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Initial Increase, ''Peaking Effect'', in the Internal Friction of Copper Following Pulsed Neutron and Electron Irradiation

机译:脉冲中子和电子辐照后铜内部摩擦的初始增加“峰值效应”

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Under certain experimental conditions the internal friction in metals can first increase and following prolonged irradiation decrease. Many models have been proposed to account for this ''peaking effect''; however, in many of the cases, no effort is made to distinguish between the influence of interstitials and/or vacancies. To determine the nature of the point defect responsible for the peaking effect in high purity copper, we have performed a series of pulsed irradiations using neutrons and electrons. In all of the experiments an initial very rapid rise in the internal friction and Young's modulus was observed. These data show that a fast diffusing defect is responsible for the peaking effect: i.e. the interstitial. (ERA citation 10:034135)

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