EP0633339A2

Process and apparatus for forming fibers.

Abstract

An apparatus (10) for forming a nonwoven web (26) from a fiber forming thermoplastic polymer resin which includes a reservoir for supplying a quantity of melted fiber forming thermoplastic resin, a pump for pumping the molten resin to a fiber forming die (16) and a die for forming a discrete resin stream to flow therefrom. The die includes a first fluid passageway (20) for forming a stream of fluid, such as air, in contact with and substantially surrounding the formed flow of resin for a predetermined distance within the die (16) and an interrupt system (18) for selectively cycling the flow of resin on and off and clearing the resin from the fiber forming die (16). A receiving belt (26) collects the fibers (22) formed from the resin flow below the first fluid passageway spaced at a predetermined distance (A') from the die (16).

EP0633339A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 7 June 2010, 16.3 years ago.

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39 claims: 23 independent, 16 dependent

  1. 1
    A process for forming fibers from a fiber forming resin comprising the steps of:(a) forming a flow of resin from a die housing having at least one resin outlet orifice, said flow extending along a first axis, and (b) fiberizing said resin to form fibers by flowing a primary fiberization fluid in completely surrounding contact with said flow of resin, said primary fiberization fluid contacting said flow of resin at a primary fluid flow angle of between about 15 and 60 degrees, said angle being measured as an interior angle between the intersection of the first axis of said flow of resin and a line tangent to the flow of said primary fiberization fluid.
  2. 3
    The process of one of the preceding claims wherein said flow of resin is at a melt pressure of less than or equal to 6900 kPa.
  3. 4
    The process of one of the preceding claims wherein said flow of resin is at a throughput of about 0.1 to 151 grams per orifice per minute, preferably of about 0.75 to 38.0 grams per orifice per minute.
  4. 5
    The process of one of the preceding claims, wherein said primary fiberization fluid flows at a rate of about 57 to 1558 standard litres per minute, preferably at a rate of about 57 to 708 standard litres per minute.
  5. 6
    The process of one of the preceding claims which further includes the step of angling said primary fiberization fluid flow such that it spirals about said first axis of said flow of resin.
  6. 7
    The process of one of the preceding claims wherein said primary fiberization fluid is at a pressure of between about 6.9 and 317 kPa, preferably of between about 6.9 and 172 kPa.
  7. 8
    The process of one of the preceding claims wherein said primary fiberization fluid is at a temperature of between about 137°C and 344°C.
  8. 9
    The process of one of the preceding claims wherein said at least one resin outlet orifice has a diameter of between about 0.25 and 3.0 millimeters, preferably of between about 0.5 and 1.0 millimeters.
  9. 10
    The process of one of the preceding claims which further includes the step of collecting said fibers in the form of a nonwoven web.
  10. 12
    A process for forming fibers from a fiber forming resin according to one of the preceding claims, comprising the additional steps of:(a) pumping a molten fiber forming resin into one or more die assemblies, each of said assemblies having a resin chamber for receiving said molten fiber forming resin and a resin outlet orifice in fluid communication with said chamber for discharging said resin, each said assembly further including a retractable plunger within said resin chamber having a closed position wherein said plunger is in contact with said resin outlet orifice to prevent flow of said resin from said orifice and an open position wherein said plunger is retracted from said resin outlet orifice to allow the flow of said resin from said orifice;(b) retracting one or more of said plungers from said closed to said open positions to intermittently form flows of resin from said outlet orifices having said plungers in an open position, said flows extending along individual first axes;(c) interrupting one or more of said flows of resin by selectively cycling said plungers between said open and closed positions.
  11. 14
    An apparatus (10) for forming fibers (22) from a fiber forming resin comprising:A die housing (29) including a resin chamber for receiving a supply of molten fiber forming resin, said chamber having a resin outlet orifice (41) in fluid communication therewith for emitting said molten resin in the form of a flow, said flow defining a first axis (61), characterised by primary fiberization means (43) completely surrounding said resin outlet orifice (41) for drawing said resin into fibers (22).
  12. 19
    The apparatus of one of claims 14 to 18, wherein said die housing (29) has an external surface which defines a plane with said resin outlet orifice (41) and said fluid outlet port (43) lying substantially in the same plane defined by said external surface of said die housing.
  13. 20
    The apparatus of one of claims 14 to 18, wherein said fluid outlet port (43) lies substantially within a plane (48) defined by said external surface of said die housing and said resin outlet orifice (41) is recessed within said die housing a distance (C') not exceeding 5 millimeters as measured from said plane (48).
  14. 21
    The apparatus of one of claims 14 to 20, wherein said resin outlet orifice (41) has a diameter from about 0.25 to 3.0 millimeters.
  15. 22
    The apparatus of one of claims 14 to 21 wherein said fluid outlet port (43) has a diameter between about 3 and 5 millimeters.
  16. 23
    The apparatus of one of claims 14 to 22 wherein said primary fiberization fluid and said secondary fiberization fluid are fed from separate supplies of fluid.
  17. 24
    The apparatus of one of claims 14 to 23 wherein said die housing (29) further includes a nozzle (31) located therein and at least partially surrounded by a fiberization fluid chamber (33) which terminates in said fluid outlet port (43)said nozzle (31) including said resin chamber and said resin outlet orifice(41).
  18. 27
    The apparatus of one of claims 24 to 26 wherein said nozzle (31) has a nozzle exterior surface, said nozzle exterior surface having a plurality of flutes (76) adjacent said resin outlet orifice (41) to direct said primary fiberization fluid.
  19. 29
    The apparatus of one of claims 27 and 28 wherein said nozzle (31) has a flute spiral angle (G') of about 20 to 45 degrees.
  20. 30
    The apparatus of one of claims 26 to 29, wherein said nozzle (31) has a frustoconical angle (F') of about 15 to 60 degrees.
  21. 31
    The apparatus of one of claims 27 to 30 wherein said tapered axial portion (74) including said plurality of flutes (76) said flutes (76) extending into said land surface.
  22. 33
    The apparatus of one of claims 14 to 32 which further includes collection means (24) for receiving said fibers (22) in the form of a nonwoven web (26).
  23. 38
    The apparatus of claims 24, 26 and 37 wherein said axial end portion (70) has preferably a substantial cylindrical outer surface having a land surface (72) and said axial end portion (70) including a plurality of flutes (76), said flutes (76) extending into said land surface (72) and preferably are situated in the cylindrical outer surface.
Independent claims23