Claims
- 1. A poly-alpha olefin inter-polymer comprising
A) from 60 to 94% of units derived from one alpha mono-olefin having from 3 to 6 carbon atoms and B) from 6 to 40 mol % of units derived from one or more other mono-olefins having from 4 to 10 carbon atoms and at least one carbon atom more than A); and C) optionally from 0 to 10 mol % of units derived from another copolymerizable unsaturated hydrocarbon, different from a) and b); the diad distribution of component a in the polymer as determined by 13C NMR as described herein showing a ratio of experimentally determined diad distribution over the calculated bemoullian diad distribution of less than 1.07; and the storage modulus G′ of said polymer, determined upon cooling as described herein, intersecting a value of 3.105 pa at a temperature of less than 85° c:
- 2. An inter-polymer according to claim 1 in which the content of B) combined with C) is at least 8 mol % and/or less than 40 mot % and the storage modulus G′ of said polymer determined upon cooling as described herein, intersecting a storage modulus G′ of 3.105 Pa at a temperature of less than 70° C.
- 3. An inter-polymer according to claim 1 in which the reactivity ratio as determined by NMR as described herein, has a value of RA×RB, wherein RA is the reactivity ratio of component A over component B and RB is the ratio of component B over component A, of less than 1.4.
- 4. An inter-polymer according to claim 1 where the weight average molecular weight of the polymer as determined by GPC as described herein, is less than 120 000, preferably less than 90 000, and most preferably less than 70 000 and/or at least 20 000, preferably at least 30 000 and especially at least 40 000, the storage modulus G′ of said polymer, determined upon cooling as described herein, intersecting a storage modulus G′ of 3.105 Pascal at a temperature of less than 70°C.
- 5. An inter-polymer according to claim 1 which A) is derived from units having from 3 to 6 carbon atoms and preferably propylene; B) is derived from units having from 4 to 8 carbon atoms, preferably at least two more carbon atoms than A), and is preferably butene-1, hexene-1 or octene-1, and C) is derived from ethylene.
- 6. An inter-polymer according to claim 1 in which said polymer having a melting behavior as determined by DSC, as described herein, wherein the major peak melting point varies with content of component B) plus C) so that Tm (interpolymer) is less than 153−2.78×[CB+C] for any given concentration of B) and/or C) components. Where Tm is the major melting peak of the interpolymer at a given content of components B) and C) in mol %; [CB+C] is the mol % of component B) plus C).
- 7. An inter-polymer according to claim 1 in which there are at least 65 mol %, preferably at least 75 mol % of units derived from A) and/or no more than 94 mol %, preferably no more than 90 mol % of A); at least 6 mol %, preferably at least 10 mol % of B) and/or no more than 30 mol %, preferably no more than 25 mol % of B); and/or no more than 5 mol %, most preferably no more than 2 mol % of C).
- 8. An inter-polymer according to claim 1 which has a heat of fusion of at least 5 J/g, preferably at least 10 J/g and/or no more than 40 J/g, preferably no more than 30 J/g, and most preferably no more than 20 J/g as determined by DSC as described herein.
- 9. An inter-polymer according to claim 1 which has a major melting peak as determined by DSC, as described herein, of at least 40° C., preferably of at least 50° C. and/or has a melting point as determined by DSC of no more than 130° C., preferably no more than 90° C.
- 10. An inter-polymer according to claim 1 which has a Tg determined by DSC, as described herein, of no more than minus 5° C., preferably no more than minus −15° C., and/or at least minus 40° C., preferably at least minus 30° C.
- 11. An inter-polymer according to claim 1 which G′ at 120° C. is not greater than 1000 Pascal, preferably not greater than 500 Pascal and most preferably no greater than 100 Pascal.
- 12. An inter-polymer according to claim 1 having an Mw/Mn as determined by GPC, as described herein, of from 1.5 to 4, more preferably less than 3, most preferably less than 2.2 and/or at least 1.6.
- 13. A poly-alpha olefin inter-polymer having
A) from 60 to 94% of units derived from one alpha mono-olefin having from 3 to 6 carbon atoms and B) from 6 to 40 mol % of units derived from one or more other mono-olefins having from 4 to 10 carbon atoms and at least one carbon atom more than A); and C) optionally from 0 to 10 mol % of units derived from another copolymerizable unsaturated hydrocarbon, different from A) and B); the diad distribution of component A in the polymer as determined by 13C NMR as described herein showing a ratio of experimentally determined diad distribution over the calculated Bemoullian diad distribution of less than 1.07; and said polymer having a melting behavior as determined by DSC, as described herein, so that Tm (interpolymer) is less than 153−2.78×[CB+C] for any given concentration of B) and/or C) components where Tm is the major melting peak of the interpolymer at a given content of components B) and C) in mol %; [CB+C] is the mol % of component B) plus C).
- 14. An interpolymer according to claim 13 in which the storage modulus G′ of said polymer, determined upon cooling as described herein, intersecting a value of 3.105 Pascal at a temperature of less than 85° C.
- 15. An inter-polymer according to claim 13 which the content of B) combined with C) is at least 8 mol % and/or less than 40 mol % and the storage modulus G′ of said polymer, determined upon cooling as described herein, intersecting a storage modulus G′ of 3.105 Pascal at a temperature of less than 70° C.
- 16. An interpolymer according to claim 13 in which the reactivity ratio as determined by NMR as described herein, has a value of RA×RB, wherein RA is the reactivity ratio of component A over component B and RB is the ratio of component B over component A, of less than 1.4.
- 17. An interpolymer according to claim 13 in which the weight average molecular weight of the polymer as determined by GPC as described herein, is less than 120 000, preferably less than 90 000, and most preferably less than 70 000 and/or at least 20 000, preferably at least 30 000 and especially at least 40 000, the storage modulus G′ of said polymer, determined upon cooling as described herein, intersecting a storage modulus G′ of 3.105 Pascal at a temperature of less than 70°C.
- 18. An interpolymer according to claim 13 in which A) is derived from units having from 3 to 6 carbon atoms and preferably propylene; B) is derived from units having from 4 to 8 carbon atoms, preferably at least two more carbon atoms than A), and is preferably butene-1, hexene-1 or octene-1 and C) is derived from ethylene.
- 19. An interpolymer according to claim 13 in which there are at least 65 mol %, preferably at least 75 mol of units derived from A) and/or no more than 94 mol %, preferably no more than 90 mol % of A); at least 6 mol %, preferably at least 10 mol % of B) and/or no more than 30 mol %, preferably no more than 25 mol % of B); and/or no more than 5 mol %, most preferably no more than 2 mol % of C).
- 20. An interpolymer according to claim 13 which has a heat of fusion of at least 5 J/g, preferably at least 10 J/g and/or no more than 40 J/g, preferably no more than 30 J/g, and most preferably no more than 20 J/g as determined by DSC as described herein.
- 21. An interpolymer according to claim 13 which has a melting peak as determined by DSC of at least 40° C., preferably of at least 50° C. and/or has a melting point as determined by DSC of no more than 130° C., preferably no more than 95° C.
- 22. An interpolymer according to claim 13 which has a Tg determined by DSC of no more than minus 5° C., preferably no more than minus 20° C., and/or at least minus 40° C., preferably at least minus 30° C.
- 23. An interpolymer according to claim 13 which the G′ at 120° C. is not greater than 1000 Pascal, preferably not greater than 500 Pascal; and most preferably no greater than 100 Pascal.
- 24. An interpolymer according to claim 13 having an Mw/Mn as determined by GPC as described herein of from 1.5 to 4, more preferably less than 3, most preferably less than 2.2 and/or at least 1.6.
- 25. An adhesive composition or formulation containing an inter-polymer according to claim 13 which is substantially free of volatile components, containing less than 20 wt %, preferably less than 10 wt % of tackifier and optionally less than 3 wt % each of anti-oxidant, flow improver, wax, or crystallization aid.
- 26. An adhesive composition or formulation according to claim 25 further comprising from 1 to 20 wt % of a tackifier and/or from 1 to 20 wt % of a flow improver.
- 27. An adhesive composition or formulation according to claim 25 for use as a hot melt adhesive in which the Melt Index is from 1 to 2000 as determined under ASTM D1238 methods.
- 28. An adhesive composition or formulation according to claim 25 having a flowability of at least and being suitable for applying the adhesive composition by spraying.
- 29. An adhesive composition or formulation according to claim 25 for use as a pressure sensitive adhesive in which the Melt Index is from 0.1 to 200 as determined under ASTM D1238 method.
- 30. An adhesive composition or formulation according to claim 25 which contains at least 10 wt %, preferably at least 20 wt % of the total weight of the formulation and no more than 90 wt % of a hydrocarbon based volatile solvent, preferably no more than 60 wt % of the total weight of the formulation.
- 31. A packaging material or article containing a structure, elements of which are adhered by an adhesive composition or formulation according to claim 25.
- 32. A hygienic garment containing a structure, elements of which are adhered by an adhesive composition or formulation according to claim 25.
- 33. An process for adhering two substrates together which process comprises (I) applying a poly-alpha olefin inter-polymer having
A) from 55 to 94% of units derived from one alpha mono-olefin having from 3 to 6 carbon atoms and B) from 6 to 45 mol % of % of units derived from one or more other mono-olefins having from 4 to 10 carbon atoms and at least one carbon atom more than A); and C) optionally from 0 to 10 mol % of units derived from another copolymerizable unsaturated hydrocarbon, different from A) and B) the diad distribution of component A in the polymer as determined by 13C NMR as described herein showing a ratio of experimentally determined diad distribution over the calculated Bernoullian diad distribution of less than 1.07 (II) to the interface between the substrate at elevated temperature of from 10 to 100° C. and/or pressure until adhesion is established.
RELATED APPLICATIONS:
[0001] The present application is based on Provisional Application Ser. No. 60/199,093, filed on Apr. 21, 2000, and on Provisional Application Ser. No. 60/171,715, filed on Dec. 21, 1999.
Provisional Applications (2)
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Number |
Date |
Country |
|
60171715 |
Dec 1999 |
US |
|
60199093 |
Apr 2000 |
US |