EP2016221B1

Metal cord and process and apparatus for manufacturing a metal cord

Abstract

This record has no abstract on file.

EP2016221B1, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Expired 10 May 2026, 0.4 years ago.

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

17 claims: 12 independent, 5 dependent

  1. 1
    Metal cord (1) comprising at least one preformed elementary metal wire, said metal cord (1) having:- an elongation at break, measured on the bare cord, higher than or equal to 3%;- an elongation at break, measured on the rubberized and vulcanized cord, which differs of an amount not higher than or equal to 15% with respect to the elongation at break measured on the bare cord;characterized in that said metal cord (1) has: - a part load elongation (PLE), measured on the bare cord, higher than or equal to 0.4%;- a part load elongation (PLE), measured on the rubberized and vulcanized cord, which differs of an amount not higher than or equal to 15% with respect to the part load elongation (PLE) measured on the bare cord, and in that : said elementary metal wire is firstly preformed so that it assumes substantially sinusoidal undulations;secondly, said firstly preformed elementary metal wire is helicoidally preformed, along its longitudinal axis, so that it assumes a helical wave-shaped configuration.
  2. 3
    Metal cord (1) according to any one of the preceding claims, wherein said elementary metal wire is tri-dimensionally preformed.
  3. 4
    Metal cord (1) according to any one of the preceding claims, wherein said sinusoidal undulations have a wavelength (or pitch) of from 1.0 mm to 15 mm.
  4. 5
    Metal cord (1) according to any one of the preceding claims, wherein said sinusoidal undulations have a wave amplitude of from 0.10 mm to 1.0 mm.
  5. 6
    Metal cord (1) according to any one of the preceding claims, wherein said elementary metal wire has a diameter (D) of from 0.10 mm to 0.50 mm.
  6. 7
    Metal cord (1) according to any one of the preceding claims, wherein said elementary metal wire is made of steel.
  7. 8
    Metal cord (1) according to any one of the preceding claims, wherein said elementary metal wire has a coating based on zinc, zinc/manganese alloys, zinc/cobalt alloys or zinc/cobalt/manganese alloys.
  8. 9
    Metal cord (1) according to any one of the preceding claims, wherein said metal cord (1) comprises from 2 to 6 elementary metal wires.
  9. 11
    Metal cord (1) according to any one of the preceding claims, wherein said metal cord (1) has a stranding pitch of from 2.5 mm to 25 mm.
  10. 12
    Metal cord (1) according to any one of the preceding claims, wherein said metal cord (1) has the following characteristics:- a gap area which fulfills the following equation: Gap Area ≥ πD 2 / 4 wherein D is the elementary metal wire diameter;- the sum of the distances between each couple of adjacent elementary metal wires in a cross-section (Σs n ) which fulfills the following equation: ∑ s n > D / 2 wherein n is the the number of the elementary metal wires, D is the elementary metal wire diameter;said characteristics being maintained along the entire longitudinal development of the metal cord.
  11. 13
    Process for manufacturing a metal cord (1) comprising the steps of:(a) permanently deforming at least one elementary metal wire according to a substantially sinusoidal deformation lying in a plane obtaining a preformed metal wire;characterized in further comprising: (b) permanently deforming the preformed elementary metal wire obtained in step (a) in a helicolidal way along its longitudinal axis, so obtaining a double-preformed elementary metal wire;(c) stranding the at least one double-preformed elementary metal wire obtained in step (b) with at least one additional elementary metal wire by twisting, so obtaining the metal cord (1).
  12. 14
    Apparatus (10) for manufacturing a metal cord (1) comprising:- at least one rotor (5) engaged to a supporting structure (100) and rotatable according to a rotation axis;- feeding devices to feed a plurality of elementary metal wires from respective feeding spools (8), said elementary metal wires being driven onto the rotor (5) according to a stranding path with end sections (10a, 10c) coinciding with the rotation axis of said rotor (5) and with a central section (10b) spaced from said rotation axis;- at least one first preforming device (15), positioned in a section upstream with respect to the first end section (10a) of the stranding path, operating on one of said elementary metal wires, said at least one first preforming device (15) providing said elementary metal wire with a substantially sinusoidal permanent deformation;characterized in further comprising: - at least one second preforming device (17, 18), positioned after said first preforming device (15) in a section upstream with respect to the first end section (10a) of the stranding path, operating on the same elementary metal wire, said at least one second preforming device (17, 18) providing said elementary metal wire with a substantially helicoidal permanent deformation along its longitudinal axis.