Title of article :
On the microstructure–tensile property correlations in bulk metallic glass matrix composites with crystalline dendrites Original Research Article
Author/Authors :
R.L. Narayan، نويسنده , , P.S. Singh، نويسنده , , D.C. Hofmann، نويسنده , , N. Hutchinson، نويسنده , , K.M Flores، نويسنده , , U. Ramamurty، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2012
Pages :
12
From page :
5089
To page :
5100
Abstract :
Bulk metallic glass (BMG) matrix composites with crystalline dendrites as reinforcements exhibit a wide variance in their microstructures (and thus mechanical properties), which in turn can be attributed to the processing route employed, which affects the size and distribution of the dendrites. A critical investigation on the microstructure and tensile properties of Zr/Ti-based BMG composites of the same composition, but produced by different routes, was conducted so as to identify “structure–property” connections in these materials. This was accomplished by employing four different processing methods—arc melting, suction casting, semi-solid forging and induction melting on a water-cooled copper boat—on composites with two different dendrite volume fractions, Vd. The change in processing parameters only affects microstructural length scales such as the interdendritic spacing, λ, and dendrite size, δ, whereas compositions of the matrix and dendrite are unaffected. Broadly, the composite’s properties are insensitive to the microstructural length scales when Vd is high (∼75%), whereas they become process dependent for relatively lower Vd (∼55%). Larger δ in arc-melted and forged specimens result in higher ductility (7–9%) and lower hardening rates, whereas smaller dendrites increase the hardening rate. A bimodal distribution of dendrites offers excellent ductility at a marginal cost of yield strength. Finer λ result in marked improvements in both ductility and yield strength, due to the confinement of shear band nucleation sites in smaller volumes of the glassy phase. Forging in the semi-solid state imparts such a microstructure.
Keywords :
Metallic glass , Composites , Microstructure , Shear bands , Plastic deformation
Journal title :
ACTA Materialia
Serial Year :
2012
Journal title :
ACTA Materialia
Record number :
1146480
Link To Document :
بازگشت