Claims
- 1. A blend composition of HDPE resin components having a number average molecular weight (Mn) greater than about 20,000 grams/mole and a polydispersity index (PI), defined as a ratio of the weight average molecular weight (Mw) to the number average molecular weight (Mn), from about 5 to about 12, resulting in a melt blend having a density of about 0.945 to about 0.955 grams per cubic centimeter, MI in the range of about 0.15 grams up to about less than 0.40 grams per 10 minutes, a flexural modulus of at least 110,000 pounds per square inch, and ESCR greater than about 24 hours.
- 2. The blend of claim 1 wherein the ESCR is measured by a NCTL procedure.
- 3. The blend of claim 1 wherein the ESCR is measured by a NCSL procedure.
- 4. The blend of claim 1 having a component comprising a HMW HDPE copolymer or homopolymer having an MI value in the range of about 0.01 to about 0.1 grams per 10 minutes and a density in the range of about 0.945 and about 0.968 grams per cubic centimeter and a number average molecular weight in the range from about 25,000 grams/mole to about 100,000 grams/mole.
- 5. The blend of claim 1 including a component comprising a LMW HDPE homopolymer having a density range from about 0.954 to about 0.968 grams per cubic centimeter and MI in the range from about 0.1 to about 20.0 grams per 10 minutes.
- 6. The blend of claim 4 including a component comprising a LMW HDPE copolymer having a density range from about 0.945 to about 0.954 grams per cubic centimeter and MI in the range from about 0.1 to about 20.0 grams per 10 minutes.
- 7. The blend of claim 4 having at least one LMW HDPE homopolymer having a density range from about 0.954 to about 0.968 grams per cubic centimeter and MI in the range from about 0.1 to about 20.0 grams per 10 minutes.
- 8. The blend of claim 4 having at least one LMW HDPE copolymer having a density range from about 0.945 to about 0.954 grams per cubic centimeter and MI in the range from about 0.1 to about 20.0 grams per 10 minutes.
- 9. The blend of claim 7 having at least one LMW HDPE copolymer having a density range from about 0.945 to about 0.954 grams per cubic centimeter and MI in the range from about 0.1 to about 20.0 grams per 10 minutes.
- 10. The blend of claim 4 wherein at least one of the HMW copolymer or homopolymer HDPE components has a unimodal molecular weight distribution.
- 11. The blend of claim 4 wherein the HMW copolymer or homopolymer HDPE component has a molecular weight distribution selected from the group consisting of a bimodal distribution and a multimodal distribution.
- 12. The blend of claim 5 or claim 7 wherein the LMW homopolymer HDPE component is an injection molding grade HDPE having MI from about 1.0 to about 20.0 grams per 10 minutes.
- 13. The blend of claim 6 or claim 8 or claim 9 wherein the LMW copolymer HDPE component is an injection molding grade HDPE having MI from about 1.0 to about 20.0 grams per 10 minutes.
- 14. Single wall and dual wall corrugated and smooth wall polyethylene pipe and fabricated or molded fittings and accessories therefor composed substantially of a blend composition of claim 1.
- 15. The pipe, fittings and accessories of claim 14 whereby additives are present.
- 16. The pipe, fittings and accessories of claim 15 wherein the additive is selected from the group comprising antioxidants, ultra violet stabilizers, carbon black, processing aids, and colorants.
- 17. A method of determining ESCR of linear polyethylene resin and blend compositions by applying the formula ESCR=EMnF to polyethylene resin and blend compositions having similar density values wherein:
Mn=number average molecular weight, and E and F are constants determined from ESCR=EMnF and known ESCR and Mn values for any two linear polyethylene compositions having similar densities, plus or minus 0.005 grams per cubic centimeter.
- 18. A method of determining ESCR in linear polyethylene resin and blend compositions by applying the formula log ESCR=Glog(Mn)+H to polyethylene resin and blend compositions having similar densities, plus or minus 0.005 grams per cubic centimeter, wherein Mn=number average molecular weight and G is the slope and H is the intercept of a straight line.
- 19. A method of selecting components for a blended polyethylene composition having a predetermined number average molecular weight, Mn, comprising the steps of 1) determining Mn of the composition and 2) determining the suitability of the selected components for the blended polyethylene composition for a predetermined application by applying the formula of claim 17 or claim 18.
- 20. The method of claim 19 wherein the ESCR measurement procedure is selected from the group consisting of ASTM D5397, ASTM F1473, ASTM D1598 and ASTM F2136 standards.
- 21. The method of claim 17 or claim 18 wherein transformations of data relating to melt rheological properties are utilized to obtain the number average molecular weight (Mn).
- 22. The method of claim 21 wherein the rheological properties transformed are derived from measurements selected from the group consisting of dynamic mechanical, stress relaxation, viscosity, normal stress, arbitrary strain, stress function perturbation, cosine function, and creep.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of application Ser. No. 10/017,314, “Melt Blended High Density Polyethylene Compositions With Enhanced Properties and Method for Producing the Same” filed on Dec. 14, 2001 and application Ser. No. 10/194,136, “Melt Blended High-Density Polyethylene Compositions with Enhanced Properties and Method for Producing the Same filed on Jul. 12, 2002, both incorporated by reference herein as if set forth in full.
Continuation in Parts (2)
|
Number |
Date |
Country |
| Parent |
10194136 |
Jul 2002 |
US |
| Child |
10337084 |
Jan 2003 |
US |
| Parent |
10017314 |
Dec 2001 |
US |
| Child |
10337084 |
Jan 2003 |
US |