Huang Chung-Wei, Yang Teng-Chun, Hung Ke-Chang, Xu Jin-Wei, Wu Jyh-Horng
Department of Forestry, National Chung Hsing University, Taichung 402, Taiwan.
Polymers (Basel). 2018 Apr 1;10(4):382. doi: 10.3390/polym10040382.
The influence of maleated polypropylene (MAPP) on the non-isothermal crystallization behavior of wood fiber (WF)-reinforced PP composites (WPCs) was investigated by a differential scanning calorimeter (DSC). The results showed that MAPP as a nucleation agent accelerated the crystallization rate of the PP matrix in WPC under the cooling process. The corresponding crystallization kinetics and activation energy were further analyzed using the Avrami method, Avrami⁻Ozawa method, Kissinger method, and Friedman method. The results demonstrated that MAPP significantly changed the crystal growth mechanism of the PP matrix to heterogeneous nucleation for acicular and tabular crystal growth during the annealing step. A remarkably lower cooling rate can achieve a certain relative crystallinity degree at the unit crystallization time for WPC with 3 wt % MAPP (WPC). Similarly, the lowest crystallization activation energy was observed for the WPC among all WPCs by the Kissinger method. Furthermore, based on the Friedman method, the addition of MAPP easily caused the PP matrix to crystallize in the WPC at the initial stage of relative crystallinity.
采用差示扫描量热仪(DSC)研究了马来酸酐接枝聚丙烯(MAPP)对木纤维(WF)增强聚丙烯复合材料(WPC)非等温结晶行为的影响。结果表明,在冷却过程中,MAPP作为成核剂加速了WPC中PP基体的结晶速率。利用Avrami法、Avrami⁻Ozawa法、Kissinger法和Friedman法进一步分析了相应的结晶动力学和活化能。结果表明,在退火步骤中,MAPP显著改变了PP基体的晶体生长机制,使其向针状和片状晶体生长的异相成核转变。对于含3 wt% MAPP的WPC,在单位结晶时间内,显著较低的冷却速率即可达到一定的相对结晶度。同样,通过Kissinger法观察到,在所有WPC中,该WPC的结晶活化能最低。此外,基于Friedman法,MAPP的添加容易使WPC中的PP基体在相对结晶度初始阶段结晶。