航空学报 > 1994, Vol. 15 Issue (6): 691-695

TC11钛合金在疲劳-蠕变交互作用下的形变特征及位错结构

周煜1, 韵虹2, 周义刚2   

  1. 1. 浙江大学贮氢研究室,杭州,310027;2. 西北工业大学材料系,西安,710072
  • 收稿日期:1991-11-05 修回日期:1993-04-09 出版日期:1994-06-25 发布日期:1994-06-25

CYCLIC DEFORMATION AND DISLOCATION OF TC11 TITANIUM ALLOY UNDER FATIGUE-CREEP INTERACTION

Zhou Yu1, Pang Yunhong2, Zhou Yigang2   

  1. 1. Research Lab.of Hydrogen Storage,Zhejiang University,Hangzhou,310027;2. Department of Material Science,Northwestern Polytechnical University,Xi’an,710072
  • Received:1991-11-05 Revised:1993-04-09 Online:1994-06-25 Published:1994-06-25

摘要: 研究了经常规,近β和β锻造工艺所获得的具有等轴、双态和网篮3种显微组织的TC11钛合金在疲劳-蠕变交互作用下的形变特性及位错结构。发现不同显微组织或同一组织内部的初生α和条状α具有的层错能不同是形成不同位错亚结构的根本原因。

关键词: 疲劳试验-蠕变分析, 循环-变形, 位错

Abstract: The characteristics of cyclc deformation and dislocation of TC11 titanium with e-quiaxed,duplex and basketweaver microstructures are studied. It is found that different mi-crostructures have different dislocations and the curves of 1g ( 1/ε)-N of equiaxed and bas-ketweaver microstructures have a zigzag shape. Analyses show that the nature of microstructures’effect on the characteristics of deformation and dislocation of TC11 titanium al-loy under fatigue-creep interaction is that different microstructures or primary and platelet α phases in the same microstructure have different fault energy; the higher the fault energy,the easier the dislocation’s recovery, and that dislocation recovery and pile-up again at the same pro-cess make the curves of lg(1/ε)-N become zigzag.

Key words: fatigue tests-creep analysis, cycles-deformation, dislocation (materials)

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