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Exact(11)
The strain rate effect was found to be relevant for the blanking process.
The scan rate effect was found to be adsorption controlled electrode process.
Displacement rate effect was also examined by performing tests at 50, 100, 200 and 400 mm min−1.
A specific heat capacity model considering the heating rate effect was also developed and validated against the experimental results.
However, the strain rate effect was always neglected in existing investigations, thus introducing inevitable errors in numerical predictions for engineering practices.
However, a similar stiffening strain rate effect was seen for all specimens after the onset of damage, which is believed to be due to rate sensitive damage propagation.
Similar(49)
The time rate effect is also considered by using rheological models.
In this study, the thermal properties of steel under the heating rate effect were investigated.
The strain rate effect is an important material property for such applications.
Strain rate effect is observed in compression tests at strain rates above 5000 s−1.
The larger the lateral pressure is, the more pronounced the loading rate effect is.
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