Fabrication-controlled morphology of poly(butylene succinate) nano-microcellular foams by supercritical CO2

2018 ◽  
Vol 29 (7) ◽  
pp. 1953-1965 ◽  
Author(s):  
Shuidong Zhang ◽  
Yue Xu ◽  
Peng Wang ◽  
Xiangfang Peng ◽  
Jianbing Zeng
2016 ◽  
Vol 51 (10) ◽  
pp. 4825-4838 ◽  
Author(s):  
C. Gutiérrez ◽  
M. T. Garcia ◽  
R. Mencía ◽  
I. Garrido ◽  
J. F. Rodríguez

Polymers ◽  
2019 ◽  
Vol 11 (11) ◽  
pp. 1852 ◽  
Author(s):  
Zhou Chen ◽  
Junfeng Hu ◽  
Jiajun Ju ◽  
Tairong Kuang

Lightweight, high-strength and electrically conductive poly(butylene succinate) (PBS)/ carbon black (CB) nanocomposite foams with a density of 0.107–0.344 g/cm3 were successfully fabricated by a solid-state supercritical CO2 (ScCO2) foaming process. The morphology, thermal and dynamic mechanical properties, and rheological behavior of the PBS/CB nanocomposites were studied. The results indicate that the CB nanofiller was well dispersed in the PBS matrix and the presence of a proper CB nanofiller can accelerate the rate of crystallization, improve the thermal stability, enhance the stiffness, and increase the complex viscosity of PBS/CB nanocomposites. These improved properties were found to play an important role in the foaming process. The results from foaming experiments showed that the PBS/CB nanocomposite foams had a much smaller cell size, a higher cell density, and a more uniform cell morphology as compared to neat PBS foams. Furthermore, the PBS/CB nanocomposite foams also possessed low density (0.107–0.344 g/cm3), good electrical conductivity (~0.45 S/cm at 1.87 vol % CB loading), and improved compressive strength (108% increase), which enables them to be used as lightweight and high-strength functional materials.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Shudong Chen ◽  
Xiangfang Peng ◽  
Lihong Geng ◽  
Hankun Wang ◽  
Jialin Lin ◽  
...  

AbstractPoly(butylene succinate) (PBS)/polytetrafluoroethylene (PTFE) composites, including three types of PTFE powders, were prepared by melt blending using a HAAKE torque rheometer. Microcellular foams were successfully fabricated by batch foaming with supercritical fluids (scCO2). The effects of PTFE powder type on crystallization, rheological properties and foaming behavior were studied. PTFE L-5 and PTFE JH-220 powders showed good dispersion in the PBS matrix, and PTFE FA-500 powder underwent fibrillation during the melt blending process. All three PTFE powders gradually increased the crystallization temperature of PBS from 78.2 to 91.8 ℃ and the crystallinity from 45.6 to 61.7% without apparent changes in the crystal structure. Rheological results revealed that PBS/PTFE composites had a higher storage modulus, loss modulus, and complex viscosity than those of pure PBS. In particular, the complex viscosity of the PBS/P500 composite increased by an order of magnitude in the low-frequency region. The foamed structure of PBS was obviously improved by adding PTFE powder, and the effect of fibrillated PTFE FA-500 was the most remarkable, with a pore mean diameter of 5.46 μm and a pore density of 1.86 × 109 cells/cm3 (neat PBS foam: 32.49 μm and 1.95 × 107 cells/cm3). Moreover, PBS/P500 foam always guarantees hydrophobicity.


2015 ◽  
Vol 27 ◽  
pp. 389-394 ◽  
Author(s):  
Jingfu Jia ◽  
Wucong Wang ◽  
Yahui Gao ◽  
Yaping Zhao

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