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ADVANCED FERROELECTRIC MFC ACTUATORS: THE EFFECT OF FERRO- ELASTIC DOMAIN SWITCHING

机译:先进的铁电MFC执行器:铁弹性域切换的影响

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Macro Fiber Composite (MFC) actuators, which are commonly integrated in modern smart structures, may be subjected to high levels of mechanical loads. Opposed to the electrical actuation, these loads are not always controlled or anticipated by the user. Thus, they may yield a response that is beyond the linear range due to a stress induced ferro-elastic domain switching. In this paper, the phenomenon of domain switching and. mechanical depolarization in the MFC actuator and the resulting degradation of the actuation capabilities are investigated. As an illustrative numerical example, the response of MFC layers in an active beam element is analyzed. Emphasis is placed on the location of the fiber segment along the active beam with a distinction between the compressed and the tensed layers. The results highlight the range of effects associated with the potential nonlinear response of the active structure under high levels of mechanical load.
机译:通常集成在现代智能结构中的宏纤维复合材料(MFC)执行器可能会承受高水平的机械负载。与电驱动相反,这些负载并非总是由用户控制或预期的。因此,由于应力引起的铁弹性域切换,它们可能会产生超出线性范围的响应。本文探讨域切换的现象。研究了MFC执行器中的机械去极化以及由此导致的驱动能力下降。作为说明性的数值示例,分析了有源梁元件中MFC层的响应。重点放在光纤段沿有源光束的位置,并区分压缩层和拉紧层。结果表明,在高水平的机械载荷下,与活动结构的潜在非线性响应相关的影响范围。

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