期刊
METALS
卷 13, 期 3, 页码 -出版社
MDPI
DOI: 10.3390/met13030445
关键词
magnesium matrix composites; anelastic damping; microplasticity damping
In this study, MgO/Mg composites were prepared using direct melt oxidation to investigate the effects of elastic deformation and microplastic deformation on damping properties. It was found that the composites exhibit high damping properties at a specific strain amplitude, indicating effective enhancement of magnesium matrix damping properties by in situ-synthesized oxide particles. Additionally, apart from the G-L dislocation damping mechanism, other damping mechanisms, such as microplastic deformation damping, were identified in MgO/Mg composites through a model and mechanistic analysis.
In this study, MgO/Mg composites were prepared using direct melt oxidation to verify the effects of elastic deformation and microplastic deformation on the damping properties. It was found that the composites have high damping properties at a certain strain amplitude, which indicated that the damping properties of the magnesium matrix were effectively enhanced by the in situ-synthesized oxide particle. In addition, other damping mechanisms different from the G-L dislocation damping mechanism exist in MgO/Mg composites, i.e., the damping mechanism of the microplastic deformation, leading to a model of microplastic deformation damping established and its mechanistic analysis.
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