IP Library Patent Application 18871020
Patent Application
App. No. 18/871,020

METHOD FOR PRODUCING A SHAPED THERMOPLASTIC COMPOSITE, A SHAPED THERMOPLASTIC COMPOSITE AND SYSTEM FOR PRODUCING A SHAPED THERMOPLASTIC COMPOSITE

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Patent No.
US None
App. No.
18/871,020
Abstract

Embodiments relate to a method for producing a shaped thermoplastic composite, the method including a pultrusion process and including: a step of feeding, providing fibers in a direction A of a pultrusion path, a step of wetting fibers which includes the passage of fibers through a thermoplastic composition, a step of heating, which includes a polymerization of the thermoplastic composition having impregnated the fibers to form a heated thermoplastic composite having a first section, a step of shaping through a shaping device having a second section, and the second section being smaller than the first section, to provide a heated thermoplastic composite having a second section, and a step of cooling to produce a shaped thermoplastic composite.

Claims (32)

1 . A method for producing a shaped thermoplastic composite, said method comprising a pultrusion process and comprising:

a step of feeding, by a fiber feeder device, said step of feeding provides fibers in a direction A of a pultrusion path,

a step of wetting fibers, by an impregnation device, which comprises the passage of fibers through a thermoplastic composition, said thermoplastic composition being a thermoplastic resin or a thermoplastic resin precursor and comprising at least 50% in weight of monomers,

a step of heating, by a heating device, which includes a polymerization of the thermoplastic composition having impregnated the fibers to form a heated thermoplastic composite having a first section,

a step of shaping the heated thermoplastic composite, by pulling the heated thermoplastic composite through a shaping device, the shaping device having a second section, and the second section being smaller than the first section, to provide a heated thermoplastic composite having a second section, and

a step of cooling, by a cooling device, at a cooling temperature below to a glass transition temperature of the heated thermoplastic composite having the second section to produce a shaped thermoplastic composite.

2 . The method for producing the shaped thermoplastic composite according to the claim 1 , wherein the pultrusion process is a reactive pultrusion process.

3 . The method for producing the shaped thermoplastic composite according to claim 1 , wherein the feeding step and the wetting step are carried out so that the shaped thermoplastic composite comprises at least 60% in volume of fibers.

4 . The method for producing the shaped thermoplastic composite according to claim 1 , wherein the step of cooling is at the same time as the step of shaping.

5 . The method for producing the shaped thermoplastic composite according to claim 1 , wherein the method comprises a step of evacuation before the step of shaping.

6 . The method for producing the shaped thermoplastic composite according to claim 1 , wherein the thermoplastic composition is a (meth)acrylic composition MCI comprising a (meth)acrylic monomer (MI) and a (meth)acrylic polymer (PI).

7 . The method for producing the shaped thermoplastic composite according to claim 1 , wherein the thermoplastic composition comprises between 10 wt % and 50 wt % of a (meth)acrylic polymer (PI) and between 50 wt % and 90 wt % of a (meth)acrylic monomer (MI).

8 . The method for producing the shaped thermoplastic composite according to claim 1 , wherein the thermoplastic composition or (meth)acrylic composition MCI comprises a (meth)acrylic monomer (M2).

9 . The method for producing the shaped thermoplastic composite according to claim 8 , wherein the (meth)acrylic monomer (M2) is chosen from a compound comprising at least two (meth)acrylic functions.

10 . The method for producing the shaped thermoplastic composite according to claim 8 , wherein the (meth)acrylic monomer (M2) is chosen from 1,3-butylene glycol dimethacrylate; 1,4-butanediol dimethacrylate; 1,6 hexanediol diacrylate; 1,6 hexanediol dimethacrylate; diethylene glycol dimethacrylate; dipropylene glycol diacrylate; ethoxylated (10) bisphenol a diacrylate; ethoxylated (2) bisphenol a dimethacrylate; ethoxylated (3) bisphenol a diacrylate; ethoxylated (3) bisphenol a dimethacrylate; ethoxylated (4) bisphenol a diacrylate; ethoxylated (4) bisphenol a dimethacrylate; ethoxylated bisphenol a dimethacrylate; ethoxylated (10) bisphenol dimethacrylate; ethylene glycol dimethacrylate; polyethylene glycol (200) diacrylate; polyethylene glycol (400) diacrylate; polyethylene glycol (400) dimethacrylate; polyethylene glycol (400) dimethacrylate; polyethylene glycol (600) diacrylate; polyethylene glycol (600) dimethacrylate; polyethylene glycol 400 diacrylate; propoxylated (2) neopentyl glycol diacrylate; tetraethylene glycol diacrylate; tetraethylene glycol dimethacrylate; tricyclodecane dimethanol diacrylate; tricyclodecanedimethanol dimethacrylate; triethylene glycol diacrylate; triethylene glycol dimethacrylate; tripropylene glycol diacrylate; ethoxylated (15) trimethylolpropane triacrylate; ethoxylated (3) trimethylolpropane triacrylate; ethoxylated (6) trimethylolpropane triacrylate; ethoxylated (9) trimethylolpropane triacrylate; ethoxylated 5 pentaerythritol triacrylate; ethoxylated (20) trimethylolpropane triacrylate; propoxylated (3) glyceryl triacrylate; trimethylolpropane triacrylate; propoxylated (5.5) glyceryl triacrylate; pentaerythritol triacrylate; propoxylated (3) glyceryl triacrylate; propoxylated (3) trimethylolpropane triacrylate; trimethylolpropane triacrylate; trimethylolpropane trimethacrylate; tris (2-hydroxy ethyl) isocyanurate triacrylate; di-trimethylolpropane tetraacrylate; dipentaerythritol pentaacrylate; ethoxylated (4) pentaerythritol tetraacrylate; pentaerythritol tetraacrylate; dipentaerythritol hexaacrylate; 1,10 decanediol diacrylate; 1,3-butylene glycol diacrylate; 1,4-butanediol diacrylate; 1,9-nonanediol diacrylate; 2-(2-Vinyloxyethoxy) ethyl acrylate; 2-butyl-2-ethyl-1,3-propanediol diacrylate; 2-methyl-1,3-propanediol diacrylate; 2-methyl-1,3-propanediyl ethoxy acrylate; 3 methyl 1,5-pentanediol diacrylate; alkoxylated cyclohexane dimethanol diacrylate; alkoxylated hexanediol diacrylate; cyclohexane dimethanol diacrylate; ethoxylated cyclohexane dimethanol diacrylate; diethyleneglycol diacrylate; dioxane glycol diacrylate; ethoxylated dipentaerythritol hexaacrylate; ethoxylated glycerol triacrylate; ethoxylated neopentyl glycol diacrylate; hydroxypivalyl hydroxypivalate diacrylate; neopentyl glycol diacrylate; poly (tetramethylene glycol) diacrylate; polypropylene glycol 400 diacrylate; polypropylene glycol 700 diacrylate; propoxylated (6) ethoxylated bisphenol A diacrylate; propoxylated ethylene glycol diacrylate; propoxylated (5) pentaerythritol tetraacrylate; and propoxylated trimethylol propane triacrylate; er and mixtures thereof.

11 . The method for producing the shaped thermoplastic composite according to claim 8 , wherein the (meth)acrylic monomer (M2) in the thermoplastic composition or (meth)acrylic composition MCI is present between 0.01 and 10 phr by weight.

12 . A shaped thermoplastic composite obtained from the method according to claim 1 .

13 . The shaped thermoplastic composite according to claim 1 , wherein the shaped thermoplastic composite comprises less than or equal to 10% porosity based on the total volume of the shaped thermoplastic composite.

14 . Use of the shaped thermoplastic composite according to claim 1 in automotive, transport, nautical, railroad, sport, aeronautic, aerospace, photovoltaic, computing, construction and building, telecommunication and/or wind energy applications.

15 . A shaping device configured to reduce a first section of a heated thermoplastic composite to a second section to form a shaped thermoplastic composite having a second section, said second section being smaller than the first section and the shaped thermoplastic composite comprising at least 60% in volume of fibers.

16 . A The shaping device according to the claim 15 , wherein the shaping device comprise at least one inlet and at least one outlet, the outlet being smaller than the inlet.

17 . A system ( 200 ) for producing a shaped thermoplastic composite, comprising

a fiber feeder device, configured to provide fibers in a direction of a pultrusion path A,

an impregnation device, configured to wet fibers through a thermoplastic composition, said thermoplastic composition being a thermoplastic resin or a thermoplastic resin precursor and comprising at least 50% in weight of monomers,

a heating device, configured to cause a polymerization of the thermoplastic composition having impregnated the fibers to form a heated thermoplastic composite having a first section,

a shaping device, configured to shape the heated thermoplastic composite according to a second section, the shaping device having a second section, and the second section being smaller than the first section, to provide a heated thermoplastic composite having a second section, the shaping device being facing to the previous device,

a cooling device configured at a cooling temperature below to a glass transition temperature of the heated thermoplastic composite having the second section to produce a shaped thermoplastic composite.

18 . The system for producing the shaped thermoplastic composite according to the claim 17 , wherein the system it comprises an empty space, a vacuum, or an air space.

19 . The system for producing the shaped thermoplastic composite according to the claim 18 , characterized in that the empty space, the vacuum, or the air space is arranged between, the heating device and the shaping device.

20 . The system for producing the shaped thermoplastic composite according to claim 17 , wherein the shaping device comprises at least one inlet and at least one outlet, the outlet facing the cooling device.

21 . The system for producing the shaped thermoplastic composite according claim 17 , wherein the shaping device is configured to reduce a first section of a heated thermoplastic composite to a second section to form a shaped thermoplastic composite having a second section, said second section being smaller than the first section and the shaped thermoplastic composite comprising at least 60% in volume of fibers.

22 . The system for producing a shaped thermoplastic composite according claim 17 , wherein the shaping device comprises at least one inlet and at least one outlet, the outlet being smaller than the inlet.

Assignments (2)
CHANGE OF ADDRESS Recorded Jul 4, 2025
From: ARKEMA FRANCE
To: ARKEMA FRANCE
Reel/Frame 071814/0739 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2024
From: LE FICHANT, AUDREY; MOUTH, ESTELLE; ZOLLER, ALEXANDER; GERARD, PIERRE; DUCHAMP, BORIS
To: ARKEMA FRANCE
Reel/Frame 069463/0239 →