CN108251963A - It is a kind of for the spindle of three dimensional knitting machine and sliding slot system - Google Patents

It is a kind of for the spindle of three dimensional knitting machine and sliding slot system Download PDF

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Publication number
CN108251963A
CN108251963A CN201810158533.0A CN201810158533A CN108251963A CN 108251963 A CN108251963 A CN 108251963A CN 201810158533 A CN201810158533 A CN 201810158533A CN 108251963 A CN108251963 A CN 108251963A
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CN
China
Prior art keywords
annular groove
wave
spindle
wave annular
bolster
Prior art date
Legal status (The legal status 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 status listed.)
Pending
Application number
CN201810158533.0A
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Chinese (zh)
Inventor
殷冬冬
李仁杰
郭丹蕊
时存
车玉秋
孙小芳
李妍缘
王云霞
张景业
张振翔
王煜轩
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Zhengzhou Electric Power College
Original Assignee
Zhengzhou Electric Power College
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 Zhengzhou Electric Power College filed Critical Zhengzhou Electric Power College
Priority to CN201810158533.0A priority Critical patent/CN108251963A/en
Publication of CN108251963A publication Critical patent/CN108251963A/en
Pending legal-status Critical Current

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Classifications

    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04CBRAIDING OR MANUFACTURE OF LACE, INCLUDING BOBBIN-NET OR CARBONISED LACE; BRAIDING MACHINES; BRAID; LACE
    • D04C3/00Braiding or lacing machines
    • D04C3/40Braiding or lacing machines for making tubular braids by circulating strand supplies around braiding centre at equal distances

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Braiding, Manufacturing Of Bobbin-Net Or Lace, And Manufacturing Of Nets By Knotting (AREA)

Abstract

It is specifically a kind of for the spindle of three dimensional knitting machine and sliding slot system the present invention relates to three dimensional knitting machine field.Including guide-rail plate, it is equipped with the first wave annular groove and the second wave annular groove with one heart on guide-rail plate, the interlaced distribution of Wave crest and wave trough of the first wave annular groove and the second wave annular groove and the first wave annular groove and the second wave annular groove are interconnected in intersection location;It is slided in first wave annular groove and is equipped with multiple first spindles, slided in the second wave annular groove and be equipped with multiple second spindles;The longitudinal section of first wave annular groove and the second wave annular groove is shaped to difference.The present invention, which may be such that, steadily to be moved in spindle sliding slot, is non-interference, is thus improved the speed of service of the spindle on guide-rail plate in braider and is improved operation fluency, so as to improve working efficiency, noise is greatly reduced.

Description

It is a kind of for the spindle of three dimensional knitting machine and sliding slot system
Technical field
It is specifically a kind of for the spindle of three dimensional knitting machine and sliding slot system the present invention relates to three dimensional knitting machine field System.
Background technology
3 D weaving is a kind of to be inclined by three be orientated along fabric forming direction or threads according to specific rule Skewed crossing makes the technique of yarns interwoven together.As one kind of braider, using three dimensional weaving technique as the 3 D weaving of technology Molding machine is then born in phase late 1960s, and the parts after 3 D weaving have not stratified overall structure, along weaving square To section can consecutive variations, labyrinth component one-pass molding the features such as, there are the superiority such as impact resistance, anti-layering, creep resistant Energy.Woven composite obtains largely in fields such as aerospace flight vehicle, engine, automobile, ship, building, bioengineering Using.
Existing three dimensional knitting machine is intersecting since the running orbit of spindle exists, and intersection location leading for different spindle It to deficiency, is easy to cause between adjacent spindle running orbit and clashes, running track design not science, there are spindle operations to hold Easy interim card, operation less smoothness etc. problem, causes operational efficiency not high, labor intensity is big.
Invention content
The present invention is intended to provide it is a kind of for the spindle of three dimensional knitting machine and sliding slot system, it may be such that steady in spindle sliding slot It is mobile, non-interference, it thus improves the speed of service of the spindle on guide-rail plate in braider and improves operation fluency, so as to carry High working efficiency, is greatly reduced noise.
In order to solve the above technical problems, the technical solution adopted by the present invention is:A kind of spindle for three dimensional knitting machine And sliding slot system, including guide-rail plate, it is equipped with the first wave annular groove and the second wave annular groove with one heart on guide-rail plate, the The interlaced distribution of the Wave crest and wave trough of one wave annular groove and the second wave annular groove and the first wave annular groove and the Two wave annular grooves are interconnected in intersection location;It is slided in first wave annular groove and is equipped with multiple first spindles, first Spindle includes the first ingot body and the first bolster being arranged on the first ingot body, and the first bolster is fitted to the first wave annular cunning In slot and the longitudinal section of the first bolster is corresponding with the vertical sectional shape of the first wave annular groove, in the second wave annular groove It slides and is equipped with multiple second spindles, the second spindle includes the second ingot body and the second bolster being arranged on the second ingot body, the second ingot Foot is fitted in the second wave annular groove and the longitudinal section shape of the longitudinal section of the second bolster and the second wave annular groove Shape is corresponding;The longitudinal section of first wave annular groove and the second wave annular groove is shaped to difference, to avoid One spindle slips into the second wave annular groove by the intersection location between the first wave annular groove and the second wave annular groove Interior and the second spindle slips into the first wave by the intersection location between the first wave annular groove and the second wave annular groove Annular groove.
Preferably, first bolster and the second bolster are cylinder, and the first guide ledges are equipped on the first bolster.
Preferably, first guide ledges are arranged on one end far from the first ingot body, the first wave on the first bolster The longitudinal section of unrestrained annular groove is inverted T-shaped, and the longitudinal section of the second wave annular groove is rectangle.
Preferably, the depth of the first wave annular groove is less than the depth of the second wave annular groove, the first wave annular The depth of sliding slot and the second wave annular groove intersection location is identical with the depth of the second wave annular groove and equipped with for first The first auxiliary chute that guide ledges cooperation is slided.
Preferably, first bolster and the second bolster are cylinder, and the second guide ledges are equipped on the first bolster, Third guide ledges are equipped on the second bolster.
Preferably, second guide ledges are arranged on one end far from the first ingot body, the third on the first bolster and lead The middle part of the second bolster is arranged on to boss;The longitudinal section of the first wave annular groove is inverted T-shaped, and the second wave annular is slided The longitudinal section of slot is cross.
Preferably, the depth of the first wave annular groove, the depth of the second wave annular groove and the first wave The depth all same of annular groove and the second wave annular groove intersection location, in the first wave annular groove and the second wave ring The intersection location of shape sliding slot is equipped with for the second auxiliary chute of the second guide ledges cooperation slip and matches for third guide ledges Close the third auxiliary chute slided.
Preferably, the correspondence wave in the first wave annular groove and the second wave annular groove is located on the guide-rail plate The center of spike paddy is equipped with axis hole, and the driver plate tooth being equipped with for stirring the first spindle and the movement of the second spindle is rotated in axis hole Wheel.
Preferably, the quantity of the axis hole is 12.
Advantageous effect
The first wave annular groove and the second wave annular groove in the present invention are connected from beginning to end successively by N number of S-shaped female rail road It connects and the composition that is interconnected.First wave annular groove and the second wave annular groove intersect.In infall, pass through first The difference and the first wave annular groove of bolster and the second bolster shape and height and the second wave annular groove are in infall The difference of depth or shape causes different spindles is maintained in different tracks to run, operation speed of the spindle in different tracks Degree is different, their crossing operations in track are not interfere with each other.
The configuration of the present invention is simple is easy to save material, optimizes the braiding ability of machine, improves the operation fluency of spindle, The problems such as the problem of reducing spindle interim card, not only improving efficiency, and causing waste of human resource, has obtained better solution Certainly.
Description of the drawings
Fig. 1 is the schematic top plan view of the present invention;
Fig. 2 is the schematic top plan view of the first wave annular groove in the present invention;
Fig. 3 is the structure diagram of the first spindle in the first embodiment of the invention;
Fig. 4 is the structure diagram of the second spindle in the first embodiment of the invention;
Fig. 5 is the vertical of the first wave annular groove and the second wave annular groove intersection location in the first of the invention embodiment To schematic cross-section;
Fig. 6 is the longitudinal cross-section schematic diagram of the guide rail plate part in the first embodiment of the invention;
Fig. 7 is the structure diagram of the first spindle in second of embodiment of the invention;
Fig. 8 is the structure diagram of the second spindle in second of embodiment of the invention;
Fig. 9 is the vertical of the first wave annular groove and the second wave annular groove intersection location in second of embodiment of the invention To schematic cross-section;
Figure 10 is the longitudinal cross-section schematic diagram of the guide rail plate part in second of embodiment of the invention;
It is marked in figure:1st, guide-rail plate, 2, axis hole, the 3, second wave annular groove, the 4, first wave annular groove, the 5, first ingot Son, the 501, first ingot body, the 502, first bolster, the 503, first guide ledges, the 504, second guide ledges, the 6, second spindle, 601st, the second ingot body, the 602, second bolster, 603, third guide ledges, the 7, first auxiliary chute, 8, third auxiliary chute, 9, Two auxiliary chutes.
Specific embodiment
As shown in Figures 1 and 2, it is of the invention a kind of for the spindle of three dimensional knitting machine and sliding slot system, including guide-rail plate 1, it is equipped with the first wave annular groove 4 and the second wave annular groove 3,4 He of the first wave annular groove with one heart on guide-rail plate 1 The interlaced distribution of Wave crest and wave trough of second wave annular groove 3 and the first wave annular groove 4 and the second wave annular groove 3 It is interconnected in intersection location.First wave annular groove 4 is identical with the size of the second wave annular groove 3 so that first wave The wave crest of unrestrained annular groove 4 and the second wave annular groove 3 are located between the trough of corresponding position in circular ring shape.First wave ring 4 and second wave annular groove 3 of shape sliding slot can also regard the structure that connected and be interconnected from beginning to end successively by N number of S-shaped female rail road respectively as Into.
It is slided in first wave annular groove 4 and is equipped with multiple first spindles 5, the first spindle 5 includes the first ingot body 501 and sets Put the first bolster 502 on the first ingot body 501, the first bolster 502 is fitted in the first wave annular groove 4 and first The longitudinal section of bolster 502 is corresponding with the vertical sectional shape of the first wave annular groove 4, is slided in the second wave annular groove 3 Equipped with multiple second spindles 6, the second spindle 6 includes the second ingot body 601 and the second bolster 602 being arranged on the second ingot body 601, Second bolster 602 is fitted in the second wave annular groove 3 and the longitudinal section of the second bolster 602 is slided with the second wave annular The vertical sectional shape of slot 3 is corresponding;The shape setting of the longitudinal section of first wave annular groove 4 and the second wave annular groove 3 For difference, slided to avoid the first spindle 5 by the intersection location between the first wave annular groove 4 and the second wave annular groove 3 Enter in the second wave annular groove 3 and the second spindle 6 passes through between the first wave annular groove 4 and the second wave annular groove 3 Intersection location slip into the first wave annular groove 4.Cause the first spindle 5 and the second spindle 6 crossing operation in different tracks, It does not interfere with each other, and necessary guiding is set in the first wave annular groove 4 and the second glass row annular groove intersection, so as to carry The operation fluency of high spindle, reduction spindle interim card problem, the problems such as not only improving efficiency, and cause waste of human resource Better solution is obtained.
It is located on guide-rail plate 1 in the correspondence Wave crest and wave trough of the first wave annular groove 4 and the second wave annular groove 3 Center is equipped with axis hole 2, and the driving plate gear being equipped with for stirring the first spindle 5 and the movement of the second spindle 6 is rotated in axis hole 2, The quantity of axis hole 2 is 12.
With two embodiments, the present invention is further illustrated below:
Embodiment 1, as shown in Figures 3 to 6, the first bolster 502 and the second bolster 602 are cylinder, on the first bolster 502 Equipped with the first guide ledges 503.First guide ledges 503 are arranged on one end far from the first ingot body 501 on the first bolster 502, The longitudinal section of first wave annular groove 4 is inverted T-shaped, and the longitudinal section of the second wave annular groove 3 is rectangle.
The depth of first wave annular groove 4 is less than the depth of the second wave annular groove 3, the first wave annular groove 4 It is identical with the depth of the second wave annular groove 3 with the depth of 3 intersection location of the second wave annular groove and equipped with being led for first The first auxiliary chute 7 slided to the cooperation of boss 503.
In embodiment 1, in 3 intersection of the first wave annular groove 4 and the second wave annular groove, pass through the second wave ring 3 depth of shape sliding slot is deeper to play the guiding role to the second spindle 6, is played to the first spindle 5 by the first auxiliary chute 7 Guiding role so as to which the first spindle 5 and the second spindle 6 be made to move and not interfere with each other, is not allowed to be also easy to produce interim card in intersection.
Embodiment 2, as shown in Figure 7 to 10, the first bolster 502 and the second bolster 602 are cylinder, in the first bolster 502 are equipped with the second guide ledges 504, and third guide ledges 603 are equipped on the second bolster 602.Second guide ledges 504 are set One end far from the first ingot body 501, third guide ledges 603 on the first bolster 502 are put to be arranged in the second bolster 602 Portion;The longitudinal section of first wave annular groove 4 is inverted T-shaped, and the longitudinal section of the second wave annular groove 3 is cross.
The depth of first wave annular groove 4, the depth of the second wave annular groove 3 and the first wave annular groove 4 With the depth all same of 3 intersection location of the second wave annular groove, in the first wave annular groove 4 and the second wave annular groove 3 intersection location is equipped with for the second auxiliary chute 8 of the second guide ledges 504 cooperation slip and for third guide ledges 603 Coordinate the third auxiliary chute 9 slided.
In embodiment 2, in 3 intersection of the first wave annular groove 4 and the second wave annular groove, slided by the second auxiliary Slot 8 and third auxiliary chute 9 play guiding role to the first spindle 5 and second respectively, so as to make the first spindle 5 and second The movement of spindle 6 is not interfere with each other, and does not allow to be also easy to produce interim card in intersection.
The foregoing description of the disclosed embodiments enables professional and technical personnel in the field to realize or use the present invention. A variety of modifications of these embodiments will be apparent for those skilled in the art, it is as defined herein General Principle can be realized in other embodiments without departing from the spirit or scope of the present invention.Therefore, it is of the invention The embodiments shown herein is not intended to be limited to, and is to fit to and the principles and novel features disclosed herein phase one The most wide range caused.

Claims (9)

  1. It is 1. a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Including guide-rail plate(1), in guide-rail plate(1) It is upper to be equipped with the first wave annular groove with one heart(4)With the second wave annular groove(3), the first wave annular groove(4)With second Wave annular groove(3)Wave crest and wave trough it is interlaced distribution and the first wave annular groove(4)With the second wave annular groove (3)It is interconnected in intersection location;First wave annular groove(4)Middle slide is equipped with multiple first spindles(5), the first spindle (5)Including the first ingot body(501)Be arranged on the first ingot body(501)On the first bolster(502), the first bolster(502)Cooperation Mounted on the first wave annular groove(4)Interior and the first bolster(502)Longitudinal section and the first wave annular groove(4)Vertical cut Face shape is corresponding, the second wave annular groove(3)Middle slide is equipped with multiple second spindles(6), the second spindle(6)Including second Ingot body(601)Be arranged on the second ingot body(601)On the second bolster(602), the second bolster(602)It is fitted to the second wave Unrestrained annular groove(3)Interior and the second bolster(602)Longitudinal section and the second wave annular groove(3)Vertical sectional shape it is opposite It should;First wave annular groove(4)With the second wave annular groove(3)Longitudinal section be shaped to difference, to avoid One spindle(5)Pass through the first wave annular groove(4)With the second wave annular groove(3)Between intersection location slip into the second wave Annular groove(3)Interior and the second spindle(6)Pass through the first wave annular groove(4)With the second wave annular groove(3)Between Intersection location slips into the first wave annular groove(4).
  2. It is 2. according to claim 1 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Described One bolster(502)With the second bolster(602)It is cylinder, in the first bolster(502)It is equipped with the first guide ledges(503).
  3. It is 3. according to claim 2 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Described One guide ledges(503)It is arranged on the first bolster(502)Upper separate first ingot body(501)One end, first wave annular Sliding slot(4)Longitudinal section for inverted T-shaped, the second wave annular groove(3)Longitudinal section be rectangle.
  4. It is 4. according to claim 3 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:First wave Unrestrained annular groove(4)Depth be less than the second wave annular groove(3)Depth, the first wave annular groove(4)With the second wave Unrestrained annular groove(3)The depth of intersection location and the second wave annular groove(3)Depth it is identical and equipped with for first be oriented to it is convex Platform(503)Coordinate the first auxiliary chute slided(7).
  5. It is 5. according to claim 1 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Described One bolster(502)With the second bolster(602)It is cylinder, in the first bolster(502)It is equipped with the second guide ledges(504), In the second bolster(602)It is equipped with third guide ledges(603).
  6. It is 6. according to claim 5 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Described Two guide ledges(504)It is arranged on the first bolster(502)Upper separate first ingot body(501)One end, the third guide ledges (603)It is arranged on the second bolster(602)Middle part;The first wave annular groove(4)Longitudinal section for inverted T-shaped, the second wave Unrestrained annular groove(3)Longitudinal section be cross.
  7. It is 7. according to claim 7 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Described One wave annular groove(4)Depth, the second wave annular groove(3)Depth and the first wave annular groove(4)With Two wave annular grooves(3)The depth all same of intersection location, in the first wave annular groove(4)With the second wave annular groove (3)Intersection location be equipped with for the second guide ledges(504)Coordinate the second auxiliary chute slided(9)And it is oriented to for third convex Platform(603)Coordinate the third auxiliary chute slided(8).
  8. It is 8. according to claim 1 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:Described Guide-rail plate(1)It is upper to be located in the first wave annular groove(4)With the second wave annular groove(3)Correspondence Wave crest and wave trough center Position is equipped with axis hole(2), axis hole(2)Interior rotation is equipped with to stir the first spindle(5)With the second spindle(6)The driver plate tooth of movement Wheel.
  9. It is 9. according to claim 9 a kind of for the spindle of three dimensional knitting machine and sliding slot system, it is characterised in that:The axis Hole(2)Quantity be 12.
CN201810158533.0A 2018-02-26 2018-02-26 It is a kind of for the spindle of three dimensional knitting machine and sliding slot system Pending CN108251963A (en)

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Application Number Priority Date Filing Date Title
CN201810158533.0A CN108251963A (en) 2018-02-26 2018-02-26 It is a kind of for the spindle of three dimensional knitting machine and sliding slot system

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Application Number Priority Date Filing Date Title
CN201810158533.0A CN108251963A (en) 2018-02-26 2018-02-26 It is a kind of for the spindle of three dimensional knitting machine and sliding slot system

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CN108251963A true CN108251963A (en) 2018-07-06

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114753057A (en) * 2022-05-12 2022-07-15 杭州华威医疗用品有限公司 Quick-mounting template of tape machine and fixed core mounting method of tape machine
CN115058825A (en) * 2022-06-07 2022-09-16 郑州电力高等专科学校 Three-dimensional weaving method of honeycomb core structure

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DE202005016491U1 (en) * 2005-10-20 2006-02-09 Chen, Ming-Cheng, Longjing Bobbin braiding machine, with guiding device supporting movement of holding plates to allow high speed operation of the bobbin
CN102230255A (en) * 2011-06-20 2011-11-02 东华大学 Interactive protruding rail braiding machine
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CN107287762A (en) * 2016-04-01 2017-10-24 青岛三汇橡胶机械制造有限公司 One kind stacking guider
CN207987453U (en) * 2018-02-26 2018-10-19 郑州电力高等专科学校 A kind of spindle and sliding slot system for three dimensional knitting machine

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DE202005016491U1 (en) * 2005-10-20 2006-02-09 Chen, Ming-Cheng, Longjing Bobbin braiding machine, with guiding device supporting movement of holding plates to allow high speed operation of the bobbin
CN102230255A (en) * 2011-06-20 2011-11-02 东华大学 Interactive protruding rail braiding machine
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CN105926153A (en) * 2016-06-15 2016-09-07 潘惠亮 Weaving machine
CN207987453U (en) * 2018-02-26 2018-10-19 郑州电力高等专科学校 A kind of spindle and sliding slot system for three dimensional knitting machine

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114753057A (en) * 2022-05-12 2022-07-15 杭州华威医疗用品有限公司 Quick-mounting template of tape machine and fixed core mounting method of tape machine
CN114753057B (en) * 2022-05-12 2024-02-06 杭州华威医疗用品有限公司 Quick-assembly template of tape threading machine and core fixing and installing method of tape threading machine
CN115058825A (en) * 2022-06-07 2022-09-16 郑州电力高等专科学校 Three-dimensional weaving method of honeycomb core structure
CN115058825B (en) * 2022-06-07 2024-02-27 郑州电力高等专科学校 Three-dimensional braiding method of honeycomb core structure

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