CN112725976A - Camshaft mechanism loaded with fourteen cam plates and application thereof - Google Patents

Camshaft mechanism loaded with fourteen cam plates and application thereof Download PDF

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Publication number
CN112725976A
CN112725976A CN202011604088.XA CN202011604088A CN112725976A CN 112725976 A CN112725976 A CN 112725976A CN 202011604088 A CN202011604088 A CN 202011604088A CN 112725976 A CN112725976 A CN 112725976A
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China
Prior art keywords
cam
cam piece
piece
camshaft
pieces
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CN202011604088.XA
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Chinese (zh)
Inventor
韩正海
曹庭
胡哲康
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Jiangsu Niupai Textile Machinery Co ltd
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Jiangsu Niupai Textile Machinery Co ltd
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Priority to CN202011604088.XA priority Critical patent/CN112725976A/en
Publication of CN112725976A publication Critical patent/CN112725976A/en
Pending legal-status Critical Current

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    • DTEXTILES; PAPER
    • D03WEAVING
    • D03CSHEDDING MECHANISMS; PATTERN CARDS OR CHAINS; PUNCHING OF CARDS; DESIGNING PATTERNS
    • D03C5/00Cam or other direct-acting shedding mechanisms, i.e. operating heald frames without intervening power-supplying devices

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Looms (AREA)

Abstract

The invention discloses a camshaft mechanism loaded with fourteen cam plates, which comprises: a box body; the cam shaft is horizontally arranged in the box body; fourteen cam sheets installed on the cam shaft, the cam sheets being divided into first to fourteenth cam sheets in order from left to right; the invention discloses a connecting bolt for connecting fourteen cam sheets and application of a cam shaft mechanism, and solves the technical problem that a new warp beam is inconvenient to butt during warping in the prior art.

Description

Camshaft mechanism loaded with fourteen cam plates and application thereof
Technical Field
The invention relates to the technical field of weaving machine assemblies, in particular to a camshaft mechanism loaded with fourteen cam sheets and application thereof.
Background
In various looms adopted in the conventional weaving process at present, a main shaft of the loom rotates for a circle to sequentially complete five movements of opening, weft insertion, beating-up, reeling-up and warp let-off, and warp yarns and weft yarns are interwoven together to obtain the fabric.
The new warp beam needs to be divided into upper and lower twisting paths through the lease reed during warping for drawing in, the existing operation mode is that generally, the drafting and reed-climbing butt joint is carried out manually, namely, machine warps are straightened out to form the upper and lower twisting paths, and the upper and lower twisting paths are in butt joint with the warps on the new warp beam one by one, so that the work efficiency is low.
With the mature and popular technology of the warp connecting machine, the simple plain weave fabric is connected by the warp connecting machine, so the working efficiency is high, the leasing difficulty on complex varieties and double-beam machines is high, the leasing is often realized by means of an opening device, and the leasing purpose is achieved by adopting a cam sheet replacing mode due to the particularity of the cam opening device.
Disclosure of Invention
The invention aims to provide a camshaft mechanism loaded with fourteen cam sheets and application thereof, and solves the technical problem that a new warp shaft in the prior art is inconvenient to butt when being integrally connected with warps.
A camshaft mechanism loaded with fourteen cam plates, comprising:
a box body;
the cam shaft is horizontally arranged inside the box body;
fourteen cam sheets installed on the cam shaft, the cam sheets being divided into first to fourteenth cam sheets in order from left to right;
and the connecting bolt is used for connecting fourteen cam sheets.
This application embodiment drives each heald frame through fourteen cam pieces and carries out the up-and-down motion, realizes the warping operation, the subsequent lease of being convenient for.
On the basis of the technical scheme, the invention can be further improved as follows:
furthermore, six bolt holes are uniformly formed in each cam plate, the bolt holes are uniformly distributed by taking the center of the cam plate as the circle center, and the center line of each bolt hole is connected with the center of the cam plate to divide the outer edge of the cam plate into six stages.
Further, the number of the connecting bolts is consistent with that of the bolt holes, and the number of the connecting bolts is six.
Further, the first cam piece is an 5/1 cam piece, and six stages of the first cam piece are sequentially divided into five high-position sections and one low-position section;
the second cam piece is an 2/4 cam piece, and six stages of the second cam piece are sequentially divided into two high-position sections and four low-position sections;
the third cam piece, the seventh cam piece and the eleventh cam are all 4/2 cam pieces, and six stages of the third cam piece are sequentially divided into four high-position sections and two low-position sections;
the fourth cam piece, the sixth cam piece, the eighth cam piece, the tenth cam piece, the twelfth cam piece and the fourteenth cam piece are all 1/5 cam pieces, and six stages of the fourth cam piece are sequentially divided into a high-position section and five low-position sections;
the fifth cam piece, the ninth cam piece and the thirteenth cam piece are all 31/11 cam pieces, and six stages of the fifth cam piece are sequentially divided into three high-level sections, one low-level section, one high-level section and one low-level section.
The embodiment of the application also discloses application of a camshaft mechanism loaded with fourteen cam sheets, and the camshaft mechanism is adopted to lease machine warp yarns to form an upper-layer twisted path and a lower-layer twisted path.
On the basis of the technical scheme, the embodiment of the application can be further improved as follows:
further, the specific steps of leasing are as follows:
step S1: selecting the camshaft mechanism to assemble a heald lifting unit, and driving a heald frame to move through the heald lifting unit to realize the movement of warp yarns;
step S2: rotating a camshaft of the camshaft mechanism to enable the first cam piece, the fifth cam piece, the ninth cam piece and the thirteenth cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the rest cam pieces to penetrate through the split-strand wires;
step S3: rotating a camshaft of the camshaft mechanism to enable the third cam piece, the seventh cam piece and the eleventh cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the cam pieces to penetrate through the split-strand wires;
step S4: rotating a camshaft of the camshaft mechanism to enable the first cam piece, the second cam piece, the third cam piece, the fifth cam piece, the seventh cam piece, the ninth cam piece, the eleventh cam piece and the thirteenth cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the rest cam pieces to penetrate through the split wires;
step S5: rotating a camshaft of the camshaft mechanism to enable a first cam piece, a second cam piece, a third cam piece, a fifth cam piece, a sixth cam piece, a seventh cam piece, a ninth cam piece, a tenth cam piece, an eleventh cam piece, a thirteenth cam piece and a fourteenth cam piece to be located at a high-position section, and enable the rest cam pieces to be located at a low-position section, and then enabling the rest cam pieces to penetrate through a stranded wire;
step S6: rotating a camshaft of the camshaft mechanism so that the first cam piece, the third cam piece, the fourth cam piece, the fifth cam piece, the seventh cam piece, the eighth cam piece, the ninth cam piece, the tenth cam piece, the eleventh cam piece, the twelfth cam piece and the thirteenth cam piece are positioned in a high-position section, and the rest cam pieces are positioned in a low-position section and then penetrate through the stranded wire;
and step S7, continuing to rotate the camshaft of the camshaft mechanism to enable the first cam piece to be in the high-position section and the rest cam pieces to be in the low-position section, and then penetrating through the stranded wire to complete the stranding.
One or more technical solutions provided in the embodiments of the present application have at least the following technical effects or advantages:
1. the camshaft mechanism in the embodiment of the application can lift the heald frame to complete leasing to replace manual operation, then a leasing path from top to bottom is formed, so that the heald frame is in one-to-one butt joint with the new warp yarn on the warp shaft, the rapid warp connecting of the warp connecting machine is utilized, the waiting time of the loom is shortened to the greatest extent, and the loom can continue to work, so that the working efficiency is improved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are some embodiments of the present invention, and other drawings can be obtained by those skilled in the art without creative efforts.
Fig. 1 is a schematic structural view of a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the present invention;
fig. 2 is a schematic structural view of a first cam plate of a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the present invention;
fig. 3 is a schematic structural view of a second cam plate of a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the invention;
fig. 4 is a schematic structural view of a third cam plate of a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the present invention;
fig. 5 is a schematic structural view of a fourth cam plate of a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the present invention;
fig. 6 is a schematic structural view of a fifth cam plate of a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the present invention;
fig. 7 is a schematic view of a lift plan for a camshaft mechanism loaded with fourteen cam plates according to embodiment 1 of the present invention;
reference numerals:
1-a box body; 2-a camshaft; 3-a cam piece; 4-connecting bolts; 5-bolt holes;
301-a first cam piece; 302-a second cam lobe; 303-third cam lobe; 304-a fourth cam lobe; 305-a fifth cam lobe; 306-a sixth cam lobe; 307-a seventh cam lobe; 308-an eighth lobe; 309-ninth cam piece; 310-a tenth cam lobe; 311-eleventh cam piece; 312-a twelfth cam piece; 313-a thirteenth lobe; 314-fourteenth cam piece.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
It is to be noted that, unless otherwise specified, technical or scientific terms used herein shall have the ordinary meaning as understood by those skilled in the art to which the invention pertains.
In the description of the present application, it is to be understood that the terms "upper", "lower", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the referred devices or elements must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention.
In this application, unless expressly stated or limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly and can include, for example, fixed connections, removable connections, or integral parts; can be mechanically or electrically connected; either directly or indirectly through intervening media, either internally or in any other relationship. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The camshaft mechanism who loads into fourteen cam pieces that this application embodiment provided for shedding device's the lifting heddle unit drives the heald frame motion, has solved among the prior art new warp beam and has docked inconvenient technical problem when the last hub connection warp.
The general idea of the embodiment of the application is as follows: according to the embodiment of the application, a camshaft mechanism is designed, fourteen specific cam sheets are selected and arranged in a specific sequence, and finally, the leasing operation is completed through a special heald lifting method, so that the upper warp connecting of a new warp beam is realized.
In order to better understand the technical solutions, the technical solutions will be described in detail below with reference to the drawings and the detailed description.
Example 1
As shown in fig. 1, the present embodiment discloses a camshaft mechanism loaded with fourteen cam plates, including:
a box body 1;
the camshaft 2 is horizontally arranged in the box body;
fourteen cam plates 3 mounted on the camshaft 2, the cam plates 3 being divided into first to fourteenth cam plates in order from left to right;
the connecting bolt 4 is connected with fourteen cam sheets 3, the camshaft mechanism in the embodiment of the application is a part of the shedding device and is used as a shedding unit of the loom, and different movement tracks of heald frames are realized through different movement stages of the cam sheets 3, so that different weaving effects are realized.
In the embodiment of the application, six bolt holes 5 are uniformly formed in each cam plate 3, the bolt holes 5 are uniformly distributed by taking the center of the cam plate 3 as the center of a circle, and the center line of each bolt hole 5 is connected with the center of the cam plate 3 to divide the outer edge of the cam plate into six stages; all cam plates in the embodiment of the present application are divided into six stages, which is a practical requirement for facilitating subsequent machining and adjustment.
Specifically, the number of the connecting bolts 4 is the same as that of the bolt holes 5, and is six, and the connecting bolts 4 in the embodiment of the present application are for realizing the synchronous motion of the fourteen cam plates 3, which is convenient for realizing the subsequent functions.
Specifically, as shown in fig. 2, the first cam piece 301 is an 5/1 cam piece, and six stages of the first cam piece 301 are sequentially divided into five high-level sections and one low-level section; specifically, the six stages are sequentially divided into an ascending stage, four high-position staying stages and a descending stage.
As shown in fig. 3, the second cam 302 is 2/4 cam, and six stages of the second cam 302 are sequentially divided into two high-position sections and four low-position sections; specifically, the six stages are divided into one ascending, one high-order dwell, one descending, and three low-order dwells.
As shown in fig. 4, the third cam piece 303, the seventh cam piece 307 and the eleventh cam 311 are 4/2 cam pieces, and six stages of the third cam piece 303 are sequentially divided into four high-position stages and two low-position stages; specifically, the six stages are divided into one ascending, three high-order dwells, one descending, and one low-order dwells.
As shown in fig. 5, the fourth cam piece 304, the sixth cam piece 306, the eighth cam piece 308, the tenth cam piece 310, the twelfth cam piece 312 and the fourteenth cam piece 314 are all 1/5 cam pieces, and six stages of the fourth cam piece 304 are sequentially divided into a high stage and five low stages; specifically, the six stages are sequentially divided into an ascending stage, a descending stage and four low-level staying stages.
As shown in fig. 6, the fifth cam piece 305, the ninth cam piece 309 and the thirteenth cam piece 313 are 31/11 cam pieces, and six stages of the fifth cam piece 305 are sequentially divided into three high stages, one low stage, one high stage and one low stage; specifically, the six stages are divided into a rising stage, two high positions for staying, a falling stage, a rising stage and a falling stage, and the cam piece in the embodiment of the application has a specific shape and a specific sequence, so as to realize the subsequent leasing action; specifically, the high-order section is divided into two rises and two high-order dwells, and the low-order section is divided into two falls. In the embodiment of the present application, the ascending and high-order stay are high-order sections, and the descending and low-order stay are low-order sections.
As shown in the drawings, the first cam piece 301 to the fifth cam piece 305 are explained by taking the outer edge of the segment between the two bolt holes 5 as one stage, which is equivalent to the heald frame, respectively, whereby it can be seen that each cam piece has six stages; the high-level section and the low-level section are used for judging whether the heald frame is at a high point or a low point and judging the high-level section and the low-level section of the cam piece, specifically, as shown in the figure, the center of the cam piece is used for drawing a circle, the outer edge can see whether the cam piece is at a high level or a low level, and the intersection point of the right side of each cam piece and a horizontal line passing through the center is used as an origin point during assembly.
The embodiment of the application also discloses application of the camshaft mechanism loaded with fourteen cam sheets, namely, the camshaft mechanism is adopted to perform leasing on machine warp yarns to form an upper layer of stranding path and a lower layer of stranding path; when a new warp beam is warped, warp yarns are required to be divided into upper and lower twisting paths through a lease reed and can be directly used for warp threading, but for the warp beam, as warp yarn broken ends are caused by shuttle rolling, cloth removing and the like in the weaving process, the warp yarn sequence is disordered, the warp yarn on the warp beam is not in one-to-one butt joint with the warp yarn on a new warp beam, and therefore the warp yarn on the warp beam is required to be straightened to form the upper and lower twisting paths and can be in one-to-one butt joint with the warp yarn on the new warp beam; the camshaft mechanism in the embodiment of the application can meet the requirements, the lifting of the excircle outline curve of the cam sheet is utilized, and a specific heald lifting method is adopted, so that the heald lifting and leasing requirements of odd heald frames of single warp beam in double warp beams are met.
The method comprises the following steps of:
step S1: choose for use camshaft mechanism assembles into the lifting heald unit, drives the motion of heald frame motion in order to realize the warp through the lifting heald unit, and this camshaft mechanism is foretell camshaft mechanism, and other accessories are current accessories, and it is prior art to specifically assemble into the lifting heald unit, and it is no longer repeated here.
Step S2: rotating a camshaft of the camshaft mechanism to enable the first cam piece, the fifth cam piece, the ninth cam piece and the thirteenth cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the rest cam pieces to penetrate through the split-strand wires;
step S3: rotating a camshaft of the camshaft mechanism to enable the third cam piece, the seventh cam piece and the eleventh cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the cam pieces to penetrate through the split-strand wires;
step S4: rotating a camshaft of the camshaft mechanism to enable the first cam piece, the second cam piece, the third cam piece, the fifth cam piece, the seventh cam piece, the ninth cam piece, the eleventh cam piece and the thirteenth cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the rest cam pieces to penetrate through the split wires;
step S5: rotating a camshaft of the camshaft mechanism to enable a first cam piece, a second cam piece, a third cam piece, a fifth cam piece, a sixth cam piece, a seventh cam piece, a ninth cam piece, a tenth cam piece, an eleventh cam piece, a thirteenth cam piece and a fourteenth cam piece to be located at a high-position section, and enable the rest cam pieces to be located at a low-position section, and then enabling the rest cam pieces to penetrate through a stranded wire;
step S6: rotating a camshaft of the camshaft mechanism so that the first cam piece, the third cam piece, the fourth cam piece, the fifth cam piece, the seventh cam piece, the eighth cam piece, the ninth cam piece, the tenth cam piece, the eleventh cam piece, the twelfth cam piece and the thirteenth cam piece are positioned in a high-position section, and the rest cam pieces are positioned in a low-position section and then penetrate through the stranded wire;
and step S7, continuing to rotate the camshaft of the camshaft mechanism to enable the first cam piece to be in the high-position section and the rest cam pieces to be in the low-position section, and then penetrating through the stranded wire to complete the stranding.
The detailed schematic diagram is shown in FIG. 7, the lifting is divided into six steps, wherein
Figure BDA0002870025010000071
Indicating that the cam lobe is in the high stage (warp float) and □ indicating that the cam lobe is in the low stage (weft float); wherein steps S2 and S3 are operations for the upper beam, steps S4 and S5 are operations for the lower beam, and steps S6 and S7 are operations for the upper beam and the lower beam at the same time.
In the description of the present invention, numerous specific details are set forth. It is understood, however, that embodiments of the invention may be practiced without these specific details. In some instances, well-known methods, structures and techniques have not been shown in detail in order not to obscure an understanding of this description.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples and features of different embodiments or examples described in this specification can be combined and combined by one skilled in the art without contradiction.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; while the invention has been described in detail and with reference to the foregoing embodiments, it will be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not depart from the spirit and scope of the present invention, and they should be construed as being included in the following claims and description.

Claims (6)

1. A camshaft mechanism loaded with fourteen cam plates, comprising:
a box body;
the cam shaft is horizontally arranged inside the box body;
fourteen cam sheets installed on the cam shaft, the cam sheets being divided into first to fourteenth cam sheets in order from left to right;
and the connecting bolt is used for connecting fourteen cam sheets.
2. The camshaft mechanism with the fourteen cam plates loaded as in claim 1, wherein each cam plate is uniformly provided with six bolt holes, the bolt holes are uniformly distributed around the center of the cam plate, and the center line of each bolt hole is connected with the center of the cam plate to divide the outer edge of the cam plate into six stages.
3. The camshaft mechanism loaded with fourteen cam plates according to claim 2, wherein the number of the connecting bolts and the number of the bolt holes are identical and are six.
4. The camshaft mechanism with the fourteen cam plates loaded as claimed in claim 3, wherein the first cam plate is 5/1 cam plate, and six stages of the first cam plate are divided into five high-position sections and one low-position section in sequence;
the second cam piece is an 2/4 cam piece, and six stages of the second cam piece are sequentially divided into two high-position sections and four low-position sections;
the third cam piece, the seventh cam piece and the eleventh cam are all 4/2 cam pieces, and six stages of the third cam piece are sequentially divided into four high-position sections and two low-position sections;
the fourth cam piece, the sixth cam piece, the eighth cam piece, the tenth cam piece, the twelfth cam piece and the fourteenth cam piece are all 1/5 cam pieces, and six stages of the fourth cam piece are sequentially divided into a high-position section and five low-position sections;
the fifth cam piece, the ninth cam piece and the thirteenth cam piece are all 31/11 cam pieces, and six stages of the fifth cam piece are sequentially divided into three high-level sections, one low-level section, one high-level section and one low-level section.
5. Use of a camshaft mechanism carrying fourteen cam plates, characterised in that the camshaft mechanism according to any of claims 1-4 is used to split warp machine yarns to form two layers of twisted paths.
6. The application of the camshaft mechanism loaded with fourteen cam plates, which is characterized in that the leasing steps are as follows:
step S1: selecting the camshaft mechanism to assemble a heald lifting unit, and driving a heald frame to move through the heald lifting unit to realize the movement of warp yarns;
step S2: rotating a camshaft of the camshaft mechanism to enable the first cam piece, the fifth cam piece, the ninth cam piece and the thirteenth cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the rest cam pieces to penetrate through the split-strand wires;
step S3: rotating a camshaft of the camshaft mechanism to enable the third cam piece, the seventh cam piece and the eleventh cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the cam pieces to penetrate through the split-strand wires;
step S4: rotating a camshaft of the camshaft mechanism to enable the first cam piece, the second cam piece, the third cam piece, the fifth cam piece, the seventh cam piece, the ninth cam piece, the eleventh cam piece and the thirteenth cam piece to be located in a high-position section, and enable the rest cam pieces to be located in a low-position section, and then enabling the rest cam pieces to penetrate through the split wires;
step S5: rotating a camshaft of the camshaft mechanism to enable a first cam piece, a second cam piece, a third cam piece, a fifth cam piece, a sixth cam piece, a seventh cam piece, a ninth cam piece, a tenth cam piece, an eleventh cam piece, a thirteenth cam piece and a fourteenth cam piece to be located at a high-position section, and enable the rest cam pieces to be located at a low-position section, and then enabling the rest cam pieces to penetrate through a stranded wire;
step S6: rotating a camshaft of the camshaft mechanism so that the first cam piece, the third cam piece, the fourth cam piece, the fifth cam piece, the seventh cam piece, the eighth cam piece, the ninth cam piece, the tenth cam piece, the eleventh cam piece, the twelfth cam piece and the thirteenth cam piece are positioned in a high-position section, and the rest cam pieces are positioned in a low-position section and then penetrate through the stranded wire;
and step S7, continuing to rotate the camshaft of the camshaft mechanism to enable the first cam piece to be in the high-position section and the rest cam pieces to be in the low-position section, and then penetrating through the stranded wire to complete the stranding.
CN202011604088.XA 2020-12-29 2020-12-29 Camshaft mechanism loaded with fourteen cam plates and application thereof Pending CN112725976A (en)

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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0253930A (en) * 1988-07-14 1990-02-22 Benninger Spa Method for forming yarn crossing in warping machine and separation part
CN2110644U (en) * 1992-01-27 1992-07-22 钱宏 Organzine beaming leasing reed
CN2113992U (en) * 1991-12-16 1992-08-26 北京光华染织厂 Warping leasing mechanism
CN2130663Y (en) * 1991-09-30 1993-04-28 徐州新港草编工业有限公司 Four-layer warp separator for close warp straw mat weaving machine
CN2312949Y (en) * 1997-06-26 1999-04-07 江苏射阳纺机股份有限公司 Warp automatic bursting device
US20050051228A1 (en) * 2003-09-10 2005-03-10 Groz-Beckert Kg Low-vibration shedding system
CN1865557A (en) * 2005-05-16 2006-11-22 株式会社丰田自动织机 Lease method of spinning machine and lease device
CN202279899U (en) * 2011-10-21 2012-06-20 宁波维科丝网有限公司 Heald frame splitting device for textile machine
CN110938932A (en) * 2019-12-31 2020-03-31 江苏牛牌纺织机械有限公司 Camshaft mechanism and application thereof

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0253930A (en) * 1988-07-14 1990-02-22 Benninger Spa Method for forming yarn crossing in warping machine and separation part
CN2130663Y (en) * 1991-09-30 1993-04-28 徐州新港草编工业有限公司 Four-layer warp separator for close warp straw mat weaving machine
CN2113992U (en) * 1991-12-16 1992-08-26 北京光华染织厂 Warping leasing mechanism
CN2110644U (en) * 1992-01-27 1992-07-22 钱宏 Organzine beaming leasing reed
CN2312949Y (en) * 1997-06-26 1999-04-07 江苏射阳纺机股份有限公司 Warp automatic bursting device
US20050051228A1 (en) * 2003-09-10 2005-03-10 Groz-Beckert Kg Low-vibration shedding system
CN1865557A (en) * 2005-05-16 2006-11-22 株式会社丰田自动织机 Lease method of spinning machine and lease device
CN202279899U (en) * 2011-10-21 2012-06-20 宁波维科丝网有限公司 Heald frame splitting device for textile machine
CN110938932A (en) * 2019-12-31 2020-03-31 江苏牛牌纺织机械有限公司 Camshaft mechanism and application thereof

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