Abstract
In this study, a simple and effective way to fabricate highly porous scaffolds with controlled porosity and pore size is demonstrated. Ti-7Zr-6Sn-3Mo shape memory alloy fibers were prepared through a melt overflow process. The scaffolds with porosity of 65-85% and large pores of 100-700 μm in size were fabricated by sintering the as-solidified fibers. Microstructures and transformation behaviors of the porous scaffolds were investigated by means of SEM, DSC and XRD. The scaffolds were composed of β phase at room temperature. Superelasticity with the superelastic recovery strain of 7.4% was achieved by β → α"phase transformation. An effect of porosity on mechanical properties of porous scaffolds was investigated by using compressive test. As the porosity increased from 65% to 85%, elastic modulus and compressive strength decreased from 0.95 to 0.06 GPa and from 27 to 2 MPa, respectively.
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CITATION STYLE
KIM, Y. W., ERLANGGA, B. D., DO, D., & LEE, S. M. (2020). Effect of controlled porosity on the mechanical properties of Ti-Zr-Sn-Mo biomedical alloys. Archives of Metallurgy and Materials, 65(4), 1341–1344. https://doi.org/10.24425/amm.2020.133696
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