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mechanisms improved at higher strain rates.
Therefore, densification occurs at a higher strain level.
Furthermore, the unpolished samples displayed significant hardening at higher strain.
Cryopreserved matrices showed significantly higher strain when stressed compared to non cryopreserved matrices.
All-polyethylene tibial components exhibited significantly higher strain measurements in each femoral position.
However, the wrought material had longer life at higher strain amplitudes.
The K3D composites had a higher strain rate as compared to the B3D and H3D composites.
Higher strain energy of 0.819 meV in the stacked heterostructure improved QDs size homogeineity.
Composite scaffolds also showed viscoelastic behaviour with increased modulus for higher strain rates.
With the highly packed fibres, Q-UD composites achieve a higher strain to failure.
But, the reverse is true for the flow stress at higher strain levels.
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CEO of Professional Science Editing for Scientists @ prosciediting.com