USRE32542EExpiredUtility
Molded products of polypropylene
Priority: Dec 13, 1978Filed: Nov 5, 1986Granted: Nov 10, 1987
Est. expiryDec 13, 1998(expired)· nominal 20-yr term from priority
C08F 10/06C08J 2323/12C08L 23/10B32B 2323/10Y10T428/31899C08F 110/06C08F 210/06B32B 2439/00B32B 27/10B32B 2457/00B32B 2307/206B32B 1/00B32B 2471/02B32B 27/32C08J 5/18B32B 2605/08
4
PatentIndex Score
1
Cited by
4
References
21
Claims
Abstract
A molded product of polypropylene having an isotactic pentad fraction of the boiling heptane insoluble portion of at least about 0.955 and a boiling heptane solubles content of about 2.0 to 9.0% by weight. The molded products include a stretched film, insulating materials for electrical equipment, etc.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1. A stretched film, for use in electrical insulation, prepared from a polypropylene having an isotactic pentad fraction of the boiling heptane insoluble portion of at least about 0.955 and a content of the boiling heptane soluble portion of about 2.0 to 9.0% by weight.
2. The stretched film of claim 1, wherein the isotactic pentad fraction is not less than about 0.960.
3. The stretched film of claim 1, wherein the content of the boiling heptane soluble portion is about 3.5 to 8.0% by weight.
4. The stretched film of claim 1, wherein the intrinsic viscosity of the polymer soluble in xylene at 20° C. contained in said polypropylene is not more than about 1.0 dl/g.
5. The stretched film of claim 4, wherein the intrinsic viscosity of the polymer soluble in xylene at 20° C. is not more than about 0.5 dl/g.
6. The stretched film of claim 1, wherein in the equation for the melt swelling ratio of the polypropylene (SR), SR=0.12 (log MFR) 2 +0.19 log MFR+C wherein MFR is a melt flow rate of the polypropylene, and C is about 1.5 to 1.45.
7. The stretched film of claim 6, wherein C is about 1.20 to 1.40.
8. The stretched film of claim 6, wherein MFR is about 0.2 to 100.
9. The stretched film of claim 9, wherein MFR is about 0.5 to 50.
10. The stretched film of claim 1, wherein the stretched film is a biaxially stretched film.
11. The stretched film of claim 1, wherein the polypropylene is one having an isotactic pented fraction of the boiling heptane insoluble portion of at least about 0.955, a content of the boiling heptane soluble portion of about 2.0 to 9.0% by weight, and an intrinsic viscosity of the polymer soluble in xylene at 20° C. of not more than about 1.0 dl/g.
12. A laminated paper, for use in electrical insulation, produced by laminating a polypropylene, having an isotactic pentad fraction of the boiling heptane insoluble portion of at least about 0.955 and a content of the boiling heptane solution portion of about 2.0 to 9% by weight, on a fibrous paper.
13. The laminated paper of claim 12, wherein the isotactic pentad fraction is not less than about 0.960.
14. The laminated paper of claim 12, wherein the content of the boiling heptane solution portion is about 3.5 to 8.0% by weight.
15. The laminated paper of claim 12, wherein the intrinsic viscosity of the polymer soluble in xylene at 20° C. contained in said polypropylene is not more than about 1.0 dl/g.
16. The laminated paper of claim 15, wherein the intrinsic viscosity of the polymer soluble in xylene at 20° C. is not more than about 0.5 dl/g.
17. The laminated paper of claim 12, wherein in the equation for the melt swelling ratio of the polypropylene (SR), SR=0.12 (log MFR) 2 +0.19 log MFR+C wherein MFR is a melt flow rate of the polypropylene, and C is about 1.15 to 1.45.
18. The laminated paper of claim 17, wherein C is about 1.20 to 1.40.
19. The laminated paper of claim 17, wherein MFR is about 0.2 to 100.
20. The laminated paper of claim 19, wherein MFR is about 0.5 to 50.
21. The laminated paper of claim 12, wherein the polypropylene has an isotactic pentad fraction of the boiling heptane insoluble portion of at least about 0.955, a content of the boiling heptane solution portion of about 2.0 to 9.0% by weight, and an intrinsic viscosity of the polymer soluble in xylene at 20° C. of not more than about 1.0 dl/g.Join the waitlist — get patent alerts
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