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The mechanical properties depend on the sintering of the HA bioceramic and the amount of pores.
The results show that the mechanical properties depend on the foam density and are strain rate sensitive.
Nevertheless, these mechanical properties depend strongly on the ratio of the specimen size to the cell size.
Their mechanical properties depend on shape/geometry at the macro scale, on microarchitecture, as well as on material characteristics at the micro- to nanometer scale.
Their global mechanical properties depend strongly on the local micromechanical properties of the struts and on the pore geometry of the foams.
The sintered density depends primarily on the titanium powder size while the sintered microstructure and mechanical properties depend mainly on the master alloy type or diffusion of vanadium.
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This quality provides heart tissue with different mechanical properties depending on the direction in which it is stretched.
The enhancement of the modified thermosets' mechanical properties depends on the morphology adopted by the polymers.
The effect of hydrogenation on the morphology and mechanical properties depends on the outer block.
Thus, the ability of a FEM model to predict mechanical properties depends upon the accuracy of modeling the fiber geometry in a unit cell.
Each element of this structure has its own mechanical properties, depending on the fibre direction and a change in the distance between the fibres.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com