Claims
- 1. A sandwich composite panel comprising:a first cover skin comprising a first open-mesh fiber composite net having a first mesh size, and a first flexible cover film laminated onto said first open-mesh fiber composite net; a second cover skin comprising a second open-mesh fiber composite net having a second mesh size that is different from said first mesh size, and a second flexible cover film laminated onto said second open-mesh fiber composite net; and an inner core sandwiched between said first and second cover skins, wherein said inner core comprises a plurality of hollow cell bodies that respectively extend transversely between said first and second cover skins and respectively have internal cross-sectional dimensions greater than said first mesh size and greater than said second mesh size.
- 2. The sandwich composite panel according to claim 1, wherein said cell bodies are honeycomb cell bodies, and said inner core is a honeycomb core.
- 3. The sandwich composite panel according to claim 1, wherein said first cover skin is adapted to be oriented to face toward a main source of noise for the purpose of absorbing said noise in said hollow cell bodies respectively forming resonator cavities.
- 4. The sandwich composite panel according to claim 3, wherein said first flexible cover film is a closed solid film that completely covers and seals said first open-mesh fiber composite net, such that said panel including said resonator cavities is characterized by a narrow band noise absorption characteristic with a high absorption coefficient.
- 5. The sandwich composite panel according to claim 3, wherein said first flexible cover film has openings therethrough into said hollow cell bodies, such that said panel including said resonator cavities is characterized by a broad band noise absorption characteristic.
- 6. The sandwich composite panel according to claim 1, wherein said first flexible cover film is at least one of a porous film and a perforated film.
- 7. The sandwich composite panel according to claim 1, wherein said first flexible cover film is a closed solid film.
- 8. The sandwich composite panel according to claim 1, wherein said hollow cell bodies have hollow chambers therein with different respective hollow chamber heights in a direction extending transversely between said cover skins.
- 9. The sandwich composite panel according to claim 1, further comprising a closed solid separating wall extending through said inner core generally in an area extension direction of said panel between said first and second cover skins, wherein said inner core is separated by said separating wall into a first core portion between said separating wall and said first cover skin and a second core portion between said separating wall and said second cover skin.
- 10. The sandwich composite panel according to claim 9, wherein said separating wall extends at an acute angle relative to said first and second cover skins, and wherein each of said core portions comprises at least one wedge configuration.
- 11. The sandwich composite panel according to claim 10, wherein said separating wall has a zig-zag configuration extending repetitively at said acute angle back and forth between said first and second cover skins.
- 12. The sandwich composite panel according to claim 1, further comprising a noise damping film laminated onto said second cover skin.
- 13. The sandwich composite panel according to claim 1, further comprising a noise damping layer arranged generally on a side of said panel away from said first cover skin.
- 14. The sandwich composite panel according to claim 13, wherein said noise damping layer comprises a foam material layer interposed between said second cover skin and said inner core.
- 15. The sandwich composite panel according to claim 1, further comprising a noise damping layer of a foam material interposed between said second cover skin and said inner core.
- 16. The sandwich composite panel according to claim 1, wherein said second open-mesh fiber composite net of said second cover skin and said first open-mesh fiber composite net of said first cover skin respectively comprise a composite including glass fibers.
- 17. A sandwich composite panel comprising:a first cover skin comprising a first open-mesh fiber composite net having a first mesh size, and a first flexible cover film laminated onto said first open-mesh fiber composite net; a second cover skin comprising a fiber composite material; and an inner core sandwiched between said first and second cover skins, wherein said inner core comprises a plurality of hollow cell bodies that respectively extend transversely between said first and second cover skins and respectively have internal cross-sectional dimensions greater than said first mesh size; wherein said first open-mesh fiber composite net comprises continuous uninterrupted fibers defining mesh openings therebetween, with a respective plurality of said mesh openings opening into each respective one of said hollow cell bodies; and further comprising a remainder of an adhesive film between said inner core and said first open-mesh fiber composite net with film openings through said film coinciding with said mesh openings, said remainder of said adhesive film having a configuration as is formed by arranging a continuous solid adhesive film between said inner core and said first open-mesh fiber composite net and then sucking an excess of said solid adhesive film through said mesh openings so as to form said film openings through said film.
- 18. The sandwich composite panel in accordance with claim 1, further in combination with and integrally incorporated with a load bearing structure of a helicopter.
- 19. The sandwich composite panel according to claim 17, wherein said fiber composite material of said second cover skin comprises a second open-mesh fiber composite net, said second cover skin further comprises a second flexible cover film laminated onto said second open-mesh fiber composite net, and said second open-mesh fiber composite net has a second mesh size equal to said first mesh size.
- 20. The sandwich composite panel according to claim 17, wherein said second cover skin comprises a closed solid layer of said fiber composite material.
Priority Claims (1)
Number |
Date |
Country |
Kind |
198 04 718 |
Feb 1998 |
DE |
|
PRIORITY CLAIM
This application is based on and claims the priority under 35 U.S.C. §119 of German Patent Application 198 04 718.5, filed on Feb. 6, 1998, the entire disclosure of which is incorporated herein by reference.
US Referenced Citations (16)
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DE |
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Jul 1988 |
DE |
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Non-Patent Literature Citations (1)
Entry |
Publication Agard Conference Proceedings 549; “Impact of Acoustic Loads on Aircraft Structures” (Sep. 1994) in an article by G. Niesl et al., entitled “Helicopter Internal Noise”. |