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An experimental assessment of methods for mitigating plasticity error during nanoindentation with continuous stiffness measurement
- Source :
- Materials & Design, Vol 194, Iss, Pp 108924-(2020)
- Publication Year :
- 2020
- Publisher :
- Elsevier, 2020.
-
Abstract
- A comprehensive model for simulating a constant indentation strain rate test with continuous stiffness measurement (CSM) has been developed in a previous work [ 20 ]. A procedure for correcting errors associated with plasticity during CSM based testing is also developed. Furthermore, a new method that uses a fixed ratio of the amplitude of the sinusoidally varying portion of the instantaneous load to the load's mean value (AC to DC) during CSM testing is proposed that can reduce the plasticity error and improve the signal-to-noise ratio (SNR) in stiffness. In this work, experimental results are presented to assess the accuracy of the simulation results in terms of the displacement waveforms in response to the imposed load oscillations, the functional dependence of the plasticity error and the SNR. A comparison of the experimental results between the new and the traditional CSM methods is also presented and the advantages of the new method are demonstrated. Furthermore, recommendations for performing indentation testing using CSM with improved precision and accuracy are provided.
- Subjects :
- Accuracy and precision
Materials science
Astrophysics::High Energy Astrophysical Phenomena
Phase-lock amplifier
02 engineering and technology
Plasticity
010402 general chemistry
01 natural sciences
Displacement (vector)
Nanoindentation
Hardness
Indentation
medicine
lcsh:TA401-492
Waveform
General Materials Science
business.industry
Mechanical Engineering
Work (physics)
Stiffness
Continuous stiffness measurement
Structural engineering
021001 nanoscience & nanotechnology
0104 chemical sciences
Mechanics of Materials
lcsh:Materials of engineering and construction. Mechanics of materials
medicine.symptom
0210 nano-technology
business
Elastic modulus
Subjects
Details
- Language :
- English
- ISSN :
- 02641275
- Volume :
- 194
- Database :
- OpenAIRE
- Journal :
- Materials & Design
- Accession number :
- edsair.doi.dedup.....1af694da0e71405446999814c99ba882