Nova Patents
EP0936049A2

A process for extrusion

Abstract

A process for the extrusion of polyethylene having a broad molecular weight distribution wherein the polyethylene is prepared in pellet form, said extrusion taking place in a pelletizing extruder having one or more zones essentially filled with polyethylene and two or more zones partially filled with polyethylene including a feed zone comprising (i) introducing the polyethylene into the extruder at a temperature sufficient to melt the polyethylene; (ii) introducing a mixture of an inert gas and oxygen into at least one partially filled zone with the exception of the feed zone, said mixture containing about 1 to about 21 percent by volume oxygen based on the volume of the gaseous mixture; (iii) passing the molten polyethylene through each zone at melt temperature; and (iv) extruding the polyethylene into pellets and cooling same.

EP0936049A2, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 8 October 2018, 8 years ago.

  1. Priority
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  3. Published
  4. Projected expiry
  5. Today

10 claims: 10 independent, 0 dependent

  1. 1
    A process for the extrusion of polyethylene having a broad molecular weight distribution wherein the polyethylene is prepared in pellet form, said extrusion taking place in a pelletizing extruder having one or more zones essentially filled with polyethylene and two or more zones partially filled with polyethylene including a feed zone comprising (i) introducing the polyethylene into the extruder at a temperature sufficient to melt the polyethylene;(ii) introducing a mixture of an inert gas and oxygen into at least one partially filled zone with the exception of the feed zone, said mixture containing 1 to 21 percent by volume oxygen based on the volume of the gaseous mixture;(iii) passing the molten polyethylene through each zone at melt temperature;and (iv) extruding the polyethylene into pellets and cooling same.
  2. 2
    The process defined in claim 1 wherein the gaseous mixture introduced into at least one partially filled zone with the exception of the feed zone is 1 to 4 percent by volume oxygen.
  3. 3
    The process defined in claim 1 to 2 wherein the polydispersity of the polyethylene is in the range of 2 to 44.
  4. 4
    The process defined in any one of the preceding claims wherein the melt temperature is in the range of 140 to 320 degrees C.
  5. 5
    The process defined in any one of the preceding claims wherein the polyethylene is an in situ blend of two or more ethylene polymers.
  6. 6
    A process for the extrusion of an in situ blend of polyethylenes wherein the polyethylene blend is prepared in pellet form, said extrusion taking place in a pelletizing extruder having one or more zones essentially filled with polyethylene and two or more zones partially filled with polyethylene including a feed zone, comprising (i) introducing into the extruder a polyethylene blend having a polydispersity in the range of 10 to 30 at a temperature sufficient to melt the polyethylene blend, said temperature being in the range of 160 to 280 degrees C;(ii) introducing a mixture of an inert gas and oxygen into at least one partially filled zone with the exception of the feed zone, said mixture containing 1 to 4 percent by volume oxygen based on the volume of the gaseous mixture;(iii) passing the molten polyethylene blend through each zone at melt temperature;and (iv) extruding the polyethylene blend into pellets and cooling same.
  7. 7
    The process defined in any one of the preceding claims wherein the partially filled zones are a feed section and one or more vent sections.
  8. 8
    The process defined in any one of the preceding claims wherein each partially filled zone, on a volume basis, contains 20 to 80 percent polyethylene.
  9. 9
    The process defined in any one of the preceding claims wherein the amount of oxygen introduced into two or more partially filled zones is the same or different.
  10. 10
    The process defined in any one of the preceding claims wherein the extruded polyethylene is formed into a blown film.