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An actuator–sensor hybrid device made of carbon-based polymer composite for self-sensing systems

机译:用于自感应系统的碳基聚合物复合材料制成的致动器传感器混合装置

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This paper presents the concept, design, and characterization of a new type of integrated device with a hybrid structure. The proposed device is hybridized with an electrothermal actuator and a bending sensor with temperature-compensating ability, which can serve as a self-sensing system. The sensor displays a parallel change in the electrical resistance upon the temperature alteration, resulting enables a cancellation of cross talk. The actuator exhibits a visible maximum strain of 1.2% at an electric power intensity of around 1.05 mW/mmsup3/sup, and the bending sensor can display the curvature without the need for an external monitoring system such as a laser displacement meter. The traceability of the motion is represented well while power is supplied, but a slight delay occurs when the power is switched off, this being due to the difference in thermal conductivity between the composite of the actuator and the sensor. This proposed hybrid device realizes a simple self-sensing operation using a simple power supply and monitoring reading lines. It offers ease of fabrication and promising practical applications in remote sensing/operating devices.
机译:本文介绍了具有混合结构的新型集成设备的概念,设计和表征。该提出的装置用电热致动器和具有温度补偿能力的弯曲传感器杂交,其可以用作自感应系统。传感器在温度变化时显示电阻的并联变化,导致串扰取消。致动器在1.05mW / mm 3 的电力强度下显示出1.2%的可见最大应变,并且弯曲传感器可以显示曲率,而无需外部监测系统,例如激光位移仪表。当供电时,运动的可追溯性表示良好,但是当电力关闭时发生轻微的延迟,这是由于致动器和传感器的复合物之间的导热率的差异。该提出的混合动力装置使用简单的电源和监控读取线实现简单的自感应操作。它在遥感/操作设备中提供易于制造和有希望的实际应用。

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