IP Library Granted Patent US 8,383,729
Granted Patent B2
US 8,383,729 · App. 13/409,548 · Granted Feb 26, 2013

Rubber filled oriented polymer composition article

Inventors: Kevin L. Nichols (Freeland, MI); Brett M. Birchmeier (Midland, MI); Kim L. Walton (Lake Jackson, TX)
Assignee: Eovations, LLC
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Quick Facts
Patent No.
US 8,383,729
App. No.
13/409,548
Granted
Feb 26, 2013
Kind
B2
Abstract

Including crosslinked rubber particles in an oriented polymer composition induces cavitation in the oriented polymer composition and can increases the scratch and mar resistance as well as fibrillation resistance.

Claims (22)

1. An oriented polymer composition article, comprising:

at least one of amorphous and semi-crystalline polymer having a softening temperature and an induced orientation of polymer chains in the oriented polymer composition article; and

crosslinked rubber particles dispersed within the oriented polymer composition article, with the crosslinked rubber particles being non-flowable at the polymer softening temperature,

wherein the oriented polymer composition article has cavitation void volume without blowing agent.

2. The oriented polymer composition article of claim 1 , wherein the oriented polymer composition article has a density of less than 1.0 gram per cubic centimeter (g/cc).

3. The oriented polymer composition article of claim 1 , wherein the oriented polymer composition article is comprised of 10 wt % or more of the crosslinked rubber particles.

4. The oriented polymer composition article of claim 1 , wherein the oriented polymer composition article has a flexural modulus of 1.4 gigaPascals (GPa) or greater.

5. The oriented polymer composition article of claim 1 , wherein the at least one of amorphous and semi-crystalline polymer is comprised of prolylene-based polymer.

6. An oriented polymer composition article, comprising:

orientable polymer having an induced orientation of polymer chains in the oriented polymer composition article;

crosslinked rubber particles dispersed within the oriented polymer composition article; and

void cavities within the oriented polymer composition article, with the void cavities being proximate to the crosslinked rubber particles,

wherein the oriented polymer composition article has a density of less than 1.0 gram per cubic centimeter (g/cc).

7. The oriented polymer composition article of claim 6 , wherein the oriented polymer composition article has a density of less than 1.0 gram per cubic centimeter (g/cc).

8. The oriented polymer composition article of claim 6 , wherein the oriented polymer composition article is comprised of 10 wt % or more of the crosslinked rubber particles.

9. The oriented polymer composition article of claim 6 , wherein the oriented polymer composition article has a flexural modulus of 1.4 gigaPascals (GPa) or greater.

10. The oriented polymer composition article of claim 6 , wherein the void cavities are without blowing agent.

11. The oriented polymer composition article of claim 6 , wherein the orientable polymer is comprised of at least one of amorphous and semi-crystalline polymer.

12. The oriented polymer composition article of claim 11 , wherein the at least one of amorphous and semi-crystalline polymer is comprised of prolylene-based polymer.

13. The oriented polymer composition article of claim 6 , wherein the orientable polymer has a softening temperature and the crosslinked rubber particles are non-flowable at the polymer softening temperature.

14. The oriented polymer composition article of claim 1 , wherein the crosslinked rubber particles are crosslinked by reaction with a multifunctional monomer during a polymerization process, by reaction with a crosslinking agent after polymerization, or by vulcanization with sulfur.

15. The oriented polymer composition article of claim 6 , wherein the crosslinked rubber particles are crosslinked by reaction with a multifunctional monomer during a polymerization process, by reaction with a crosslinking agent after polymerization, or by vulcanization with sulfur.

Continuity (3)
Division 12619191 · Nov 16, 2009
Provisional Application 61117584 · Nov 25, 2008
Related Publication 20120277336A1 · Nov 1, 2012