Method and device for hydroentangling a web made of a fibrous cellulose product, and a web of this type
The invention relates to a process of hydroentangling a fibrous web (N) including of positioning the web on a porous moving support ( 10 ) in translatory movement or in rotation about an axis, and of treating at least one side of the web by means of a plurality of streams of water arranged in a row perpendicular to the direction of movement of the web, characterized in that the row includes streams with a first cross-section ( 14 A) and at least streams with a second cross-section ( 24 A) different from the first. The invention also relates to a process including treatment of the web by means of a plurality of streams of water arranged in at least two rows perpendicular to the direction of movement of the web. The rows include streams with a first cross-section ( 14, 16, 17, 18, 19 ) and at least streams with a second cross-section ( 24, 26, 27, 28, 29, 39 ) different from the first cross-section, at least one row including streams the spacing of which is not constant. This process may be applied to produce webs the state of the surface of which varies.
1. A process of hydroentangling a fibrous web comprising:
positioning the fibrous web on a porous support in translatory movement or rotating about an axis;
treating the fibrous web by means of a plurality of streams of water arranged in at least two rows perpendicular to a direction of movement of the fibrous web, the streams having a cylindrical form, wherein the at least two rows comprise streams of a first constant cross-section and streams of a second constant cross-section different from the first cross-section, and at least one row of said at least two rows comprises streams of non-constant spacing; and
forming a relief structure in the fibrous web, wherein the streams of the first constant cross-section and the streams of the second constant cross-section hydroentangle the fibrous web creating at least a first region having a first level and a second region having a second level, the first level being distinct from the second level.
2. A process as defined in claim 1 , wherein said treating is with streams arranged in from two to four rows.
3. A process as defined in claim 1 , wherein the rows of streams are produced by a common injector.
4. A process as defined in claim 2 , wherein the rows of streams are produced by a common injector.
5. A process as defined in claim 2 , wherein a first row comprises streams made up of groups spaced at intervals from each other, and a second row comprises streams not in alignment in the direction of movement of the web with the streams of the first row.
6. A process as defined in claim 2 , wherein a first row comprises streams made up of groups spaced at intervals from each other, and a second row comprising streams aligned in part in the direction of movement of the fibrous web with the streams of the first row.
7. A process as defined in claim 5 , wherein the first row comprises streams of a first cross-section and the second row comprises streams of a second cross-section.
8. A process as defined in claim 6 , wherein the first row comprises streams of a first cross-section and the second row comprises streams of a second cross-section.
9. A process as defined in claim 1 , wherein the fibrous web comprises cellulose fibers.
10. A device for hydroentangling a fibrous web comprising:
an endless belt;
an injector including a plurality of perforations arranged in at least two rows perpendicular to a direction of movement of the endless belt, the perforations having a first constant cross-section and a second constant cross-section different from the first constant cross-section, the injector being configured and disposed to direct a plurality of streams of water toward the endless belt, the plurality of streams of water being adapted to hydroentangle and form a relief structure in a fibrous web creating at least a first region having a first level and a second region having a second level, the first level being distinct from the second level.
11. A device as defined in claim 10 , wherein the strip has at least two substantially parallel rows of perforations.
12. A device as defined in claim 11 , wherein at least one of the at least two substantially parallel rows includes perforations of non-constant spacing.
13. The device as defined in claim 10 , wherein the diameter of the cross-sections range from approximately 80 μm to approximately 200 μm.