IP Library Granted Patent US 9,187,628
Granted Patent B2
US 9,187,628 · App. 13/965,783 · Granted Nov 17, 2015

Methods for improving multimodal polyethylene and films produced therefrom

Inventors: Michael McLeod (Kemah, TX); Marco Araya (League City, TX); Ruby L. Curtis (League City, TX); John Ashbaugh (Houston, TX); Leonardo Cortes (League City, TX)
Assignee: FINA TECHNOLOGY, INC.
C08L23/06C08L2203/162C08L2205/025C08L2207/062
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 9,187,628
App. No.
13/965,783
Granted
Nov 17, 2015
Kind
B2
Abstract

A blown film composition including a first high density polyethylene component and a second high density polyethylene component, wherein the blown film contains a mixture of three or more discrete molecular weight distributions, and wherein the second high density polyethylene component has at least one more discrete molecular weight distribution than the first high density polyethylene component.

Claims (33)

1. A blown film composition comprising:

a first high density polyethylene component;

a second high density polyethylene component that has at least two modes; and

a polyethylene compatible nucleating agent, wherein the first high density polyethylene component is present in amounts ranging from 60 to 99 wt% based on the total weight of the blown film composition.

2. The blown film composition of claim 1 , wherein the second high density polyethylene component has at least one more discrete molecular weight distribution than the first high density polyethylene component.

3. The blown film composition of claim 1 , wherein the first high density polyethylene component is unimodal.

4. The blown film composition of claim 1 , wherein the first high density polyethylene component has a density ranging from 0.950 to 0.970 g/cm 3 .

5. The blown film composition of claim 1 , wherein the second high density polyethylene component comprises a density ranging from 0.945 to 0.970 g/cm 3 .

6. A blown film composition comprising:

a first high density polyethylene component;

a second high density polyethylene component that has at least two modes; and

a polyethylene compatible nucleating agent, wherein at max frost line height, the blown film composition comprises a WVTR of less than 0.250 g/100 in2/day.

7. A blown film composition comprising:

a first high density polyethylene component;

a second high density polyethylene component that has at least two modes; and

polyethylene compatible nucleating agent, wherein the weight ratio of the first high density polyethylene component to the second high density polyethylene component ranges from 25:1 to 3:1.

8. A multimodal blend comprising:

a first high density polyethylene component;

a second high density polyethylene component that has at least two modes; and

a polyethylene compatible nucleating agent;

wherein the weight ratio of the first high density polyethylene component to the second high density polyethylene component in the multimodal blend is from 25:1 to 3:1;

wherein at max frost line height, the multimodal blend has a WVTR of less than 0.250 g/100 in 2 /day.

9. The multimodal blend of claim 8 , wherein the first high density polyethylene component is unimodal.

10. An article made from a multimodal blend comprising:

a first high density polyethylene component;

a second high density polyethylene component that has at least two modes; and

a polyethylene compatible nucleating agent;

wherein the weight ratio of the first high density polyethylene component to the second high density polyethylene component in the multimodal blend is from 25:1 to 3:1;

wherein at max frost line height, the multimodal blend has a WVTR of less than 0.250 g/100 in 2 /day.

11. A method of making a multimodal film comprising:

combining a first high density polyethylene component, a second high density polyethylene component that is multimodal, and a polyethylene compatible nucleating agent, to form a multimodal resin;

wherein the second high density polyethylene component has at least one more discrete molecular weight distribution than the first high density polyethylene component, wherein the weight ratio of the first high density polyethylene component to the second high density polyethylene component in the multimodal resin is from 25:1 to 3:1, and wherein at max frost line height, the multimodal resin has a WVTR of less than 0.250 g/100 in 2 /day.

12. The method of claim 11 , wherein the multimodal film is a blown film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2018
From: FINA TECHNOLOGY, INC.
To: TOTAL AMERICAN SERVICES, INC.
Reel/Frame 046315/0869 →
Continuity (3)
Continuation 13676893 · Nov 14, 2012
Provisional Application 61578987 · Dec 22, 2011
Related Publication 20130331503A1 · Dec 12, 2013