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Influence of the polarity of the matrix on the breakage mechanisms of lignocellulosic fibers during twin-screw extrusion

机译:矩阵对双螺杆挤压过程中木质纤维素纤维破裂机制的影响

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In a series of previous papers, models describing the breakage of lignocellulose fibers during melt mixing process were established and applied to predict fiber size changes when compounding composites in a twin-screw extruder. Different types of fibers were studied (flax, hemp, sisal, etc), but always with the same matrix, namely polypropylene (PP) compatibilized with PP grafted with maleic anhydride (PP-g-MA). In the present study, the influence of the matrix was characterized, by comparing the results obtained with nonpolar PP and polar poly(butylene succinate) (PBS) of similar viscosity. For flax and hemp fibers, morphology changes (in length and diameter) were characterized along the screws under various processing conditions (screw speed and feed rate). Whatever the conditions, breakage was more important with the PBS matrix. Moreover, the rheological properties of the composites were also different, indicating specific interactions between fibers and matrices. Atomic force microscopy was used to measure the adhesion between the different matrices and AFM levers functionalized with nanocrystalline cellulose. The results confirmed a better interaction between the nanocrystalline cellulose and the PBS matrix compared to the PP one.
机译:在一系列先前的论文中,建立并施加描述熔融混合过程中木质纤维素纤维破裂的模型,以预测在双螺杆挤出机中复合复合材料时的纤维尺寸变化。研究了不同类型的纤维(亚麻,大麻,Sisal等),但总是具有与用马来酸酐(PP-G-MA)接枝的PP相同的相同基质,即聚丙烯(PP)。在本研究中,通过比较与类似粘度的非极性PP和极聚(丁烯琥珀酸)(PBS)获得的结果进行了表征了基质的影响。对于亚麻和大麻纤维,在各种加工条件下沿着螺钉(螺杆速度和进料速率)以螺钉表征形态变化(长度和直径)。无论任何条件如何,PBS基质都更重要。此外,复合材料的流变性质也不同,表明纤维和基质之间的特异性相互作用。原子力显微镜用于测量用纳米晶纤维素官能化的不同基质和AFM杆之间的粘附性。结果证实纳米晶纤维素与PBS基质之间的更好的相互作用与PP 1相比。

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