Phase transformation induced transitional twin boundary in body-centered cubic metals

ACTA MATERIALIA(2023)

引用 9|浏览19
暂无评分
摘要
Body-centred cubic (BCC) metals possess unstable intrinsic stacking fault and high resistance for deformation twinning, which often induce complex twinning dynamics that cannot be fully understood in the frame of classic twinning theory. Here, we reveal the intrinsic coupling between phase transformation and deformation twinning in pure niobium (Nb) subjected to extreme deformations. Shuffle-mediated polymorphic transformations between BCC (beta), omega (omega), orthorhombic martensite (alpha") phases induce three different twinning paths, without the involvement of classic twinning shear. Residual interfacial phases (mostly omega phases) on TBs can help to reduce the transformation barrier and act as important precursors for the discrete twin thickening, well inteperating several uncommon twinning dynamics experimentally-observed in BCC metals and alloys in literatures. These findings not only advance our understanding of the origin of uncommon twinning behaviors in a broad class of BCC metals and alloys, but also benefit the development of high performance BCC materials.
更多
查看译文
关键词
Body-centered cubic,Niobium,Deformation twinning,? Phase transformation,?? Martensitic transformation,Transitional twin boundary
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要