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Journal of Biomedical Materials Research|September 17, 1999
Fatigue-crack propagation in Nitinol, a shape-memory and superelastic endovascular stent materialA L McKelvey, R O Ritchie
Journal of Biomedical Materials Research. Part A|October 3, 2006
Kitagawa-Takahashi diagrams define the limiting conditions for cyclic fatigue failure in human dentinJ J Kruzic, R O Ritchie
Journal of the Mechanical Behavior of Biomedical Materials|July 25, 2009
Fatigue of mineralized tissues: cortical bone and dentinJ J Kruzic, R O Ritchie
Journal of Biomedical Materials Research. Part B, Applied Biomaterials|May 5, 2007
A fracture-mechanics-based approach to fracture control in biomedical devices manufactured from superelastic Nitinol tubeS W Robertson, R O Ritchie
Advanced Materials (Deerfield Beach, Fla.)|June 20, 2012
Mo-Si-B alloys for ultrahigh-temperature structural applicationsJ A Lemberg, R O Ritchie
Journal of Biomedical Materials Research. Part A|December 26, 2006
Fatigue-crack growth properties of thin-walled superelastic austenitic Nitinol tube for endovascular stentsJ M Stankiewicz, S W Robertson, R O Ritchie
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