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Influence of cyclic mechanical and electrical load on the properties of PZT(53/47) films on metallic substrates

机译:循环机械和电负载对金属基底上PZT(53/47)薄膜性能的影响

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We have investigated the mechanical and electrical fatigue of sol-gel derived PZT(53/47) thin films on metallic substrates: Up to about 5 /spl times/ 10/sup 5/ electrical switching cycles, no significant changes were found. Above this number the coercive field increased drastically and the maximum induced strain as well as the maximum and remanent polarization decreased. For the mechanical cycling, a two point bending method was used to apply transversal stress to the samples. A mechanical cyclic load corresponding to a maximum strain of /spl plusmn/0,15% was applied to the films. During cycling the piezoelectric coefficient d/sub 31/ remained constant up to about 10/sup 5/ cycles. For a higher number of cycles, a strong decrease was observed. The decrease of the d/sub 31/-values was not caused by a depolarization of the samples. Different mechanisms, which may be responsible for the deterioration of the properties during both, electrical and mechanical cycling are discussed.
机译:我们研究了金属基质上溶胶-凝胶衍生的PZT(53/47)薄膜的机械和电疲劳:高达约5 / spl次/ 10 / sup 5 /电气开关循环,未发现明显变化。超过此数字,矫顽场急剧增加,最大感应应变以及最大和剩余极化强度降低。对于机械循环,使用两点弯曲法向样品施加横向应力。将对应于/ spl plusmn / 0.15%的最大应变的机械循环载荷施加到膜上。在循环期间,压电系数d / sub 31 /保持恒定直至约10 / sup 5 /个循环。对于更高数量的循环,观察到强烈的下降。 d / sub 31 /值的降低不是由样品的去极化引起的。讨论了可能导致电气和机械循环过程中性能下降的不同机理。

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