The present invention relates to a machine for texturing yarns, composed as known in the art of a feed section (creel), a texturing treatment section, and a section to take up the textured yarn (collection).
The system known in the art combines, downstream of these machines, one or more textured yarns with an elastomer yarn, generally Lycra, which is pre-stretched to impart greater elasticity to the combined yarns. The textured yarn forms a covering or coating around the elastomer yarn. Combination is performed with specific interlacing devices, generally air interlacing devices. An example of air interlacing is described in U.S. Pat. No. 3,940,917.
This process is also integrated with texturing machines to obtain, in a single cycle, the functions of texturing and interlacing. Combined devices to perform in-line texturing of the covering yarn and subsequent combination with the elastomer yarn are described in U.S. Pat. No. 6,393,817 and U.S. Pat. No. 5,008,992. Nonetheless, there are some drawbacks in known embodiments of this type. Firstly, the feed unit for the elastomer yarn is situated in a distant position from the texturing machine, and is thus inconvenient for the operator.
Moreover, the elastomer and textured yarns are fed directly to the interlacing zone. In U.S. Pat. No. 5,008,992 the textured yarn is fed directly into a nip between two feed rollers, into which the elastomer yarn is also fed, coming directly from an unwinder of a package of elastomer. The two yarns are delivered from the feed rollers to the interlacing jet.
The object of the present invention is the production of a combined machine, for texturing of a covering or coating yarn and for interlacing this yarn with an elastomer yarn, which overcomes the drawbacks of machines known in the art.
This and other objects and advantages, which shall appear clear to those skilled in the art from reading the text hereinafter, are attained with a machine comprising: a texturing zone through which a covering yarn advances; a feed unit for an elastomer yarn; combining means to combine the textured covering yarn with the elastomer yarn, which comprises a first roller to which the textured covering yarn and the elastomer yarn are fed; downstream of the first roller an interlacing device for interlacing said textured covering yarn and said elastomer yarn. Characteristically, according to the invention, a drawing roller of the textured covering yarn is disposed between the texturing zone and the first roller of combining means.
Advantageously, the speed ratio between the first roller of the combining means, the drawing roller and/or the feed unit of the elastomer yarn may be variable.
Further advantageous characteristics and embodiments of the invention are indicated in the appended claims.
The invention makes it possible to attain overfeed ratios (possibly also stretch to encourage better return) of the textured yarn and of stretch of the elastomer yarn before they enter the interlacing phase, to allow this phase to be performed in the most advantageous conditions.
This produces an excellent quality of resulting yarn and possibly also a reduction in air consumption in the interlacing device.
The position of the feed device of the elastomer yarn immediately downstream of the drawing roller of the textured yarn is ideal to facilitate threading, that is to say initial introduction of the yarn into the machine.
The invention shall now be described with reference to the appended drawings in which:
With reference firstly to
The ratio between the speed of rotation of the rollers A and B may be established as desired so as to allocate the textured covering yarn 22 a stretch or an overfeed chosen at will by the operator to obtain the most favorable conditions. Naturally, it is also possible to obtain a circumferential speed ratio of the rollers A and B of 1, with simple transfer of the yarn.
Likewise, the stretch ratio between the combining roller B and the delivery roller 26 of the feed unit C may be chosen at will, to impart the desired stretch to the elastomer yarn 20, which may differ from the stretch of the textured covering yarn 22.
In this way, the two yarns, textured 22 and elastomer 20, are sent to interlacing device 23 without being subjected to, in this device, stresses of any nature and in particular stretch or overfeed stresses differing from each other. This produces a better quality in the resulting yarn and possibly also a reduction in air consumption in the interlacing device 23. Positioned at the outlet in the interlacing device 23 is a pick up roller D for the composite yarn, formed by interlacing the yarns 20 and 22. The roller D cooperates with a counter pressure roller D1. The roller D is preferably operated at the most appropriate speed of the combining roller B (generally overfeed), in order to obtain the best interlacing conditions.
Downstream of the roller D (
It is understood that the drawing only shows one embodiment provided purely as a practical illustration of the invention, as the invention may vary in form and layout without departing from the scope of the concept which forms the invention. The presence of any reference numerals in the appended claims is intended to faclitate reading of the claims with reference to the description and the drawing, and does not limit the scope of protection represented by the claims.
Number | Date | Country | Kind |
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MI20010600 U | Nov 2001 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IT02/00706 | 11/8/2002 | WO | 00 | 11/15/2004 |
Publishing Document | Publishing Date | Country | Kind |
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WO03/042437 | 5/22/2003 | WO | A |
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Number | Date | Country |
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0 994 205 | Apr 2000 | EP |
2 749 859 | Dec 1997 | FR |
Number | Date | Country | |
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20060254246 A1 | Nov 2006 | US |