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HGM filled polymer absorbed more energy at Vf around 7.5% under low strain rate compression.
The results showed that thixotropic behavior under low strain rate was obviously influenced by deformation time.
Draw ratios of 7 13 can be achieved for complexed fibers, under low strain rate stretching.
Good extrusion formability was observed under low strain rates at various temperatures in the glass transformation region investigated.
During cyclic loading, untreated material is hardened under high strain amplitude (±0.8%, ±1.25%), but softened under low strain amplitude (±0.5%).
In this work, the mechanical properties of HGM filled polymers were investigated under low strain rate tests for compressive and tensile behaviors, and high strain rate tests for compressive behaviors.
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The plain concrete may fail under low strain-rate single impact whereas the fibrous concrete can resist high strain-rate repeated impact.
Fatigue induced damage under low-strain conditions is a commonly encountered phenomenon in reinforced concrete (RC) structures subjected to continuous vibrations, such as bridges under vehicular loads, buildings under wind and structures directly supporting or in the vicinity of vibration emitting machinery.
During cycling under the low strain rates 10−4 and 10−5 s−1 at 750°C or under the strain rate 10−3 s−1 at 850°C, the cyclic tension compression asymmetry of C > T was observed.
The nucleation mechanism of DRX in the new alloy is discontinuous dynamic recrystallization (DDRX) as to the existence of original grain boundaries bulging under the low strain rate.
The out-of-plane compressive properties of the Nomex honeycombs have been widely investigated under quasi-static and low strain rates (up to 300 s−1).
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