Lee Jung Soo, Chun Young-Bum, Ko Won-Seok
Industrial Science and Technology Research Institute, Inha University, Incheon 22212, Korea.
Advanced Material Development Division, Korea Atomic Energy Research Institute, Daejeon 34057, Korea.
Materials (Basel). 2022 Jul 22;15(15):5104. doi: 10.3390/ma15155104.
A new second nearest-neighbor modified embedded-atom model-based PtTi binary interatomic potential was developed by improving the pure Pt unary descriptions of the pre-existing interatomic potential. Specifically, the interatomic potential was developed focusing on the shape memory-associated phenomena and the properties of equiatomic PtTi, which has potential applications as a high-temperature shape memory alloy. The simulations using the developed interatomic potential reproduced the physical properties of the equiatomic PtTi and various intermetallic compound/alloy compositions and structures. Large-scale molecular dynamic simulations of single crystalline and nanocrystalline configurations were performed to examine the temperature- and stress-induced martensitic transformations. The results show good consistency with the experiments and demonstrate the reversible phase transformation of PtTi SMA between the cubic B2 austenite and the orthorhombic B19 martensite phases. In addition, the importance of anisotropy, constraint and the orientation of grains on the transformation temperature, mechanical response, and microstructure of SMA are presented.
通过改进现有原子间势中纯铂的一元描述,开发了一种基于新的第二近邻修正嵌入原子模型的铂钛二元原子间势。具体而言,该原子间势的开发聚焦于与形状记忆相关的现象以及等原子比铂钛的性能,等原子比铂钛作为一种高温形状记忆合金具有潜在应用价值。使用所开发的原子间势进行的模拟再现了等原子比铂钛以及各种金属间化合物/合金成分和结构的物理性质。进行了单晶和纳米晶构型的大规模分子动力学模拟,以研究温度和应力诱导的马氏体相变。结果与实验显示出良好的一致性,并证明了铂钛形状记忆合金在立方B2奥氏体和正交B19马氏体相之间的可逆相变。此外,还阐述了各向异性、约束以及晶粒取向对形状记忆合金的转变温度、力学响应和微观结构的重要性。