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Maleic anhydride polypropylene modified cellulose nanofibril polypropylene nanocomposites with enhanced impact strength

机译:马来酸酐聚丙烯改性的纤维素纳米原纤维聚丙烯纳米复合材料,具有增强的冲击强度

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Development of cellulose nanofibrils (CNFs) reinforced polypropylene (PP) nanocomposites using melt compounding processes has received considerable attention. The main challenges are to obtain well-dispersed CNFs in the polymer matrix and to establish compatible linkages between the CNFs and PP. Manufacturing of CNF reinforced PP nanocomposites was conducted using a twin-screw co-rotating extruder with the masterbatch concept. Modifications of CNFs using maleic anhydride polypropylene were performed. The best mechanical properties of the nanocomposites are 1.94 GPa (tensile modulus), 32.8 MPa (tensile strength), 1.63 GPa (flexural modulus), 50.1 MPa (flexural strength), and 3.8 kJ m(-2) (impact strength), which represents about 36, 11, 21, 7, and 23% improvement, respectively, compared to those of pure PP (1.43 GPa, 29.5 MPa, 1.35 GPa, 46.9 MPa, and 3.1 kJ m(-2)). Fracture morphology examination indicated good dispersion of CNFs in the PP matrix was achieved through this specific manufacturing process. MAPP treatments enhanced the interfacial adhesion between the CNFs and PP. POLYM. COMPOS., 37:782-793, 2016. (c) 2014 Society of Plastics Engineers
机译:使用熔融复合工艺开发纤维素纳米原纤维(CNFs)增强的聚丙烯(PP)纳米复合材料受到了相当大的关注。主要挑战是在聚合物基质中获得分散良好的CNF,并在CNF和PP之间建立相容的键。使用具有母料概念的双螺杆同向旋转挤出机进行CNF增强PP纳米复合材料的制造。使用马来酸酐聚丙烯对CNF进行了改性。纳米复合材料的最佳机械性能为1.94 GPa(拉伸模量),32.8 MPa(拉伸强度),1.63 GPa(弯曲模量),50.1 MPa(弯曲强度)和3.8 kJ m(-2)(冲击强度),与纯PP(1.43 GPa,29.5 MPa,1.35 GPa,46.9 MPa和3.1 kJ m(-2))相比,分别提高了约36%,11%,21%,7%和23%。断裂形态检查表明,通过这种特定的制造工艺,CNF在PP基体中的良好分散。 MAPP处理可增强CNF与PP之间的界面粘附力。 POLYM。 COMPOS。,37:782-793,2016.(c)2014年塑料工程师学会

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