s) interior under pressure, because the thick αs plate is softer than residual beta (βr) lath in LM. Dislocation moves and accumulates at the αs/βr interphase during deformation, which induces that cracks initiate at and propagate along the αs/βr interphase during the process of fracture. However, beta transaction microstructure (βtrans) is greatly harder than equiaxed primary α (αp) in BM, moreover, αpwith large size could support longer slip length. Both of above reasons leads to a large number of multi-direction slips initiate at αp during deformation of BM. The intersection of slip lines in different directions promotes stress concentration at αpinner, and some dislocations accumulate at the αp/βtrans interface to produce stress concentration. These behavior results in the initiation of microcracks within αp and the αp/βtrans interface, and propagation along the weak interface of αp/βtrans, or the aggregation site of αp."/>
1.College of Materials and Metallurgy,Guizhou University;2.Northwest Institute for Nonferrous Metal Research,Xi’an
[Huang Chaowen, Tan Chansheng, Xin Shewei, Zhao Yongqing, Wan Mingpan. In-situ SEM observation to deformation and fracture behavior of Ti-55531 alloy[J]. Rare Metal Materials and Engineering,2020,49(1):331~336.]
DOI:10.12442/j. issn.1002-185X.20181262