Polycarbonate Based Multifunctional Self-Sensing 2d And 3d Printed Structures For Aeronautic Applications

SMART MATERIALS AND STRUCTURES(2021)

引用 10|浏览0
暂无评分
摘要
Different polycarbonate materials have been reinforced with carbon nanotubes to tune electrical conductivity and to induce piezoresistive self-sensing capabilities. Further, the composites were processed by solvent casting and fused deposition modelling (filament for 3D printing) methods. An electrical conductivity percolation threshold of approximate to 0.3 wt.% has been found for solvent casted films, whereas samples processed by 3D printing show higher thresholds, approximate to 2 wt.%, presenting all samples a similar maximum electrical conductivity (sigma approximate to 1 x 10(-3) S m(-1)), thermal and chemical properties. Overall mechanical properties are larger for the solvent cast films concerning the 3D printed ones, particularly the elongation at break. The piezoresistive sensitivity, obtained after four-point-bending and uniaxial strain experiments, shows gauge factors up to 1.7, independently of the processing method. The functionality of the materials has been demonstrated by the implementation of an airplane wing section model with self-sensing capabilities. Two implemented strategies showed the suitability of the developed materials for real-time monitoring of the wing mechanical deformation.
更多
查看译文
关键词
polycarbonate, piezoresistive, structural health monitoring, 3D printing, self-sensing
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要