The invention relates to an apparatus for needling a non-woven material with at least one needleboard which is drivable in a reciprocating manner in the needle-penetration direction and with a stitch base which is opposite of the needleboard and is made of a continuously revolving brush belt forming a conveyor for the non-woven material.
In order to achieve a marked pile formation during the needling of the non-woven material, the non-woven material is conveyed on a stitch base made of a continuously revolving brush belt through the needling device, so that the needles penetrating the non-woven material needle on the needling exit side needle pile fibers in a loop-forming manner into the brush belt. If this pile formation occurs only in sections, the non-woven material can be provided with a surface pattern formed by the pile fibers. It is necessary to ensure an even wearing of the brush belt, because the surface structures of the brush belt are imaged on the surface of the non-woven during the needling of the non-woven material. For this reason it is not possible in known apparatuses of this kind to needle ribs extending in the revolving direction of the brush belt because rows of needles are required which extend in the revolving direction of the brush belt and which leave longitudinal grooves in the brush belt.
The invention is thus based on the object of providing an apparatus for needling a non-woven material of the kind mentioned above in such a way that ribs extending in the revolving direction of the brush belt can be needled without having to expect a groove structure of the bearing surface of the brush belt.
This object is achieved by the invention in such a way that the needleboard comprises rows of needles which have an even distance of the rows and extend in at least in one section in the revolving direction of the brush belt and that the brush belt and the needleboard can be moved back and forth in a reciprocating manner during the traversing drive during the conveyance of the non-woven material transversally to the revolving direction of the brush belt to an extent corresponding to the distance of the needle rows relative to each other or an integral multiple thereof.
Since the brush belt and the needleboard are moved in a reciprocating manner relative to each other during the conveyance of the non-woven material transversally to the revolving direction of the brush belt to the extent of the distance of the rows of needles relative to each other, it is possible, despite the arrangement of rows of needles extending in the revolving direction of the brush belt, to ensure a wearing which is evenly distributed over the width of the brush belt as a precondition for the needling of ribs extending in the longitudinal direction of the non-woven material. The mutual distance of the rows of needles must be chosen equally for this purpose. Moreover, the traversing drive must be set in such a way that the displacement of the non-woven material relative to the needleboard which is linked to the movement of the brush belt reciprocating transversally to the revolving direction does not lead to any disturbing transversal offset of the needled ribs. This is not the case when the forward feed of the traversing operation is small in comparison with the forward feed of the non-woven material in the revolving direction of the brush belt. If a transversal advancement corresponding to a single distance of a row is performed during a circulation of the brush belt, the transversal offset of the needled surface structure of the non-woven material as caused by said transversal offset per unit of length can be neglected because it is not visible.
Since the relative movement between the brush belt and the needleboard transversally to the revolving direction of the brush belt is relevant, several constructional solutions are opened up for the traversing operation. A simple solution is obtained in such a way that the traversing drive comprises at least axially displaceable deflection rollers for the brush belt with guide disks resting on the longitudinal edges of the brush belt, so that in the case of an axial displacement of the deflection roller, the brush belt is entrained transversally to its revolving direction. Another possibility for configuring the traversing drive is to provide a guide table for the strand of the brush belt forming the stitch base, which guide table is displaceable transversally to the revolving direction of the brush belt. The transversal displacement of the brush belt is achieved via the movement of the table.
It is not necessary to move the brush belt per se via the traversing drive transversally to its revolving direction. If the needleboard is provided with its drive on a carriage which is held transversally displaceable to the revolving direction of the brush belt and if it is driven accordingly, comparable conditions are obtained concerning even wearing of the brush belt.
The subject matter of the invention is shown in the drawings by way of example, wherein:
An apparatus for needling a non-woven material 1 according to the embodiment of
Needleboards 15 which are held in needle beams 14 are opposite of the conveying strand 4 of the brush belt 5, with the needles of the needleboards being designated with reference numeral 16. According to the illustrated embodiment, the two needleboards 15 are arranged successively behind each other in the revolving direction of the brush belt. Said needleboards 15 are conventionally driven in a reciprocating manner via eccentric shafts 17 in the direction of the needle penetration. Strippers 18 are provided between the needleboards 15 and the conveying strand 4 used as a stitch base.
The needles 16 of the needleboards 15 are combined at least in sections in rows of needles which extend in the revolving direction 11 of the brush belt 5 and have a constant mutual distance. During the needling of the non-woven material 1, longitudinal ribs in the form of pile fiber loops needled into the brush belt 5 are therefore produced on the needling exit side facing the brush belt 5. After the needling process, the non-woven material 1 is removed via a pair of rollers 19 by the conveying strand 4 of the brush belt 5.
In order to prevent any formation of grooves in the surface region of the brush belt 5 forming the base for the non-woven material as a result of the rows of needles extending in the revolving direction of the brush belt 5, the brush belt 5 is displaced during its revolving via a traversing drive 20 transversally to the revolving direction 11, as is shown especially in
In contrast to the embodiment according to
The embodiment according to
In order to operate the apparatus without a traversing movement of the needleboards 15 transversally to the revolving direction 11 of the brush belt 5, the carriage 27 is fixed relative to the frame 2. This can be performed via clamping cylinders 29 according to the illustrated embodiment.
Number | Date | Country | Kind |
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A 1090/2003 | Jul 2003 | AT | national |