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Effect of Grafting with Maleic Anhydride on Interfacial Bonding of Rubber Wood Flour Filled Poly(propylene) Composite

机译:马来酸酐接枝对橡胶木粉填充聚(丙烯)复合材料界面粘接的影响

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The process of making wood-plastic composites with poly(propylene) as a matrix and rubber wood flour with particle size of 0.709 mm as a flller has been carried out by combination of the dry blending method and the extrusion treatment using twin screw extruder. The content of rubber wood flour was adjusted as 10wt% for each composite formula. Maleic anhydride grafted poly(propylene) (PP-g-MA) was added as a coupling agent at four concentrations, 0, 5, 10 and 15 wt%. Melt flow rate (MFR), crystalisation temperature and mechanical properties of composites indicate that increase in PP-g-MA generated decrease in melt viscosity signiflcantly, which reversed MFR is increased, while mechanical properties increased due to interfacial bonding improved. Based on the differential scanning calorimetric analysis it was found that the mechanical properties and crystallization temperature increased with increasing PP-g-MA content, due to increase in interfacial bonding between matrix and sawdust flllers. In addition, fracture surface imaging analysis showed that good adhesion was present in the interface of composites between 10wt% and 15wt% PP-g-MA.
机译:通过使用双螺杆挤出机的干混方法和挤出处理的组合,通过组合使用双螺杆挤出机的挤出处理,将具有0.709mm的基质和橡胶木面粉与聚(丙烯)作为基质和橡胶木面粉制成基质和橡胶木面粉。对于每个复合式配方,将橡胶木粉的含量调节为10wt%。将马来酸酐接枝聚(丙烯)(PP-G-MA)加入到四个浓度,0,5,10和15wt%的偶联剂中加入偶联剂。复合材料的熔体流速(MFR),结复制的晶体化温度和机械性能表明PP-G-MA的增加,熔融粘度显着的降低,其逆转的MFR增加,而机械性能由于界面粘合而增加。基于差分扫描量热分析,发现机械性能和结晶温度随着基质和锯末浮雕之间的界面键合而增加,增加了PP-G-MA含量。此外,断裂表面成像分析表明,在10wt%和15wt%pp-g-ma之间的复合材料界面中存在良好的粘合性。

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