EP1624828A2

Shape memory alloy articles with improved fatigue performance and methods therefore

Abstract

This record has no abstract on file.

EP1624828A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 29 April 2024, 2.4 years ago.

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24 claims: 5 independent, 19 dependent

  1. 1
    Claims of equivalent WO 2004098450 A2 We claim:1. A method for producing a nitinol implantable medical device with greater fatigue resistance comprising: a) providing an implantable medical device comprised of nitinol metal exhibiting superelastic behavior at body temperature;and b) pre-straining the nitinol metal in a controlled manner to an extent that selectively induces at least about 0.20% non-recoverable tensile strain at or near the surface of at least one selected location on the nitinol implantable medical device.
  2. 12
    A self-expanding endoprosthesis comprising a frame formed from nitinol exhibiting superelastic behavior at body temperature, the frame being configured to self-expand from a constrained delivery profile to an expanded operative profile, wherein the frame is pre- strained in a controlled manner to an extent that selectively induces at least about 0.20% non-recoverable tensile strain at or near the surface of at least one selected location on the frame during circumferential compaction of the frame to a smaller size.
  3. 17
    An implantable article comprising nitinol metal alloy wire subjected to flexural fatigue test performed in a water bath at a temperature of 37+1 °C and at a cyclic frequency of approximately 18 Hz, wherein a maximum principle mean tensile strain of 2.5% and an alternating strain of 0.3% are applied at an outside radius of an apex formed in the wire, said wire having a fatigue life of at least about 1 ,000,000 cycles prior to failure by fracture at the apex.
  4. 23
    A method of forming a medical device comprising:providing a computer program for use in finite element analysis, wherein the computer program calculates non-recoverable tensile strain;employing the computer program to model the compressive residual strains for a medical device;and designing the medical device so that non-recoverable tensile strain for the device is at least about 0.20% so as to improve the fatigue life of the medical device.
  5. 24
    A method of forming a medical device comprising providing a computer program for use in finite element analysis wherein the computer program models non-recoverable tensile strain for the medical device;and designing the medical device so that the non-recoverable tensile strain of the medical device exceeds at least about 0.20% during the manufacture of the medical device.