Functional and Mechanical Behavior of Ultra-Thin, Porous NiTi Fabricated via Laser Powder Bed Fusion

被引:0
|
作者
Motibane, Londiwe [1 ,4 ]
Tshabalala, Lerato [1 ]
Hagedorn-Hansen, Devon [2 ,3 ]
Chikosha, Silethelwe [1 ]
Becker, Thorsten [4 ]
机构
[1] Council Sci Ind Res, Photon Ctr, ZA-0001 Pretoria, South Africa
[2] Stellenbosch Univ, Dept Ind Engn, ZA-7600 Stellenbosch, South Africa
[3] HH Ind, Firgrove Ind Pk, ZA-7130 Somerset West, South Africa
[4] Univ Cape Town, Dept Mech Engn, Ctr Mat Engn, ZA-7701 Cape Town, South Africa
来源
TMS 2024 153RD ANNUAL MEETING & EXHIBITION: SUPPLEMENTAL PROCEEDINGS | 2024年
关键词
Porous structures; Nitinol; Additive manufacturing; Biomedical; ALLOYS;
D O I
10.1007/978-3-031-50349-8_9
中图分类号
学科分类号
摘要
Nitinol shape memory alloys are used in a wide range of biomedical applications because of their biocompatibility, shape memory and superelasticity properties, and high corrosion resistance. Processing NiTi using additive manufacturing has led to even wider possibilities for use in the biomedical field. The focus of the study was on producing ultra-thin (+/- 500 um strut), porous nitinol (NiTi) structures with varying levels of porosity using laser powder bed fusion (LPBF). Their functional and mechanical response was characterized. The effect of increased engineered porosity shifted the transformation temperatures higher and widened the hysteresis. As the amount of porosity increased, the compressive strength decreased as did the elastic modulus. The size and geometry of lattice unit cells were found to have a significant effect on the mechanical response of these porous structures. All the porous structures had an elastic modulus below 20 GPa. This low stiffness makes porous nitinol promising candidates for biomedical implants.
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页码:96 / 104
页数:9
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