Temperature dependence of the internal friction of polycrystalline indium

被引:0
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作者
K. V. Sapozhnikov
S. N. Golyandin
S. B. Kustov
机构
[1] Russian Academy of Sciences,Ioffe Physical
[2] Universitat de les Illes Balears,Technical Institute
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关键词
Internal Friction; Bulk Diffusion; Amplitude Dependence; Temperature Hysteresis; Microplastic Deformation;
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摘要
The temperature dependences of the internal friction and the elastic modulus of polycrystalline indium have been investigated in the temperature range 7–320 K at oscillatory loading frequencies of approximately 100 kHz. The effect of temperature on the amplitude dependence and the effect of high-amplitude loading at 7 K on the temperature and amplitude dependences of the internal friction of indium have been analyzed. It has been demonstrated that the thermocycling leads to microplastic deformation of indium due to the anisotropy of thermal expansion and the appearance of a “recrystallization” maximum in the spectrum of the amplitude-dependent internal friction. The conclusion has been drawn that the bulk diffusion of vacancies and impurities begins at temperatures of approximately 90 K and that, at lower temperatures, the diffusion occurs in the vicinity of dislocations. It has been revealed that the high-temperature internal friction background becomes noticeable after the dissolution of Cottrell atmospheres.
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页码:2501 / 2509
页数:8
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