作者: Shang-Lin Gao , Edith Mäder
DOI: 10.1016/B978-0-323-26434-1.00010-6
关键词: Thermal analysis 、 Composite material 、 Surface coating 、 Materials science 、 Glass fiber 、 Nanoindentation 、 Microscopy 、 Nano- 、 Polymer 、 Nanoscopic scale
摘要: This work aims to develop fundamental knowledge on multifunctional interphases of hierarchical composites. An approach based structures micro- and nanofillers in polymer matrix composites is proposed order (i) optimize mechanical properties (ii) a self-diagnosing ability interphases. Carbon are used integrate both electrical functionalities into conventional fiber surfaces composite Various thermal/elasticity/electricity mapping techniques (nano thermal analysis (nano-TA), atomic force microscopy, nanoindentation, electric microscopy) employed for collecting relevant nanofiller-rich interphase data about morphology local properties. The have different compositions compared the bulk matrix. able detect microcracks utilize them as real-time situ sensors early warning catastrophic failure materials. nanoscale dimensions, sensitive electronic detection, flexible structure control hold immense promise with intelligent sensing capability.