Characteristics of dislocation structure in creep deformed lamellar tial alloy within primary regime

被引:0
作者
H. S. Cho
Soo W. Nam
机构
[1] Korea Atomic Energy Research Institute,Nuclear Materials Technology Development Team
[2] Korea Advanced Institute of Science and Technology,Department of Materials Science and Engineering
[3] Jointly Appointed at the Center for the Advanced Aerospace Materials,undefined
来源
Metals and Materials | 1999年 / 5卷
关键词
intermetallics; TiAl; creep; primary regime; dislocations; activation energy;
D O I
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中图分类号
学科分类号
摘要
In this investigation, dislocations of a lamellar TiAl alloy are analyzed after creeping in the primary range at 800°C/200MPa in order to interpret their mobility It was found that the dislocation density in γ-laths decreased as the creep deformation proceeds within primary creep regime Schmid factor analysis suggests that the creep deformation in the early stage of the primary creep regime is controlled by the gliding of some of the initial dislocations which have a high enough Schmid factor As the creep deformation progressed, those dislocations with high Schmid factors slip preferentially to be annihilated at the α-γ interface For further continuous deformation, dislocation generation is required, and for this, α-phase is transformed to γ-phase in order to generate new dislocations A slow dislocation generation process by phase transformation of α-phase compared with the absorbing rate to sinks is responsible for the decreasing dislocation density as the creep strain increases
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页码:255 / 261
页数:6
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