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通道裂纹设计的悬浮传感膜作为一种具有高灵敏度和动态范围的全柔性振动传感器。

Channel-Crack-Designed Suspended Sensing Membrane as a Fully Flexible Vibration Sensor with High Sensitivity and Dynamic Range.

作者信息

Chen Xiaoliang, Zeng Qian, Shao Jinyou, Li Sheng, Li Xiangming, Tian Hongmiao, Liu Guifang, Nie Bangbang, Luo Yongsong

机构信息

State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jul 28;13(29):34637-34647. doi: 10.1021/acsami.1c09963. Epub 2021 Jul 16.

Abstract

Vibration sensors are essential for signal acquisition, motion measuring, and structural health evaluations in civil and industrial applications. However, the mechanical brittleness and complicated installation process of micro-electromechanical system vibration sensors block their applications in wearable devices and human-machine interaction. The development of flexible vibration sensors satisfying the requirements of good flexibility, high sensitivity, and the ability to attach conformably on curved critical components is highly demanded but still remains a challenge. Here, we demonstrate a highly sensitive and fully flexible vibration sensor with a channel-crack-designed suspended sensing membrane for high dynamic vibration and acceleration monitoring. The flexible sensor is designed as a suspended vibration membrane structure by bonding a channel-crack-sensing membrane on a cavity substrate, of which the suspended sensing membrane can freely vibrate out of plane under external vibration. By inducing the cracks to be generated in the embedded multiwalled carbon nanotube channels and fully cracked across the conducting routes, the suspended vibration membrane shows high sensitivity, good reproducibility, and robust sensing stability. The resultant vibration sensor demonstrates an ultrawide frequency vibration response range from 0.1 to 20,000 Hz and exhibits the ability to respond to acceleration vibration with a broad response of 0.24-100 m/s. The high sensitivity, wide bandwidth, and fully flexible format of the vibration sensor enable it to be directly attached on human bodies and curvilinear surfaces to conduct in situ vibration sensing, which was demonstrated by motion detection, voice identification, and the vibration monitoring of mechanical equipment.

摘要

振动传感器对于土木和工业应用中的信号采集、运动测量以及结构健康评估至关重要。然而,微机电系统振动传感器的机械脆性和复杂的安装过程阻碍了它们在可穿戴设备和人机交互中的应用。开发出满足良好柔韧性、高灵敏度以及能够贴合在弯曲关键部件上这些要求的柔性振动传感器的需求迫切,但仍然是一项挑战。在此,我们展示了一种高度灵敏且完全柔性的振动传感器,其具有用于高动态振动和加速度监测的通道裂纹设计的悬浮传感膜。该柔性传感器通过将通道裂纹传感膜粘结在腔体基板上设计为悬浮振动膜结构,其中悬浮传感膜在外部振动下可自由地在平面外振动。通过诱导在嵌入式多壁碳纳米管通道中产生裂纹并使其完全贯穿导电路径,悬浮振动膜展现出高灵敏度、良好的可重复性和稳健的传感稳定性。所得的振动传感器展示了从0.1到20,000 Hz的超宽频率振动响应范围,并表现出对加速度振动的响应能力,响应范围为0.24 - 100 m/s。该振动传感器的高灵敏度、宽带宽和完全柔性的形式使其能够直接附着在人体和曲面上进行原位振动传感,这通过运动检测、语音识别以及机械设备的振动监测得到了证明。

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