind of conducting wire nozzle system, including control device and as what above-described embodiment provided appoints A kind of ejection type conducting wire nozzle assembly;Control device includes controller 8 and detection module, drive module, detection module and driving Module is connected respectively with controller 8;Detection module is used to detect the run duration of conducting wire nozzle 3 and the position of conducting wire nozzle 3;It drives Dynamic model block is drivingly connected the first ejector 1, the second ejector 2.
Wherein, the concrete structure of ejection type conducting wire nozzle assembly is hereinbefore discussed in detail, and details are not described herein again.
Specifically, the detection module in the present embodiment includes permanent magnetism piece 32 and hall device, and permanent magnetism piece 32 is set to conducting wire In nozzle 3, one in two hall devices is set to the first ejector 1 towards the side of conducting wire nozzle 3, is the first hall device 61;Another is set to the second ejector 2 towards the side of conducting wire nozzle 3, is the second hall device 62;First hall device 61, First hall device 61 is connected respectively with controller 8.
Drive module includes the first drive module 91 and the second drive module 92, and the first drive module 91 is for driving first Ejector 1, the second drive module 92 for drive the second ejector 2, the first drive module 91, the second drive module 92 respectively with Controller 8 is connected.
Before work, conducting wire nozzle 3 is located at the initial segment (operator will be in this position hanging wire), when device startup, controller 8 Control the first drive module 91 that the first ejector 1 is driven to launch conducting wire nozzle 3 to 2 end of the second ejector, at this moment above conducting wire nozzle 3 Permanent magnetism piece 32 trigger the second ejector 2 on the second hall device 62, after controller 8 receives trigger signal, control second Drive module 92 drives the second ejector 2 to act, and conducting wire nozzle 3 is launched to 1 end of the first ejector, the first of the first ejector 1 Hall device 61 triggers, controller 8 control the first drive module 91 drive the first emitter action, by conducting wire nozzle 3 launch again to Second ejector 2 in cycles, realizes that conducting wire nozzle 3 is reciprocating.Ejection terminates every time, and controller 8 resets ejector, Preparation acts next time.
When conducting wire nozzle 3 is contacted with the first ejector 1 or the second ejector 2, the first hall device 61 or the second Hall device Part 62 detects the signal of permanent magnetism piece 32, realizes the position signal acquisition to conducting wire nozzle 3, and this signal is transmitted to controller 8.
It should be noted that controller 8 herein is microcontroller.
Before work, controller 8 can preset the movement velocity parameter of conducting wire nozzle 3, fastening screw 42 be unclamped, by tubulose Scale on casing adjusts the position of the second ejector 2, fastens fastening screw 42, controller 8 is according to this above-mentioned parameter, control The ejection dynamics of first ejector 1 and the second ejector 2.When device starts, controller 8 is according to the parameter of setting by (changing The amplitude and pulsewidth of feathering screw propeller pulse) pilot nozzle 3 movement velocity.Conducting wire nozzle 3 under the promotion of the first ejector 1 from During first ejector 1 is moved to the second ejector 2, detection module detects the process the time it takes, feeds back to control Device 8 processed, the analysis of controller 8 calculate the speed for showing that conducting wire nozzle 3 moves back and forth, are compared with preset speed, and root According to being sent instructions under comparing result to drive module, drive module controls the first ejector 1, the second pushing away to conducting wire nozzle 3 of ejector 2 Power, to realize the control and regulation to 3 speed of conducting wire nozzle.
Meanwhile according to the feedback of detection module, controller 8 calculates the number that conducting wire nozzle 3 reaches one end, reaches specified numerical value Automatic stopping afterwards.
Further, the number of turn of coiling can also be preset, controller 8 works as count value according to the feedback of detection module Reach specified number of turn control parking.
Further, control device further includes the signal input module being connected respectively with controller 8, display screen 11 and letter Number output module.
Signal input module includes input keyboard, for 3 preset kinematic parameter of conducting wire nozzle to be input in controller 8. Kinematic parameter herein is mainly the reciprocating speed of conducting wire nozzle 3, and the distance of helical pitch, the total number of turns of coiling, controller 8 is according to these Parameter is controlled.
Signal output module is specially 485 communication modules 10, and the interface that controller 8 passes through 485 communication modules 10 is realized pair At the time of halt instruction, conducting wire nozzle 3 reach both ends, conducting wire nozzle 3 move back and forth the synchronism outputs of the information such as real-time speed to winding Electric machine controller.
The display of display screen 11 can show current working condition, can monitor current working status in real time.It needs to illustrate , display screen 11 herein can be LCD liquid crystal displays.
A kind of conducting wire nozzle system provided by the invention provides any including control device and such as above-mentioned technical proposal Ejection type conducting wire nozzle assembly can obtain the attainable all advantageous effects of ejection type conducting wire nozzle assembly institute, as long as controller It just can easily detect that conducting wire nozzle reaches the time of both sides by both sides Hall element, it is easy to pass through 2 points of time interval It calculates reciprocating speed, reciprocating rate is stablized by closed-loop control, realize high-precision control, Digital Control degree is high.
To sum up, conducting wire nozzle system provided in an embodiment of the present invention has following technical advantage:
Although the 1, simple in structure, the task that complicated machinery formula ejection type conducting wire nozzle assembly cannot be completed can be completed, is realized The institute that currently used digital ejection type conducting wire nozzle assembly can be completed is functional;
2nd, rectification winding system automation is realized, intelligence is possibly realized.
3rd, it can at a high speed be moved back and forth in the case of low noise, preferably take into account the indices of conducting wire nozzle device, With good development prospect.
Finally it should be noted that:The above embodiments are only used to illustrate the technical solution of the present invention., rather than its limitations;To the greatest extent Pipe is described in detail the present invention with reference to foregoing embodiments, it will be understood by those of ordinary skill in the art that:Its according to Can so modify to the technical solution recorded in foregoing embodiments either to which part or all technical features into Row equivalent replacement;And these modifications or replacement, various embodiments of the present invention technology that it does not separate the essence of the corresponding technical solution The range of scheme.

Claims (10)

1. a kind of ejection type conducting wire nozzle assembly, which is characterized in that including:Tubulose casing, the first ejector, the second ejector and Conducting wire nozzle;
First ejector and second ejector are set in the tubulose casing, keep at a distance to be formed therebetween The helical pitch slided for the conducting wire nozzle;
The conducting wire nozzle is slidably disposed in the tubulose casing between first ejector and second ejector It is interior.
2. ejection type conducting wire nozzle assembly according to claim 1, which is characterized in that first ejector is fixed on described In tubulose casing, second ejector is movably disposed in the tubulose casing, and tubulose casing setting is useful In the fixation kit of fixation second ejector.
3. ejection type conducting wire nozzle assembly according to claim 2, which is characterized in that the fixation kit include dead ring and Fastening screw, the fastening screw are threadedly connected to the dead ring;
The tubulose casing is provided with elongated slot along the conducting wire nozzle moving direction, and the fastening screw is against institute across the elongated slot It states on the second ejector to be fixed.
4. ejection type conducting wire nozzle assembly according to claim 3, which is characterized in that the radial side setting of the conducting wire nozzle There is conducting wire disk, the conducting wire disk passes through the elongated slot to stretch out outside the tubulose casing.
5. ejection type conducting wire nozzle assembly according to claim 1, which is characterized in that the tubulose casing, which includes first, to be fixed End cap, second fix end cap and tubulose slideway, and the first fixation end cap and the second fixation end cap, which are fixed on the tubulose, to be slided The both ends in road;
First ejector, second ejector and the conducting wire nozzle are set in the tubulose slideway.
6. ejection type conducting wire nozzle assembly according to claim 5, which is characterized in that described first fixes end cap and described the Two fixation end caps are respectively arranged with band threaded bore, and the band threaded bore is used to connect external equipment.
7. ejection type conducting wire nozzle assembly according to claim 2, which is characterized in that first ejector is led towards described The side of line nozzle, second ejector towards the side of the conducting wire nozzle, the conducting wire nozzle axial both sides be respectively arranged with Yielding rubber pad.
8. a kind of conducting wire nozzle system, which is characterized in that including control device and as described in any one of claim 1-7 Ejection type conducting wire nozzle assembly;
The control device includes controller and detection module, drive module, the detection module and the drive module point It is not connected with the controller;
The detection module is used to detect the run duration of the conducting wire nozzle and the position of the conducting wire nozzle;
The drive module is drivingly connected first ejector, second ejector.
9. conducting wire nozzle system according to claim 8, which is characterized in that the detection module includes permanent magnetism piece and Hall device Part, the permanent magnetism piece are set in the conducting wire nozzle, two hall devices be respectively arranged at first ejector towards The side of the conducting wire nozzle and second ejector are towards the side of the conducting wire nozzle;
Two hall devices are connected with the controller.
10. according to claim 8 any one of them conducting wire nozzle system, which is characterized in that the control device further includes difference Signal input module, display screen and the signal output module being connected with the controller.
CN201810178778.XA 2018-03-05 2018-03-05 Ejection type conducting wire nozzle assembly and conducting wire nozzle system Pending CN108217321A (en)

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Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3414205A (en) * 1966-04-04 1968-12-03 Mettler Soehne Maschf Thread guiding device having a movable thread guide
CH536782A (en) * 1971-08-25 1973-05-15 Schweiter Ag Maschf Reciprocable yarn guide for cross-wound bobbin machines - - with electromagnetically controlled movement
JPH0930726A (en) * 1995-07-14 1997-02-04 Toray Ind Inc Traverse device of yarn
WO1999031000A1 (en) * 1997-12-17 1999-06-24 Barmag Ag Cross-winding device for laying a thread
JP2001261234A (en) * 2000-03-21 2001-09-26 Murata Mach Ltd Traversing device and traversing method
JP2002068588A (en) * 2000-08-30 2002-03-08 Murata Mach Ltd Traverse device
WO2003002443A1 (en) * 2001-06-27 2003-01-09 Rieter Icbt Reciprocating mechanism for winding thread
WO2010116103A1 (en) * 2009-04-09 2010-10-14 Ritm Device for spooling a thread on a spool with a constant spooling ratio
US20130026279A1 (en) * 2010-04-12 2013-01-31 Mehmet Agrikli Direct traverse device
EP2567918A2 (en) * 2011-09-06 2013-03-13 Technicka Univerzita v Liberci Method and device for traversing of yarn on textile machines
CN104649076A (en) * 2013-11-19 2015-05-27 舍弗勒技术股份两合公司 Yarn guide and yarn winding machine
CN105936447A (en) * 2016-06-20 2016-09-14 武汉纺织大学 Magnetic-driven linear reciprocating yarn guide device and application method thereof
CN106335817A (en) * 2016-08-19 2017-01-18 武汉理工大学 Automatic winding machine
CN107539828A (en) * 2017-10-12 2018-01-05 桐城市文才管业有限公司 A kind of coil device of sebific duct
CN208070997U (en) * 2018-03-05 2018-11-09 广东理工学院 Ejection type conducting wire nozzle assembly and conducting wire nozzle system

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3414205A (en) * 1966-04-04 1968-12-03 Mettler Soehne Maschf Thread guiding device having a movable thread guide
CH536782A (en) * 1971-08-25 1973-05-15 Schweiter Ag Maschf Reciprocable yarn guide for cross-wound bobbin machines - - with electromagnetically controlled movement
JPH0930726A (en) * 1995-07-14 1997-02-04 Toray Ind Inc Traverse device of yarn
WO1999031000A1 (en) * 1997-12-17 1999-06-24 Barmag Ag Cross-winding device for laying a thread
JP2001261234A (en) * 2000-03-21 2001-09-26 Murata Mach Ltd Traversing device and traversing method
JP2002068588A (en) * 2000-08-30 2002-03-08 Murata Mach Ltd Traverse device
WO2003002443A1 (en) * 2001-06-27 2003-01-09 Rieter Icbt Reciprocating mechanism for winding thread
WO2010116103A1 (en) * 2009-04-09 2010-10-14 Ritm Device for spooling a thread on a spool with a constant spooling ratio
US20130026279A1 (en) * 2010-04-12 2013-01-31 Mehmet Agrikli Direct traverse device
EP2567918A2 (en) * 2011-09-06 2013-03-13 Technicka Univerzita v Liberci Method and device for traversing of yarn on textile machines
CN104649076A (en) * 2013-11-19 2015-05-27 舍弗勒技术股份两合公司 Yarn guide and yarn winding machine
CN105936447A (en) * 2016-06-20 2016-09-14 武汉纺织大学 Magnetic-driven linear reciprocating yarn guide device and application method thereof
CN106335817A (en) * 2016-08-19 2017-01-18 武汉理工大学 Automatic winding machine
CN107539828A (en) * 2017-10-12 2018-01-05 桐城市文才管业有限公司 A kind of coil device of sebific duct
CN208070997U (en) * 2018-03-05 2018-11-09 广东理工学院 Ejection type conducting wire nozzle assembly and conducting wire nozzle system

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