Oriented polymer composition with a deoriented surface layer
Prepare an oriented polymer composition that is cavitated, has cross sectional dimensions all at least three millimeters and at least one de-oriented surface layer having a thickness of at least 80 microns and at least 50 microns less than half the thickness of the oriented polymer composition, the de-oriented surface layer having a lower degree of polymer orientation than a 100 micron thick portion of the oriented polymer composition adjacent to and below the de-oriented surface layer by sufficiently heat treating a surface of a cavitated oriented polymer composition.
1. An oriented polymer composition comprising a continuous orientable polymer phase wherein the oriented polymer composition:
(a) is cavitated,
(b) is of sufficient size that each cross sectional dimension of the
oriented polymer composition is at least three millimeters; and
(c) has a thickness, at least one surface and at least one de-oriented surface layer that contains the surface, the de-oriented surface layer having a thickness of at least 80 microns and at least 50 microns less than half of the thickness of the oriented polymer composition, the de-oriented surface layer characterized by having a lower degree of polymer orientation than a 100 micron thick portion of the oriented polymer composition adjacent to the de-oriented layer and more proximate to the center of the oriented polymer composition.
2. The oriented polymer composition of claim 1 , further comprising at least one filler material.
3. The oriented polymer composition of claim 1 , further comprising at least one type of inorganic filler.
4. The oriented polymer composition of claim 1 , further comprising at least one pigment.
5. The oriented polymer composition of claim 1 , wherein the oriented polymer composition has a density of 0.9 grams per cubic centimeter or less.
6. The oriented polymer composition of claim 1 , wherein at least one surface that is part of a de-oriented surface layer is further characterized by having an embossed pattern.
7. The oriented polymer composition of claim 1 , wherein polymers in the de-oriented surface layer have an orientation ratio value of 2 or less while the oriented polymer composition below the de-oriented surface layer and extending to a depth of 100 microns below the de-oriented surface layer has an average orientation ratio value of greater than 2 with orientation ratio determined according to Orientation Ratio Measurement Method.
8. The oriented polymer composition of claim 1 , wherein the oriented polymer composition has a flexural modulus of 1.4 gigapascals or greater according to ASTM method D6109.
9. The oriented polymer composition of claim 8 , wherein the oriented polymer composition has a density of 0.9 grams per cubic centimeter or less.
10. The oriented polymer composition of claim 1 , wherein the continuous orientable polymer phase comprises at least one polymer selected from a group consisting of polypropylene, polyethylene, polyester and polyvinylchloride.