Synergistic effects of carboxylic acid-functionalized carbon nanotube and nafion/silica nanofiber on electrical actuation efficiency of shape memory polymer nanocomposite

Synergistic effects of self-assembled carboxylic acid-functionalized carbon nanotube (CNT) and nafion/silica nanofiber on the electro-activated shape recovery behavior of shape memory polymer (SMP) nanocomposite were investigated. Carboxylic acid-functionalized CNTs were self-assembled onto the carb...

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Veröffentlicht in:Composites. Part B, Engineering Engineering, 2016-09, Vol.100, p.146-151
Hauptverfasser: Lu, Haibao, Yin, Jinying, Xu, Ben, Gou, Jihua, Hui, David, Fu, Yongqing
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container_end_page 151
container_issue
container_start_page 146
container_title Composites. Part B, Engineering
container_volume 100
creator Lu, Haibao
Yin, Jinying
Xu, Ben
Gou, Jihua
Hui, David
Fu, Yongqing
description Synergistic effects of self-assembled carboxylic acid-functionalized carbon nanotube (CNT) and nafion/silica nanofiber on the electro-activated shape recovery behavior of shape memory polymer (SMP) nanocomposite were investigated. Carboxylic acid-functionalized CNTs were self-assembled onto the carbon fiber mat to enhance their bonding reliability and achieve efficient electrical actuation for SMP matrix. Nafion/silica nanofibers were electrospun onto surfaces of the carbon fiber mat to prevent electrically resistive heat dissipation. The combination of electrically/thermally conductive CNTs and thermally resistive nafion/silica nanofibers results in improvement for both electrically induced shape recovery and actuation efficiency in the SMP nanocomposite.
doi_str_mv 10.1016/j.compositesb.2016.06.072
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subjects Actuation
Assembly
Carbon fibers
Carbon nanotubes
Electrical properties
Interface/interphase
Nanocomposites
Nanostructure
Polymer-matrix composites (PMCs)
Shape memory
Silicon dioxide
Synergistic effect
title Synergistic effects of carboxylic acid-functionalized carbon nanotube and nafion/silica nanofiber on electrical actuation efficiency of shape memory polymer nanocomposite
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