Reinforcing fibrous structure for a composite material and a part containing said structure
View Patent ↗A reinforcing fiber structure woven as a single piece for fabricating a composite material part, the fiber structure having an internal portion or core ( 72 ), and a portion adjacent to an outside surface of the structure, or skin ( 74, 76 ), and the fiber structure being formed by a three-dimensional weaving in its core using at least one weave selected from an interlock weave and a multilayer weave, and by weaving at its skin with a weave of satin type that is different from the weave in the core the weaving at the skin being of the multilayer type or of the two-dimensional type.
1. A reinforcing fiber structure woven as a single piece for fabricating a composite material part, the fiber structure being at least partially formed with an internal portion or core, located between two portions adjacent to outside surfaces of the structure, or skins, the core and the skins together comprising at least three layers of weft yarns and at least three layers of warp yarns, and the fiber structure being formed by a three-dimensional weaving in its core using at least one interlock weave, and by weaving at its skin with a weave of satin type.
2. A fiber structure according to claim 1 , wherein the skin weave is of multilayer type.
3. A fiber structure according to claim 1 , wherein the skin weave is of two-dimensional type.
4. A fiber structure according to claim 1 , wherein the core comprises a first portion formed by three-dimensional weaving with a first weave and at least one second portion situated between the first portion and the skin, the second portion being formed by three-dimensional weaving with a second weave different from the first.
5. A fiber structure according to claim 4 , wherein the first and second weaves are interlock weaves.
6. A fiber structure according to claim 4 , wherein one of the first and second weaves is an interlock weave and the other is a multilayer weave.
7. A fiber structure according to claim 1 , wherein at least one of the warp and weft counts varies between the core and a skin.
8. A fiber structure according to claim 7 for fabricating composite material parts by CVI densification, wherein at least one of the warp and weft counts is smaller at a skin than in the core.
9. A fiber structure according to claim 1 , wherein the yarns used for weaving are of caliber that varies between the core and a skin.
10. A fiber structure according to claim 1 , having at least a portion of reduced thickness with two layers of weft yarns and formed by three-dimensional weaving with an interlock type weave bonding together the two weft layers and by a two-dimensional weave with satin type weave bonding together the yarns in each skin.
11. A fiber structure according to claim 1 , having a reduced-thickness portion with three layers of weft yarns and formed by three-dimensional weaving with an interlock weave bonding together the three weft layers, and the central layer of weft yarns is also bonded with each of the other two layers by multilayer weaving with satin type weave.
12. A fiber structure according to claim 1 , having a transition portion between a first portion and a second portion having a complete layer of weft yarns that is additional compared with the first portion, the transition portion having a partial layer of weft yarns that is additional compared with the first portion.
13. A fiber structure according to claim 12 , wherein the weft yarns of the additional partial layer are disposed between two complete layers of weft yarns and are bonded thereto by weaving with an interlock weave.
14. A composite material part having fiber reinforcement densified by a resin matrix, wherein the fiber reinforcement is formed by a fiber structure according to claim 1 .
15. A part according to claim 14 , constituting a turbomachine blade.
16. A thermostructural composite material part having fiber reinforcement densified by a matrix, in which the fiber reinforcement is formed by a fiber structure according to claim 1 .