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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Mechanical and tribological behavior of PTFE-polyoxadiazole fiber composites. Effect of filler treatment
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Mechanical and tribological behavior of PTFE-polyoxadiazole fiber composites. Effect of filler treatment

机译:PTFE-聚恶二唑纤维复合材料的力学和摩擦学行为。填料处理的效果

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摘要

Effect of RF plasma treatment of polyoxadiazole (POD) fibers in the medium of tetrafluoroethylene on structure, mechanical and tribological behavior of PTFE-POD fiber composite is studied. It is found that fiber treatment raises the composite density, heat resistance, mechanical strength and improves its tribological behavior. The tensile strength of the 10%-filled composite increases by more than 20% and elongation at break by ~50% compared to the composite filled with the original fibers. Based on the results of IR-spectroscopy, DMA and SEM it is concluded that filler treatment produces a fluoroorganic coating with good wettability by the matrix polymer which reduces the void content and raises adhesion between the matrix and the fibers. This creates conditions for the stress transfer between the components producing the macroscopic changes in the composite properties. Changes in tribological behavior include an increase in both the load-bearing capacity and the friction coefficient compared to the original composite. Some improvement in the wear rate is observed at high specific loads.
机译:研究了四氟乙烯介质中射频等离子体处理聚恶二唑(POD)纤维对PTFE-POD纤维复合材料的结构,力学和摩擦学性能的影响。发现纤维处理提高了复合材料的密度,耐热性,机械强度并改善了其摩擦学性能。与填充原始纤维的复合材料相比,填充了10%的复合材料的抗张强度提高了20%以上,断裂伸长率达到了约50%。基于红外光谱,DMA和SEM的结果,可以得出结论,填料处理可通过基体聚合物产生具有良好润湿性的氟有机涂层,从而减少了空隙含量并提高了基体与纤维之间的附着力。这为组件之间的应力传递创造了条件,从而在复合材料特性中产生了宏观变化。与原始复合材料相比,摩擦学行为的变化包括承载能力和摩擦系数的增加。在高比重下,磨损率有所改善。

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