The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size
The strength of nanocrystalline (NC) metal has been found to be sensitive to strain rate. Here, by molecular dynamics simulation, we explore the strain rate effects on apparent Young’s modulus, flow stress and grain growth of NC gold with small size. The simulation results indicate that the apparent...
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doaj-72f8a50e629b48dbbeb7a5739f60be702020-11-25T01:59:39ZengMDPI AGCrystals2073-43522020-09-011085885810.3390/cryst10100858The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain SizeJialin Liu0Xiaofeng Fan1Yunfeng Shi2David J. Singh3Weitao Zheng4Key Laboratory of Automobile Materials, Ministry of Education, and College of Materials Science and Engineering, Jilin University, Changchun 130012, ChinaKey Laboratory of Automobile Materials, Ministry of Education, and College of Materials Science and Engineering, Jilin University, Changchun 130012, ChinaDepartment of Material Science and Engineering, Rensselaer Polytechnic Institute, Troy, NY 12180, USADepartment of Physics and Astronomy, University of Missouri, Columbia, MO 65211-7010, USAKey Laboratory of Automobile Materials, Ministry of Education, and College of Materials Science and Engineering, Jilin University, Changchun 130012, ChinaThe strength of nanocrystalline (NC) metal has been found to be sensitive to strain rate. Here, by molecular dynamics simulation, we explore the strain rate effects on apparent Young’s modulus, flow stress and grain growth of NC gold with small size. The simulation results indicate that the apparent Young’s modulus of NC gold decreases with the decrease of strain rate, especially for strain rates above 1 ns<sup>−1</sup>. The rearrangement of atoms near grain boundaries is a response to the decrease of apparent Young’s modulus. Indeed, the flow stress is also sensitive to the strain rate and decreases following the strain rate’s decrease. This can be found from the change of strain rate sensitivity and activation volume with the strain rate. Temperature has little effect on the activation volume of NC gold with small grain size, but has an obvious effect on that of relatively large grain size (such as 18 nm) under low strain rate (0.01 ns<sup>−1</sup>). Finally, grain growth in the deformation process is found to be sensitive to strain rate and the critical size for grain growth increases following the decrease of strain rate.https://www.mdpi.com/2073-4352/10/10/858strain ratemolecular dynamics simulationstrain rate sensitivityactivation volumegrain growth |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jialin Liu Xiaofeng Fan Yunfeng Shi David J. Singh Weitao Zheng |
spellingShingle |
Jialin Liu Xiaofeng Fan Yunfeng Shi David J. Singh Weitao Zheng The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size Crystals strain rate molecular dynamics simulation strain rate sensitivity activation volume grain growth |
author_facet |
Jialin Liu Xiaofeng Fan Yunfeng Shi David J. Singh Weitao Zheng |
author_sort |
Jialin Liu |
title |
The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size |
title_short |
The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size |
title_full |
The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size |
title_fullStr |
The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size |
title_full_unstemmed |
The Effect of Strain Rate on the Deformation Processes of NC Gold with Small Grain Size |
title_sort |
effect of strain rate on the deformation processes of nc gold with small grain size |
publisher |
MDPI AG |
series |
Crystals |
issn |
2073-4352 |
publishDate |
2020-09-01 |
description |
The strength of nanocrystalline (NC) metal has been found to be sensitive to strain rate. Here, by molecular dynamics simulation, we explore the strain rate effects on apparent Young’s modulus, flow stress and grain growth of NC gold with small size. The simulation results indicate that the apparent Young’s modulus of NC gold decreases with the decrease of strain rate, especially for strain rates above 1 ns<sup>−1</sup>. The rearrangement of atoms near grain boundaries is a response to the decrease of apparent Young’s modulus. Indeed, the flow stress is also sensitive to the strain rate and decreases following the strain rate’s decrease. This can be found from the change of strain rate sensitivity and activation volume with the strain rate. Temperature has little effect on the activation volume of NC gold with small grain size, but has an obvious effect on that of relatively large grain size (such as 18 nm) under low strain rate (0.01 ns<sup>−1</sup>). Finally, grain growth in the deformation process is found to be sensitive to strain rate and the critical size for grain growth increases following the decrease of strain rate. |
topic |
strain rate molecular dynamics simulation strain rate sensitivity activation volume grain growth |
url |
https://www.mdpi.com/2073-4352/10/10/858 |
work_keys_str_mv |
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