DEVICE AND METHOD FOR PRODUCING FANCY YARNS
20210214863 ยท 2021-07-15
Inventors
- Antonio Ripamonti (Usmate Velate, IT)
- Giuseppe Bosisio (Castello di Brianza, IT)
- Roberto Badi (Erba, IT)
Cpc classification
D02J1/06
TEXTILES; PAPER
D01H5/36
TEXTILES; PAPER
D02J1/08
TEXTILES; PAPER
D02G1/162
TEXTILES; PAPER
International classification
D02G1/16
TEXTILES; PAPER
D01H5/36
TEXTILES; PAPER
D02G1/00
TEXTILES; PAPER
D02J1/06
TEXTILES; PAPER
Abstract
The device (1) comprises a first roller (3) rotatable about a first rotation axis (3A) and a second roller (5) rotatable about a second rotation axis (5A), parallel to the first rotation axis (3A). The two are in mutual contact and define between them a yarn passage (7) and at least of them is motorized. The device further comprises 5 guide members (9) defining a feed path of at least a yarn (F; F1, F2, F3, F4), associated with the yarn passage (7) between the first roller (3) and the second roller (5). The guide members (9; 13) are movable with respect to the rollers (3, 5) in a direction substantially parallel to the first rotation axis (3A) and to the second rotation axis (5A), so as to take the yarn path temporarily outside the mutual contact 10 area between the rollers.
Claims
1. A device for generating variable drawing effects on a yarn the device comprising: a first roller rotatable about a first rotation axis; a second roller rotatable about a second rotation axis, parallel to the first rotation axis, wherein the first roller and the second roller are in contact with each other and define between them, in the mutual contact area, a yarn passage, and wherein at least one of said first roller and second roller is motorized; and at least a guide member defining a feed path for at least one yarn, associated with the yarn passage between the first roller and the second roller, wherein the guide member and said first roller and second roller are provided with a relative movement in a direction approximately parallel to the first rotation axis (and to the second rotation axis, said movement being such as to take the yarn feed path outside the yarn passage between the first roller and the second roller.
2. The device of claim 1, comprising a further guide member movable synchronously with the guide member.
3. The device of claim 2, wherein the guide member and the further guide member are positioned one upstream and the other downstream of the yarn passage between the first roller and the second roller, with respect to the feed direction of the yarn.
4. The device of claim 3, wherein the guide member and the further guide member define between them a portion of yarn feed path substantially orthogonal to the plane containing the first rotation axis and the second rotation axis.
5. The device of claim 2, wherein the further guide member comprises guide elements to guide a plurality of yarns side by side with one another.
6. The device of claim 1, wherein the guide member comprises guide elements to guide a plurality of yarns placed side by side.
7. The device of claim 1, wherein one of said first roller and second roller is idle, and is adapted to be driven in rotation through contact with the other of said first and second roller which is motorized.
8. The device of claim 1, wherein the first roller and the second roller each have at least one beveled edge.
9. A machine for producing a fancy yarn, the machine comprising: a feed path for at least one yarn from at least one feed spool to a winding bobbin; and, at least one device for generating variable drawing effects on the at least one yarn, wherein along said feed path there is arranged at least a yarn processing member and the at least one device, and the at least one device comprises. a first roller rotatable about a first rotation axis; a second roller rotatable about a second rotation axis, parallel to the first rotation axis, wherein the first roller and the second roller are in contact with each other and define between them, in the mutual contact area, a yarn passage and wherein at least one of said first roller and second roller is motorized; and at least a guide member defining a feed path for the at least one yarn , associated with the yarn passage between the first roller and the second roller, wherein the guide member and said first roller and second roller are provided with a relative movement in a direction approximately parallel to the first rotation axis and to the second rotation axis, said movement being such as to take the yarn feed path outside the yarn passage between the first roller and the second roller.
10. The machine of claim 9, wherein a further pair of rollers is arranged along the feed path, the rotation speed of the rollers of the further pair of rollers and the rotation speed of the first and of the second roller of the device being adapted to control the tension of the yarn.
11. The machine of claim 10, wherein said processing member is selected from the group comprising: an oven, a godet roller, a false twist assembly, an interlacing or texturizing jet, a combination thereof.
12. A method for producing a fancy yarn, comprising the steps of: feeding at least one yarn along a feed path between a first roller rotating about a first axis, and a second roller, rotating about a second axis approximately parallel to the first axis, said first roller and second roller being in contact with each other and defining between them a yarn passage; wherein at least one of said first roller and second roller is motorized; and while the yarn advances along the feed path, temporarily moving the feed path outside the yarn passage between the first roller and the second roller and returning the feed path inside the yarn passage between the first roller and the second roller and imparting on the yarn a suddenly variable drawing effect.
13. The method of claim 12, further comprising the step of guiding the yarn by means of at least a guide member upstream or downstream of the yarn passage between the first roller and the second roller.
14. The method of claim 12, further comprising the steps of: guiding the yarn by means of a first guide member upstream of the yarn passage between the first roller and the second roller; and guiding the yarn by means of a second guide member downstream of the yarn passage between the first roller and the second roller, and wherein the step of moving the feed path comprises the step of moving the first guide member and the second guide member simultaneously in a direction substantially parallel to the rotation axes of the first roller t3-) and of the second roller.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The invention will be better understood by following the description and accompanying drawings, which show a non-limiting exemplary embodiment of the invention. More in particular, in the drawing:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF AN EMBODIMENT
[0029] With initial reference to
[0030] With initial reference to
[0031] One of the two rollers 3, 5 can be coated with a material with high coefficient of friction, such as natural rubber, synthetic rubber, or the like. In the embodiment shown, the roller 5 is coated with a coating 5R made of a material with high coefficient of friction, so that the mutual contact between the rollers 3, 5 allows motion to be transmitted from the roller 3 to the roller 5.
[0032] The two rollers 3, 5 are in mutual contact and form therebetween a yarn passage 7, which is pinched between the rollers 3, 5 in the mutual contact area between them. In the present context, the area between the rollers 3, 5 where they are in mutual contact, and in which the yarn passage is defined, is also called nip 7. A feed path of yarns F1, F2, F3, F4 is indicated with Pa. In some operating conditions of the device 1 the feed path Pa passes through the nip 7, i.e., through the yarn passage 7 defined in the contact area between the rollers 3, 5, as shown in
[0033] F1, F2, F3, F4 can pass outside the nip 7, i.e., outside the mutual contact area between the rollers 3, 5. While the embodiment of
[0034] The device 1 further comprises a first guide member 9, with a head 11 forming one or more guide elements for one or more yarns F1-F4. In the example shown, the guide member 9 comprises a head 11 that forms four guide elements for the four yarns.
[0035] In some embodiments, the device 1 comprises a second guide member 13, with a head 15 forming one or more guide elements for the yarns F1-F4. In preferred embodiments, the first guide member 9 and the second guide member 13 are substantially identical to one another. In some embodiments, the two guide members 9, 13 can be mechanically connected to one another; for example, they can be connected to a same support 17.
[0036] The heads 11 and 15 can have ceramic bodies that define one or more guide grooves for the yarns. In the example illustrated the heads 11 and 15 each have four guide grooves.
[0037] The two guide members 9, 13 are positioned one upstream and the other downstream of the nip 7, or contact area between the rollers 3, 5, with respect to the direction of advance of the yarns F1-F4 along the feed path Pa. Said direction of advance is indicated by arrow fF. The heads 11, 15 of the two guide members 9, 13 can be arranged so that the portion of the feed path Pa of the yarns F1-F4, defined between the two heads 11, 15 is approximately orthogonal to a plane containing the two rotation axes 3A, 5A of the two rollers 3, 5.
[0038] The two guide members 9, 13 and the related heads 11, 15 are provided with a reciprocating translation motion according to the double arrow f9 with respect to the rollers 3, 5. The movement is clearly visible comparing
[0039] In the view of
[0040] The motion according to f9 is a reciprocating motion that can be controlled electronically, for example so that it is periodic, with a simple or complex law of motion, or random, for the purposes that will apparent from the description below. Therefore, the yarns F1-F4 are repeatedly taken from the position between the rollers 3, 5 (
[0041] Due to the fact that the two guide members 11, 13 are fixed to a common support 17, the reciprocating translation movement according to f9 can be imparted on the two guide members 11, 13 by a same actuator, not shown. For example, the translation movement can be imparted by an electronically controlled electric motor, in combination with a mechanical transmission that converts the rotational motion of the electric motor into a translational motion of the support 17.
[0042] Operation of the device described above is as follows. The rollers 3, 5 can belong to a drawing assembly, arranged along a yarn feed path in a complex machine, for example a texturizing machine. Exemplary embodiments of these machines will be described below with reference to
[0043] A first simplified layout of a texturizing machine, in which a device 1 of the type illustrated in
[0044] Operation of the machine 20 as a whole, without the device 1, is known (see, for example U.S. Pat. No. 6,820,405). The addition of the device 1 allows a sudden modification of the draw of the yarn F along the feed path Pa1, taking the yarn F rapidly inside and outside the mutual contact area 7 between the rollers 3, 5 of the device 1 in the manner described above. This causes the formation of fancy effects in the yarn.
[0045] In a modified embodiment, as illustrated in
[0046]
[0047] The feed paths Pa1, Pa2 converge into a common feed path Pa in which an air texturizing jet 42 is located and where the two yarns Fa and Fe are combined to form a composite yarn Fc. The feed path Pa ends with a take-up assembly B of the yarn on a bobbin. A master godet 44 that sets the speed of the machine is arranged upstream of the take-up assembly B.
[0048] The device 1 allows the tension in the yarn Fe, and consequently its degree of draw, to be modified rapidly and repeatedly, generating variable effects on the yarn upstream of the interlacing jet 42.
[0049]
[0050]
[0051] More in particular,
[0052] Pa of the yarns F coming from the spools R positioned on the creel 52. A false twist assembly 58 is positioned downstream of the cooling plate 56. The briefly described machine 50 is per se known.
[0053] A device 1 of the type illustrated in
[0054]
[0055] It must be understood that the diagrams of
[0056] Moreover, it must be understood that the device 1 can be used in single or multiple machines, for example in machines as illustrated in