EP0343985A2

Spandex fiber with copolymer soft segment.

Abstract

A elastic fibers are formed from spandex polymer that is prepared by reacting a glycol prepared from a tetrahydrofuran/3-methyltetrahydrofuran copolymer with a diisocyanate and then chain extending the thusly capped glycol with a particular mixture of diamines. The fibers have a highly desirable combination of power, hot-wet creep and heat-set efficiency and can be prepared at high spinning and windup speeds.

EP0343985A2, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 25 May 2009, 17.3 years ago.

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7 claims: 2 independent, 5 dependent

  1. 1
    An improved dry-spun elastic fiber of polyether-based polyurethane-urea spandex polymer having soft and hard segments, the polymer being the product of a hydroxyl-terminated copolymer of tetrahydrofuran and 3-methyltetrahydrofuran that was capped with organic diisocyanate and then chain extended with diamine, the improvement comprising the chain extenders being a mixture of two diamines, the first diamine being selected from ethylenediamine, 1,3-propylene diamine and 1,4-cyclohexylene diamine and the second diamine being a coextender which is selected from 2-methylpentamethylene diamine, hydrogenated m -phenylenediamine and 1,2-propylene diamine, the coextender amounting to 20 to 50 mole percent of the diamine mixture, and the hard segment amounting to 5.5 to 9 mole percent of the polymer.
  2. 2
    An elastic fiber in accordance with claim 1 wherein the hydroxyl-terminated copolymer contains 4 to 20 mole percent of 3-methyltetrahydrofuran.
  3. 3
    An elastic fiber in accordance with claim 2 wherein the organic diisocyanate is p,p′-methylene diphenyl diisocyanate, the first diamine is ethylene diamine, the coextender is 2-methylpentamethylene diamine amounting to 30 to 45 mole percent of the diamine mixture, and the hard segments amount to 6 to 7.5 percent of the polymer weight.
  4. 5
    In an improved process for preparing spandex fibers wherein the spandex polymer is formed in an organic solvent from a hydroxyl-terminated copolymer of tetrahydrofuran and 3-methyltetrahydrofuran containing 4 to 20 mole percent 3-methyltetrahydrofuran, which glycol was capped with organic diisocyanate and then chain extended with diamine, and the polymer then being dry spun through orifices to form the elastic filaments, the improvement comprising capping the copolymer glycol with the diisocyanate, the molar ratio of diisocyanate to glycol being in the range of 1.6 to 2.3, chain-extending the capped copolymer with a mixture of two diamines, the first diamine being selected from ethylenediamine, 1,3-propylene diamine and 1,4-cyclohexylene diamine and the second diamine being a coextender which is selected from 2-methylpentamethylene diamine, hydrogenated m -phenylenediamine and 1,2-propylene diamine, the coextender amounting to 20 to 50 mole percent of the diamine mixture to provide spandex polymer having hard segments amounting to 5.5 to 9 mole % of the polymer, pulling the dry-spun filaments at a speed of at least 400 m/min and winding up the filaments at a speed of at least 500 m/min.
  5. 6
    A process in accordance with claim 5 wherein the organic diisocyanate is p,p′-methylene diphenyl diisocyanate, the molar ratio of diisocyanate to glycol is in the range of 1.8 to 2.0, the chain extenders are a mixture of ethylene diamine and 2-methylpentamethylene diamine coextender, the coextender amounts to 30 to 45 mole % of the diamine mixture, the pulling speed is at least 600 m/min and windup speed is at least 750 m/min.
  6. 7
    A process in accordance with claim 6 wherein the windup speed is at least 900 m/min.