Mechanical, electrical, and damage self-sensing properties of basalt fiber/carbon nanotube/poly (arylene ether nitrile) composites
Libing Liu(Ministry of Education), Yuanpeng Wu(Southwest Petroleum University), Bin Wang(Southwest Petroleum University), Hui Li(Nanjing University), Chunxia Zhao(Southwest Petroleum University), Z. Y. Liu(Southwest Petroleum University), Dong Xiang(Southwest Petroleum University), Yusheng Gong(Southwest Petroleum University), Jingxiong Ma(Southwest Petroleum University)
Cited by 6
Related Papers
Enhanced performance of 3D printed highly elastic strain sensors of carbon nanotube/thermoplastic polyurethane nanocomposites via non-covalent interactions
|Composites Part B Engineering|2019|260
Synergistic effect of ammonium polyphosphate and layered double hydroxide on flame retardant properties of poly(vinyl alcohol)
|Polymer Degradation and Stability|2008|250
BN Nanosheet/Polymer Films with Highly Anisotropic Thermal Conductivity for Thermal Management Applications
|ACS Applied Materials & Interfaces|2017|242
Super-tough artificial nacre based on graphene oxide via synergistic interface interactions of π-π stacking and hydrogen bonding
|Carbon|2016|213
Flexible and high-performance piezoresistive strain sensors based on carbon nanoparticles@polyurethane sponges
|Composites Science and Technology|2020|190