Claims
- 1. Process for the preparation of a highly oriented polyolefin fibre containing polyolefin with an intrinsic viscosity (in decalin at 135° C.) of at least 5 dl/g, which fibre has a tensile strength of at least 26 cN/dtex and a modulus of tension of at least 700 cN/dtex, which comprises contacting the fibre with a solvent for the polyolefin, with the fibre taking up 0.05-5 wt. % of a solvent for the polyolefin (relative to the total fibre weight).
- 2. Process for the preparation of a highly oriented polyethylene fibre said polyethylene having an intrinsic viscosity (in decalin at 135° C.) of at least 5 dl/g, said fibre having a tensile strength of at least 26 cN/dtex and a modulus of tension of at least 700 cN/dtex, comprising forming a solution of a polyethylene in solvent, forming a gel fibre by extruding this solution through one or more spinning apertures and subsequently cooling it to a gel fibre, removing solvent from the gel fibre so that from 0.05 to 5 wt % of solvent remains in the fibre and drawing the solvent-containing fibre in one or more steps to form a precursor fiber and drawing the precursor fiber at a temperature between 145° C. and 160° C., thereby forming a highly oriented polyethylene fibre having a creep of at most 20% and containing 0.05 to 5 wt. % of solvent.
- 3. Process according to claim 2, wherein the solvent consists substantially of a mixture of a first solvent (A) and a second solvent (B), with (A) being removed and (B) remaining in the fibre.
- 4. Process according to claim 3, wherein (B) has a higher boiling point than (A) and (A) is removed by evaporation at a temperature at which no or hardly any evaporation of (B) takes place.
- 5. Process according to claim 4, where (B) is a non-volatile paraffin and (A) a volatile solvent.
- 6. Process according to claim 3, wherein (B) has a higher melting temperature than (A) and (A) is removed by extraction at a temperature at which no or hardly any extraction of (B) takes place.
- 7. Process according to claim 6, where (B) is a paraffin wax and (A) paraffin oil.
- 8. Process according to claim 1, wherein the highly oriented fibre contains 0.05-2 wt. % of a solvent for polyolefin.
- 9. Process according to claim 1, wherein the polyolefin is polyethylene.
- 10. Process according to claim 1, wherein the resulting fibre has a creep of at most 15%.
- 11. Process according to claim 1, wherein the polyolefin fibre has a creep of at most 10%.
- 12. Process according to claim 1, wherein the polyolefin fiber has a creep of at most 5%.
- 13. Process according to claim 1, wherein the fibre contains 0.1 to 2 wt % of the solvent.
- 14. Process according to claim 1, wherein the fiber has a fineness of less than 5 denier per filament.
- 15. Process according to claim 2, wherein the polyethylene fibre has a creep of at most 10%.
- 16. Process according to claim 2, wherein the polyethylene fibre has a creep of at most 5%.
- 17. Process according to claim 2, wherein the fibre contains 0.1 to 2 wt % of the solvent.
- 18. Process according to claim 2, wherein the fiber has a fineness of less than 5 denier per filament.
Priority Claims (1)
Number |
Date |
Country |
Kind |
1010413 |
Oct 1998 |
NL |
|
Parent Case Info
This is a continuation of International Application No. PCT/NL99/00099 filed Feb. 24, 1999 which designates the U.S., and that International Application was published under PCT Article 21(2) in English. This application claims the benefit of U.S. Provisional Application No. 60/129,935, filed Apr. 19, 1999.
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Number |
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Country |
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US |
Child |
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|
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