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Thermo-mechanical properties of microfibrillated cellulose-reinforced partially crystallized PLA composites

机译:微纤化纤维素增强的部分结晶的PLA复合材料的热机械性能

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Polylactic acid (PLA) in a crystallized state has mechanical properties at high temperatures superior to PLA in an amorphous state. However, a long annealing time is required to fully crystallize PLA. In this study, microfibrillated cellulose (MFC)-reinforced partially crystallized PLA composites were produced, with the goal of reducing the time required to fabricate PLA parts. A series of PLA/MFC composites at a fiber content of 10 wt% from degree of crystallinity (Xc) 0 to 43% was obtained by annealing at 80 °C. Although the annealing time required to obtain a composite (Xc: 17%) was only around one-seventh of the 20 min needed to fully crystallize neat PLA (Xc: 41%), both materials had comparable rigidity above the glass transition temperature (T g) and creep deformation at around T g. These results showed that partially crystallized PLA/MFC composite can replace fully crystallized neat PLA.
机译:结晶态的聚乳酸(PLA)在高温下的机械性能优于非晶态的PLA。但是,需要很长的退火时间才能使PLA完全结晶。在这项研究中,生产微纤化纤维素(MFC)增强的部分结晶的PLA复合材料,目的是减少制造PLA零件所需的时间。通过在80℃下退火,获得了一系列的PLA / MFC复合材料,其纤维含量为结晶度(Xc)为0至43%时为10wt%。尽管获得复合材料所需的退火时间(Xc:17%)仅是使纯PLA完全结晶所需的20分钟(Xc:41%)的七分之一左右,但两种材料在玻璃化转变温度(T g )和大约T g 处的蠕变变形。这些结果表明,部分结晶的PLA / MFC复合材料可以代替完全结晶的纯PLA。

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