Rosenberger Manuel, Eisenbeil Waltraud, Schmauss Bernhard, Hellmann Ralf
Applied Laser and Photonics Group, University of Applied Sciences Aschaffenburg, Wuerzburger Strasse 45, 63743 Aschaffenburg, Germany.
Institute of Microwaves and Photonics, University of Erlangen-Nuernberg, Cauerstrasse 9, 91058 Erlangen, Germany.
Sensors (Basel). 2015 Feb 12;15(2):4264-72. doi: 10.3390/s150204264.
We demonstrate the application of polymer planar Bragg gratings for multi-axial strain sensing and particularly highlight simultaneous 2D strain measurement. A polymer planar Bragg grating (PPBG) fabricated with a single writing step in bulk polymethylmethacrylate is used for measuring both tensile and compressive strain at various angles. It is shown that the sensitivity of the PPBG strongly depends on the angle between the optical waveguide into which the grating is inscribed and the direction along which the mechanical load is applied. Additionally, a 2D PPBG fabricated by writing two Bragg gratings angularly displaced from each other into a single polymer platelet is bonded to a stainless steel plate. The two reflected wavelengths exhibit different sensitivities while tested toward tensile and compressive strain. These characteristics make 2D PPBG suitable for measuring multi-axial tensile and compressive strain.
我们展示了聚合物平面布拉格光栅在多轴应变传感中的应用,并特别强调了同时进行二维应变测量。通过在块状聚甲基丙烯酸甲酯中进行单步写入制备的聚合物平面布拉格光栅(PPBG)用于测量不同角度下的拉伸应变和压缩应变。结果表明,PPBG的灵敏度强烈依赖于刻写光栅的光波导与施加机械载荷方向之间的夹角。此外,通过将两个相互成角度位移的布拉格光栅写入单个聚合物薄片而制备的二维PPBG被粘结到不锈钢板上。在对拉伸应变和压缩应变进行测试时,两个反射波长表现出不同的灵敏度。这些特性使得二维PPBG适用于测量多轴拉伸应变和压缩应变。