Li Yongzhen, Cao Pei, Zhang Peng, Yang Hua, Zhu Xiaofeng, Guo Ruihua
Institute for Smart Ageing, Beijing Academy of Science and Technology, Beijing 100089, China.
National Center for Occupational Safety and Health, National Health Commission of the People's Republic of China, Beijing 102308, China.
Sensors (Basel). 2023 Aug 23;23(17):7354. doi: 10.3390/s23177354.
Compared with lever-type amplification mechanisms, bridge-type flexible amplification mechanisms have advantages in terms of amplification ratio and structural compactness. Therefore, they can effectively replace the lever-type amplification mechanism in the existing hair-like sensors and realize the development of miniature hair-like sensors with high sensitivity. With that in mind, a highly sensitive hair-like sensor based on a bridge-type amplification mechanism with distributed flexibility is presented to measure the airflow rate. First, the structural composition and operating principle of the hair-like sensor are described. Then, detailed design and analysis of the hair-like sensor are carried out, focusing on the design of the hair post structure, amplification mechanism, and resonator. Furthermore, the designed hair-like sensor is processed and prepared, and some experimental studies are conducted. The experimental results demonstrate that the developed hair-like sensor can measure the airflow rate with high sensitivity up to 8.56 Hz/(m/s). This provides a new concept for the structural design of hair-like sensors and expands the application of bridge-type flexible amplification mechanisms in the field of micro/nano sensors.
与杠杆式放大机构相比,桥式柔性放大机构在放大倍数和结构紧凑性方面具有优势。因此,它们能够有效替代现有毛发状传感器中的杠杆式放大机构,并实现高灵敏度微型毛发状传感器的发展。基于此,本文提出了一种基于具有分布式柔性的桥式放大机构的高灵敏度毛发状传感器来测量气流速度。首先,描述了毛发状传感器的结构组成和工作原理。然后,对毛发状传感器进行了详细的设计与分析,重点在于毛发柱结构、放大机构和谐振器的设计。此外,对所设计的毛发状传感器进行了加工制备,并开展了一些实验研究。实验结果表明,所研制的毛发状传感器能够以高达8.56 Hz/(m/s)的高灵敏度测量气流速度。这为毛发状传感器的结构设计提供了新的概念,并拓展了桥式柔性放大机构在微纳传感器领域的应用。