Khalid Muhammad Waqas, Ahmed Rajib, Yetisen Ali K, Butt Haider
Nanotechnology Laboratory, School of Engineering, University of Birmingham, Birmingham B15 2TT, UK. Email:
School of Chemical Engineering, University of Birmingham, Birmingham B15 2TT, UK.
RSC Adv. 2018 Feb 13;8(14):7588-7598. doi: 10.1039/c7ra13284k. Epub 2018 Feb 16.
Optical sensors for detecting temperature and strain play a crucial role in the analysis of environmental conditions and real-time remote sensing. However, the development of a single optical device that can sense temperature and strain simultaneously remains a challenge. Here, a flexible corner cube retroreflector (CCR) array based on passive dual optical sensing (temperature and strain) is demonstrated. A mechanical embossing process was utilised to replicate a three-dimensional (3D) CCR array in a soft flexible polymer film. The fabricated flexible CCR array samples were experimentally characterised through reflection measurements followed by computational modelling. As fabricated samples were illuminated with a monochromatic laser beam (635, 532, and 450 nm), a triangular shape reflection was obtained at the far-field. The fabricated flexible CCR array samples tuned retroreflected light based on external stimuli (temperature and strain as an applied force). For strain and temperature sensing, an applied force and temperature, in the form of weight suspension, and heat flow was applied to alter the replicated CCR surface structure, which in turn changed its optical response. Directional reflection from the heated flexible CCR array surface was also measured with tilt angle variation (max. up to 10°). Soft polymer CCRs may have potential in remote sensing applications, including measuring the temperature in space and in nuclear power stations.
用于检测温度和应变的光学传感器在环境条件分析和实时遥感中起着至关重要的作用。然而,开发一种能够同时感知温度和应变的单一光学器件仍然是一个挑战。在此,展示了一种基于被动双光学传感(温度和应变)的柔性角隅棱镜反射器(CCR)阵列。利用机械压花工艺在柔软的柔性聚合物薄膜中复制三维(3D)CCR阵列。通过反射测量和计算建模对制备的柔性CCR阵列样品进行了实验表征。当用单色激光束(635、532和450nm)照射制备的样品时,在远场获得了三角形反射。制备的柔性CCR阵列样品根据外部刺激(温度和作为施加力的应变)调节回反射光。对于应变和温度传感,以重量悬挂和热流的形式施加力和温度,以改变复制的CCR表面结构,进而改变其光学响应。还测量了加热的柔性CCR阵列表面随倾斜角度变化(最大可达10°)的定向反射。柔软的聚合物CCR在遥感应用中可能具有潜力,包括测量太空和核电站中的温度。