Sun Tao, Bao Qili, Gao Yang, Li Shujun, Li Jianping, Wang Hao
State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, China.
Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.
Materials (Basel). 2024 May 6;17(9):2165. doi: 10.3390/ma17092165.
The manufacturing process for wrought Ti alloys with the hexagonal close-packed (HCP) structure introduces a complicated microstructure with abundant intra- and inter-grain boundaries, which greatly influence performance. In the hexagonal close-packed (HCP) structure, two types of grain boundaries are commonly observed between grains with ~90° misorientation: the basal/prismatic boundary (BPB) and the coherent twin boundary (CTB). The mechanical response of the BPB and CTB under external loading was studied through molecular dynamic simulations of HCP-Ti. The results revealed that CTB undergoes transformation into BPB through the accumulation of twin boundary (TB) steps and subsequent emission of Shockley partial dislocations. When the total mismatch vector is close to the Burgers vector of a Shockley partial dislocation, BPB emits partial dislocations and further grows along the stacking faults. When a pair of CTBs are close to each other, severe boundary distortion occurs, facilitating the emission and absorption of partial dislocations, which further assists the CTB-BPB transformation. The present results thus help to explain the frequent observation of coexisting CTB and BPB in HCP alloys and further contribute to the understanding of their microstructure and property regulation.
具有六方密堆积(HCP)结构的变形钛合金的制造工艺会引入具有丰富晶内和晶界的复杂微观结构,这对性能有很大影响。在六方密堆积(HCP)结构中,通常在具有约90°取向差的晶粒之间观察到两种类型的晶界:基面/棱柱面边界(BPB)和相干孪晶界(CTB)。通过对HCP-Ti的分子动力学模拟研究了BPB和CTB在外部载荷下的力学响应。结果表明,CTB通过孪晶界(TB)台阶的积累和随后的肖克莱不全位错的发射转变为BPB。当总错配矢量接近肖克莱不全位错的柏氏矢量时,BPB发射不全位错并沿堆垛层错进一步扩展。当一对CTB彼此靠近时,会发生严重的边界畸变,促进不全位错的发射和吸收,这进一步有助于CTB向BPB的转变。因此,目前的结果有助于解释在HCP合金中经常观察到的CTB和BPB共存现象,并进一步有助于理解它们的微观结构和性能调控。