Claims
- 1. A process for making fine metallic mesh, comprising:
cladding an array of metallic wires with an array cladding material to provide an array cladding; drawing the array cladding for reducing the diameter thereof and for reducing the corresponding diameters of each of the metallic wires of the array within the array cladding for providing a drawn array cladding of fine metallic fibers; forming the drawn array of fine metallic fibers into a metallic mesh; and removing the array cladding material for producing the fine metallic mesh from the array of fine metallic fibers.
- 2. The process for making fine metallic mesh of claim 1, wherein the act of cladding the array of metallic wires comprises:
cladding a wire with a wire cladding material to provide a wire cladding; assembling an array of the wire claddings; and cladding the assembled array of wire claddings with the array cladding material to provide an array cladding.
- 3. The process for making fine metallic mesh of claim 2, wherein the act of cladding the wire with a wire cladding material comprises electroplating the wire with the wire cladding material to provide the wire cladding.
- 4. The process for making fine metallic mesh of claim 1, wherein the act of drawing the array cladding comprises multiple drawing and annealing process for producing a drawn array cladding of fine metallic fibers.
- 5. The process for making fine metallic mesh of claim 1, wherein the act of forming the drawn array into a metallic mesh comprises forming a series of bends along a length of the drawn array cladding.
- 6. A fine metallic mesh made from a process comprising:
cladding an array of metallic wires with an array cladding material to provide an array cladding; drawing the array cladding for reducing the diameter thereof and for reducing the corresponding diameters of each of the metallic wires of the array within the array cladding for providing a drawn array cladding of fine metallic fibers; forming the drawn array of fine metallic fibers into a metallic mesh; and removing the array cladding material for producing the fine metallic mesh from the array of fine metallic fibers.
- 7. The mesh of claim 6, wherein the act of cladding the array of metallic wires comprises:
cladding a wire with a wire cladding material to provide a wire cladding; assembling an array of the wire claddings; and cladding the assembled array of wire claddings with the array cladding material to provide an array cladding.
- 8. The mesh of claim 6, wherein the act of cladding the wire with a wire cladding material comprises electroplating the wire with the wire cladding material to provide the wire cladding.
- 9. The mesh of claim 6, wherein the act of drawing the array cladding comprises multiple drawing and annealing process for producing a drawn array cladding of fine metallic fibers.
- 10. The mesh of claim 6, wherein the act of forming the drawn array into a metallic mesh comprises forming a series of bends along a length of the drawn array cladding.
- 11. The mesh of claim 6, wherein the metallic wire is made from stainless steel.
- 12. The mesh of claim 6, wherein the metallic wire is made from nickel.
- 13. The mesh of claim 6, wherein between 150 and 3,000 of the wire claddings are assembled into the array.
- 14. A fine metallic mesh made from a process comprising:
cladding a wire with a wire cladding material to provide a wire cladding; assembling an array of the wire claddings; and cladding the assembled array of wire claddings with the array cladding material to provide an array cladding. drawing the array cladding for reducing the diameter thereof and for reducing the corresponding diameters of each of the metallic wires of the array within the array cladding for providing a drawn array cladding of fine metallic fibers; forming the drawn array of fine metallic fibers into a metallic mesh thereby creating a series of bends in the drawn array cladding for reducing interaction between adjacent portions of the array cladding; and removing the array cladding material for producing the fine metallic mesh from the array of fine metallic fibers.
- 15. The mesh of claim 14, wherein the act of cladding the wire with a wire cladding material comprises electroplating the wire with the wire cladding material to provide the wire cladding.
- 16. The mesh of claim 14, wherein the act of drawing the array cladding comprises multiple drawing and annealing process for producing a drawn array cladding of fine metallic fibers.
- 17. A metallic mesh comprising a plurality of warps interleaved with a plurality of weaves, wherein the plurality of warps and weaves comprise clad metallic threads, and wherein each metallic thread comprises a plurality of clad fine metal fibers, wherein the warps have a plurality of bends extending along a longitudinal length of each of the plurality of warps, and wherein the weaves have a plurality of bends extending along a longitudinal length of each of the plurality of weaves, and wherein the warps and weaves are interleaved so as to create a space between adjacent warps and a space between adjacent weaves.
- 18. The metallic mesh of claim 17, wherein the metal fibers are made of stainless steel.
- 19. The metallic mesh of claim 17, wherein the metal fibers are made of nickel.
- 20. The metallic mesh of claim 17, wherein between 150 and 3,000 metal fibers are assembled into each metallic thread.
- 21. The metallic mesh of claim 17, wherein each of the weaves makes perpendicular contact with at least one of the warps.
- 22. A metallic mesh comprising a plurality of warps interleaved with a plurality of weaves, wherein the plurality of warps and weaves comprise metallic threads, and wherein each metallic thread comprises between 150 and 3,000 fine metal fibers, wherein the warps have a plurality of bends extending along a longitudinal length of each of the plurality of warps, and wherein the weaves have a plurality of bends extending along a longitudinal length of each of the plurality of weaves.
- 23. The metallic mesh of claim 22, wherein the metal fibers are made of stainless steel.
- 24. The metallic mesh of claim 22, wherein the metal fibers are made of nickel.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims benefit of U.S. Patent Provisional application serial No. 60/270,360 filed Feb. 21, 2001. All subject matter set forth in provisional application serial No. 60/270,360 is hereby incorporated by reference into the present application as if fully set forth herein.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60270360 |
Feb 2001 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09950466 |
Sep 2001 |
US |
Child |
10096690 |
Mar 2002 |
US |