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Effect of strain rates on deformation behaviors of an in situ Ti-based metallic glass matrix composite

Applied Physics A(2016)

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摘要
Quasi-static and dynamic deformation behaviors of an in situ dendrite-reinforced metallic glass matrix composite: Ti 56 Zr 18 V 10 Cu 4 Be 12 were investigated. Upon quasi-static compression, the composite exhibits distinguished work hardening, accompanied by the ultimate strength of 1290 MPa and the plasticity of 20 %. The improved plasticity is attributed to the multiplication of shear bands within the glass matrix and pileups of dislocations within the dendrites. Upon dynamic compression, the stable plastic flow prevails and the yielding stress increases with the strain rate. The macroscopic plasticity decreases considerably, since the shear bands cannot be effectively hindered by dendrites with deteriorated toughness. The dendrite-dominated mechanism results in the positive strain-rate sensitivity, and the Cowper–Symonds model is employed to depict the strain-rate dependency of yielding strength.
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关键词
Shear Band,High Strain Rate,Glass Matrix,Dynamic Compression,Macroscopic Plasticity
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