Ching Wai-Yim, San Saro, Zhou Caizhi, Sakidja Ridwan
Department of Physics and Astronomy, University of Missouri Kansas City, Kansas City, MO 64110, USA.
Department of Mechanical Engineering, University of South Carolina, Columbia, SC 29208, USA.
Materials (Basel). 2023 Jan 16;16(2):887. doi: 10.3390/ma16020887.
The electronic structure, interatomic bonding, and mechanical properties of two supercell models of Ni-based superalloys are calculated using ab initio density functional theory methods. The alloys, Haynes282 and Inconel740, are face-centered cubic lattices with 864 atoms and eleven elements. These multi-component alloys have very complex electronic structure, bonding and partial-charge distributions depending on the composition and strength of the local bonding environment. We employ the novel concept of total bond order density (TBOD) and its partial components (PBOD) to ascertain the internal cohesion that controls the intricate balance between the propensity of metallic bonding between Ni, Cr and Co, and the strong bonds with C and Al. We find Inconel740 has slightly stronger mechanical properties than Haynes282. Both Inconel740 and Haynes282 show ductile natures based on Poisson's ratio. Poisson's ratio shows marginal correlation with the TBOD. Comparison with more conventional high entropy alloys with equal components are discussed.
采用从头算密度泛函理论方法计算了镍基高温合金两种超晶胞模型的电子结构、原子间键合和力学性能。这些合金,即Haynes282和Inconel740,是具有864个原子和11种元素的面心立方晶格。这些多组分合金具有非常复杂的电子结构、键合和部分电荷分布,这取决于局部键合环境的组成和强度。我们采用总键序密度(TBOD)及其部分分量(PBOD)的新概念来确定内部内聚力,该内聚力控制着镍、铬和钴之间金属键倾向与与碳和铝的强键之间的复杂平衡。我们发现Inconel740的力学性能略强于Haynes282。基于泊松比,Inconel740和Haynes282都表现出韧性。泊松比与TBOD的相关性很小。文中还讨论了与具有相同组分的更传统的高熵合金的比较。