A centrifugal compressor wheel for a turbocharger is disclosed. The wheel includes an axially extending hub having an inlet end, an outlet end, an arcuate outer surface and a shaft bore. The wheel also includes a blade array disposed on the outer surface of the hub, the blade array comprising a plur
A centrifugal compressor wheel for a turbocharger is disclosed. The wheel includes an axially extending hub having an inlet end, an outlet end, an arcuate outer surface and a shaft bore. The wheel also includes a blade array disposed on the outer surface of the hub, the blade array comprising a plurality of circumferentially-spaced, radially and axially extending, arcuate centrifugal impeller blades disposed thereon; the hub and the blade array comprising a non-woven, discontinuous-fiber-filled, polymer matrix composite material.
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1. A exhaust driven turbocharger, for an internal combustion engine, having a centrifugal compressor, comprising: an axially extending hub having an inlet end, an outlet end, an arcuate outer surface and a shaft bore; anda blade array disposed on the arcuate outer surface of the axially extending hu
1. A exhaust driven turbocharger, for an internal combustion engine, having a centrifugal compressor, comprising: an axially extending hub having an inlet end, an outlet end, an arcuate outer surface and a shaft bore; anda blade array disposed on the arcuate outer surface of the axially extending hub, the blade array comprising a plurality of circumferentially-spaced, radially and axially extending, arcuate centrifugal impeller blades disposed thereon; where both the axially extending hub and the blade array each comprise a non-woven, discontinuous-fiber-filled, polymer matrix composite material. 2. The exhaust driven turbocharger of claim 1, wherein the non-woven, discontinuous, fiber-filled, polymer matrix composite material comprises metal, glass, polymer or carbon fiber, or a combination thereof. 3. The exhaust driven turbocharger of claim 2, wherein the non-woven, discontinuous, fiber-filled, polymer matrix composite material comprises an epoxy, phenolic, polyimide, polyamide, polypropylene, or polyether ether ketone resin. 4. The exhaust driven turbocharger of claim 1, wherein the impeller blades and the axially extending hub comprise an outer layer of continuous or semi-continuous fibers disposed on a core comprising the non-woven, discontinuous-fiber-filled, polymer matrix composite material. 5. The exhaust driven turbocharger of claim 4, wherein each impeller blade has a blade surface and an outer layer that is proximate to the blade surface and the axially extending hub surface. 6. The exhaust driven turbocharger of claim 5, wherein the axially extending hub also comprises a base surface proximate the outlet end, and wherein an outer layer is also proximate the base surface. 7. The exhaust driven turbocharger of claim 4, wherein the layer of continuous or semi-continuous fibers comprises a plurality of fiber tows oriented in a first direction. 8. The exhaust driven turbocharger of claim 7, wherein the first direction comprises a chordal direction. 9. The exhaust driven turbocharger of claim 7, wherein the first direction comprises a transchordal direction. 10. The exhaust driven turbocharger of claim 4, wherein the layer of continuous or semi-continuous fibers comprises a first plurality of fiber tows oriented in a first direction and a second plurality of fiber tows oriented in a second direction. 11. The exhaust driven turbocharger of claim 10, wherein the first direction comprises a chordal direction and the second direction comprises a transchordal direction. 12. The exhaust driven turbocharger of claim 10, wherein the layer of continuous or semi-continuous fibers comprises a woven fabric. 13. The exhaust driven turbocharger of claim 12, wherein the woven fabric comprises a first plurality of fiber tows oriented in a first direction interwoven with a second plurality of fiber tows oriented a second direction. 14. The exhaust driven turbocharger of claim 13, wherein the first direction comprises a chordal direction and the second direction comprises a transchordal direction. 15. The exhaust driven turbocharger of claim 10, wherein the first plurality of fiber tows and the second plurality of fiber tows comprise metal, glass, polymer or carbon fibers, or a combination thereof, and the polymer matrix comprises an epoxy, phenolic, polyimide, polyamide, polypropylene, or polyether ether ketone resin. 16. The exhaust driven turbocharger of claim 4, wherein the axially extending hub also comprises at least one inner layer, comprising continuous or semi-continuous fibers, that is arranged substantially transverse to the shaft bore. 17. The exhaust driven turbocharger of claim 1, wherein the shaft bore extends completely or partially through the axially extending hub. 18. The exhaust driven turbocharger of claim 1, further comprising a shaft bore insert. 19. A centrifugal compressor wheel for a rotatable compressor, comprising: an axially extending hub having a inlet end, an outlet end, an arcuate outer surface and a shaft bore; anda blade array disposed on the arcuate outer surface of the axially extending hub, the blade array comprising a plurality of circumferentially-spaced, radially and axially extending, arcuate centrifugal impeller blades disposed thereon; where both the axially extending hub and the blade array each comprise a non-woven, discontinuous-fiber-filled, polymer matrix composite material. 20. The centrifugal compressor wheel of claim 19, wherein the non-woven, discontinuous, fiber-filled, polymer matrix composite material comprises metal, glass, polymer or carbon fiber, or a combination thereof and, wherein the non-woven, discontinuous, fiber-filled, polymer matrix composite material comprises an epoxy, phenolic, polyimide, polyamide, polypropylene, or polyether ether ketone resin and, wherein the impeller blades and the axially extending hub comprise an outer layer of continuous or semi-continuous fibers disposed on a core comprising the non-woven, discontinuous-fiber-filled, polymer matrix composite material.
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