54Mn28+xGa18-x(x=0, 4, 7, 9, 13) were investigated. As the Mn content increases, the γ phase appears, with is a face centered tetragonal (fct) structure, and a γ grain contains a hierarchical nano-lamellae forming within micro-lamellae microstructure. A micro-lamella consists of two variants, each variant has a pair of nano-lamellae, and they are {011} twin related. Owing to the introduction of lamellar γ, the ductility is improved. With the increase in Mn content, the compressive stress increases from 914 MPa to 2175 MPa, and the compressive strain increases from 14% to 26%. The martensitic transformation temperature of such series of alloys increases from 352 ℃ to 585 ℃. For Mn-rich Ni-Mn-Ga alloy, the ductility improvement is inferior to that of Ni-rich alloy, but the martensitic transformation temperature is higher."/>
School of Materials Science and Engineering, Nanchang Hangkong University, Nanchang 330063, China
TG146;TB381
The National Science Fund for Distinguished Young Scholars
[Zhou Yuecong, Ouyang Sheng, Deng Cuizhen, Long Jian. Microstructure, Thermal and Mechanical Properties of γ Phase in Mn-rich NiMnGa Alloy[J]. Rare Metal Materials and Engineering,2025,54(3):765~773.]
DOI:10.12442/j. issn.1002-185X.20230736