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基于胶带的用于应变测量的适形全息光子油墨传感器。

Conformable Holographic Photonic Ink Sensors Based on Adhesive Tapes for Strain Measurements.

作者信息

AlQattan Bader, Benton David, Yetisen Ali K, Butt Haider

机构信息

School of Engineering , University of Birmingham , Birmingham B15 2TT , U.K.

Aston Institute of Photonics Technologies , Aston University , Birmingham B4 7ET , U.K.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 14;11(32):29147-29157. doi: 10.1021/acsami.9b08545. Epub 2019 Jul 31.

Abstract

Buildings, bridges, and aircrafts are frequently exposed to fluctuation loads, which could start with a fine crack that instantly leads to unpredictable structure failures. The stationary strain sensors can be utilized, but they are costly and only detect limited deformation forms and sizes. Here, we fabricated photonic strain sensors on adhesive tapes, which can provide real-time monitoring of irregular surfaces. Holographic interference patterning was used to produce nonlinear curved nanostructures of one dimensional (1D) (900 nm × 880 nm) and two dimensional (2D) from a black dye film on a robust uniform adhesive layer and heat resistance tape. The patterned structure of the black dye was stable in broad pH environments. Diffracted light from the curved nanostructure detected the signal during structural damage, a shift or material tear of 5 με at less than 1.3 N cm. Additionally, the 2D nanostructure detected a surface change from or axis. Tilting the 1D structure within a range of 0.3° to 14.2° provided visible wavelength changes under broadband light to reveal early deflection signs. The curved nanopatterns could be also used for transferable holographic symbol design. Photonic nanopatterns on an adhesive tape could be used as a rapid response, conformable, lightweight, and low-cost dynamic strain sensor.

摘要

建筑物、桥梁和飞机经常受到波动载荷的影响,这可能始于一条细微的裂缝,进而立即导致不可预测的结构故障。固定式应变传感器虽可使用,但成本高昂,且只能检测有限的变形形式和尺寸。在此,我们在胶带上制作了光子应变传感器,可对不规则表面进行实时监测。利用全息干涉图案化技术,在坚固的均匀粘合剂层和耐热胶带上,由黑色染料膜制作出一维(1D)(900纳米×880纳米)和二维(2D)的非线性弯曲纳米结构。黑色染料的图案化结构在广泛的pH环境中保持稳定。来自弯曲纳米结构的衍射光在结构损坏、小于1.3牛·厘米的5微应变的位移或材料撕裂过程中检测信号。此外,二维纳米结构检测到了来自 或 轴的表面变化。在0.3°至14.2°范围内倾斜一维结构,在宽带光下可提供可见波长变化,以揭示早期偏转迹象。弯曲的纳米图案还可用于可转移全息符号设计。胶带上的光子纳米图案可用作快速响应、贴合、轻质且低成本的动态应变传感器。

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