基于碳纳米管嵌入弹性体光强变化的应变传感器

Jimin Gu, D. Kwon, Junseong Ahn, I. Park
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引用次数: 1

摘要

在本研究中,开发了用于光学透射率变化基应变传感器的3D打印封装。基于光透过率的应变传感器是由光源、光探测器和透过率随外部应变变化的功能薄膜组成。功能薄膜是碳纳米管嵌入弹性体,通过应变改变其可见光透过率。为了调整人体运动检测上的光学应变传感器,我们将光源和探测器放置在传感器封装中。为了解决这一问题,我们采用3D打印聚乳酸(PLA)封装制造用于手指弯曲检测的环形应变传感器。
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Strain Sensor Based on Optical Intensity Change Through the Carbon Nanotube Embedded Elastomer
In this research, the 3D printed package for optical transmittance change base strain sensor was developed. Optical transmittance based strain sensor is consisted by light source, light detector and functional film which transmittance changed by the external strain. Functional film is carbon nanotube embedded elastomer and it changes its visible light transmittance by the strain. To adjust the optical strain sensor on the human motion detection, we positioned light source and detector in the sensor package. To achieve this problem, we adopted the 3D printed polylactic acid (PLA) package for fabricating ring type strain sensor for finger bending detection.
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