Biodegradable Magnesium Alloys for Personalised Temporary Implants

被引:3
作者
Hendea, Radu Emil [1 ]
Raducanu, Doina [2 ]
Claver, Adrian [3 ]
Garcia, Jose Antonio [3 ]
Cojocaru, Vasile Danut [2 ]
Nocivin, Anna [4 ]
Stanciu, Doina [5 ]
Serban, Nicolae [2 ]
Ivanescu, Steliana [5 ]
Trisca-Rusu, Corneliu [6 ]
Campian, Radu Septimiu [1 ]
机构
[1] Iuliu Hatieganu Univ Med & Pharm, Fac Dent Med, Dept Oral Rehabil, Cluj Napoca 400349, Romania
[2] Univ Politehn Bucuresti, Dept Met Mat Proc & Ecomet, Bucharest 060042, Romania
[3] Univ Publ Navarra UPNA, Inst Adv Mat & Math INAMAT2, Pamplona 31006, Spain
[4] OVIDIUS Univ Constanta, Fac Mech Ind & Maritime Engn, Constanta 900527, Romania
[5] Zircon Dent SRL, Cluj Napoca 400690, Romania
[6] Natl Inst Res & Dev Microtechnol, Bucharest 077190, Romania
关键词
temporary personalised implants; biodegradable magnesium alloy; laser powder bed fusion 3D additive manufacturing; microstructural analysis; mechanical analysis; corrosion analysis; VITRO DEGRADATION BEHAVIOR; IN-VITRO; ORTHOPEDIC IMPLANTS; MG; CORROSION; DESIGN; SCAFFOLDS;
D O I
10.3390/jfb14080400
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The objective of this experimental work was to examine and characterise the route for obtaining demonstrative temporary biodegradable personalised implants from the Mg alloy Mg-10Zn-0.5Zr-0.8Ca (wt.%). This studied Mg alloy was obtained in its powder state using the mechanical alloying method, with shape and size characteristics suitable for ensuing 3D additive manufacturing using the SLM (selective laser melting) procedure. The SLM procedure was applied to various processing parameters. All obtained samples were characterised microstructurally (using XRD-X-ray diffraction, and SEM-scanning electron microscopy); mechanically, by applying a compression test; and, finally, from a corrosion resistance viewpoint. Using the optimal test processing parameters, a few demonstrative temporary implants of small dimensions were made via the SLM method. Our conclusion is that mechanical alloying combined with SLM processing has good potential to manage 3D additive manufacturing for personalised temporary biodegradable implants of magnesium alloys. The compression tests show results closer to those of human bones compared to other potential metallic alloys. The applied corrosion test shows result comparable with that of the commercial magnesium alloy ZK60.
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页数:16
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