EVACUABLE MOLD FOR FIBER COMPOSITE PLASTIC COMPONENTS
Evacuable, stable mold having a design obtained by thermal deformation at temperatures ≦ 240° C. and corresponding to a fiber composite plastic component to be produced, consisting of an at least two-layered thermoplastic, vacuum-tight plastic film from a surface layer which is made of at least one thermoplastic polyamide or copolyimide, which has optionally functional groups, and a separating layer which form the inner side and is made of at least one thermoplastic fluorinated copolymer which has functional groups.
1 . A stable evacuable mold with a shape obtained by thermoforming at temperatures ≦240° C. and corresponding to the respective fiber-composite plastics component to be produced therewith, and made of an at least two-layer vacuum-tight thermoplastic film comprising
a) a surface layer made of at least one thermoplastic polyamide or copolyamide which optionally has functional groups, and
b) a release layer forming the internal side of the mold and made of at least one thermoplastic tetrafluoroethylene copolymer, which has functional groups, composed of
b1) α) copolymerized units of tetrafluoroethylene and
γ) copolymerized units of monounsaturated aliphatic dicarboxylic acids or cyclic anhydrides thereof, and also
δ) copolymerized units of at least one fluorinated monomer differing from tetrafluoroethylene, selected from the group consisting of
CF 2 ═CFOR 1 , where R 1 is a C 1-10 perfluoroalkyl moiety which can comprise an oxygen atom,
CF 2 ═CF(CF 2 ) p OCF═CF 2 , where p is 1 or 2,
perfluoro (2-methylene-4-methyl-1,3 dioxolane) and CH 2 ═CX 3 (CF 2 ) Q X 4 , where X 3 is a hydrogen atom or a fluorine atom, Q is an integer from 2 to 10 and X 4 is a hydrogen atom or a fluorine atom, and/or
β) copolymerized units of C 2 -C 4 olefins, or
b2) an olefin/tetrafluoroethylene copolymer which has been modified by free-radical grafting of from 0.01 to 5 mol % of carboxy groups, hydroxy groups, ester groups, isocyanate groups, epoxy groups, amide groups or cyclic anhydride groups,
where the plastics film has no tie layer between the layers a) and b).
2 . The mold as claimed in claim 1 , wherein the layer a) is based on at least one thermoplastic aliphatic, semiaromatic or aromatic polyamide or copolyamide or of a mixture of at least two of the polyamides mentioned, a copolyamide of hexamethylenediamine, adipic acid and ε-caprolactam, or a mixture of PA-6 or PA-6,6 and from 5 to 20% by weight of a semiaromatic polyamide with softening point ≦240° C., whereby the polyamide or copolyamide units are composed of an at least trifunctional polyamine or of an at least trifunctional polycarboxylic acid in a quantity of from 0.01 to 5 mol %, based on 100 mol % of the copolyamide.
3 . The mold as claimed in claim 1 wherein the layer b) is composed of a tetrafluoroethylene copolymer made of polymerized units of α) tetrafluoroethylene, β) C2-C4-olefins, and γ) monounsaturated polycarboxylic acids or cyclic anhydrides thereof, whereby the tetrafluorocopolymer is composed of from 50 to 90 mol % of α)-units, of from 10 to 50 mol % of (β)-units, and of from 0.01 to 5 mol % of γ)-units, where the sum of the units α)+β)+γ) must always be 100 mol %.
4 . The mold as claimed in claim 1 wherein the layer b) is composed of an ethylene/tetrafluoroethylene copolymer which has been modified by free-radical grafting of at least from 0.01 to 5 mol % of carboxy groups, hydroxy groups, ester groups, isocyanate groups, epoxy groups, amide groups or maleic anhydride groups.
5 . The mold as claimed in claim 1 wherein the layer b) is composed of a thermoplastic tetrafluoroethylene copolymer made of
α) copolymerized units of tetrafluoroethylene,
δ) copolymerized units of at least one fluorinated monomer differing from tetrafluoroethylene, selected from the group consisting of
CF 2 ═CFOR 1 , where R 1 is a C 1-10 perfluoroalkyl moiety which can comprise an oxygen atom,
CF 2 ═CF(CF 2 ) p OCF═CF 2 , where p is 1 or 2,
perfluoro(2-methylene-4-methyl-1,3 dioxolane) and CH 2 ═CX 3 (CF 2 ) Q X 4 , where X 3 is a hydrogen atom or a fluorine atom, Q is an integer from 2 to 10 and X 4 is a hydrogen atom or a fluorine atom,
β) copolymerized units of C 2 -C 4 olefins and
γ) copolymerized units of monounsaturated aliphatic dicarboxylic acid or cyclic anhydrides thereof.
6 . The mold as claimed in claim 5 , wherein the layer b) is composed of a tetrafluoroethylene copolymer made of polymerized units α), γ) and δ), where the copolymer has from 50 to 99.8 mol % of α)-units, from 0.01 to 5 mol % of γ)-units and from 0.1 to 49.99 mol % of δ)-units, based in each case on α), γ) and δ).
7 . The mold as claimed in claim 5 , wherein the copolymer is composed of from 50 to 90 mol % of α)-units, from 5 to 35 mol % of β)-units, from 0.1 to 20 mol % of δ)-units and from 0.01 to 5 mol % of γ)-units, based in each case on α)-δ).
8 . The mold as claimed in claim 1 , wherein the mold has at least one closable evacuation system.
9 . A method for the production of a fiber-composite plastics component with the mold of claim 1 .
10 . The method of claim 9 , wherein the mold produced from the thermoplastic film has a softening point that is higher by at least 10° C. than the curing temperature of the fiber-composite plastics component hardened in the mold.
11 . The method of claim 10 , wherein the fiber-composite plastics component is a carbon-fiber-composite plastics component for aircraft, spacecraft, trains or motor vehicles, or a component for wind turbines.