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Investigation on the inhomogeneous structure of metallic glasses based on the initial elastic deformation in nanoindentation

机译:基于纳米压痕初始弹性变形的金属玻璃非均匀结构研究

摘要

The initial elastic deformation of bulk metallic glasses (BMGs) with various casting diameters and annealing conditions was investigated by nanoindentation test with a spherical indenter. It was found that with the increasing of the glassy rod diameter and the annealing temperature, the onset slope of nanoindentation plot remarkably increased. The BMGs with various casting diameters and annealing temperatures are of different atomic configuration due to their different cooling rate during casting and different structural relaxation processes during annealing, respectively, indicating that the onset slope of nanoindentation plot is strangely dependent on the atomic configuration. Therefore, the onset slope of nanoindentation plot may serve as an indicator of the initial deformation behavior of BMGs. The structual origin of the initial elastic deformation was discussed in terms of short order nature in glasses and the distribution of free volume. Highlights: The onset nanoindentation slope increases with the BMG diameter. The onset nanoindentation slope increases with the annealing temperature. Free volume decreases with the increase of diameter and annealing temperature. The initial elastic deformation reflects the cluster bonding characteristic. Cluster bonding characteristic is significant in understanding BMG's properties.
机译:通过球形压头的纳米压痕试验研究了具有不同铸造直径和退火条件的块状金属玻璃(BMG)的初始弹性变形。发现随着玻璃棒直径和退火温度的增加,纳米压痕图的起始斜率显着增加。具有不同铸造直径和退火温度的BMG分别具有不同的原子构型,这是由于它们在铸造过程中的冷却速率不同以及退火过程中的结构松弛过程不同,这表明纳米压痕图的起始斜率奇怪地取决于原子构型。因此,纳米压痕图的起始斜率可以作为BMGs初始变形行为的指标。从玻璃的短阶性质和自由体积的分布方面讨论了初始弹性变形的结构起源。亮点:纳米压痕的起始斜率随BMG直径的增加而增加。起始纳米压痕斜率随退火温度增加。自由体积随直径和退火温度的增加而降低。初始弹性变形反映了团簇结合特性。团簇键合特性对于理解BMG的特性非常重要。

著录项

  • 作者

    Zhao L; Ma CL; Fu MW; Zeng XR;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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