材料科学技术(英文版)2021,Vol.72Issue(13) :114-121.

Structural characterization of the { 11-22 } twin boundary and the corresponding stress accommodation mechanisms in pure titanium

Bingqiang Wei Song Ni Yong Liu Min Song
材料科学技术(英文版)2021,Vol.72Issue(13) :114-121.

Structural characterization of the { 11-22 } twin boundary and the corresponding stress accommodation mechanisms in pure titanium

Bingqiang Wei 1Song Ni 1Yong Liu 1Min Song1
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作者信息

  • 1. State Key Laboratory of Powder Metallurgy, Central South University, Changsha 410083, China
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Abstract

{11-22} compression twin plays an important role in accommodating deformation along the c axis of HCP metals.However,the studies on the interface structure of {11-22} twin boundary (TB),especially the twin tip,and the corresponding local stress release mechanism are still limited.This work studied the interface characters of {11-2 2} TB of a deformed pure titanium by transmission electron microscope.The { 11-2 2} TB presented serrated character,consisting of coherent twin boundary (CTB) and (0002)T // (11-2-2)M or (11-2-2)T // (0002)M steps,and the twin tip was fully composed of the basal-pyramidal (BPy) and pyramidal-basal (PyB) steps.The twin tip presents asymmetric morphology and the step height at the twin tip is much larger than that away from the twin tip.Two types of local stress accommodation mechanisms were observed: zonal dislocation emission and hexagonal close packed structure to face-centered cubic structure transformation.The zonal dislocation was produced by the dissociation of the 1/3 < 11-2-3 ><c + a> dislocation that was nucleated at the twin tip and the phase transformation was introduced by emission of Shockley partial dislocations from the {11-2 2} twin boundary.

Key words

{11-22}/twin/Twin boundary/Twinning dislocation/Stress accommodation/Titanium

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基金项目

This work is supported by the National Natural Science Foundation of China(51828102)

Project of Innovation-driven Plan in Central South University(2019CX026)

Advanced Research Center of Central South University is sincerely appreciated for TEM technical support()

出版年

2021
材料科学技术(英文版)
中国金属学会 中国材料研究学会 中国科学院金属研究所

材料科学技术(英文版)

CSTPCDCSCDSCI
影响因子:0.657
ISSN:1005-0302
参考文献量48
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