Microhardness distribution over the surface of Zr-based metallic glass exposed to high-pressure torsion

V. Astanin, D. Gunderov, V. V. Titov
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Abstract

Identifying the peculiarities of the transformation of the structure and properties of bulk metallic glass (BMG) under high-pressure torsion (HPT) is of great interest. It is known that under HPT, the degree of deformation differs from the center to the edge of a disk which leads to the non-uniformity of the structure of obtained specimens. The change in microhardness value indicates the direction of change in BMG structure under the HPT, and the microhardness distribution indicates the HPT-specimen non-uniformity. The aim of the study is to identify the HPT influence on the microhardness value and microhardness distribution over the surface of specimens of amorphous alloys using an example of Vit105Zr-based BMG (Zr52.5Cu17.9Ni14.6Al10Ti5). The authors studied the distribution of microhardness over the surface of Vit105 Zr-based bulk metallic glass (BMG) in the initial state, in the state after HPT at n=1 and n=5 rotations, and after relaxing annealing. The study shows that the initial Vit105 BMG is characterized by a small spread in microhardness values, which indicates the material's high homogeneity. By reducing the excessive free volume, relaxing annealing increases microhardness without a significant increase in the spread of its values. HPT leads to a decrease in the zirconium BMG microhardness, which indicates an increase in the excessive free volume, but, at the same time, increases the uneven microhardness distribution over the specimen, while the microhardness values in one half of the HPT sample (n=1) are higher than in the other one. It demonstrates that BMG specimen deformation during HPT is related to the specific loading mechanisms.
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高压扭转zr基金属玻璃表面显微硬度分布
研究高压扭转作用下大块金属玻璃(BMG)结构和性能变化的特点具有重要意义。已知在高温高压下,从圆盘中心到边缘的变形程度不同,导致得到的试样结构不均匀。显微硬度值的变化表明HPT作用下BMG组织的变化方向,显微硬度分布表明HPT试样的不均匀性。以vit105zr基BMG (Zr52.5Cu17.9Ni14.6Al10Ti5)为例,研究高温热处理对非晶合金试样表面显微硬度值和显微硬度分布的影响。研究了Vit105 zr基大块金属玻璃(BMG)在初始状态、n=1和n=5旋转高温热处理状态和弛豫退火后表面显微硬度的分布。研究表明,初始Vit105 BMG的显微硬度值分布较小,表明材料具有较高的均匀性。通过减少过多的自由体积,松弛退火提高了显微硬度,而没有显著增加其值的扩散。HPT导致锆BMG显微硬度降低,表明过量自由体积增大,但同时也增加了试样上显微硬度分布的不均匀性,其中一半HPT样品(n=1)的显微硬度值高于另一半HPT样品。结果表明,高压拉伸过程中BMG试样的变形与特定的加载机制有关。
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