Claims
- 1. A vibration damping sleeve adapted to receive and protect elongate substrates, said sleeve comprising:
an elongate tubular support layer formed of a flexible, resilient polymeric material and having circumferential corrugations providing radial rigidity and bending flexibility, said support layer having an outwardly facing surface and an inwardly facing surface surrounding and defining an interior space adapted to receive the substrates; and a damping layer of energy absorbing material positioned in facing relationship with one of said surfaces of said support layer, said damping layer being substantially co-extensive with said one surface and having corrugations matching said corrugations of said support layer.
- 2. A vibration damping sleeve according to claim 1, wherein said damping layer is positioned on said outwardly facing surface of said support layer.
- 3. A vibration damping sleeve according to claim 2, wherein said damping layer is adhered to said support layer substantially continuosly over said outwardly facing surface.
- 4. A vibration damping sleeve according to claim 2, wherein said damping layer comprises an elongated strip of said energy absorbing material adhered to an elongated strip of said support layer and helically wrapped at a predetermined helix angle relatively to the sleeve, the corrugations on the damping layer being oriented at an angle to the helix angle sufficient to conform to the corrugations on the support layer.
- 5. A vibration damping sleeve according to claim 2, wherein said damping layer comprises a sheet of said energy absorbing material cigarette wrapped around said support layer.
- 6. A vibration damping sleeve according to claim 1, wherein said support layer is formed from a polymeric material selected from among the group consisting of polyester, polypropylene and nylon.
- 7. A vibration damping sleeve according to claim 1, wherein said damping layer comprises a non-woven felt material.
- 8. A vibration damping sleeve according to claim 7, wherein said felt material is selected from among the group consisting of polyester, polypropylene and nylon.
- 9. A vibration damping sleeve according to claim 7, wherein said damping layer is formed from substantially the same material as said support layer.
- 10. A vibration damping sleeve according to claim 9, wherein said damping layer and said support layer comprise polyester.
- 11. A vibration damping sleeve according to claim 2, further comprising a second damping layer positioned between said inwardly facing surface of said support layer and said interior space.
- 12. A vibration damping sleeve according to claim 11, wherein said second damping layer is substantially co-extensive with said inwardly facing surface and has corrugations matching said corrugations of said support layer.
- 13. A vibration damping sleeve according to claim 12, wherein said second damping layer is adhered to said support layer substantially continuously over said inwardly facing surface.
- 14. A vibration damping sleeve according to claim 1, wherein said damping layer comprises a foamed material.
- 15. A vibration damping layer according to claim 14, wherein said damping layer comprises foam rubber.
- 16. A vibration damping layer according to claim 1, wherein an elongated substrate is received within said interior space.
- 17. A vibration damping layer according to claim 1, wherein said elongated substrate comprising a wiring harness.
- 18. A vibration damping sleeve adapted to receive and protect elongate substrates, said sleeve comprising:
a flexible resilient elongate tubular support layer comprising polyester and having circumferential corrugations providing radial rigidity and bending flexibility, said support layer having an outwardly facing surface and an inwardly facing surface surrounding and defining an interior space adapted to receive the substrates; and a damping layer of polyester felt positioned overlying one of said surfaces of said support layer, said damping layer being substantially co-extensive with said one surface and having corrugations matching said corrugations of said support layer.
- 19. A vibration damping sleeve according to claim 18, wherein said damping layer is adhered to said support layer substantially continuously over said outwardly facing surface.
- 20. A vibration damping sleeve according to claim 19, further comprising a second damping layer positioned between said inwardly facing surface of said support layer and said interior space.
- 21. A vibration damping sleeve according to claim 20, wherein said second damping layer is substantially co-extensive with said inwardly facing surface and has corrugations matching said corrugations of said support layer.
- 22. A vibration damping sleeve according to claim 21, wherein said second damping layer is adhered to said support layer substantially continuously over said inwardly facing surface.
- 23. A vibration damping sleeve according to claim 22, wherein said second damping layer comprises polyester felt.
- 24. A method of making a vibration damping sleeve having a tubular support layer formed of a flexible, resilient polymeric material and a damping layer formed of a non-woven felt, said method comprising the steps of:
adhering a sheet of said felt to a sheet of said polymeric material; cutting said adhered sheets into a plurality of strips having longitudinal edges; wrapping said strips helically around a mandrel having a plurality of corrugations while positioning said edges in abutting relationship; and applying heat and pressure to said strips thereby forcing them to conform to said corrugations of said mandrel and causing said longitudinal edges to adhere to one another and form a helical seam along said sleeve.
RELATED APPLICATION
[0001] This application is based on and claims the benefit of U.S. Provisional Application No. 60/311,291, filed Aug. 9, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60311291 |
Aug 2001 |
US |