EventsThe Eighteenth International Conference of Experimental Mechanics
Published
This submission belongs to the session ICEM. ICEM 2018 of the event The Eighteenth International Conference of Experimental Mechanics
Published date
07 May, 2018
Citation
Sanghyun Yoo, Dominik Schueler, Marcel Brodbeck, Nathalie Toso, Giuseppe Catalanotti, Heinz Voggenereiter, ICEM/047 An improved load introduction technique for dynamic material characterisation at intermediate strain rate, in Proceedings of The Eighteenth International Conference of Experimental Mechanics, Brussels, 1 July–5 July 2018, MDPI: Basel, Switzerland, doi: 10.3390/ICEM18-05203
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ICEM/047 An improved load introduction technique for dynamic material characterisation at intermediate strain rate

Dominik Schueler 1
Marcel Brodbeck 1
Nathalie Toso 1
Heinz Voggenereiter 1
1. Institute of Structures and Design, German Aerospace Center (DLR)
2. Advanced Composites Research Group (ACRG), School of Mechanical and Aerospace Engineering, Queen’s University Belfast
Abstract

Dynamic properties at intermediate strain rate are inherently difficult due to the dynamic interactions between the test specimen and the test machine. These effects obscure the interpretation of test results and therefore can make the derivation of the material properties difficult and unprecise. In this paper, dynamic tensile tests were performed within the strain rate range of 0.1 s-1 to 400 s-1 on high strength steels. To evaluate the performance of damping materials in the slack adaptor, copper and acrylic tapes were used to mitigate the system ringing that typically occurs in dynamic tests. Experimental results show that both damping materials may be used to effectively reduce the oscillations in the measured force signal. The outcome of this project will provide the test procedure for dynamic testing at intermediate strain rates, which can produce reliable test results for materials with low failure to strain.

Keywords
Intermediate strain-rate
Testing method
Slack adaptor
Mechanical Characterization of Compact Basalt by using SHPB Device
Dynamic behavior of metals at elevated temperatures and ultra-high strain-rates