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- W2898083834 abstract "In recent years, researchers have been able to identify new materials with special properties that can be used in major medical fields. Magnesium-based materials used in orthopedics are an important alternative, being the third generation of biocompatible materials. A biodegradable magnesium-based material has the ability to degrade at a certain rate, is biocompatible, and together with other alloying elements ensures osteointegration. Mg-0.5Ca-xY biodegradable alloys will be developed in an induction melting furnace using ceramic crucibles, melting at 710-720 °C in the controlled atmosphere of 5.0 Ar. SEM analyses and X-ray diffraction reveals the size distribution of Mg-sized grains, with a hexagonal lattice and formation of compounds with the two alloying elements: Mg 2 Ca, Mg 2 Y, Mg 24 Y 5 uniformly arranged in the α-Mg matrix. The alloying elements influence the microstructure, the size of the α-Mg grains decreasing considerably." @default.
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- W2898083834 date "2018-10-01" @default.
- W2898083834 modified "2023-10-17" @default.
- W2898083834 title "Structural Characterization of Mg-0.5Ca-xY Biodegradable Alloys" @default.
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- W2898083834 doi "https://doi.org/10.4028/www.scientific.net/kem.782.129" @default.
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