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首页> 外文期刊>Journal of intelligent material systems and structures >Investigating potential substrates to maximize out-of-plane deflection of piezoelectric macro-fiber composite actuators
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Investigating potential substrates to maximize out-of-plane deflection of piezoelectric macro-fiber composite actuators

机译:研究潜在的基板,以使压电大纤维复合致动器的面外偏转最大

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The work summarized here explores the application of various substrate materials to macro-fiber composites for the purpose of generating curvature. This research experimentally determines the free strain of the macro-fiber composite through its full range of actuation and then examines the resulting deflections when bonded to various substrates. In addition, loads are applied to the resulting unimorph while in a cantilever configuration and the deflections recorded. These results are used to validate finite element models, which are used to explore further design possibilities, including a bimorph configuration. The goal of this work is to determine the substrates that maximize curvature in both unloaded and loaded configurations. The results show that using thin and high modulus substrates results in the largest deflection under loading.
机译:这里总结的工作探索了各种基材材料在大纤维复合材料中的应用,以产生曲率。这项研究通过实验确定了大纤维复合材料在其整个驱动范围内的自由应变,然后研究了与各种基材粘合时产生的挠曲。此外,在悬臂结构中,载荷被施加到所得的单压电晶片上,并记录了挠度。这些结果用于验证有限元模型,该模型用于探索进一步的设计可能性,包括双压电晶片配置。这项工作的目的是确定在未加载和已加载配置中都最大化曲率的基板。结果表明,使用薄而高模量的基板会导致在负载下最大的挠度。

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