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The high strength at elevated temperature could be attributed to synergetic strengthening refinement of the LPSO via kinking and a limited fraction of dynamical recrystallization.
It is the solid solution strengthening, refinement of α2 phase and carbides and the elimination of cast defects that result in superior strength and elastic modulus to conventional Ti alloys.
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Mechanical properties of steels can be improved by work hardening, solid solution strengthening, grain refinement, and dispersion strengthening.
Strengthening by refinement of lamellar thickness was studied at room temperature on dual phase Ti 39.4mol%Al alloy over a wide range of average lamellar thickness λ from 850 to 20 nm.
Enhanced properties of Cu/Ti3SiC2/C nanocomposites reinforced with MWCNTs and graphene include grain refinement strengthening, load transfer strengthening, Orowan mechanism strengthening, and large interface strengthening of GNPs. .
Enhanced properties of Cu/Ti3SiC2/C nanocomposites reinforced with MWCNTs and graphene include grain refinement strengthening, load transfer strengthening, Orowan mechanism strengthening, and large interface strengthening of GNPs.
Strengthening by grain refinement was observed from the micro-tensile test of the pulse current electroplated Au.
Thus, the hardening of the alloys after SPD due to aging (dispersion mechanism) was twice weaker than the strengthening through grain refinement.
These fine-scale nanofillers are intrinsically strong while also bringing Orowan strengthening or grain refinement to the metallic matrix, making MMCs stiff, strong, and tough.
Thus, the hardening of the alloys after SPD due to aging (dispersion mechanism) was twice weaker than the strengthening through grain refinement. .
These enhancing effects include grain refinement strengthening, load transfer strengthening, Orowan mechanism strengthening, and large interface strengthening of GNPs. Figure 10 presents SEM analyses of tensile fracture microscopic process of the nanocomposites.
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