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Tribological and Mechanical Behavior of Graphite Composites of Polytetrafluoroethylene (PTFE) Irradiated by the Electron Beam

机译:电子束照射聚四氟乙烯(PTFE)石墨复合材料的摩擦学和力学行为

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摘要

This research investigated the effect of irradiation with an electron beam energy of 10 MeV in doses of 26–156 kGy on polytetrafluoroethylene (PTFE) with a 15% and 20% graphite additive. The research has shown that mechanical (compression strength, hardness, and Young’s modulus) and sclerometric (coefficient of wear micromechanism and coefficient of resistance to wear) properties improve and tribological wear decreases as graphite content increases. Electron beam irradiation increases the degree of crystallinity of both materials to a similar extent. However significant differences in the improvement of all examined properties have been demonstrated for PTFE with higher (20%) graphite content subjected to the electron beam irradiation. This polymer is characterized by higher hardness and Young’s modulus, reduced susceptibility to permanent deformation, higher elasticity, compression strength, and above all, a nearly 30% reduction in tribological wear compared to PTFE with a 15% graphite additive. The most advantageous properties can be obtained for both of the examined composites after absorbing a dose of 104 kGy. The obtained results hold promise for the improvement of the operational life of friction couples which do not require lubrication, used for example in air compressors and engines, and for the possibility of application of these modified polymers. In particular PTFE with 20% graphite content, in the nuclear and space industry.
机译:该研究研究了用10mev的电子束能量在26-156 kgy上的聚四氟乙烯(PTFE)上的电子束能量的影响,具有15%和20%的石墨添加剂。研究表明,随着石墨含量的增加,机械(压缩强度,硬度和杨氏模量)和硬管(耐磨微机械和耐磨系数和耐磨系数)性能提高和摩擦磨损减少。电子束辐射增加了两种材料的结晶度在相似程度上。然而,已经对具有较高(20%)石墨含量的PTFE对电子束照射进行了较高(20%)石墨含量的显着差异。该聚合物的特征在于硬度和杨氏模量较高,对永久变形的易感性降低,更高的弹性,压缩强度,以及摩擦磨损的近30%,与具有15%石墨添加剂的PTFE相比。在吸收104 kgy的剂量后,可以获得最有利的性质。所获得的结果持有希望改善不需要润滑的摩擦耦合的操作寿命,例如在空气压缩机和发动机中使用,以及用于施加这些改性聚合物的可能性。特别是PTFE在核和空间行业中具有20%的石墨含量。

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