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Initiation and propagation of cleared channels in neutron-irradiated pure copper and a precipitation hardened CuCrZr alloy

机译:中子辐照纯铜和沉淀硬化CuCrZr合金中清除通道的引发和传播

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摘要

The formation of ‘cleared’ channels in neutron irradiated metals and alloys have been frequently reported for more than 40 years. So far, however, no unambiguous and conclusive evidence showing as to how and where these channels are initiated has emerged. In the following we present experimental results illustrating initiation and propagation of channels during post-irradiation deformation of neutron irradiated copper and a copper alloy. The observations strongly suggest that the channels are initiated at boundaries, large inclusions and even at previously formed cleared channels. Some of the channels have been observed to penetrate through both the twin boundaries and grain boundaries. It is argued that the high stress level reached during post-irradiation tensile tests activate dislocation sources at the sites of stress concentrations at boundaries and interfaces. The propagation of these newly generated dislocations in the matrix causes the formation of cleared channels. Implications of these results are discussed with specific reference to the origin and consequences of plastic flow localization.
机译:40多年来,经常有报道称在中子辐照的金属和合金中形成“清除”通道。但是,到目前为止,还没有任何明确和结论性的证据表明这些渠道是如何发起和在何处发起的。接下来,我们提供实验结果,说明中子辐照的铜和铜合金在辐照后变形过程中通道的引发和传播。观察结果强烈表明,通道是在边界,大夹杂物甚至是先前形成的已清理通道处开始的。已经观察到一些通道穿透了孪晶边界和晶界。有人认为,辐照后拉伸试验中达到的高应力水平激活了边界和界面处应力集中部位的位错源。这些新产生的位错在矩阵中的传播会导致形成纯净的通道。这些结果的含义将具体参考塑性流局部化的起源和后果进行讨论。

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