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4D Printing of PETG/TPU Shape Memory Nanocomposites Reinforced with Carbon Nanotubes (CNTs) and Carbon Black (CB)
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DOI:10.1016/j.jmrt.2026.06.165.png)
Abstract
En 中文
4D printing of shape memory polymers (SMPs) enables time-programmed function, and conductive fillers are promising additives for improving thermomechanical performance and potentially enabling future electrothermal activation. In this study, the effect of carbon-based nanoparticles, including carbon black (CB) and carbon nanotubes (CNTs), on a PETG/TPU (70/30) blend was investigated using formulations reinforced with CB or CNT at 6 wt% and a hybrid CB3%/CNT3%. The mechanical properties, dynamic mechanical thermal analysis (DMTA), printability, morphology, and shape memory behavior of the nanocomposites were investigated. The neat PETG/TPU showed UTS 26.22 MPa and elongation 7.9%; the elastic modulus was essentially unchanged by adding nanoparticles. Among the nanocomposites, CB6% provided the best overall balance, with UTS 26.63 MPa, elongation 7.67%, and 92% recovery in 19 s (fixity 100%). CNT6% exhibited lower strength but higher ductility (elongation roughly doubled versus the neat blend) with recovery close to CB6%. The CB3%/CNT3% hybrid showed the weakest mechanical response and the lowest recovery. microstructural properties supported these trends: CB showed more uniform dispersion and fewer interlayer voids; CNT was broadly similar but slightly rougher; the hybrid displayed more defects. Overall, 6 wt% CB is identified as the most balanced composition for PETG/TPU when mechanical integrity, printability, and rapid thermally induced shape recovery are required. 6 wt% CNT is suitable where additional deformability is desired, while the equal-ratio hybrid should be avoided unless dispersion is improved.
Keywords:
4D Printing
Shape memory polymers (SMPs)
Carbon nanotubes (CNTs)
Carbon black (CB)
PETG/TPU blend
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