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Fatigue life characterization for piezoelectric macrofiber composites

机译:压电大纤维复合材料的疲劳寿命表征

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摘要

In an effort to aid the investigation into lightweight and reliable materials for actuator design, a study was developed to characterize the temperature-dependent lifetime performance of a piezoelectric macrofiber composite (MFC). MFCs are thin rectangular patches of polyimide film, epoxy and a single layer of rectangular lead zirconium titanate (PZT) fibers. In this study, the useful life of the MFC is characterized to determine the effect of temperature on the performance of the composite as it is fatigued by cyclic piezoelectric excitation. The test specimen consists of the MFC laminated to a cantilevered stainless steel beam. Beam strain and tip displacement measurements are used as a basis for determining the performance of the MFC as it is cyclically actuated under various operating temperatures. The temperature of the beam laminate is held constant and then cycled to failure, or 250 million cycles, in order to determine the useful life of the MFC over a temperature range from 15 to 145°C. The results of the experiments show a strong temperature dependence of the operational life for the MFC. Damage inside the composite was identified through insitu visual inspection and during post-test microstructural observation; however, no degradation in operational performance was identified as it was cyclically actuated up to the point of failure, regardless of temperature or actuation cycle number.
机译:为了帮助研究用于执行器设计的轻便可靠的材料,开展了一项研究,以表征压电大纤维复合材料(MFC)的温度相关寿命性能。 MFC是聚酰亚胺薄膜,环氧树脂和单层矩形钛酸锆铅(PZT)纤维的矩形薄片。在这项研究中,MFC的使用寿命被确定为确定温度对复合材料性能的影响,因为复合材料会因循环压电激励而疲劳。测试样品由层压在悬臂不锈钢梁上的MFC组成。光束应变和尖端位移测量值被用作确定MFC在各种工作温度下循环驱动时性能的基础。将梁层压板的温度保持恒定,然后循环失效,即2.5亿个循环,以便确定MFC在15至145°C的温度范围内的使用寿命。实验结果表明,MFC的使用寿命与温度有很大关系。复合材料内部的损坏通过现场目视检查和测试后的微观结构观察来确定;但是,无论温度或驱动循环次数如何,直到周期性地驱动直至故障点,都未发现操作性能下降。

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