Micromachines | |
A Highly Accurate Method for Deformation Reconstruction of Smart Deformable Structures Based on Flexible Strain Sensors | |
Xinyu Gao1  Wenlin Liao1  Guishan Wang1  Zhili Zhang2  Chengguo Yu2  | |
[1] Facility Design and Instrumentation Institute, China Aerodynamics Research and Development Center, Mianyang 621000, China;Xi’an Research Institute of High Technology, Xi’an 710025, China; | |
关键词: smart deformable structures; large deflection; deformation reconstruction; strain-moment relationship; elliptic integral; flexible strain sensors; | |
DOI : 10.3390/mi13060910 | |
来源: DOAJ |
【 摘 要 】
Smart deformable structures that integrate designing, sensing, and controlling technology have been widely applied in the fields of aerospace, robotics, and biomedical engineering due to their multi-functional requirements. The deformation reconstruction method essential for security monitoring and shape controlling, especially for the large deflection deformation, remains a challenge on accuracy and efficiency. This paper takes a wind tunnel’s fixed-flexible nozzle (FFN) plate as the research object to develop a highly accurate deformation reconstruction method based on sensing information from flexible strain sensors. The mechanical behaviors of the FFN plate with large deflection deformation, which is modeled as a cantilever beam, are studied to analyze the relationship of the strain and moment. Furthermore, the large deflection factor and shell bending theory are creatively utilized to derive and modify the strain–moment based reconstruction method (SMRM), where the contour of the FFN plate is solved by particular elliptic integrals. As a result, structural simulation based on ABAQUS further demonstrates that the reconstruction error of SMRM is 21.13% less than that of the classic Ko-based reconstruction method (KORM). An FFN prototype accompanied by customized flexible sensors is developed to evaluate the accuracy and efficiency of the SMRM, resulting in a maximum relative error of 3.97% that is acceptable for practical applications in smart deformable structures, not limited to the FFN plate.
【 授权许可】
Unknown