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- W2081736612 abstract "AbstractA metal-matrix composite (MMC, 15 vol% SiCp/A356 Al) and its matrix alloy were subjected to hot torsion over the range 300–540°C and 0.1–5.0 S−1. Flow stresses of the A356 MMC were found to be much higher than A356 alloy at low temperatures but the difference was quite small at higher temperatures. Flow stresses were found to depend on the strain rate through a sinh function and on temperature through an Arrhenius term with activation energies of 263 kJ/mol for the composite and 161 kJ/mol for the matrix; the increased value for the composite suggests that the SiC particles cause the matrix to undergo additional strain hardening. The substructures in both materials increase in cell size and decrease in internal and wall density, as temperature T rises and strain rate e falls; the composite shows much greater and less uniform dislocation density to which the strengths of the two materials are related. Dynamic recovery seems to be predominant in A356; however, dynamic recrystallization likely nuclea..." @default.
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- W2081736612 date "1998-04-01" @default.
- W2081736612 modified "2023-09-28" @default.
- W2081736612 title "High temperature mechanical and microstructural behavior of A35615 vol% SiCp and A356 alloy" @default.
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- W2081736612 doi "https://doi.org/10.1016/s0008-4433(98)00007-x" @default.
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