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The 〈1 1 0〉 direction exhibited a strong electrical fatigue behavior due to mechanical degradation.
The microstructural origins of the effect of frequency on the electrical fatigue behavior of pre-cracked soft ferroelectric Pb(Zr0.48Ti0.52 O3 is investigated by means of a high spatial resolution hard X-ray synchrotron source.
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Moreover, surface roughness determines mechanical properties such as wear, corrosion, lubrication, electrical conductivity and fatigue behavior.
Doping of Nb5+ causes conductivity [26] and generates metallic behavior in insulators [27], increases electrical resistivity and enhances hysteresis squareness and fatigue behavior [28, 29], decreases the dielectric constant maximum and Curie point [30], and so on.
Table 10 Fatigue behavior of UHPC.
The controlling factor for the fatigue behavior of the beam is the fatigue behavior of the corroded steel bars.
A parametric analysis demonstrated that the controlling factor for the fatigue behavior of the beams is the fatigue behavior of the corroded steel bars.
The crystalline structures therefore were not corroded, showing no fatigue behavior.
The long-term service life is related to the fatigue behavior.
Furthermore, the fatigue behavior shows substantial differences when tested in either dry or wet/conditions.
The size effect was associated to the fatigue behavior as well.
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