PSI - Issue 66

A.R. Pelton et al. / Procedia Structural Integrity 66 (2024) 265–281 Pelton/ Structural Integrity Procedia 00 (2025) 000–000

280 16

100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, ASTM. F2063. Barney, M. M., D. Xu, S. W. Robertson, V. Schroeder, R. O. Ritchie, A. R. Pelton and A. Mehta (2011). "Impact of thermomechanical texture on the superelastic response of Nitinol implants." Journal of the Mechanical Behavior of Biomedical Materials 4(7): 1431-1439. Bathias, C. (2014). Fatigue Limit in Metals, John Wiley & Sons, Hoboken, NJ. Brambilla, A., F. Berti, L. Patriarca and L. Petrini (2024). "Towards a Fracture Mechanics-Based Assessment for Fatigue Life Prediction of Ni– Ti Stents." Shape Memory and Superelasticity. Bucsek, A. N., H. M. Paranjape and A. P. Stebner (2016). "Myths and Truths of Nitinol Mechanics: Elasticity and Tension–Compression Asymmetry." Shape Memory and Superelasticity 2(3): 264-271. Cheng, C. P., Ed. (2019). Handbook of Vascular Motion. 125 London Wall, London EC2Y 5AS, United Kingdom, Elsevier - Acadmeic Press. Dauskardt, R. H., T. W. Duerig and R. O. Ritchie (1989). "Effects of In Situ Phase Transformation on Fatigue-Crack Propagation in Titanium-- Nickel Shape-Memory Alloys." Proceedings of the MRS International Meeting on Advanced Materials. Vol. 9. Shape Memory Materials; Tokyo; Japan; 31 May-3 June 1988: 243-249. FDA (2015). Select Updates for Non-Clinical Engineering Tests and Recommended Labeling for Intravascular Stents and Associated Delivery Systems. FDA (2021). Technical Considerations for Non-Clinical Assessment of Medical Devices Containing Nitinol. Gall, K., H. Sehitoglu, Y. I. Chumlyakov and I. V. Kireeva (1999). "Tension-compression asymmetry of the stress-strain response in aged single crystal and polycrystalline NiTi." Acta Materialia 47(4): 1203-1217. Gurney, T. R. (1998). Fatigue of Welded Structures. Cambridge, England, Cambridge University Press. Haghgouyan, B., B. Young, S. Picak, T. Baxevanis, I. Karaman and D. C. Lagoudas (2021). "A unified description of mechanical and actuation fatigue crack growth in shape memory alloys." Acta Materialia 217: 117155. ISO5840-1 (2021). Cardiovascular implants — Cardiac valve prostheses Part 1: General requirements. ISO5840-2 (2021). Cardiovascular implants — Cardiac valve prostheses Part 2: Surgically implanted heart valve substitutes. ISO5840-3 (2021). ISO 5840-3. Cardiovascular implants — Cardiac valve prostheses Part 3: Heart valve substitutes implanted by transcatheter techniques. Launey, M., S. W. Robertson, L. Vien, K. Senthilnathan, P. Chintapalli and A. R. Pelton (2014). "Influence of microstructural purity on the bending fatigue behavior of VAR-melted superelastic Nitinol." J Mech Behav Biomed Mater 34: 181-186. Launey, M. E., I. Ong, B. T. Berg and A. R. Pelton (2023). "Considerations on Tension–Tension Fatigue Predictions for Nitinol." Shape Memory and Superelasticity 9: 97–115. LePage, W. S. (2018). Multiscale Investigation of Fatigue and Fracture in Shape Memory Alloys. Ph.D., University of Michigan. LePage, W. S., A. Ahadi, W. C. Lenthe, Q.-P. Sun, T. M. Pollock, J. A. Shaw and S. H. Daly (2018). "Grain Size Effects on NiTi Shape Memory Alloy Fatigue Crack Growth." Journal of Materials Research 33(2): 91-107. LePage, W. S., J. A. Shaw and S. H. Daly (2021). "Effects of Texture on the Functional and Structural Fatigue of a NiTi Shape Memory Alloy." International Journal of Solids and Structures 221: 150-164. Malito, L. G., B. Haghgouyan, M. L. Bowers, A. Rosen, B. Amin-Ahmadi, S. W. Robertson and R. O. Ritchie (2024). "Fatigue and Fracture of Small Cracks in Superelastic Nitinol." International Journal of Fatigue. Marrey, R. V., R. Burgermeister, R. B. Grishaber and R. O. Ritchie (2006). "Fatigue and life prediction for cobalt-chromium stents: A fracture mechanics analysis." Biomaterials 27(9): 1988-2000. McCarver, J. F. and R. O. Ritchie (1982). "Fatigue Crack Propagation Thresholds for Long and Short Cracks in René 95 Nickel-base Superalloy." Materials Science and Engineering 55: 63 - 67. McKelvey, A. L. and R. O. Ritchie (1999). "Fatigue-crack propagation in Nitinol, a shape-memory and superelastic endovascular stent material." Journal of Biomedical Materials Research A 47(3): 301-308. McKelvey, A. L. and R. O. Ritchie (2001). "Fatigue-crack growth behavior in the superelastic and shape-memory alloy Nitinol." Metallurgical and Materials Transactions A (Physical Metallurgy and Materials Science) 32A(3A): 731-743. Murakami, Y. and S. Beretta (1999). "Small defects and inhomogeneities in fatigue strength: experiments, models and statistical implications." Extremes 2: 123–147. Murakami, Y., T. Kanezaki, Y. Mine and S. Matsuoka (2008). "Hydrogen Embrittlement Mechanism in Fatigue of Austenitic Stainless Steels." Metallurgical and Materials Transactions A 39(6): 1327-1339. Nagata, J. and Y. Murakami (2003). "Factors influencing the formation of ODA in ultralong fatigue regime." Zairyo 52(8): 966–973. Otsuka, K. and X. Ren (2005). "Physical metallurgy of Ti–Ni-based shape memory alloys." Progress in Materials Science 50: 511–678. Paris, P. and F. Erdogan (1963). "A Critical Analysis of Crack Propagation Laws." Transactions of the ASME 85: 528-534. Pelton, A. R., B. T. Berg, P. Saffari, A. P. Stebner and A. N. Bucsek (2022). "Pre-strain and Mean Strain Effects on the Fatigue Behavior of Superelastic Nitinol Medical Devices." Shape Memory and Superelasticity 8(2): 64-84. Pelton, A. R., J. Fino-Decker, L. Vien, C. Bonsignore, P. Saffari, M. Launey and M. R. Mitchell (2013). "Rotary-bending fatigue characteristics of medical-grade Nitinol wire." J Mech Behav Biomed Mater 27: 19-32. Pelton, A. R. and M. R. Mitchell (2006). Effects of Melt Source and Inclusions on Mechanically Cycled Nitinol. Pelton, A. R., S. M. Pelton, T. Jörn, J. Ulmer, D. Niedermaier, K. Plaskonka, W. S. LePage, P. Saffari and M. R. Mitchell (2019). The Quest for Fatigue-Resistant Nitinol for Medical Implants. STP1616: Fourth Symposium on Fatigue and Fracture of Metallic Medical Materials and Devices. M. R. Mitchell, B. T. Berg, T. O. Woods and K. L. Jerina. West Conshohocken, PA, ASTM International: 1-30. Pelton, A. R., S. M. Pelton, M. E. Launey, S. Nagaraja, A. Keck, K. Plaskonka-Weisenburger, S. Knoll, J. Ulmer, P. Saffari, P. Czaja, A. Barnum and R. Sinclair (2024). Development of High-durability Nitinol for Heart Valve Frames. SMST 2024. Cascais, Portugal, ASM International. Pelton, A. R., S. M. Pelton, A. Sorg, T. Jörn, J. Ulmer, D. Niedermaier, M. R. Mitchell and P. Saffari (2017). "Diamond Fatigue Behavior of Generation II and III Nitinol." SMST. Reedlunn, B., C. B. Churchill, E. E. Nelson, J. A. Shaw and S. H. Daly (2014). "Tension, Compression, and Bending of Superelastic Shape Memory Alloy Tubes." Journal of the Mechanics and Physics of Solids 63: 506-537. Reedlunn, B., W. S. LePage, S. H. Daly and J. A. Shaw (2020). "Axial-torsion behavior of superelastic tubes: Part I, proportional isothermal experiments." International Journal of Solids and Structures 199: 1-35.

Made with FlippingBook Ebook Creator