Combined experimental and theoretical study on the effect of Nb content on martensitic transformation of NbRu shape memory alloys
Tan Chang-Long, Wei Cai, Tian Xiao-Hua
Abstract
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Tan Chang-Long, Wei Cai, Tian Xiao-Hua
Abstract
Open-access reader
The effect of Nb content on the martensitic transformation of NbRu high-temperature shape memory alloys is investigated by experiments and first-principles calculations. We calculate the lattice parameters, density of states, charge density, and heats of formation of Nb 50+ x Ru 50– x β phase. The results show that an increase in Nb content increases the stability of Nb 50+ x Ru 50– x β phase, leading to a significant decrease of the β to β' martensitic transformation temperature. In addition, the mechanism of the effects of Nb content on phase stability and martensitic transformation temperature is studied on the basis of electronic structure.
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The effect of Nb content on the martensitic transformation of NbRu high-temperature shape memory alloys is investigated by experiments and first-principles calculations. We calculate the lattice parameters, density of states, charge density, and heats of formation of Nb 50+ x Ru 50– x β phase. The results show that an increase in Nb content increases the stability of Nb 50+ x Ru 50– x β phase, leading to a significant decrease of the β to β' martensitic transformation temperature. In addition, the mechanism of the effects of Nb content on phase stability and martensitic transformation temperature is studied on the basis of electronic structure.
Key concepts: Materials science, Diffusionless transformation, Martensite, Shape-memory alloy, Thermodynamics, Transformation (genetics), Content (measure theory), Phase (matter)