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Effects of Electrical Characters on Electrical Fatigue Behavior in PLZT Ferroelectric Ceramics

机译:电气特征对PLZT铁电陶瓷中电疲劳行为的影响

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Electrical fatigue tests have been conducted on PLZT ferroelectric ceramics. It was found that the higher the applied electrical field magnitude, the faster the P_r decreases; the samples under the same electrical field magnitude but with square wave have higher fatigue rate than that of sine wave. It was observed that at low frequency of applied field (50Hz and 500Hz), the polarization decreased very quickly and dropped below 70% of the original value within 10~(6.2) switching cycles, however, when fatigue test were conducted at high frequencies of 100kHz and 300kHz, the polarization did not change significantly even after 10~9 cycles. The SEM analysis indicated that the facture mode was mainly of trans-granular for the virgin non-fatigued sample, while of inter-granular for the fatigue sample. The quantitative information on the 90° domain switching was measured in situ using X-ray diffraction. The effects of electrical characters on electrical fatigue behavior were explained according to the mechanism of electrical fatigue in PLZT ferroelectric ceramics.
机译:在PLZT铁电陶瓷上进行了电疲劳试验。发现应用的电场幅度越高,P_R降低越快;在相同的电场幅度下的样品,但具有方波具有比正弦波更高的疲劳率。据观察,在施加的场的低频率(50Hz到500Hz的),偏振很快然而下降,并在10〜(6.2)开关周期降至低于原值的70%,当疲劳试验在高频率下进行了100kHz和300kHz,即使在10〜9周期之后,极化也不会显着变化。 SEM分析表明,疲劳样品的颗粒状非疲劳样品的变质模式主要是颗粒状的。使用X射线衍射以原位测量90°域切换的定量信息。根据PLZT铁电陶瓷的电疲劳机理,解释了电特性对电疲劳行为的影响。

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