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- W2059792332 abstract "► Ni 56 Mn 25− y Fe y Ga 19 alloys ( y > 4) exhibit the most excellent thermomechanical stability. ► Ni 56 Mn 25− y Fe y Ga 19 alloys possess the best shape memory effect in comparison with other systems. ► Major factors affecting shape memory effect of two-phase NiMnGa-based alloys are discussed. ► Effect of alloying elements on improving ductility of NiMnGa-based alloys ranks as: Fe > Co > Ni > Cu. The functional properties, thermomechanical stability, ductility and shape memory effect of four types of two-phase NiMnGa-based high-temperature shape memory alloys were investigated, including Ni 56+ x Mn 25 Ga 19− x ( x = 1, 2, 3, 4), Ni 56 Mn 25− y Fe y Ga 19 ( y = 4, 8, 12, 16), Ni 56 Mn 25− z Co z Ga 19 ( z = 4, 6, 8) and Ni 56 Mn 25− w Cu w Ga 19 ( w = 2, 4, 8) alloys. It is found that Ni 56 Mn 25− y Fe y Ga 19 alloys ( y > 4) exhibit the most excellent thermomechanical stability with no γ′ precipitates after thermomechanical cycling. Results further show that different alloying elements (Ni/Co/Cu/Fe) have different effects on the mechanical properties of both γ phase and corresponding two-phase NiMnGa-based alloys, which are closely related to the thermomechanical stability, ductility and shape memory effect of these alloys. The strength of Ni–Mn–Ga alloys decreases obviously with the addition of Fe, and the ductility of the alloys is effectively improved due to the formation of the most ductile γ phase with the lowest strength in Ni 56 Mn 25− y Fe y Ga 19 alloys. Particularly, Fe addition significantly improves shape memory effect of Ni–Mn–Ga alloys. As a result, two-phase Ni 56 Mn 25− y Fe y Ga 19 alloys exhibit the most excellent and stable functional properties as potential high-temperature shape memory materials." @default.
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- W2059792332 date "2013-05-01" @default.
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- W2059792332 title "The mechanism clarification of Ni–Mn–Fe–Ga alloys with excellent and stable functional properties" @default.
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- W2059792332 doi "https://doi.org/10.1016/j.jallcom.2013.01.128" @default.
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