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A statistical TEM investigation of dislocation channeling mechanism in neutron irradiated zirconium alloys

机译:中子辐照锆合金中位错沟道机理的统计TEM研究

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摘要

Plastic deformation in irradiated zirconium alloys occurs in a very heterogeneous manner at the grain scale by the clearing up of radiation-induced prismatic loops by gliding dislocations and the channeling of these dislocations inside narrow bands of the grain. A statistical TEM investigation of this mechanism has been performed on neutron irradiated recrystallized Zr alloys tested at 350 degreesC. Due to the strong anisotropy of plastic deformation, different loading conditions have been investigated. It is shown that for transverse tensile tests and closed end burst tests, only basal channels are observed, whereas for axial tensile tests, prismatic and pyramidal channels are observed. This phenomenon can be understood in terms of texture and interactions between dislocations and irradiation induced loops. From Schmid factor calculations, we have also been able to prove that irradiation leads to a higher increase of critical resolved shear stresses for prismatic and pyramidal slip systems than for basal slip system. (C) 2004 Elsevier B.V. All rights reserved.
机译:辐照锆合金的塑性变形在晶粒尺度上以非常不均匀的方式发生,这是通过滑移位错和这些位错在晶粒窄带内的通道化而清除了辐射诱发的棱形环而实现的。对在350℃下测试的中子辐照重结晶Zr合金进行了统计TEM研究。由于塑性变形的各向异性强,已研究了不同的加载条件。结果表明,对于横向拉伸试验和封闭式端部爆破试验,仅观察到基底通道,而对于轴向拉伸试验,则观察到棱柱形和金字塔形通道。可以根据位错和辐照引起的回圈之间的相互关系和纹理来理解这种现象。通过施密德因子计算,我们还能够证明,辐照导致棱柱形和金字塔形滑移系统的临界分辨剪切应力的增加比基滑移系统更大。 (C)2004 Elsevier B.V.保留所有权利。

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