EP1558671B1

Blends of amorphous and semicrystalline polymers having shape memory properties

Abstract

A shape memory polymeric material has a glass transition temperature, Tg, exceeding room temperature and exhibits rubber modulus and elasticity derived substantially from physical crosslinks is prepared by blending components including one crystalline polymer and two amorphous polymers. Methods of preparing the polymeric materials and uses of the polymeric materials, for example, as smart medical devices, are also disclosed.

EP1558671B1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 10 October 2023, 3 years ago.

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14 claims: 2 independent, 12 dependent

  1. 1
    A shape memory polymeric material characterized by a T g exceeding room temperature whose rubber modulus and elasticity are derived from physical crosslinks comprising a blend of a crystalline polymer selected from the group consisting of poly(vinylidene fluoride),polyglycolides, polylactide and copolymers thereof, poly(hydroxybutyrate), poly(ethylene glycol), polyethylene, polyethylene-co-vinyl acetate, poly(vinyl chloride), poly(vinylidene chloride) and copolymers of poly vinylidene chloride and poly vinyl chloride with an amorphous polymer selected from the group consisting of poly(vinyl acetate), poly methyl acrylate, poly ethyl acrylate, atactic poly methyl methacrylate, isotactic poly methyl methacrylate and syndiotactic poly methyl methacrylate.
  2. 6
    Method of preparing a shape memory polymer material characterized by a T g exceeding room temperature whose rubber modulus and elasticity is derived from physical crosslinking comprising melt blending a crystalline polymer selected from the group consisting of poly(vinylidene fluoride), polylactide, poly(hydroxybutyrate), poly(ethylene glycol), polyethylene, polyethylene-co-vinyl acetate, poly(vinyl chloride), poly(vinylidene chloride) and copolymers of poly vinylidene chloride and poly vinyl chloride with an amorphous polymer selected from the group consisting of poly(vinyl acetate), poly methyl acrylate, poly ethyl acrylate, atactic poly methyl methacrylate, isotactic poly methyl methacrylate and syndiotactic poly methyl methacrylate at a temperature of 10 ∼ 20°C above the melting temperature of the crystalline polymers, for a time sufficient to ensure good mixing , cooling the resultant blend to room temperature, introducing said blend into a press maintained at about 180 °C, applying pressure to said blend and then rapidly cooling the film thereby formed to an annealing temperature T g <T a <T m , where it is held until crystallization is complete and following which the film is cooled to room temperature.