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[HTML][HTML] Biomedical rare-earth magnesium alloy: Current status and future prospects
Biomedical magnesium (Mg) alloys have garnered significant attention because of their
unique biodegradability, favorable biocompatibility, and suitable mechanical properties. The …
unique biodegradability, favorable biocompatibility, and suitable mechanical properties. The …
Chemical ordering effects on martensitic transformations in Mg-Sc alloys
As excellent lightweight engineering materials, Mg-Sc alloys also exhibit shape memory
effects. With less than 25 atomic percent Sc in Mg, the martensitic transformation was found …
effects. With less than 25 atomic percent Sc in Mg, the martensitic transformation was found …
Corrosion behaviour of the magnesium-cerium binary alloy designed for degradable medical implants
EB Gollamudi, JM Babu - Canadian Metallurgical Quarterly, 2024 - Taylor & Francis
Magnesium (Mg) alloys containing rare earths (RE) gained special attention as promising
candidates for degradable implant applications. Cerium (Ce) is one of the RE elements …
candidates for degradable implant applications. Cerium (Ce) is one of the RE elements …
Improved Methods for Modeling Functional Transition Metal Compounds in Complex Environments: Ground States, Excited States, and Spectroscopies
H Hratchian, C Isborn, A Pribram-Jones, L Shi… - 2024 - osti.gov
Rapid advances in energy applications require new theory and computational models to
provide guidance for interpretation of experimental results and mechanistic understanding …
provide guidance for interpretation of experimental results and mechanistic understanding …
Tensile Strain Induced Martensitic Phase Transition of Bcc MgSc Alloys
L Sun, Y Zhou, X Wu, B Narsu - Available at SSRN 4414643 - papers.ssrn.com
The composition dependent strain-induced martensitic transformation of the bcc phase Mg-
Sc alloy is studied by using the first principles method. The strain-induced bcc to …
Sc alloy is studied by using the first principles method. The strain-induced bcc to …