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Exact(27)
Mechanical properties such as modulus increased by as much as 54%.
The compressive modulus increased by increasing I-CEL2 amount up to 7.6±0.5 MPa for I-CEL2/G 70/30.
After complete PFA fixation, cell surface fluctuation decreased to 71% of live cell, while the Young's modulus increased by fivefold compared to that of live cells.
Compared with the pure polymer, Young's modulus increased by ca. 50%, while yield stress increased by ca. 35%.
Interestingly, tensile strength and Young's modulus increased by ∼8 and ∼27 folds, respectively, at 15% PANI content.
For BOZ composites containing 0.05 wt% GO-HE, the flexural strength increased by 14.4%, and the flexural modulus increased by 10.0% compared to that of neat BOZ.
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Tensile testing measurements illustrated the reinforcing behaviour of the CTC on the composite, with the initial modulus increasing by up to 250% at 45 wt% CTC.
The sheet specimens demonstrated that shear modulus increased progressively by a factor of between 3 and 5 from the inner to outer annulus.
In this system, the elastic modulus increased continuously by 50% from the contact surface to a depth of about 2 mm beneath the surface, with essentially no long-range residual stresses.
In turn, the tensile stiffness, measured as the Young's modulus, increased in CAD27 by about 24% and in CAD33 by about 8% (from 129 GPa for the control, to 159 GPa for the CAD27, p < 0.0006 and 139 GPa for CAD33).
The through-thickness compressive modulus and the flexural modulus were increased by up to 14%and11%1%, respectively by using EGME with carbon black.
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