EP2006077B1

Method for shaping a material of reticular structure, installation for implementing the method and reticular material resulting from the method

Abstract

This record has no abstract on file.

EP2006077B1, drawing sheet 1
Sheet 1 of 8

Term

0.5 yearsleft in the term

Expires 3 April 2027.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

16 claims: 7 independent, 9 dependent

  1. 1
    Method for shaping a material with a reticular structure, said reticular structure being obtained by extruding a synthetic plastics material, and adopting a tubular shape, with the crossover points of the filaments forming the sides of the net mesh being thicker than the actual sides of said net mesh, characterized in that the synthetics plastics material with a reticular tubular structure (1) is subjected to a two-dimensional molecular orientation operation, in the longitudinal and transverse directions, through hot drawing, which is followed by an operation to equal the thicknesses of the reticular tubular orientated flattened structure (7) of synthetic plastics material, by laminating it with a calender (8).
  2. 7
    Plant for performing the method set out in the previous claims, characterized in that it comprises essentially a die (2) for extruding a tubular net structure (1) made of synthetic thermoplastic material, followed sequentially by a device (4, 5) for two-dimensional hot drawing, in the longitudinal and transverse directions, of said rope-shaped tubular net structure, and a widening device (6) for widening said reticular structure, now with a tubular flattened shape (7), which is followed, finally, by a calendering machine.
  3. 8
    Plant for performing the method according claim 7, characterized in that the device for the longitudinal drawing of the tubular net structure (23), which is performed while hot, is essentially made up of two sets of pairs (26, 28) of pressing rollers, wherein the exit pair (28), located in second place according to the forward moving direction of the tubular net structure (23), rotates at a greater speed than the entry pair (26), which is located in first place in the forward moving direction of said tubular net structure (23).
  4. 9
    Plant for performing the method according claim 7, characterized in that the bi-dimensional drawing device is made up of a pair of traction rollers (32) for the rope-like tubular net structure (23), said rollers being arranged on a retention drum (33), with the lower one applying said rope against a large part of the periphery of the retention drum (33) from which it is separated by a guiding roller (34) which leads it in the vertical direction to a driver roller (35) immersed in a thermal bath contained in a vat (36) through which the it circulates the tubular net structure (23) until it reaches another driver roller (35) that sends it to a guiding roller (37) that is applied to a drawing drum (38) from which it passes to a driver drum (39) and, next, to a pair of traction rollers (40).
  5. 10
    Plant for performing the method according claim 7, characterized in that the transversal drawing device is made up of a tenter (43) with a hot air tunnel and needle chains.
  6. 11
    Plant for performing the method according claim 7, characterized in that the laminating device consists of a calender (30) with two cylinders, which have an adjustable reach and are thermally conditioned, said device having at the entrance of said cylinders a widening device (29) for widening the reticular tubular flattened structure (7).
  7. 12
    Material resulting from performing the method set out in claims 1 to 6, characterized in that it consists of a synthetic plastic shaped according to a reticular structure (1) wherein, having a tubular flattened shape, the filaments forming the sides (10) of the net mesh of the actual structure and the crossover points (11) of said filaments arranged in between them to shape the nets, have the same common thickness.