Faculty of Physics, Warsaw University of Technology, Koszykowa 75, 00-665 Warsaw, Poland.
Faculty of Electronics and Information Technology, Institute of Electronic Systems, Warsaw University of Technology, Nowowiejska 15/19, 00-665 Warsaw, Poland.
Sensors (Basel). 2022 Apr 28;22(9):3381. doi: 10.3390/s22093381.
Compliant mechanisms have gained an increasing interest in recent years, especially in relation to the possibility of using 3D printers for their production. These mechanisms typically find applications in precise positioning systems of building robotic devices or in sensing where they can be used to characterize displacement. Three-dimensional printing with PLA materials allows fiber optic-based sensors to be incorporated into the structures of properly designed compliant mechanisms. Therefore, in this paper, an innovative technology is described, of a Fiber Bragg Grating (FBG) sensor embedded in a measuring head which was then inserted into a specially designed mechanical transmission element. The shape of this element is based on clippers that allow to freely modify the amplification of displacement amplitude so that the FBG sensor always works in the most optimal regime without any need to modify its external dimensions. Flexural sensitivity of the replaceable measuring head equal to 1.26 (mε/mm) can be adapted to the needs of the flexure design.
近年来,顺应机制越来越受到关注,特别是在利用 3D 打印机生产顺应机制方面。这些机制通常应用于构建机器人设备的精密定位系统或用于感测,在这些应用中可以用于表征位移。使用 PLA 材料进行三维打印可以将光纤传感器集成到设计合理的顺应机制的结构中。因此,本文描述了一种创新技术,即在测量头中嵌入光纤布拉格光栅(FBG)传感器,然后将其插入到专门设计的机械传动元件中。该元件的形状基于剪切器,可自由修改位移幅值的放大率,从而使 FBG 传感器始终在最优化的工作状态下运行,而无需修改其外部尺寸。可更换测量头的弯曲灵敏度等于 1.26(mε/mm),可根据弯曲设计的需求进行调整。