Low-thickness thermostructural composite material part, and manufacture method
View Patent ↗A thermostructural composite material part including carbon or ceramic fiber reinforcement densified by a matrix having at least one thin portion in which: the thickness of the part is less than 2 mm, or indeed less than 1 mm; the fiber reinforcement is made as a single thickness of multilayer fabric made of spread yarns having a weight of not less than 200 tex; the fiber volume ratio lies in the range 25% to 45%; and the ratio between the number of layers of the multilayer fabric and the thickness in millimeters of the part is not less than four.
1. A method of fabricating a thermostructural composite material part comprising making a carbon or ceramic fiber preform and densifying the preform with a matrix, method in which a single thickness of multilayer fabric having yarns weighing not less than 200 tex is used for making at least a portion of the preform having a total multilayer thickness of less than 2 mm, wherein, in order to make said preform portion, the method comprises:
making a multilayer fabric having yarns weighing not less than 200 tex;
subjecting the multilayer fabric to an operation of spreading the yarns so as to reduce the thickness of the multilayer fabric; and
making said preform portion from the spread multilayer fabric, a ratio between the number of layers of warp yarns of the multilayer fabric and the thickness in millimeters of said preform portion being not less than four;
a thread count of the multilayer fabric during weaving being selected so as to obtain a volume fiber ratio lying in the range 25% to 45% in the fiber preform.
2. A method according to claim 1 , wherein a multilayer fabric is used in which the number of layers of warp yarns is not less than three.
3. A method according to claim 1 , wherein the multilayer weaving is performed with a multi-plain, multi-serge, or multi-satin type weave.
4. A method according to claim 1 , wherein the fiber preform has a thickness of less than 1 mm.
5. A method according to claim 1 , wherein the matrix is made at least partially of ceramic.
6. A method according to claim 1 , wherein the part constitutes an afterbody part of a gas turbine aeroengine.
7. A method according to claim 1 , wherein the part constitutes at least a portion of a rocket engine nozzle exhaust cone.