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Miniaturized Compression Test at Very High Strain Rates by Direct Impact
Authors:J. Z. Malinowski  J. R. Klepaczko  Z. L. Kowalewski
Affiliation:(1) Institute of Fundamental Technological Research, Polish Academy of Sciences, 21 Swietokrzyska St., 00049 Warsaw, Poland;(2) Laboratory of Physics and Mechanics of Materials, UMR-CNRS 7554, Metz University, Ile du Saulcy, 57045 Metz, France
Abstract:A modified miniaturized version of the Direct Impact Compression Test (DICT) technique is described in this paper. The method permits determination of the rate-sensitive plastic properties of materials up to strain rate ∼105 s−1. Miniaturization of the experimental setup with specimen dimensions: diameter d S = 2.0 mm and thickness l S = 1.0 mm, Hopkinson bar diameter 5.2 mm, with application of a novel optical arrangement in measurement of specimen strain, makes possible compression tests at strain rates from ∼103 s−1 to ∼105 s−1. In order to estimate the rate sensitivity of a low-alloy construction steel, quasi-static, Split Hopkinson Pressure Bar (SHPB) and DICT tests have been performed at room temperature within the rate spectrum ranging from 5*10−4 s−1 to 5*104 s−1. Adiabatic heating and friction effects are analyzed and the final true stress versus true strain curves at different strain rates are corrected to a constant temperature and zero friction. The results have been analyzed in the form of true stress versus the logarithm of strain rate and they show two regions of a constant rate sensitivity $$ beta = {left( {{Delta sigma } mathord{left/ {vphantom {{Delta sigma } {log {mathop varepsilon limits^ cdot }}}} right. kern-nulldelimiterspace} {log {mathop varepsilon limits^ cdot }}} right)}_{varepsilon } $$: relatively low up to the strain rate threshold ∼50 s−1, and relatively high above the threshold, up to strain rate ∼4.5*104 s−1.
Keywords:Direct Impact Compression Test (DICT)  Dynamic plasticity  Mild Steel  High strain rate
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