Claims
- 1. An extrusion die for forming a polymeric co-extruded web, the die comprising:
a body containing at least two chambers each having an upstream end and a downstream end; and at least one vane positioned between the chambers of the body to form a wall of each chamber so that the length dimension of the vane is approximately transverse to the direction polymer is intended to flow through the die chambers, said vane having a cavity having a front portion oriented toward the downstream end of the die, at least one input orifice positioned to convey extrudable material into the cavity, and a plurality of exit orifices positioned in the front portion of the vane to extrude material toward the downstream end of the die body wherein the number and size of exit orifices in the vane and the cross section of the cavity normal to the direction in which extrudable material flows into it are sufficient to yield a ratio of the pressure drop through the exit orifices ΔPorifice to pressure drop through the cavity ΔPcavity of at least about 1.5 calculated using the flow rate equation for a power-law fluid, assuming the same flow rate through all exit orifices of the same cross section.
- 2. The extrusion die according to claim 1, wherein the vane further comprises a removable tip along the end facing the downstream portion of the die and the vane is pivotable about an axis passing through the upstream portion of the vane.
- 3. The extrusion die according to claim 1, further comprising at least one vane not having a cavity.
- 4. A process for making a polymeric co-extruded web, the process comprising:
a) providing at least one extrudable matrix material and a second extrudable material; b) providing a die containing two chambers, each having an upstream and downstream end, and a vane positioned between the two chambers forming a wall of each chamber so that there are at least two gaps between the outside of the vane and the inside of the chambers through which polymer can flow, the vane containing a cavity having at least one input orifice positioned to receive extrudable material and a plurality of exit orifices oriented to extrude polymer toward the downstream end of the chamber; and c) extruding the extrudable matrix material through the two chambers of the die and the second extrudable material through the input and exit orifices in the vane to produce a co-extruded web comprising a continuous matrix comprising the matrix material, and said second extrudable material which is contained within the matrix as a separate phase wherein the number and size of exit orifices in the vane and the cross section of the cavity normal to the direction in which extrudable material flows into it are sufficient to yield a ratio of the pressure drop through the exit orifices ΔPorifice to pressure drop through the cavity ΔPcavity of at least about 1.5 calculated using the flow rate equation for a power-law fluid, assuming the same flow rate through all exit orifices of the same cross section.
- 5. The process for making a polymeric co-extruded web according to claim 4, further comprising orienting the web in at least one direction.
- 6. The process for making a polymeric co-extruded web according to claim 5, wherein two different matrix materials are used, one matrix material is extruded through one chamber of the die and the other matrix material is extruded through the other chamber.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional of U.S. Application No. 09/365,286, filed Jul. 30, 1999.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09365286 |
Jul 1999 |
US |
Child |
10185218 |
Jun 2002 |
US |