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- W4290849286 abstract "• The plastic-flow dynamics of cellular BMGs were investigated. • The differences and relationships between the E p and L ' values were discussed. • The three-parameter Weibull moduli of both E p and L ' values have fractal nature. • The fractal iteration sequences of cellular BMGs were studied. • Cellular BMG with stable fractal iteration procedure exhibit better performance. Cellular bulk metallic glasses (BMGs) with varying porosities were fabricated by laser drilling, demonstrating different modes for the mechanical energy absorption process. The evolution of the elastic energy accumulation rate ( E p ) and load drop parameter ( L ' = |d(load)/d(t)|) during the plastic-flow stages was examined using statistical analysis. The results have shown that the distribution of load drops follows a power-law scaling, and the three-parameter Weibull moduli ( m ) of both the E p and L ' values have fractal nature during the deformation process. The fractal dimension ( D ), fractal character measurement parameter ( M ) and fractal iteration sequence of the Weibull moduli ( m E p − ε p and m L ′ − ε p ) were used to characterize the serration evolution behavior under different conditions. The differences and relationships between the E p and L ' values were also discussed. The cellular BMG with stable and more iterative fractal sequences tend to exhibit relatively-stable deformation behavior, linearly growth energy absorption process and larger macroscopic plasticity." @default.
- W4290849286 created "2022-08-12" @default.
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- W4290849286 date "2022-11-01" @default.
- W4290849286 modified "2023-09-28" @default.
- W4290849286 title "On the serration evolution of cellular bulk metallic glass monitored by fractal analysis" @default.
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- W4290849286 doi "https://doi.org/10.1016/j.jnoncrysol.2022.121844" @default.
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