A new long-term indentation relaxation method to measure creep properties at the micro-scale with application to fused silica and PMMA

被引:11
|
作者
Baral, P. [1 ,2 ]
Guillonneau, G. [1 ]
Kermouche, G. [2 ]
Bergheau, J. -M. [3 ]
Loubet, J. -L. [1 ]
机构
[1] Univ Lyon, Ecole Cent Lyon, CNRS UMR 5513, LIDS, F-69134 Ecully, France
[2] Univ Lyon, Mines St Etienne, CNRS UMR 5307, Ctr SMS,LGF, F-42023 St Etienne, France
[3] Univ Lyon, Ecole Natl Ingenieurs St Etienne, CNRS UMR 5513, LTDS, F-42023 St Etienne, France
关键词
Nanoindentation; Relaxation; Dynamic stiffness; Fused silica; PMMA; Creep; Strain rate sensitivity; Activation volume; STRAIN-RATE SENSITIVITY; NANOINDENTATION CREEP; YIELD-STRESS; TEMPERATURE; EXTRACTION; PARAMETERS; POLYMERS; HARDNESS; LOAD; ROOM;
D O I
10.1016/j.mechmat.2019.103095
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A new procedure is developed to measure strain rate sensitivity m and apparent activation volume V* using nanoindentation relaxation experiments. This procedure is based on the control of the dynamic contact stiffness as measured by the continuous stiffness measurement module (CSM). Load decrease is monitored while maintaining the contact stiffness constant. It allows for very stable measurements of load relaxation (up to 10 h) since the contact area between the tip and the sample surface is kept constant. This improvement is significant as it increases by two orders of magnitude the measurement time compared to classical constant displacement experiments. The load relaxation data are interpreted using an analogy to uniaxial tests in order to extract representative material's parameters. An excellent agreement with literature data is found for fused silica and PMMA. Nanoindentation relaxation experiment is proved to be an accurate procedure to extract viscoplastic parameters of materials under very low strain rates.
引用
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页数:7
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