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Nanoindentation studies of Zr-based bulk metallic glasses

机译:锆基块状金属玻璃的纳米压痕研究

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Hardness (H) and Young modulus (E) of three different chemical compositions of Zr-based bulk metallic glasses were investigated through the use of nanoindentation. The effects of the chemical composition and microstructure of bulk metallic glasses on mechanical properties were examined. Additionally, plastic deformation of studied alloys during nanoindentation's measurements, with different indentation-loading rates was carried out. The increase in hardness with the increase of crystalline volume fraction(V_(cr)) for all alloys was observed. Increasing V_(cr), Young modulus of studied alloys increases almost linearly in the range up to about 75 percent. For fully crystalline alloys small decrease of Young modulus is observed. Alloy C, containing the highest Al amount, exhibits the highest values of H and E among all studied alloys. It was noticed that plastic deformation of amorphous alloys is punctuated by many discrete bursts of rapid displacement. This behaviour showed to be strongly depended on the indentation-loading rate. As the loading rate is increased, the nature of serrated flow observed on load-displacement (P-h) curves, changes significantly. Low rates P-h curves exhibit characteristic serrations, while curves obtained at higher rates are smoother. The character of plastic deformation of partially crystallised alloys was analysed, as well. For those materials, the change in the nature of the plastic deformation, from serrated to non-serrated flow, is observed at lower indentation rates, as compared to results obtained for amorphous alloys.
机译:通过纳米压痕研究了Zr基块状金属玻璃的三种不同化学成分的硬度(H)和杨氏模量(E)。检查了大块金属玻璃的化学组成和微观结构对机械性能的影响。另外,在不同的压痕加载速率下,在纳米压痕的测量过程中对所研究的合金进行了塑性变形。对于所有合金,观察到硬度随晶体体积分数(V_(cr))的增加而增加。 V_(cr)的增加,所研究合金的杨氏模量在大约75%的范围内几乎呈线性增加。对于全结晶合金,观察到杨氏模量的较小降低。在所有研究的合金中,含铝量最高的合金C的H和E值最高。注意到非晶合金的塑性变形被许多离散的快速位移爆发所破坏。表现出这种行为在很大程度上取决于压痕加载速率。随着加载速率的增加,在负载-位移(P-h)曲线上观察到的锯齿状流的性质会发生显着变化。低速P-h曲线呈现锯齿状,而高速P-h曲线更平滑。还分析了部分结晶合金的塑性变形特征。对于这些材料,与无定形合金相比,在较低的压痕率下观察到塑性变形的性质从锯齿状流变为非锯齿状流。

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