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Compared with the binary Ti70.6Fe29.4 eutectic and Ti-6Al-4V alloys, the studied alloys present higher hardness, lower Young's modulus, and better corrosion resistance in Hank's solution.
Compared with β-tricalcium phosphate (β-TCP) scaffolds NAGEL scaffolds possess a significantly enhanced compressive strength, a higher modulus and better degradability.
However, longer RAP/virgin aggregate mixing times could result in recycled hot asphalt mixtures with higher stiffness modulus and better homogeneity.
Pure nickel coatings prepared at lower current density possessed smoother, denser and more uniform microstructure, and exhibited higher microhardness, elastic modulus and better wear resistance.
Rigid crosslinks bound cellulose molecular segments together and blocked the chain slippage, providing cellulose models with a higher initial modulus and better elastic response.
The Si3N4 MoSi2 composite containing Lu2O3 had higher elastic modulus and better creep resistance at elevated temperatures (>1000 °C) than the composite doped with Y2O3 Al2O3.
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Nanoindentation results demonstrated that Ni dissolved with ~ 15 at.% Ti solid solution possesses higher values of elastic modulus, hardness and better resistance to both elastic and plastic deformation than the Ni(Ti) nanocomposite coatings containing higher concentrations of both nitrogen and oxygen.
TiN/NiTi films were found to exhibit high hardness, high elastic modulus and thereby better wear resistance as compared to pure NiTi films.
The developed patching material had a smaller dynamic modulus and performed better in fatigue resistance than commonly used epoxy asphalt mixture.
We demonstrated that amongst CMC/sCMC/gelatin hydrogels cross-linked with 1 and 2 mM H2O2, the latter demonstrated significantly higher compressive modulus and supported better in vitro cartilage formation.
The surface modified NiTi/PZT/TiOx heterostructures were found to exhibit high hardness, high elastic modulus and thereby better wear resistance as compared to pure NiTi/PZT/TiOx films.
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