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Exact(19)
With GO-g-PCL and AGO-g-PCL, the modulus was increased by 76% and 71%, respectively.
In graphene composite with 2.5 wt% additive content, the tensile modulus was increased by 1.95 times that of pure polymer.
Carreno-Morelli et al. [13] showed that the Young's modulus was increased by 9% in CNT/Mg composites with addition of 2 wt.
With increasing urea content, the shear modulus was increased, while the glass transition temperature (Tg) remained low and unaffected.
Moreover, the equilibrium modulus was increased by a factor of nearly 1.73 when the volume fraction of nanofibers was 0.085.
As a result, Young's modulus was increased by 15% with the addition of only 0.5 wt.% of Mo6S3I6.
Similar(41)
The value of Young's modulus is increased by the same proportion.
The residual stress, the hardness and reduced modulus are increased with percentage of hard-layer thickness.
In all the composites, the peak stress, toughness and modulus were increased with strain rate.
Due to the embedding of particles both the hardness and Young's modulus were increased.
On addition of 1.0 wt% graphene, the tensile strength and tensile modulus are increased by 178% and 139%, respectively.
More suggestions(15)
release was increased
component was increased
cluster was increased
blade was increased
section was increased
block was increased
light was increased
device was increased
model was increased
modules was increased
modulus was reconstructed
modulus was shown
modulus was adjusted
modulus was estimated
modulus was verified
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