4.6 Article

Surface Modification of Biomedical MgCa4.5 and MgCa4.5Gd0.5 Alloys by Micro-Arc Oxidation

期刊

MATERIALS
卷 14, 期 6, 页码 -

出版社

MDPI
DOI: 10.3390/ma14061360

关键词

MgCaGd alloy; micro-arc oxidation (MAO); corrosion resistance; X-ray photoelectron spectroscopy; SEM; EDS

资金

  1. Faculty of Mechanical Engineering
  2. Faculty of Chemistry of the Silesian University of Technology

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The research characterized the structure and corrosion properties of MgCa4.5(Gd-0.5) alloys treated by micro-arc oxidation (MAO), finding that the addition of Gd and different voltages during the MAO process influenced the coating structure and surface pores, resulting in higher corrosion susceptibility of MgCa4.5Gd0.5 alloys. The MgCa4.5 alloy with the MAO coating established at voltage 140 V demonstrated the best anticorrosion properties.
The aim of this work was to characterize the structure and corrosion properties of the MgCa4.5(Gd-0.5) alloys surface treated by the micro-arc oxidation (MAO) process. The MgCa4.5 and MgCa4.5Gd0.5 alloy samples were processed by MAO in an electrolyte composed of NaOH (10 g/dm(3)), NaF (10 g/dm(3)), NaH2PO4 (5 g/dm(3)), Na2SiO2 center dot 5H(2)O (10 g/dm(3)) and water. Two different voltages (120 V and 140 V) were used in the MAO process. The alloys protected by an oxide layer formed in the MAO were then the subject of corrosion resistance tests in an environment simulating the human body (Ringer's solution). After the experiments, the resulting samples were investigated using SEM, XPS and EDS techniques. The addition of Gd affected the fragmentation of the coating structure, thereby increasing the specific surface; higher voltages during the MAO process increased the number and size of surface pores. Corrosion tests showed that the MgCa4.5Gd0.5 alloys were characterized by low polarization resistances and high corrosion current densities. The studies indicated the disadvantageous influence of gadolinium on the corrosion resistance of MgCa4.5 alloys. The immersion tests confirmed lower corrosion resistance of MgCa4.5Gd0.5 alloys compared to the referenced MgCa4.5 ones. The MgCa4.5 alloy with the MAO coating established at voltage 140 V demonstrated the best anticorrosion properties.

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