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We examine the dislocation structure of a pseudo-α-alloy of the Ti–Al–Zr–Sn–Mo–Nb–Si system upon fatigue and cyclic crack-resistance testing under identical conditions of symmetrical tensile–compressive loading with a frequency of 100, 500, 3000, and 10,000 Hz. It is shown that the structural development of the alloy during the fatigue-damage accumulation occurs in a limited number of microvolume...
We study the dislocation structure of a Tindash;5percnt;Alndash;5percnt;V alloy upon cyclic-strength and crack-propagation resistance tests with symmetrical tensionndash;compression loading with frequencies of 100 Hz, 500 Hz, 3 kHz, and 10 kHz. The identity of the test conditions has allowed us to carry out a comparative analysis of the influence of the loading frequency on the evolution of the dislocation...
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