@ARTICLE{Hrapkowicz_B._Characterization_2019, author={Hrapkowicz, B. and Lesz, S.T.}, volume={vol. 19}, number={No 1}, journal={Archives of Foundry Engineering}, pages={75-82}, howpublished={online}, year={2019}, publisher={The Katowice Branch of the Polish Academy of Sciences}, abstract={The Ca50Mg20Zn12Cu18 was assessed with different methods in order to characterize its basic characteristics, and to determine whether the amorphous alloy of such composition would be applicable as an implant material. The XRD analysis was conducted to conclude the structure of the initial material. The Ca50Mg20Zn12Cu18 ingot sample demonstrates crystalline structure containing two main intermetallic phases, however as-cast plates show features of an amorphous material, revealing the characteristic amorphous halo on the x-ray patterns. It was confirmed by the scanning electron microscopy method and fracture images revealing chevron pattern morphology with shell type fracture. Corrosion resistance, was studied using the potentiostatic analysis. The amorphous samples show higher resistance than the crystalline one. Post corrosion surface of the Ca50Mg20Zn12Cu18 alloy exhibits high concentration of magnesium and calcium hydroxides, forming the globular structures in large aggregates of spherical units.}, type={Artykuły / Articles}, title={Characterization of Ca50Mg20Zn12Cu18 Alloy}, URL={http://www.czasopisma.pan.pl/Content/109235/PDF/AFE%201_2019_13.pdf}, doi={10.24425/afe.2018.125195}, keywords={corrosion resistance, Calcium alloy, Implant, metallic glass, Magnesium, Calcium, Zinc, Copper, Corrosion}, }