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PCL/RGO_Cu exhibited highest modulus due to enhanced filler exfoliation.
The surface elastic modulus is higher than the bulk tensile modulus due to the scale effect.
Yet, no significant effect regarding the relative loss of the Young's modulus due to thermal shock was determined.
It observed through this study that the variation of elasticity modulus due to the temperature causes a stress relaxation.
The increase of nitrogen will result in higher hardness and Young's modulus due to the formation of stoichiometric TaN phase.
A nanoindentation study revealed an increment of nanohardness and elastic modulus due to the densifying effect of TiO2.
Similar(19)
The reduction in section modulus (SM) due to damage is considered to check whether the section modulus is still acceptable after damage.
The observed increase in apparent Young's modulus was due to increased bone mass and altered trabecular architecture rather than changes in the calcified matrix modulus.
With the decrease of modulation periodicity the elastic modulus decreases due to the compliant interface.
Modulus enhancement due to rubber-like elasticity of the filler itself, however, may be active.
The experimental modulus reduction due to the cracks was predicted by a shear-lag analysis including the stiffening effect.
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