Korean Journal of Materials Research, Vol.14, No.3, 181-185, March, 2004
벌크형 비정질 Zr계 합금의 결정화 열처리에 따른 동적변형 거동
Dynamic Deformation Behavior of Zr-Based Bulk Amorphous Alloy after Annealing Treatments
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The mechanical properties of a bulk amorphous alloy ( Zr 41.2 Ti 13.8 / Cu 10 Ni 10 Be 22.5 /at.%) before and after an annealing treatment were investigated. For the bulk amorphous alloy, the compressive strength was about 2.0 GPa, irrespective of the strain rates in the range of 10 ?4 to 10 3 sec ?1 . Fine-sized nanocrystalline particles (10~100 nm) were precipitated homogeneously in the bulk amorphous matrix after the annealing treatments. Compared to the bulk amorphous materials, these composite materials, composed of the nanocrystalline phases and a bulk amorphous matrix had much different mechanical properties. The strength and strain of coposite materials measured by a compressive test showed a peak-maximum values at 7 vol.% of the nanocrystalline phases. The values in higher volume fraction of the crystalline phases in the amorphous matrix were decreased, as measured by both quasi-static and high strain rate. The decrease in fracture strength is due to presence of the dispersed large-crystalline phases in the amorphous matrix.
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