J. Mater. Sci. Technol. ›› 2019, Vol. 35 ›› Issue (9): 2079-2085.DOI: 10.1016/j.jmst.2019.04.014
• Orginal Article • Previous Articles Next Articles
Haichao Suna, Zhiliang Ninga, Jingli Renb, Weizhong Liangc, Yongjiang Huanga, Jianfei Suna, Xiang Xuea*(), Gang Wangd*(
)
Received:
2018-11-14
Revised:
2018-12-24
Accepted:
2019-01-26
Online:
2019-09-20
Published:
2019-07-26
Contact:
Xue Xiang,Wang Gang
About author:
1 These authors contributed equally to this work.
Haichao Sun, Zhiliang Ning, Jingli Ren, Weizhong Liang, Yongjiang Huang, Jianfei Sun, Xiang Xue, Gang Wang. Serration and shear avalanches in a ZrCu based bulk metallic glass composite in different loading methods[J]. J. Mater. Sci. Technol., 2019, 35(9): 2079-2085.
Fig. 1. True stress?strain curves of Zr49Cu45Al6 BMGC (a) in tension and (b) in compression. Both of them exhibit the serration events in plastic deformation region.
Elastic modulus (GPa) | Yielding strength (MPa) | Maximum strength (MPa) | Maximum strain | |
---|---|---|---|---|
Tension | 85.9 | 970.0 | 1696.0 | 0.0561 |
Compression | 90.2 | 980.6 | 1875.6 | 0.0658 |
Table 1 Mechanical properties of Zr49Cu45Al6 BMGC.
Elastic modulus (GPa) | Yielding strength (MPa) | Maximum strength (MPa) | Maximum strain | |
---|---|---|---|---|
Tension | 85.9 | 970.0 | 1696.0 | 0.0561 |
Compression | 90.2 | 980.6 | 1875.6 | 0.0658 |
Fig. 2. XRD patterns and microstructures of the Zr49Cu45Al6 BMGC. (a) Presents the XRD patterns before and after the deformation, (b) and (c) show the crystalline phases corresponding to the XRD pattern in the as cast sample, (d) shows the deformed sample with twinning structures inside the crystalline phase.
Parameters | Tension | Compression |
---|---|---|
Serrations | ~60 | ~150 |
tl, $\bar{t}_{l}$ | 0.11?3.51, 0.85 | 0.56?9.94, 2.48 |
tr, $\bar{t}_{r}$ | 0.06?0.86, 0.21 | 0.06?1.70, 0.29 |
tl/tr,$\bar{{t}_{l}/{t}_{r}}$ | 0.71?37.34,5.7 | 1.12?106.86,16.0 |
Elastic-energy density (J/m3) | 7.93?3604.75 | 57.36?16851.84 |
Average elastic-energy density (J/m3) | 514.2 | 219.6 |
Stress drop value (MPa) | 0.74?28.65 | 1.80?26.23 |
Average stress drop value (MPa) | 3.1 | 5.74 |
κ | 1.18/2.03 | 1.18/2.03 |
Δδc | 811/1984 | 1230/10628 |
R2 | 97.7%/94.3% | 97.8%/97.8% |
Time delay, τ | 72 | 63 |
Embedding dimension, m | 5 | 6 |
Largest Lyapunov exponent, λ | -1.42 × 10-4 | -1.51 × 10-4 |
Fractal dimension | 1.021 | 1.053 |
Table 2 Characteristic parameters of serration events.
Parameters | Tension | Compression |
---|---|---|
Serrations | ~60 | ~150 |
tl, $\bar{t}_{l}$ | 0.11?3.51, 0.85 | 0.56?9.94, 2.48 |
tr, $\bar{t}_{r}$ | 0.06?0.86, 0.21 | 0.06?1.70, 0.29 |
tl/tr,$\bar{{t}_{l}/{t}_{r}}$ | 0.71?37.34,5.7 | 1.12?106.86,16.0 |
Elastic-energy density (J/m3) | 7.93?3604.75 | 57.36?16851.84 |
Average elastic-energy density (J/m3) | 514.2 | 219.6 |
Stress drop value (MPa) | 0.74?28.65 | 1.80?26.23 |
Average stress drop value (MPa) | 3.1 | 5.74 |
κ | 1.18/2.03 | 1.18/2.03 |
Δδc | 811/1984 | 1230/10628 |
R2 | 97.7%/94.3% | 97.8%/97.8% |
Time delay, τ | 72 | 63 |
Embedding dimension, m | 5 | 6 |
Largest Lyapunov exponent, λ | -1.42 × 10-4 | -1.51 × 10-4 |
Fractal dimension | 1.021 | 1.053 |
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