AU2005294317B2

Crosslinked polymeric material with enhanced strength and process for manufacturing

Abstract

A radiation crosslinked (50 kGy), pressure-treated UHMWPE material has been developed by applying compressive force on a crosslinked polymer in a direction orthogonal to an axial direction. The deformed material is then cooled while held in a deformed state. The resulting material is anisotropic, with enhanced strength oriented along the axial direction. The directionally engineered material is oxidatively stable even after four weeks of accelerated aging in a pressure vessel containing five atmospheres of oxygen (ASTM F2003). Because of its oxidative stability, the deformation processed material is a suitable candidate for air-permeable packaging and gas sterilization, which has thus far been reserved for remelted highly crosslinked UHMWPEs.

AU2005294317B2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 6 October 2025, 1 year ago.

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  5. Today

43 claims: 5 independent, 38 dependent

  1. 1
    2005294317 24 Nov 2010 CLAIMS We claim:1. A method for treating a polymeric bulk material comprising heating a cross-linked polymer to a compression deformable temperature, the polymer being in an elongated bulk form characterized by an axial direction;applying force to deform the heated polymer in a direction orthogonal to the axial direction;and cooling the polymer to a solidification temperature while maintaining the polymer in a deformed state.
  2. 17
    A method for treating crosslinked UHMWPE to make material suitable for use in medical implants comprising heating UHMWPE to a temperature above about 80°C and below its melting point, wherein the UHMWPE has been crosslinked with gamma-irradiation and is in the form of an elongated bulk material characterized by an axial direction, a transverse direction orthogonal to the axial direction and an original transverse dimension;applying compressive force to reduce a dimension of the bulk material in the transverse direction;cooling the bulk UHMWPE to a solidification temperature while maintaining compressive force sufficient to prevent the bulk material from returning to its original transverse dimension.
  3. 26
    A method for preparing a UHMWPE pre-form suitable for use in medical • implants comprising heating a gamma-crosslinked UHMWPE rod characterized by a crystalline melting point and a diameter di to a compression deformable temperature;applying compression force on the crosslinked UHMWPE to reduce the diameter ;to d 2 , wherein d 2 < di;i i I cooling the reduced diameter rod of UHMWPE to a solidification temperature while maintaining compression force to keep the diameter at a diameter of dj, wherein da da.
  4. 41
    A method of making a bearing component made of UHMWPE, suitable for use in a medical implant, comprising:2005294317 24 Nov 2010 radiation crosslinking a UHMWPE;preheating the crosslinked UHMWPE to a temperature above 80°C and below its melting point;solid state extruding the UHMWPE at a draw ratio of greater than 1;cooling the extruded UHMWPE to a solidification temperature below 80°C while maintaining diametral compression;annealing the cooled UHMWPE at a temperature below the melting point for a time sufficient for the rod to increase in diameter in response to the annealing;and machining the component from the annealed UHMWPE. i
  5. 43
    A method for treating a polymeric bulk material substantially as hereinbefore described having reference to the accompanying examples.