Multifilament textile yarns with hollow section, method for...

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Reexamination Certificate

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C428S336000, C428S395000

Reexamination Certificate

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06565972

ABSTRACT:

The present invention relates to a multifilament textile yarn, the filaments of which have a hollow cross section, to a process for manufacturing this hollow yarn and to the textile surfaces obtained with such a yarn.
It relates more particularly to the manufacture of multifilament yarns comprising hollow filaments obtained by melt spinning a polyamide composition.
The use of hollow textile yarn in the production of textile surfaces has been sought for a very long time for producing lighter and thermally more insulating garments. However, the manufacture of filaments which include a large hollow volume and exhibit good regularity has proved to be very difficult, especially at spinning speeds and filament counts which are compatible with industrial manufacture and are suitable especially for textile applications.
A process was proposed in 1956 for manufacturing a hollow polyamide yarn. This process is described in Patent GB 843,179. It consists in spinning the polyamide in a spinneret which includes spinneret holes in the form of just one circular arc, the ends of the said arc being separated by a distance of between 0.05 and 0.3 mm.
That patent describes the manufacture of nylon-6 filaments obtained at a spinning rate of 700 m/min. The filaments are then subjected to a drawing step in order to obtain the desired count.
The spinning rate is very low compared with the rates of current industrial processes which are often greater than 3000 m/min. Furthermore, in the current processes the drawing step is often integrated into the spinning, without intermediate reworking of the filaments.
A process for obtaining polyamide filaments with a hollow cross section by a high-speed (greater than 1500 m/min.) spinning process has also been proposed in Patent Application WO 95/25188. However, this process requires the spinning of a polyamide with a high viscosity (V
R
greater than 50 and preferably greater than 60). Such a viscosity is high compared with that of the polyamides employed for the manufacture of conventional textile yarns, which is generally less than 50. That document specifies that the production of hollow filaments according to the process described is impossible with a polyamide of V
R
less than 50. Thus, the process described in that document requires an additional step in order to increase the viscosity of the polyamide, for example by postcondensation or by using catalysts. The spinneret used in that document has spinneret holes consisting of several (at least 2) circular arcs, the ends of which are a small length apart.
One of the objects of the present invention is to propose a multifilament textile yarn, the filaments of which have a hollow cross section, the yarn being obtained by a spinning or spinning-drawing process which has the advantages of the current industrial processes for spinning filaments with a solid cross section, namely productivity and regularity of the properties of the yarn, by using a polyamide of V
R
similar to that of the polyamides used in the manufacture of textile yarns.
For this purpose, the invention proposes a multifilament polyamide textile yarn having a filament count of less than 10 dtex and the filaments of which have a hollow cross section comprising a central empty area representing at least 5% of the total area of the cross section of the said filament, characterized in that the yarn has an Uster coefficient (U %) of less than 3% and the number of filaments having a cross section in the form of a circular arc is less than 30% of the total number of filaments having a hollow cross section.
The term “filament having a hollow cross section” should be understood to mean all the filaments obtained from a spinneret hole in the form of a circular arc, as will be described below. In other words, the hollow filaments are those whose cross section is in the form of an open or closed ring.
According to the invention, the multifilament yarn has a U % of less than 2%, preferably less than 1%.
Furthermore, the number of filaments in the form of a circular arc is advantageously less than 20%, preferably less than 10%, of the total number of filaments having a hollow cross section.
The term Up or Uster coefficient is representative of the regularity of a continuous yarn. Thus, this coefficient is determined by measuring the variations in the count of a continuous yarn on an Uster machine (Zellweger).
In order to carry out this measurement, the yarn maintained under a certain tension runs at a constant speed between the plates of a capacitor, the variation in the dielectric element formed by the yarn, due to variation in mass of the yarn, causes a variation in the capacitance of the capacitor, which is translated into the irregularity in the yarn count.
A graph showing the irregularities in the count or variation in mass along the yarn is plotted, the Uster coefficient (U %) representing the mean variation in mass, expressed as % of the mean mass.
According to another preferred characteristic of the invention, the percentage of empty area in the cross section of the filaments is greater than 10%, preferably greater than 15%, of the cross section of each filament. Advantageously, this value is between 15 and 50%.
According to another characteristic of the invention, the multifilament yarn is obtained by spinning, using a spinneret, a polyamide-based composition having a relative viscosity V
R
of greater than 40 and preferably between 40 and 55, advantageously between 40 and 50.
The relative viscosity V
R
of the polyamide is determined on an 8.4% polymer solution in formic acid.
The polyamide suitable for the invention is chosen from the group advantageously comprising nylon-6, nylon-6,6, polyamide blends comprising at least 80% by weight of nylon-6,6 or nylon-6, and copolyamides comprising at least 80% by number of nylon-6,6 or nylon-6 units.
The yarn of the invention exhibits excellent regularity and has no open filaments or filaments with a cross section in the form of a circular arc, that is to say which have not coalesced at the spinneret exit, and avoids the problems of breakage and buckling in the downstream treatments of the yarn, such as, for example, texturizing, dyeing, weaving or knitting, as well as irregularities on the textile surfaces.
The subject of the invention is also a process for manufacturing a multifilament yarn possessing the characteristics indicated above.
According to the invention, the process for manufacturing a multifilament polyamide yarn comprising filaments of hollow cross section consists in extruding a polyamide composition through at least one spinneret comprising several spinneret holes in order to form filaments, in making at least some of the said filaments converge at a point remote from the spinneret in order to form the said multifilament yarn and then to wind up the said yarn on a reel, characterized in that each spinneret hole consists of a slot in the form of a circular arc, the ends of which are separated by a length at most equal to 5 times the mean width of the said slot emerging at the exit face of the spinneret, the filaments being cooled on leaving the spinneret and the yarn being wound up at a rate of greater than 3000 m/min., preferably greater than 3500 m/min.
According to another characteristic of the invention, the width of the slot forming a spinneret hole on the exit surface of the spinneret is advantageously between 0.05 mm and 0.12 mm.
According to a novel characteristic of the invention, the ends of the circular arc forming each spinneret hole are symmetrical over at least 5% of the total length of the said circular arc, preferably Over at least 15% of this total length.
The spinnerets are produced using the standard techniques, such as electrical discharge machining.
Advantageously, the density of holes on a spinneret is between 0.25 holes/cm
2
and 3 holes/cm
2
.
The yarn leaving the spinneret is cooled. The distance between the start of the cooling and the exit of the spinneret is as short as possible technologically. Thus, immediate cooling at the spinneret exit may be difficult t

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