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Ferroelectric fatigue is much fatal for the electric apparatus based on the switchable polarization, such as non-volatile random access memories (NVFRAM).
铁电材料的疲劳特性是影响依赖可反转极化工作的电子器件性能的关键,例如非易失性铁电存储器。
The electric fatigue and failure have significantly impeded the commercial applications of ferroelectric ceramics in micro-actuator and micro-performer devices.
电疲劳失效是阻碍铁电陶瓷材料应用于微驱动和微执行器件的主要原因。
Aimed at the fatigue failure of electric bike shock absorber, a probabilistic estimation method is put forward.
针对电动车后避震的疲劳失效损坏,提出疲劳损坏概率估计。
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