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Their mechanical properties where optimized by varying the braided structure and different resorbable components.
This gives rise to size dependent mechanical properties where large systems behave differently from small systems.
This is also reflected in the mechanical properties where moduli exhibit equal values in MD1 and MD2 directions but lower values in other directions in the film plane.
Considerable attention has been focused on metallic glasses for their excellent mechanical properties where nanoindentation has been widely used to estimate the material parameters, while traditional analysis of nanoindentation data can overestimate the Young's modulus and hardness due to pile-up which occurs commonly in metallic glasses.
Resulted from unique performances of the modified CNT sheet and strong interfacial polarization process, the sandwich composite film possesses excellent dielectric and mechanical properties, where dielectric permittivity of 32, dielectric loss of 0.08, tensile strength of 90 MPa and modulus of 3 GPa are shown for optimized chlorine-doping duration time and composite composition.
Further, fibroblasts that have been cultured on stiff substrates for various periods of time express high levels αSMA when cultured on soft substrates compared to cells that were never cultured on a stiff substrate, indicating an important temporal component in cell response to matrix mechanical properties where cells have an increasing 'memory' of activation over time.
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Solute clusters and Guinier Preston (GP) zones play an important role in determining mechanical properties of Mg RE (where RE represents rare earth elements) alloys.
Compositions with 80/20, 70/30 and 60/40 POSS-PEG/MC, and LiClO4 (O/Li = 16/1) were investigated for their electrochemical, mechanical and morphological properties, where O/Li indicates the molar ratio of ether oxygens from POSS-PEG to Li+ ions.
The difference in cell proliferation may be attributed to the varying mechanical properties of scaffolds; where the stiffness of l-pLG scaffolds was notably higher than ss-pLG scaffolds, most likely due to the variable levels of gelatin grafting on the backbone of PDLLA.
As shown below, this combined Voigt-dashpot viscoelastic model reasonably approximates the mechanical properties of Dictyostelium where cross-linking proteins are predominantly enriched in the cortex.
On the other hand we use data of one material, namely enamel, where mechanical properties were measured on every length scale.
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