Applied Electromagnetism Laboratory, Federal University of Pará, Rua Augusto Corrêa, 01, Belém 66075-110, Brazil.
Institute for Systems and Computer Engineering, Technology and Science, Rua do Campo Alegre, 687, 4169-007 Porto, Portugal.
Sensors (Basel). 2022 Oct 9;22(19):7652. doi: 10.3390/s22197652.
An optical strain gauge based on a balloon-like interferometer structure formed by a bent standard single-mode fiber combined with a 3D printer piece has been presented and demonstrated, which can be used to measure displacement. The interferometer has a simple and compact size, easy fabrication, low cost, and is repeatable. The sensor is based on the interference between the core and cladding modes. This is caused by the fiber's curvature because when light propagates through the curved balloon-shaped interferometer region, a portion of it will be released from the core limitation and coupled to the cladding. The balloon has an axial displacement as a result of how the artwork was constructed. The sensor head is sandwiched between two cantilevers such that when there is a displacement, the dimension associated with the micro bend is altered. The sensor response as a function of displacement can be determined using wavelength shift or intensity change interrogation techniques. Therefore, this optical strain gauge is a good option for applications where structure displacement needs to be examined. The sensor presents a sensitivity of 55.014 nm for displacement measurements ranging from 0 to 10 mm and a strain sensitivity of 500.13 pm/μϵ.
一种基于弯曲标准单模光纤与 3D 打印件形成的气球状干涉仪结构的光应变计已经被提出并得到了验证,它可以用于测量位移。该干涉仪具有尺寸简单紧凑、易于制造、成本低且可重复的特点。该传感器基于纤芯和包层模式之间的干涉。这是由于光纤的曲率引起的,因为当光通过弯曲的气球状干涉仪区域传播时,一部分光将从纤芯限制中释放出来并耦合到包层中。由于艺术品的构造,气球会产生轴向位移。传感器头夹在两个悬臂梁之间,因此当发生位移时,与微弯相关的尺寸会发生变化。可以使用波长移动或强度变化的询问技术来确定传感器响应与位移的关系。因此,这种光纤应变计是需要检查结构位移的应用的一个不错的选择。该传感器在 0 到 10 毫米的位移测量范围内具有 55.014nm 的灵敏度,应变灵敏度为 500.13pm/μϵ。