Zhang Yazhou, Li Xinggang, Fu Jiangfan, Liu Linpeng, Zhang Changchao, Duan Ji'an
State Key Laboratory of Precision Manufacturing for Extreme Service Performance, College of Mechanical and Electrical Engineering, Central South University, Changsha 410083, China.
China Railway 14th Bureau Group Co., Ltd., Jinan 250101, China.
Sensors (Basel). 2024 Aug 19;24(16):5349. doi: 10.3390/s24165349.
Vibration sensors are widely used in many fields like industry, agriculture, military, medicine, environment, etc. However, due to the speedy upgrading, most sensors composed of rigid or even toxic materials cause pollution to the environment and give rise to an increased amount of electronic waste. To meet the requirement of green electronics, biodegradable materials are advocated to be used to develop vibration sensors. Herein, a vibration sensor is reported based on a strategy of pencil-drawing graphite on paper. Specifically, a repeated pencil-drawing process is carried out on paper with a zigzag-shaped framework and parallel microgrooves, to form a graphite coating, thus serving as a functional conductive layer for electromechanical signal conversion. To enhance the sensor's sensitivity to vibration, a mass is loaded in the center of the paper, so that higher oscillation amplitude could happen under vibrational excitation. In so doing, the paper-based sensor can respond to vibrations with a wide frequency range from 5 Hz to 1 kHz, and vibrations with a maximum acceleration of 10 g. The results demonstrate that the sensor can not only be utilized for monitoring vibrations generated by the knuckle-knocking of plastic plates or objects falling down but also can be used to detect vibration in areas such as the shield cut head to assess the working conditions of machinery. The paper-based MEMS vibration sensor exhibits merits like easy fabrication, low cost, and being environmentally friendly, which indicates its great application potential in vibration monitoring fields.
振动传感器广泛应用于工业、农业、军事、医学、环境等诸多领域。然而,由于快速升级,大多数由刚性甚至有毒材料组成的传感器会对环境造成污染,并产生越来越多的电子垃圾。为满足绿色电子的要求,提倡使用可生物降解材料来开发振动传感器。在此,报道了一种基于在纸上铅笔绘制石墨策略的振动传感器。具体而言,在具有锯齿形框架和平行微槽的纸上进行重复的铅笔绘制过程,以形成石墨涂层,从而用作机电信号转换的功能导电层。为提高传感器对振动的灵敏度,在纸的中心加载一个质量块,以便在振动激励下能产生更高的振荡幅度。这样,基于纸的传感器能够响应频率范围从5Hz到1kHz、最大加速度为10g的振动。结果表明,该传感器不仅可用于监测塑料板敲击关节或物体掉落产生的振动,还可用于检测盾构刀盘等区域的振动以评估机械的工作状况。基于纸的微机电系统振动传感器具有易于制造、成本低和环保等优点,这表明其在振动监测领域具有巨大的应用潜力。