期刊Irradiation-Assisted Stress-Corrosion Cracking of Nitinol During eBeam Sterilization.pdfVIP
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JMEPEG (2012) 21:2638–2642 ASM International
DOI: 10.1007/s11665-012-0396-8 1059-9495/$19.00
Irradiation-Assisted Stress-Corrosion Cracking
of Nitinol During eBeam Sterilization
Stuart A. Smith, Brock Gause, David Plumley, and Masao J. Drexel
(Submitted April 4, 2012; in revised form September 5, 2012)
Medical device fractures during gamma and electron beam (eBeam) sterilization have been reported. Two
common factors in these device fractures were a constraining force and the presence of fluorinated ethylene
propylene (FEP). This study investigated the effects of eBeam sterilization on constrained light-oxide nitinol
wires in FEP. The goal was to recreate these fractures and determine their root cause. Superelastic nitinol
wires were placed inside FEP tubes and constrained with nominal outer fiber strains of 10, 15, and 20%.
These samples were then subjected to a range of eBeam sterilization doses up to 400 kGy and compared with
unconstrained wires also subjected to sterilization. Fractures were observed at doses of 100 kGy. Analysis
of the fracture surfaces indicated that the samples failed due to irradiation-assisted stress-corrosion cracking
(IASCC). This same effect was also observed to occur with PTFE at 400 kGy. These results suggest that
nitinol is susceptible to IASCC when in the presence of a constraining stress, fluorinated polymers, and
irradiation.
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