首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >EXPERIMENTAL INVESTIGATION OF TEMPERATURE EFFECTS ON DIELECTRIC ELECTRO-ACTIVE POLYMER ACTUATORS AND SENSORS
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EXPERIMENTAL INVESTIGATION OF TEMPERATURE EFFECTS ON DIELECTRIC ELECTRO-ACTIVE POLYMER ACTUATORS AND SENSORS

机译:介电电聚合物致动器和传感器的温度影响的实验研究

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Dielectric electro-active polymers (DEAP) are an attractive material for use in actuator technologies due to their lightweight, high energy density, high energy efficiency, scalability and low noise features. In real world applications, DEAP actuators and sensors will be subjected to various environmental conditions such as changing temperatures. The effects of these environmental changes need to be understood in order to not only optimize performance, but also document environmental limitations and possibly protect against or compensate for them. This paper presents a systematic experimental investigation of the mechanical and electrical behavior of a silicone based DEAP actuator/sensor under varying controlled temperature conditions. Measurements are performed in a climactic chamber with controlled temperatures from -10 to +60 °C. During these tests, a particular focus was placed on the mechanical hysteresis and viscoelastic effects for actuator performance and on the changes in capacitance for sensor performance. For various constant temperatures, the DEAP was subjected to out of plane displacement loading, while the force and capacitance was measured. The effects of the viscous component of the viscoelastic DEAP material is shown to decrease with increased temperature. The capacitance of the DEAP is also shown to decrease with increased temperature. These results will effect actuator and sensor performance respectively and will be used for DEAP application design considerations and improve future modeling efforts.
机译:介电电活性聚合物(DEAP)是一种有吸引力的材料,用于执行器技术,由于它们的轻质,高能量密度,高能量效率,可扩展性和低噪声特征。在现实世界应用中,DEAP执行器和传感器将受到各种环境条件,如改变温度。需要了解这些环境变化的影响,以便不仅优化性能,还可以根据对环境限制进行记录,并可能防止或弥补它们。本文介绍了在不同控制温度条件下的硅氧烷基DEAP致动器/传感器的机械和电能的系统实验研究。测量在活性室中进行,其温度从-10- + 60℃。在这些测试期间,将特定的重点放置在机械磁滞和粘弹性效应上,用于执行器性能以及传感器性能电容的变化。对于各种恒定温度,将DEAP进行超出平面位移负载,而测量力和电容。粘弹性DEAP材料的粘性组分的影响随着温度的增加而降低。还显示DEAP的电容随着温度的增加而降低。这些结果将分别实现执行器和传感器性能,并将用于DEAP应用程序设计考虑,提高未来的建模努力。

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