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Hyper-elastic material models do not account for this strain-rate sensitivity, which would be increasingly dominant at higher modes with increased rates of vibration.
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The dashed curves show the red-shift of the dark (green) and bright (blue) modes with increasing size.
The cutting behavior changed from a ductile to two distinguishable fracture cutting modes with increasing cutting depth.
The dashed curves show the red-shift of the dark (green) and bright (blue) modes with increasing size (From Ref. [115]).
We also found a progressive downshift (upshift) of both the E12g and A1g Raman active modes with increasing level of applied tensile (compressive) strain.
Moreover, a significant blueshift of the two modes with increasing annealing temperature was noticed which may be explained by a phase separation between Si-np and the Si nitride medium.
The transition to the higher strength failure mode with increased notch depth results from the constraints on internal load transmission processes imposed by the notches.
(iii) The optical phonon modes shift gradually to lower mode frequencies with increased doping concentration.
The redshift of defect mode with increasing the operating temperature was observed.
(a) Shift of mode (m = 70, main mode and first sub-mode) with increasing HfO2 coating layers.
The results also indicate composites take on more serious damage and clear shear failure mode with increasing the strain rate.
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