IP Library Patent Application 11720672
Patent Application
App. No. 11/720,672

METHOD OF PRODUCING A ROUGH COMPOSITE ELONGATED ELEMENT AND ROUGH COMPOSITE ELONGATED ELEMENT THUS PRODUCED

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Quick Facts
Patent No.
US None
App. No.
11/720,672
Abstract

A method for producing a rough elongate composite element, and a rough elongate composite element formed by the method. In the method, introduced simultaneously into a sheathing device are an essentially solid cord based on an organic material and reinforcing yarns as well as a mixture including a molten thermoplastic and at least one of the following constituents: a reinforcement and a filler, the cord being pulled by a haul-off mechanism downstream from the sheathing device. The cord is sheathed by forming a layer of the adherent mixture onto the cord, the roughness of the sheath formed in this way being created by the sheathed cord leaving the sheathing device.

Claims (18)

1 - 17 . (canceled)

18 . A method for producing a rough elongate composite element, comprising:

introducing simultaneously into a sheathing device an essentially solid cord based on an organic material and reinforcing yarns as well as a mixture including a molten thermoplastic and at least one of the following constituents: a reinforcement and a filler, the cord being pulled by a haul-off mechanism downstream from the sheathing device; and

sheathing the cord by forming a layer of the adherent mixture onto the cord, a roughness of the sheath formed in this way being created by the sheathed cord leaving the sheathing device.

19 . A method for producing the rough elongate composite element according to claim 18 , wherein, when the mixture is pressed during the forming of the layer, pressure is adjusted according to the constituents and from at least one of the following parameters: feed rate of the mixture, pull speed of the cord, dimensions of a zone forming the layer of the sheathing device, and a size of an outlet opening of the sheathing device.

20 . A method for producing the rough elongate composite element according to claim 18 , wherein the organic material is thermoplastic.

21 . A method for producing the rough elongate composite element according to claim 18 , wherein the reinforcement comprises filaments.

22 . A method for producing the rough elongate composite element according to claim 21 , wherein the filaments comprise alkali-resistant glass filaments.

23 . A method for producing the rough elongate composite element according to claim 21 , wherein the reinforcing yarns comprise alkali-resistant glass yarns.

24 . A method for producing the rough elongate composite element according to claim 18 , wherein, before the introducing the mixture, at least part of the mixture is prepared by unreeling wound multifilament yarns, chopping the yarns to form fibers, and dispersing the yarns in an extruder feeding the device for sheathing the fibers in the thermoplastic.

25 . A method for producing the rough elongate composite element according to claim 18 , wherein, before the introducing of the mixture, at least part of the mixture is prepared by incorporating at least one compound comprising filaments and the thermoplastic in an extruder feeding the sheathing device.

26 . A method for producing the rough elongate composite element according to claim 18 , further comprising forming the cord including introducing a bundle of the reinforcing yarns associated with an organic material in a forming device, so as to obtain the cord made by bringing the reinforcing yarns together contiguously, forming transverse continuity.

27 . A rough elongate composite element comprising:

a core based on an organic material and reinforcing yarns and that is covered with a rough sheath based on a thermoplastic and at least one of the following constituents: a reinforcement comprising filaments or talc, the rough sheath being then provided with beads and then exhibiting a fluffy appearance, the element configured to be obtained by the production method according to claim 18 .

28 . A rough elongate composite element according to claim 27 , wherein the reinforcement comprises glass filaments, or alkali resistant glass filaments, with a distribution of lengths between 0.5 and 5 mm.

29 . A rough elongate composite element according to claim 27 , wherein the reinforcement comprises glass filaments, or alkali resistant glass filaments, with a mean length of between 0.2 and 0.5 mm.

30 . A matrix with a hydraulic binder incorporating the rough elongate composite element according to claim 27 .

31 . An element based on a hydraulic binder matrix reinforced with the rough elongate composite element according to claim 27 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2008
From: SAINT-GOBAIN VETROTEX FRANCE
To: OCV INTELLECTUAL CAPITAL, LLC
Reel/Frame 020505/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2008
From: DUCRET, CHRISTOPHE; TARDY, GERARD; DUFAYARD, GILBERT
To: SAINT-GOBAIN VETROTEX FRANCE S.A.
Reel/Frame 020414/0717 →