Twist variation
10669648 ยท 2020-06-02
Inventors
Cpc classification
D01H1/26
TEXTILES; PAPER
D01H7/2291
TEXTILES; PAPER
D01H7/86
TEXTILES; PAPER
D02G3/285
TEXTILES; PAPER
International classification
Abstract
Methods of using a two-for-one twister are described to twist at least three yarns in various ways to provide desirable yarn constructions. For some embodiments, at least two yarns can balloon about one or more bucket yarns. For some embodiments, bucket yarns can be provided in an innovative manner, whether side-by-side and/or a first bucket yarn feeding through a second supplied bucket yarn.
Claims
1. A process for cable-twisting together at least component yarns, including the steps of feeding at least two singles yarn as first and third yarns from a creel to form adjacent creel component yarns and feeding the creel component yarns simultaneously onto a rotating disc, whereby the creel component yarns emerge from the disc and form a balloon, the improvement comprising; a) feeding at least one singles yarn as a second yarn from a bucket along with a sixth yarn fed from a non-colinear and spaced apart location in the bucket and providing as a bucket component yarn; and b) feeding the bucket component yarn to a yarn guide eyelet, where the creel component yarns emerge from the balloon and wrap around the bucket component yarn to form a cable-twisted yarn comprising at least four component yarns; and wherein the at least two singles yarns feed to a first tension device which applies tension simultaneously to both the first and third yarns; and wherein a second tension device is located between the first tension device and a first yarn supply, with said second tension device applying a controlled preset tension to the first yarn.
2. The method of claim 1 further comprising a third tension device located between the first tension device and a third yarn supply, said third tension device applying a third tension to the third yarn independently of the tension applied by the first tension device to the first yarn.
3. The method of claim 2 further comprising a fourth tension device located between the first tension device and a fourth yarn supply, said fourth tension device applying a fourth tension to a fourth yarn independently of the tension applied by the first tension device to the first yarn, said fourth yarn fed with the first and third yarns as adjacent creel component yarns.
4. The method of claim 2 further comprising a fifth tension device located between the first tension device and a fifth yarn supply, said fifth tension device applying a fifth tension to a fifth yarn independently of the tension applied by the first tension device to the first yarn, said fifth yarn fed with the first, third and fourth yarns as adjacent creel component yarns.
5. The method of claim 1 wherein the first yarn is independently tensioned relative to the third yarn.
6. The method of claim 1 further comprising a seventh yarn originating from the bucket from a source spaced apart and non-colinear with the second yarn and fed simultaneously with the second yarn.
7. The method of claim 6 wherein the seventh yarn is located beside the sixth yarn in the bucket and fed simultaneously with the second yarn.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings illustrate preferred embodiments of the invention and, together with the description, serve to explain the invention. These drawings are offered by way of illustration and not by way of limitation.
(2)
(3)
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(6)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(7)
(8) The first yarn 5 is withdrawn form the first supplied bobbin 7 to be fed to a regulatable yarn tension influencing device 6 which is normally arranged between the creel 4 and the cabling spindle 2 in the yarn course, often by means of which device the yarn tension can be varied remotely with a control mechanism 18. For this purpose, the yarn tension influencing devices can be connected to a control mechanism 18, which can carry out the regulation of yarn tension applied by the device 6. Yarn tension influencing device 6 can be connected upstream of the twisted yarn plate 8, viewed in the yarn withdrawal direction.
(9) Additionally, at least one other outer yarn or third yarn 19 can be fed from third supply bobbin 21 through a separate tensioning device 22 and possibly then both first and third yarns 5,19 could then be co-fed (simultaneously) possibly through another tensioning device 23 to be fed as a combined yarn 24 (adjacent creel component yarns) to the twisted yarn plate 8 (rotating disc) probably with control mechanism 18 (and possibly remotely). First supplied bobbin 7 and third supply bobbin 21 can be a portion of a creel 4.
(10) For many embodiments by having a separate tensioning devices 6,22 the tension on the yarns 5,19 can be controlled to be fed in a desired manner to the twisted yarn plate 8.
(11) Unlike U.S. Pat. No. 6,098,392 which purposefully twists the yarns A and B together from bobbins 1,2, the applicant certainly can perform that step, or alternatively direct the yarns without necessarily performing the same twist action as is done in U.S. Pat. No. 6,098,392 for some embodiments. Instead of a precise twist as is had with patent '392, the applicant can provide one or more of a striated look or parallel look utilizing technology shown and described in this application.
(12) Furthermore, to the extent that the yarns 5 and 19 are intentionally twisted together to form a combined yarn 24, like the '392 patent teaches, the separate tensioning devices 6 and 22 can assist in precisely controlling those yarns 5,19 as opposed to only having a single tension 23 control the tension for the combined yarn 24.
(13) The first and third yarns 5,19 (and/or others) can be directed to run through spindle drive 3 in a rotational direction, and exit the spindle drive 3 below the twisted yarn plate 8. The outer yarns are the first and third yarns 5,19 can be deflected upwardly at the edge of the twisted yarn plate 8 so that the first and third yarns 5,19 can be directed around the second yarn 16 from the second supply bobbin 15 (and/or others) along the cabling spindle 2 with a formation of a free yarn balloon B. The combining eyelet 9 can be where the outer yarn 5 and/or 19 withdrawn from the first supply bobbin 7 and third supply bobbin 21 (and/or others) and the second yarn 16 withdrawn from the second supply bobbin 15 (and/or other) can guide together, to thus determine the height the free yarn balloon B being formed. The combining eyelet 9 is where the twisting and/or cording point at which the yarns 5,19,16 (and/or others) come together to form the corded yarn or twisted yarn 7 as would be fed further in the processing system as will be explained below.
(14) A winding device 12 can be utilized downstream to provide a drive roller 13 and a take-up bobbin 14 by means of frictional engagement with the drive roll 13 to receive the twisted yarn 17 thereon from a yarn guide eyelet. The control mechanism 18 may not only control any of the tension device(s) such as tension devices 6,22,23,25 which might affect the tension coming from the second yarn 16 and/or others (and possibly remotely), but also the speed of the drive roller 13, the spindle drive 3 and/or other portions of the process so as to affect the combination of the yarns as to combined to provide twisted yarn 17 (also known as a cable-twisted yarn) which has at least three component yarns in the embodiments shown and described herein. An ability to achieve a rather unique twisted arrangements and twist variations is believed to be unique. The yarn tension devices 6,22,23 and/or 25 can vary the tension of the yarns 5,9,24,16 etc. The yarn tension devices 6,22,23 can also vary the tension of the combined yarn 24 (independently and/or simultaneously, as applicable, or desired) as fed to the twisted yarn plate 8 as would be understood by those of ordinary skill in the art.
(15) Various tension devices 6,22,23,25 can be electronically controlled brakes or active delivery mechanisms or a combination of the two components as would be understood by those of ordinary skill in the art. There are many tension devices, whether they be variable such as controlled by controller 18, or fixed, which could be set and/or even preset to desired tensions which would be available for various embodiments.
(16)
(17) Although the yarns 29-32,35-39 are shown not being intentionally twisted together as are done in U.S. Pat. No. 6,098,392 at least some of them could be for various embodiments however utilizing the technology it would not be that difficult to modify the creel of the prior art twister in order to provide this feed construction to provide the creel 26. Of course, fewer bobbins 7,21,27,28 and/or others could provide the yarns 29-32,35-39 could be utilized as well in various embodiments. The yarns 29-32,35-39 could be striated, twisted, parallel, and/or otherwise provided in other combinations to provide different twist variations. By providing yarns 29-32,35-39 side by side, they may tend to provide striated patterns or they may be maintained in parallel arrangement to one another for various embodiments.
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(19) Additionally, while core cabling is certainly an option for the yarns 46,49, a separate option is shown in
(20) This leaves the alternate embodiments of
(21) With the various embodiments shown and described herein, many different twisting variations can be provided. Specifically, the various tension devices can be set to different settings to affect the twisted yarn 17. Furthermore, these tensions can be changed on the fly. Each and every yarn, whether there are up to twelve yarns or more, can be changed in tension and their relative placement relative to each other. Additionally, whether the yarns are twisted at the creels 4,26 or in the pot 45,55,65 can be varied before they are even fed to provide the twisted yarn 17 at combining eyelet 9. Only predetermined twisting is shown in the prior art, not striation and not fixed positioning (nor combinations of striation or fixed (i.e., parallel) positioning before predetermined twisting of first and second yarns). Many different creel constructions 4,26 can be provided starting with having at least two positions as is shown in
(22) The controller 18 if utilized, may be able to change the speed of the drive roll 13 as well as speed of the twisting spindle 3 whether on the fly, whether by modulating frequency and/or through other methods, so that a twister work station 1 can provide a plurality of different twisted configurations of various yarns to be utilized to then tuft into carpet to provide many different designs. Controller 18 can vary tensions as discussed herein as well for many embodiments.
(23) In addition to providing yarn for carpets, the twister 1 of the presently preferred embodiments can be utilized for other applications for which the applicant is unaware.
(24) Numerous alterations of the structure herein disclosed will suggest themselves to those skilled in the art. However, it is to be understood that the present disclosure relates to the preferred embodiment of the invention which is for purposes of illustration only and not to be construed as a limitation of the invention. All such modifications which do not depart from the spirit of the invention are intended to be included within the scope of the appended claims.