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Self-Sensing and Actuation of CNF and Ni Nanowire/Polymer Composites using Electro-Micromechanical Test

机译:CNF和Ni纳米线/聚合物复合材料的自感应和致动,使用电微型机械测试

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Self-sensing and actuation were investigated for CNF and Ni nanowire/epoxy and silicone composites. Electro-micromechanical techniques can be used for self sensing for loading, temperature. CNF/epoxy composites with smaller aspect ratio showed higher apparent modulus due to high volume content in case of shorter aspect ratio. Apparent modulus and electrical resistivity change were evaluated as functions of different carbon fiber types. Interfacial properties of CNF/epoxy with different aspect ratios were obtained indirectly. Using Ni nanowire/silicone composites with different content, load sensing response of electrical contact resistivity was investigated under tensile and compression condition. The mechanical properties of Ni nanowire with different type and content/epoxy composites were indirectly measured apparent modulus using uniformed cyclic loading and electro-pullout test. Ni nanowire /epoxy composites showed temperature sensing within limited ranges, 20 vol% reinforcement. CNF-PVDF and Ni-silicone actuator were made successfully. Electrochemical actuator of CNF-PVDF was responded in electrolyte solution. Magnetic actuator of Ni nanowire-silicone composites was monitored under electro-magnetic field. CNF-Ni nanowire-silicone actuator having meaningful merits can be expected to be new smart structural materials at a various applications. Nanocomposites using CNF and Ni nanowire can be applicable practically for multi-functional applications nondestructively.
机译:研究了用于CNF和Ni纳米线/环氧和硅氧烷复合材料的自感应和致动。电微型机械技术可用于加载,温度的自感。具有较小纵横比的CNF /环氧复合材料由于较短的纵横比而导致高体积含量的表观模量较高。表观模量和电阻率变化被评价为不同碳纤维类型的功能。间接地获得CNF /环氧树脂的界面性质。间接地获得不同纵横比。使用具有不同含量的Ni纳米线/硅氧烷复合材料,在拉伸和压缩条件下研究了电接触电阻率的负载感应响应。使用均匀的循环载荷和电拉出测试间接测量具有不同类型和含量/环氧复合材料的Ni纳米线的机械性能。 Ni纳米线/环氧复合材料在有限范围内显示温度感测,20体积%的增强。 CNF-PVDF和Ni-Silicone执行器成功进行。 CNF-PVDF的电化学致动器以电解质溶液响应。在电磁场下监测Ni纳米线 - 硅氧烷复合材料的磁致动器。 CNF-NI纳米线 - 硅胶致动器具有有意义的优点,可以预期在各种应用中成为新的智能结构材料。使用CNF和Ni纳米线的纳米复合材料实际上可以针对多功能施用无损。

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