会议论文详细信息
1st International Symposium of Indonesian Chemical Engineering 2018
Melt Rheological Properties of Polypropylene/Clay Nanocomposites Prepared from Masterbatch: Effect of Nanoclay Loadings and Reprocessing
Chafidz, A.^1 ; Ma'Mun, S.^1 ; Fardhyanti, D.S.^2 ; Kustiningsih, I.^3 ; Hidayat, A.^1
Chemical Engineering Department, Universitas Islam Indonesia, Yogyakarta
55584, Indonesia^1
Chemical Engineering Department, Universitas Negeri Semarang, Semarang
50229, Indonesia^2
Chemical Engineering Department, Universitas Sultan Ageng Tirtayasa, Cilegon
42435, Indonesia^3
关键词: Angular frequencies;    Co-rotating twin screw extruders;    Complex viscosity;    Melt rheological behavior;    Polypropylene matrices;    PP/clay nanocomposites;    Rheological analysis;    Rheological property;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/543/1/012036/pdf
DOI  :  10.1088/1757-899X/543/1/012036
来源: IOP
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【 摘 要 】
In the present work, polypropylene (PP) and nanoclay in the form of masterbatch were melt compounded using a co-rotating twin screw extruder to fabricate polypropylene (PP)/clay nanocomposites. PP/clay nanocomposites samples with four different nanoclay loadings (i.e. 0, 5, 10, and 15 wt%) were prepared. Additionally, to study the effect of reprocessing on the properties of the nanocomposites, the melt compounding process was carried twice/recycle (i.e. 1st cycle and 2nd cycle). The surface morphological of the nanocomposites and their melt rheological behavior were investigated using a Scanning Electron Microscopy (SEM) and an oscillatory rheometer, respectively. The SEM micrographs showed that the nanoclay was well distributed in the polypropylene matrix for both 1st and 2nd cycles. While, the dispersion state of the nanoclay (either intercalated or exfoliated) could not be observed due to the limitation of the apparatus. Additionally, the melt rheological analysis results showed that the complex viscosity, |μ∗| of all nanocomposites samples (for both 1st and 2nd cycles) were higher than the neat PP and the |μ∗| also increased with the increase of nanoclay loadings. However, the 2nd cycle showed a slightly higher improvement of |μ∗| compared to the 1st cycle, and the improvement of |μ∗| was more prominent at lower angular frequencies (e.g. 0.1, 1, 10 rad/s) than at higher ones (e.g. 100, 500 rad/s).
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