Claims
- 1. A process for producing a breathable film having a WVTR greater than 200 g/m2/day at 38° C. and 90% relative humidity comprising a polyolefin and a filler, said process comprising:a) extruding a precursor film from a polyolefin blend comprising at least a first polymer composition and a second polymer composition and said filler, said filler having a concentration in a range of from about 16.5 to about 71.5 wt.% of said polyolefin blend; and b) passing said precursor film between at least one pair of interdigitating grooved rollers to stretch said precursor film, said rollers being heated to a temperature range of from 95° F. to 159° F., so that said precursor film contacting said rollers is heated and stretched to produce a breathable film having permanent elongation, said breathable film having a WVTR greater than 200 g/m2/day at 38° C. and 90% relative humidity, wherein said WVTR of said breathable film produced is higher when said rollers are heated to the highest temperature within said temperature range than said WVTR of said breathable film produced at the lowest temperature within said temperature range.
- 2. The process of claim 1 wherein said polyolefin is selected from the group consisting of polypropylene, polyethylene, ethylene polar comonomer polymers, ethylene α-olefm copolymers and combinations thereof.
- 3. The process of claim 1 further comprising cooling said precursor film to a temperature of at least 75° F. or less after step a) but prior to step b).
- 4. The process of claim 1 wherein said rollers are heated to a temperature range of from about 110° F. to about 140° F.
- 5. The process of claim 1 wherein at least one of the polymer compositions comprises an elastomer.
- 6. A process for producing a breathable film having a WVTR of at least 200 g/m2/day at 38° C. and 90% relative humidity comprising a polyolefin blend, said polyolefin blend having at least a first and a second polymer composition, and a filler, said process comprising:a) extruding a precursor film from said polyolefin blend comprising said first and said second polymer compositions and said filler, said filler concentration being in a range of from about 16.5 to about 71.5 wt.% of said polyolefin blend, wherein, i) said first polymer composition is a polypropylene and ii) said second polymer composition is selected from the group consisting of elastomers, plastomers, styrenic block copolymers, ethylene-maleic anhydride copolymers, ethylene ethyl acetate, and combinations thereof; and b) passing said precursor film between at least one pair of interdigitating grooved rollers to stretch said precursor film, said rollers being heated to a temperature range of from 95° F. to 159° F. so that said precursor film contacting said rollers is heated and stretched to produce said breathable film having permanent elongation, so that said breathable film has at least i) a WVTR in a range of from about 200 g/m2/day to about 10,000 g/m2/day at 38° C. and 90% relative humidity, wherein said WVTR of said breathable film produced is higher when said rollers are heated to the highest temperature within said temperature range than said WVTR of said breathable film produced at the lowest temperature within said temperature range, ii) a dart drop impact in a range of from about 100 grams to about 300 grams, and iii) an elongation selected from the group consisting of machine direction, transverse direction and combinations thereof in a range of from about 150% to about 550%.
- 7. The process of claim 6 wherein said polypropylene is selected from the group consisting of random copolymer polypropylene, impact copolymer polypropylene, polypropylene produced with a metallocene catalyst and combinations thereof.
- 8. The process of claim 6 wherein said elastomer is selected from the group consisting of styrene-isoprene-styrene, styrene-butadiene-styrene, styrene-ethylene-butylene-styrene, ethylene alpha-olefin rubber, ethylene propylene diene monomer rubber, butyl rubber, vulcanized natural rubber and combinations thereof.
- 9. The process of claim 6 wherein said plastomer is at least one ethylene α-olefin copolymer selected from the group consisting of ethylene α-olefin copolymers wherein the α-olefm comonomer is selected from the group consisting butene, pentene, hexene, and combinations thereof.
- 10. The process of claim 6 wherein said interdigitating grooved rollers are positioned in a direction selected from the group consisting of machine direction, transverse direction and combinations thereof.
- 11. The process of claim 6 futher comprising forming said film of step b) into a fabricated article selected from the group consisting of diapers, adult incontinence devices, surgical apparel, surgical drapes, sports apparel, industrial apparel, house wrap, filtration media and controlled atmosphere packaging.
- 12. The process of claim 6 wherein the precursor film has been embossed to impose thereon a pattern of multiple film thickness prior to having been passed between said at least one pair of interdigitating grooved rollers.
- 13. The process of claim 6 wherein the WVTR is greater than 1000 g/m2/day at 38° C. and 90% relative humidity.
- 14. The process of claim 6 wherein the precursor film contacts the surface of one of the interdigitating grooved rollers that has been heated in the range of from 95° F. to 159° F. for at least one-fourth of a revolution before entering the nip between said pair of interdigitating grooved rollers providing for heating of the precursor film before entering the nip of the rollers.
- 15. The process of claim 6 wherein the initial basis weight of the precursor film is from 1.1 to 4 times the basis weight of the film after stretching.
- 16. The process of claim 6 wherein the initial basis weight of the precursor film is greater than the basis weight of the film after stretching.
- 17. The process of claim 6 wherein the precursor film is preheated and is at least 95° F. as the precursor film begins passing through said at least one pair of interdigitating grooved rollers.
- 18. The process of claim 6 wherein the second polymer composition comprises an elastomer.
RELATED APPLICATIONS
This application is a continuation-in-part application of co-pending U.S. Application No. 08/690,136 filed Jul. 31, 1996. This application claims the benefit of U.S. Provisional Application Nos. 60/104,452 filed Oct. 16, 1998 and 60/104,455 filed Oct. 16, 1998 and U.S. Provisional Application Nos. 60/104,948 filed Oct. 20, 1998 and 60/104,985 filed Oct. 20, 1998.
US Referenced Citations (240)
Foreign Referenced Citations (114)
Number |
Date |
Country |
577644 |
Sep 1988 |
AU |
621048 |
Apr 1989 |
AU |
1296225 |
Feb 1992 |
CA |
1311181 |
Dec 1992 |
CA |
1322082 |
Sep 1993 |
CA |
2144737 |
Mar 1994 |
CA |
2130192 |
Feb 1998 |
CA |
2 035 117 |
Jan 1971 |
DE |
34 36 065 A1 |
Apr 1986 |
DE |
43 11 422 A1 |
Oct 1994 |
DE |
38 50 987 T2 |
Dec 1994 |
DE |
32 33 693 C2 |
Jan 1995 |
DE |
0 032 804 A2 |
Jul 1981 |
EP |
0 114 964 A1 |
Aug 1984 |
EP |
0 119 815 A2 |
Sep 1984 |
EP |
0 119 827 A2 |
Sep 1984 |
EP |
0 193 938 A2 |
Sep 1986 |
EP |
0 201 331 A2 |
Nov 1986 |
EP |
0 114 964 B1 |
Nov 1986 |
EP |
0 219 198 A1 |
Apr 1987 |
EP |
0 227 037 |
Jul 1987 |
EP |
0 227 037 A2 |
Jul 1987 |
EP |
0 232 060 A3 |
Aug 1987 |
EP |
0 119 827 B1 |
Jul 1988 |
EP |
0 276 100 A1 |
Jul 1988 |
EP |
0 283 200 B1 |
Sep 1988 |
EP |
0 283 200 A2 |
Sep 1988 |
EP |
0 283 200 A3 |
Sep 1988 |
EP |
0 288 021 A3 |
Oct 1988 |
EP |
0 288 021 |
Oct 1988 |
EP |
0 288 021 A2 |
Oct 1988 |
EP |
0 201 331 B1 |
Dec 1989 |
EP |
0 352 802 |
Jan 1990 |
EP |
0 352 802 A2 |
Jan 1990 |
EP |
0 361 865 B1 |
Apr 1990 |
EP |
0 361 865 A3 |
Apr 1990 |
EP |
0 361 865 A2 |
Apr 1990 |
EP |
0 193 938 B1 |
Jun 1990 |
EP |
0 385 599 A2 |
Sep 1990 |
EP |
0 385 599 A3 |
Sep 1990 |
EP |
0 219 198 B1 |
Oct 1991 |
EP |
0 550 115 A2 |
Jul 1993 |
EP |
0 550 115 A3 |
Jul 1993 |
EP |
0 598 970 |
Jan 1994 |
EP |
0 598 970 A1 |
Jun 1994 |
EP |
0 691 203 A1 |
Jan 1996 |
EP |
0 742 248 A1 |
Nov 1996 |
EP |
0 629 151 B1 |
Dec 1996 |
EP |
0 662 988 B1 |
Feb 1997 |
EP |
0 769 525 A1 |
Apr 1997 |
EP |
0 682 678 B1 |
Dec 1998 |
EP |
0 604 731 B1 |
Jun 1999 |
EP |
2.074.338 |
Sep 1971 |
FR |
2.446.176 |
Aug 1980 |
FR |
1 454 218 |
Nov 1976 |
GB |
2 101 468 |
Jan 1983 |
GB |
2115702 |
Sep 1983 |
GB |
2 137 632 |
Oct 1984 |
GB |
2 178 433 |
Feb 1987 |
GB |
2151538 |
Jul 1995 |
GB |
2285408 |
Jul 1995 |
GB |
2290052 |
Dec 1995 |
GB |
48-60774 |
Aug 1973 |
JP |
51-30856 |
Mar 1976 |
JP |
54-120658 |
Sep 1979 |
JP |
54-120646 |
Sep 1979 |
JP |
55-110141 |
Aug 1980 |
JP |
57-02350 |
Jan 1982 |
JP |
57-117039 |
Jul 1982 |
JP |
57-117038 |
Jul 1982 |
JP |
58-129034 |
Aug 1983 |
JP |
61-9448 |
Jan 1986 |
JP |
61-284439 |
Dec 1986 |
JP |
62-169642 |
Jul 1987 |
JP |
62-176843 |
Aug 1987 |
JP |
62-179543 |
Aug 1987 |
JP |
62-282003 |
Dec 1987 |
JP |
64-49619 |
Feb 1989 |
JP |
64-79620 |
Mar 1989 |
JP |
2-276636 |
Apr 1989 |
JP |
1-144431 |
Jun 1989 |
JP |
1-235439 |
Sep 1989 |
JP |
1-264031 |
Oct 1989 |
JP |
1-266150 |
Oct 1989 |
JP |
2-36938 |
Feb 1990 |
JP |
2-179543 |
Jul 1990 |
JP |
3-221540 |
Sep 1991 |
JP |
6-29842 |
Feb 1994 |
JP |
7-116429 |
May 1995 |
JP |
7-118431 |
May 1995 |
JP |
175038 B1 |
Feb 1994 |
PL |
9303093 |
Feb 1993 |
WO |
9316863 |
Sep 1993 |
WO |
9401276 |
Jan 1994 |
WO |
9401376 |
Jan 1994 |
WO |
9406857 |
Mar 1994 |
WO |
9418263 |
Aug 1994 |
WO |
9502630 |
Jan 1995 |
WO |
9503765 |
Feb 1995 |
WO |
9507314 |
Mar 1995 |
WO |
9509199 |
Apr 1995 |
WO |
9516562 |
Jun 1995 |
WO |
WO 9503765 |
Sep 1995 |
WO |
9619346 |
Jun 1996 |
WO |
9639032 |
Dec 1996 |
WO |
9805502 |
Feb 1998 |
WO |
9804397 |
Feb 1998 |
WO |
9824834 |
Jun 1998 |
WO |
9829481 |
Jul 1998 |
WO |
9829504 |
Jul 1998 |
WO |
9829247 |
Jul 1998 |
WO |
WO 9829504 |
Sep 1998 |
WO |
9858799 |
Dec 1998 |
WO |
9923139 |
May 1999 |
WO |
Non-Patent Literature Citations (4)
Entry |
Karen K. Leonas “Evaluation of five nonwoven surgical gowns as barriers to liquid strikethrough and bacterial transmssion” INDA Journal vol. 5, No. 2, pp. 22-26. |
Van A. Wente “Superfine Themoplastic Fibers” Industrial Engineering Chemistry, Aug., 1956, vol. 48, No. 8, pp. 1342-1346. |
Database WPI, Section Ch, Derwent Pub. Ltd., London, GB; Class A17, AN 74-00806V, XP002043546 & JP 48 060774 A (Sekisui Chem Co Ltd) see abstract. |
Database WPI, Section Ch, Week 8948, Derwent Pub. Ltd., London, GB; Class A18, AN 89-353803, XP002043547 & JP 01 266 150 A (Showa Electric Wire Co Ltd) see abstract. |
Provisional Applications (4)
|
Number |
Date |
Country |
|
60/104452 |
Oct 1998 |
US |
|
60/104455 |
Oct 1998 |
US |
|
60/104948 |
Oct 1998 |
US |
|
60/104985 |
Oct 1998 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/690136 |
Jul 1996 |
US |
Child |
09/312103 |
|
US |