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Shaft is divided into several sections at strain gauge locations.
ABS samples were then tested at strain rates from 500 to 2000 s−1.
However, elastic wave overlapping at strain gauges is common for such apparatus.
It is applied to aluminium 2017 T4 alloy at strain rates of approximately 100/s.
The specimen was loaded at strain rates under 20×10−6 per minute.
Nano-twinning was demonstrated at strain rates as small as 1000 s−1 at −196 °C and at strain rates of ⩾10,000 s−1 even when the deformation temperature was well above room temperature.
A high speed servo-hydraulic machine is used to perform experiments at strain rates ranging from 0.01 to 100/s.
Fibre and cross-fibre compression tests at strain rates varying from 11,600%/s to 37,800%/s were performed.
Using this method, the 603 steel was tested at strain rates from 2500 s−1 to 48000 s−1.
Samples were tested through two orders of magnitude, at strain rates varying between 0.01 and 3.39 s−1.
The low-cost device also makes isothermal testing possible at strain rates higher than corresponding tests in air.
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