Wang Jiale, Wang Yanjie, Zhu Zicai, Wang Jiahui, He Qingsong, Luo Minzhou
School of Mechanical and Electrical Engineering, Hohai University, Changzhou Campus, Changzhou 213022, China.
Jiangsu Key Laboratory of Special Robot Technology, Hohai University, Changzhou 213022, China.
Sensors (Basel). 2019 May 7;19(9):2104. doi: 10.3390/s19092104.
As an excellent transducer, ionic polymer-metal composites (IPMCs) can act as both an actuator and a sensor. During its sensing process, many factors, such as the water content, the cation type, the surface electrode, and the dimensions of the IPMC sample, have a considerable impact on the IPMC sensing performance. In this paper, the effect of dimensions focused on the Pd-Au typed IPMC samples with various thicknesses, widths, and lengths that were fabricated and their deformation sensing performances were tested and estimated using a self-made electromechanical sensing platform. In our experiments, we employed a two-sensing mode (both current and voltage) to record the signals generated by the IPMC bending. By comparison, it was found that the response trend was closer to the applied deformation curve using the voltage-sensing mode. The following conclusions were obtained. As the thickness increased, IPMC exhibited a better deformation-sensing performance. The thickness of the sample changed from 50 μm to 500 μm and corresponded to a voltage response signal from 0.3 to 1.6 mV. On the contrary, as the length increased, the sensing performance of IPMC decreased when subjected to equal bending. The width displayed a weaker effect on the sensing response. In order to obtain a stronger sensing response, a thickness increase, together with a length reduction, of the IPMC sample is a feasible way. Also, a simplified static model was proposed to successfully explain the sensing properties of IPMC with various sizes.
作为一种优秀的换能器,离子聚合物-金属复合材料(IPMC)既可以用作致动器,也可以用作传感器。在其传感过程中,许多因素,如水含量、阳离子类型、表面电极以及IPMC样品的尺寸,都会对IPMC的传感性能产生相当大的影响。本文聚焦于具有不同厚度、宽度和长度的钯-金型IPMC样品尺寸的影响,制备了这些样品,并使用自制的机电传感平台测试和评估了它们的变形传感性能。在我们的实验中,我们采用了两种传感模式(电流和电压)来记录IPMC弯曲产生的信号。通过比较发现,使用电压传感模式时,响应趋势更接近施加的变形曲线。得出了以下结论。随着厚度增加,IPMC表现出更好的变形传感性能。样品厚度从50μm变化到500μm,对应的电压响应信号从0.3mV到1.6mV。相反,随着长度增加,在同等弯曲情况下IPMC的传感性能下降。宽度对传感响应的影响较弱。为了获得更强的传感响应,增加IPMC样品的厚度并减小其长度是一种可行的方法。此外,还提出了一个简化的静态模型,成功地解释了不同尺寸IPMC的传感特性。