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Role of microano fillers on mechanical and tribological properties of polyamide66/polypropylene composites

机译:微米/纳米填料对聚酰胺66 /聚丙烯复合材料的机械和摩擦学性能的作用

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The objectives of this research article is to evaluate the mechanical and tribological properties of polyam-ide66/polypropylene (PA66/PP) blend, graphite (Gr) filled PA66/PP, nanoclay (NC) filled PA66/PP and NC plus short carbon fiber (NC + SCF) filled PA66/PP composites. All composites were fabricated using a twin screw extruder followed by injection molding. The mechanical properties such as tensile, flexure, and impact strengths were investigated in accordance with ASTM standards. The friction and sliding wear behaviour was studied under dry sliding conditions against hard steel on a pin-on-disc apparatus. Scanning electron micrographs were used to analyze the fracture morphologies. From the experimental investigation, it was found that the presence of NC and SCF fillers improved the hardness of PA66/PP blend. Further, the study reveals that the tensile and flexural strength of NC + SCF filled PA66/PP was higher than that of PA66/PP blend. Inclusion of micro and nanofillers reduced the wear rate of PA66/PP blend. The wear loss of the composites increased with increasing sliding velocity. The lowest wear rate was observed for the blend with nanoclay and SCF fillers. The wear rates of the blends with microanofillers vary from 30-81% and lower than that of PA66/PP blend. The wear resistance of the PA66/PP composites was found to be related to the stability of the transfer film on the counterface. The results have been supplemented with scanning electron micrographs to help understand the possible wear mechanisms.
机译:本文的目的是评估聚酰胺-ide66 /聚丙烯(PA66 / PP)共混物,石墨(Gr)填充的PA66 / PP,纳米粘土(NC)填充的PA66 / PP和NC以及短碳纤维的机械和摩擦学性能(NC + SCF)填充的PA66 / PP复合材料。所有的复合材料均使用双螺杆挤出机随后注塑成型。根据ASTM标准研究了机械性能,例如拉伸强度,挠曲强度和冲击强度。在销盘设备上,在干式滑动条件下研究了其对硬钢的摩擦和滑动磨损行为。扫描电子显微照片用于分析断裂形态。从实验研究中发现,NC和SCF填料的存在改善了PA66 / PP共混物的硬度。此外,研究表明,NC + SCF填充的PA66 / PP的拉伸和弯曲强度高于PA66 / PP共混物。包含微米和纳米填料可降低PA66 / PP共混物的磨损率。复合材料的磨损损失随着滑动速度的增加而增加。与纳米粘土和SCF填料的混合物的磨损率最低。含微型/纳米填料的共混物的磨损率介于30-81%之间,低于PA66 / PP共混物的磨损率。发现PA66 / PP复合材料的耐磨性与相对面上转印膜的稳定性有关。扫描电子显微镜照片对结果进行了补充,以帮助了解可能的磨损机理。

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