执行机构
传感器
材料科学
湿度
相对湿度
声学
频率响应
复合数
温度测量
模数
缩放比例
机械工程
复合材料
计算机科学
工程类
电气工程
物理
热力学
数学
几何学
人工智能
作者
Paola Brunetto,Luigi Fortuna,P. Giannone,Salvatore Graziani,Salvatore Strazzeri
标识
DOI:10.1109/tim.2009.2026613
摘要
Several models that describe the behavior of ionic polymer-metal composite (IPMC)-based actuators can be found in the literature. The response of IPMC transducers as a function of modifying quantities is a matter of interest; however, it has not been investigated. It is reasonable to argue that environmental humidity and temperature represent the main modifying parameters. In fact, humidity changes the behavior of IPMC transducers, working as both sensors and actuators, because it changes the Young modulus of the devices and, hence, their mechanical response. The influence of temperature is suspected, because polymer characteristics are often influenced by this quantity. In a previous paper, the authors proposed a dynamic model and investigated the scaling effect of geometrical parameters, giving evidence of the excellent agreement between estimations that were obtained using the proposed model and corresponding observations. In this paper, the response of IPMC actuators to both temperature and relative humidity is analyzed, giving interesting information that both integrates IPMC models and allows for a better exploitation of IPMCs.
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