Claims
- 1. A method of forming a web of fibrous media comprising: feeding first fibers in attenuated multiple fiber layers from a first spaced orifice zone in a first feed path to a first spaced longitudinally extending rotating collector zone in successive lower and upper fiber layers, said fibers having a first selected fiber size distribution when passed to said first collector zone to form a first fibrous mat having a first selected fiber size distribution thereon; feeding said first formed fibrous mat to at least a second similarly rotating collector zone spaced from said first rotating collector zone; feeding second fibers in attenuated multiple fiber layers from a second spaced orifice zone in a second feed path to said second collector zone spaced from said second orifice zone to form a second fibrous mat combined with said first fibrous mat fed to said second collector zone from said first collector zone, said second fibers having a second selected fiber size distribution and, feeding said combined fiber mat from said second collector source zone to a further mat forming zone.
- 2. The method of forming a web of fibrous media of claim 1, wherein said first and second collector zones are selectively spaced from said first and second orifice zones respectively and said first and second fiber feed paths are fed at selected locations and at selected angles to said rotating collector zones respectively so as to control at least one outer surface of said combined filter mat passed to said mat forming zone.
- 3. The method of forming a web of fibrous media of claim 1, wherein said attenuated multiple fiber layers from said first and second orifice zones are attenuated at selected spaces, volumes, and air pressures from said respective orifice zones.
- 4. The method of forming a web of fibrous media of claim 1, wherein third fibers are fed in attenuated multiple fiber layers from at least a third spaced orifice zone in a third feed path to a third rotating collector zone spaced from said third orifice zone to form a third fibrous mat to be combined with said first and second fibrous mat to be fed to said mat forming zone.
- 5. The method of forming a web of fibrous media of claim 4, wherein said first, second and third collector zones are rotated in the same direction.
- 6. The method of forming a web of fibrous media of claim 1, wherein said first and second collector zones are rotated in opposite directions so as to control both outer surfaces of said combined filter mat passed to said mat forming zone.
- 7. The method of forming a web of fibrous media of claim 6, wherein said first and second fiber feed paths to said first and second rotating collectors are directed to similar collector cross-sectional locations on said first and second rotating collectors.
- 8. The method of forming a web of fibrous media of claim 6, wherein said first and second fiber feed paths are directed to opposed different collector cross-sectional locations on said first and second rotating collectors.
- 9. The method of forming a web of fibrous media of claim 1, wherein said first and second collector zones are each rotated in the same direction with the fibers in said first and second feed paths being directed to different selected collector cross-sectional locations on said first and second rotating collectors respectively so as to control both outer surfaces of said combined filter mat passed to said mat forming zone.
- 10. The method of forming a web of fibrous media of claim 2, wherein said first and second collector zones are selectively spaced from said first and second orifice zones respectively a selected distance in the range of two (2) to sixty (60) inches.
- 11. The method of forming a web of fibrous media of claim 2, wherein said first and second collector zones are advantageously spaced a distance of approximately eighteen (18) inches from said first and second orifice zones respectively.
- 12. The method of forming a web of fibrous media of claim 2, wherein said first and second fiber feed paths are attenuated from said first and second orifice zones respectively in a downwardly directed manner to said first and second rotating collector zones respectively to each tangentially abut a selected cross-sectional peripheral side of said first and second rotating collector zones respectively.
- 13. A method of forming a web of fibrous media comprising: feeding first fibers in attenuated multiple fiber layers from a first spaced orifice zone to a first selectively spaced longitudinally rotating collector zone in successive lower and upper fiber layers, said fibers having a first fiber size distribution in the approximate range of zero point one (0.1) to twenty seven (27) micrometers to form a first fibrous mat having a first selected fiber sized thereon; feeding said first formed fibrous mat from said first rotating collector zone to at least a second similarly rotating collector zone spaced from said first rotating collector zone; feeding second fibers in attenuated multiple fiber layers from a second spaced orifice zone in a second feed path to said second collector zone selectively spaced from said second orifice zone to form a second fibrous mat combined with said first fibrous mat fed to said second collector zone from said first collector zone, said second fibers having a second fiber size distribution of approximately one (1) to fifty (50) micrometers, said fibers being attenuated from said first and second orifices zones at an approximate permeability of thirty (30) to four thousand (4000) cubic feet per minute per square foot (cfm/ft2) and said first and second orifice zones being spaced from said first and second collector zones respectively an approximate distance of eighteen (18) inches; and, feeding said combined fiber mat from said second collector zone to a further mat forming zone.
- 14. The method of forming a web of fibrous media of claim 1, wherein said first and second select fibers in said first and second orifice zones respectively are of different selected fiber size distributions.
- 15. The method of forming a web of fibrous media of claim 1, wherein said first and second fibers in said first and second orifice zones are of different selected fiber size distribution in the approximate range of zero point one (0.1) to fifty (50) micrometers.
- 16. The method of forming a web of fibrous media of claim 1, wherein said first and second fibers in said first and second orifice zones respectively are in the approximated fiber size distribution first and second ranges of zero point (0.1) to twenty seven (27) and one (1) to fifty (50) micrometers, respectively.
- 17. The method of forming a web of fibrous media of claim 1, wherein said first and second fiber size distributions are intercombined when passed to said third mat forming zone.
- 18. The method of forming a web of fibrous media of claim 1, wherein said first and combined second fibrous mats are formed to be superposed one upon the other when passed to said third mat forming zone.
- 19. The method of forming a web of fibrous media of claim 1, wherein said first formed fibrous mat is fed from said first collector zone to said spaced second collector zone through a mat orientation zone extending between said spaced first and second collector zones.
- 20. The method of forming a web of fibrous media of claim 1, including the step of exerting an external relatively vertically creating force at a selected location on at least a portion of one of said first and second attenuated feed paths as said fibers approach a longitudinally extending collector zone with said fibers eventually forming on said immediately preceeding rotating collector zone having the greater mat permeability.
CROSS-REFERENCE TO RELATED APPLICATIONS
application Ser. No. 09/635,310, filed Aug. 1, 2000.
US Referenced Citations (13)