Claims
- 1. An odor-free, blow-molded bottle of a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes containing (A) 70 to 99.99% by weight of a propylene random copolymer of a multi-component system having at least three components, a crystalline melting point of 110.degree. to 145.degree. C. and a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes, containing 3 to 10% by weight of ethylene units and at least one .alpha.-olefin unit having at least 4 carbon atoms and (B) 10 to 0.05% by weight of a straight-chain low-density polyethylene.
- 2. The blow-molded bottles of claim 1 wherein said blow-molded bottle has a haze of less than 25 at a resin thickness of 0.6 mm.
- 3. The blow-molded bottles of a polyolefin resin according to claim 1 wherein the polyethylene component (B) has a density of 0.91 to 0.935 g/cm.sup.3.
- 4. The blow-molded bottles of a polyolefin resin according to claim 1 wherein the propylene random copolymer of a multi-component system has an ethylene content of at least about 4% by weight, and a crystalline melting point of no more than 140.degree. C.
- 5. The blow-molded bottles according to claim 1 wherein said polyethylene is composed mainly of ethylene units.
- 6. The blow-molded bottle according to claim 1 wherein Component (A) also includes an isotactic polypropylene or a crystalline propylene-ethylene copolymer containing no more than 4%, by weight, of ethylene and a crystalline melting point of no more than 140.degree. C.
- 7. An odor-free, transparent blow-molded bottle of a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes containing (A) 80 to 99.99% by weight of a propylene random copolymer of a multi-component system having at least three components, a crystalline melting point of 110.degree. to 145.degree. C. and a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes, containing 3 to 10% by weight of ethylene units and at least one .alpha.-olefin unit having at least 4 carbon atoms and (B) 4 to 0.01% by weight of a low-density or a high-density polyethylene.
- 8. The blow-molded bottles of claim 7 wherein said blow-molded bottle has a haze value of less than 25 at a resin thickness of 0.6 mm.
- 9. The blow-molded bottles according to claim 7 wherein said polyethylene is composed mainly of ethylene units.
- 10. The blow-molded bottle according to claim 3 wherein Component (A) also includes an isotactic polypropylene or a crystalline propylene-ethylene copolymer containing no more than 4%, by weight, of ethylene and a crystalline melting point of no more than 140.degree. C.
- 11. An odor-free, blow-molded bottle of a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes containing (A) 70 to 99.99% by weight of a propylene random copolymer of a multi-component system having at least three components, a crystalline melting point of 110.degree. to 145.degree. C. and a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes, containing 3 to 10% by weight of ethylene units and at least one .alpha.-olefin unit having at least 4 carbon atoms and (B) an amount of two or three kinds of polyethylene units selected from the group consisting of 10 to 0.05% by weight of a straight-chain low-density polyethylene, 4 to 0.01% by weight of a low-density polyethylene and 4 to 0.01% by weight of a high-density polyethylene.
- 12. The blow-molded bottles of claim 11 wherein said blow-molded bottle has a haze value of less than 25 at a resin thickness of 0.6 mm.
- 13. The blow-molded bottles of a polyolefin resin according to claim 11 wherein the polyethylene component (B) has a density of 0.91 to 0.935 g/cm.sup.3.
- 14. The blow-molded bottles according to claim 11 wherein said polyethylene is composed mainly of ethylene units.
- 15. The blow-molded bottle according to claim 11 wherein Component (A) also includes an isotactic polypropylene or a crystalline propylene-ethylene copolymer containing no more than 4%, by weight, of ethylene and a crystalline melting point of no more than about 140.degree. C.
- 16. An odor-free, transparent blow-molded bottle formed from a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes including (A) 70 to 99.99% by weight of a propylene random copolymer of a multi-component system having at least three components, a crystalline melting point of 110.degree. to 145.degree. C. and a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes, containing 3 to 10% by weight of ethylene units and the third component which is at least one .alpha.-olefin unit having at least 4 carbon atoms and (B) 10 to 0.05% by weight of a straight-chain low-density polyethylene.
- 17. The blow-molded bottles according to claim 16 wherein said polyethylene is composed mainly of ethylene units.
- 18. An odor-free, transparent blow-molded bottle formed from a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes including (A) 70 to 99.99% by weight of a propylene random copolymer of a multi-component system comprising, by weight, 94 to 84% propylene, 3 to 10% ethylene, and 3 to 6% butene-1 or hexene-1 and having a crystalline melting point of 120.degree. to 135.degree. C. and melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes and containing 3 to 10% by weight of ethylene units and (B) 10 to 0.05% by weight of a straight-chain 10w-density polyethylene having a density of 0.915 to 0.935 g/cm.sup.3 and a melt flow rate at 190.degree. C. of 0.5 to 50 g/10 minutes.
- 19. The blow-molded bottles according to claim 18 wherein said polyethylene is composed mainly of ethylene units.
- 20. An odor-free, transparent blow-molded bottle of a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes including (A) 90 to 99.5% by weight of a propylene random copolymer of a multi-component system comprising, by weight, 94 to 84% propylene, 3 to 10% ethylene, and 3 to 6% butene-1 or hexene-1 and having a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes and a crystalline melting point of 120.degree. to 135.degree. C., and (B) 10 to 0.1 by weight of a straight-chain low-density polyethylene composed mainly of ethylene units, having a density of 0.915 to 0.935 g/cm.sup.3 and a melt flow rate at 190.degree. C. of 0.5 to 50 g/10 minutes.
- 21. An odor-free, transparent blow-molded bottle of a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes including (A) 97 to 99.99% by weight of a propylene random copolymer of a multi-component system comprising, by weight 94 to 84% propylene, 3 to 10% ethylene, and 3 to 6% butene-1 or hexene-1 and having a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes and a crystalline melting point of 120.degree. to 135.degree. C., and (B) 3.0 to 0.1% by weight of a high-density polyethylene having a density of 0.945 to 0.970 g/cm.sup.3 and a melt flow rate at 190.degree. C. of 0.5 to 30 g/10 minutes.
- 22. An odor-free, transparent blow-molded bottle of a polyolefin resin comprising a composition having a melt flow rate at 230.degree. C. of 0.5 to 10 g/10 minutes including (A) 87 to 98.5% by weight of a propylene random copolymer of a multi-component system comprising, by weight, 94 to 84% propylene, 3 to 10% ethylene, and 3 to 6% butene-1 or hexene-1 and having a melt flow rate at 230.degree. C. of 2 to 8 g/10 minutes and a crystalline melting point of 120.degree. to 135.degree. C., and (B) 10 to 0.5% by weight of a straight-chain low-density polyethylene composed mainly of ethylene units, having a density of 0.915 to 0.935 g/cm.sup.3 and a melt flow rate at 190.degree. C. of 0.5 to 50 g/10 minutes, and 0.5 to 1.5% by weight of a low-density polyethylene having a density of 0.915 to 0.925 g/cm.sup.3 and a melt flow rate at 190.degree. C. of 0.5 to 30 g/10 minutes, and 0.5 to 1.5% by weight of a high-density polyethylene having a density of 0.945 to 0.970 g/cm.sup.3 and a melt flow rate at 190.degree. C. of 0.5 to 30 g/10 minutes.
Priority Claims (1)
Number |
Date |
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3-059339 |
Mar 1991 |
JPX |
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Parent Case Info
This application is a continuation of patent application Ser. No. 08/147,434, filed Nov. 5, 1993, now abandoned, which is a continuation of application Ser. No. 07/843,215, filed Feb. 28, 1992, now abandoned.
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Continuations (2)
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Number |
Date |
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Parent |
147434 |
Nov 1993 |
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Parent |
843215 |
Feb 1992 |
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