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The maximum strain increased with increasing loading frequency and increasing loading magnitude (loading strain).
The tests were conducted under 0.005 Hz loading frequency.
This load was sinusoidal with stress ratio 0.1, and the loading frequency was 3 Hz.
Also, the effects of loading frequency and resonance phenomena are investigated in this paper numerically.
The sinusoidal loading frequency of 2 Hz with the stress ratio of 0.1 was used.
The influences of the total membrane number and the loading frequency were also examined.
This critical loading frequency was successfully modeled based on the crack growth mechanisms identified.
These factors include fiber, temperature change direction, loading frequency, loading waveform, moisture and stress level, etc.
In metal metal bearings moments were reduced by increasing loading frequency.
The proposed methodology accurately describes the nanocomposite electrical behaviour with its volume fraction and loading frequency.
Measurements were also made to observe the effects of test temperature and loading frequency.
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