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Tribological properties of radiation cross-linked polytetrafluoroethylene sheets

机译:辐射交联聚四氟乙烯片的摩擦学性能

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A polytetrafluoroethylene (PTFE) sheet was cross-linked by electron beam irradiation at 335 ± 5℃ in a nitrogen gas atmosphere. With increasing dose, the cross-linked PTFE (X-PTFE) sheet became transparent, and the melting point and the heat of crystallization decreased gradually. The tribological behavior of the X-PTFE sheet was investigated on a ring-on-ring tribometer and a block-on-ring friction tester under dry friction conditions. It was shown that the friction coefficient of X-PTFE increased with the absorbed dose, and that the increase was about 5% for cross-linking at a dose of 3000 kGy. The substantial improvement of the wear resistance of X-PTFE is of particular interest. The wear resistance of X-PTFE was improved by three orders of magnitude at a dose of 150 kGy. Scanning electron microscopy (SEM) analysis revealed that, after the tribological test, the ground surface of the virgin PTFE sheet was smooth, and the debris was in the form of flakes; while the worn surface of X-PTFE was rough, and the abraded debris was in the form of a fine powder. The three-dimensional network of X-PTFE is responsible for its excellent wear resistance behavior.
机译:聚四氟乙烯(PTFE)片材在氮气气氛中以335±5℃通过电子束辐照交联。随着剂量的增加,交联的PTFE(X-PTFE)片材变得透明,熔点和结晶热逐渐降低。 X-PTFE片材的摩擦学性能是在干摩擦条件下,在环环式摩擦计和环环式摩擦测试仪上进行研究的。结果表明,X-PTFE的摩擦系数随吸收剂量的增加而增加,在3000 kGy的剂量下,交联的增加约5%。 X-PTFE耐磨性的显着改善特别令人关注。在150 kGy的剂量下,X-PTFE的耐磨性提高了三个数量级。扫描电子显微镜(SEM)分析表明,经摩擦学测试,原始PTFE片的地面光滑,碎片呈薄片状。 X-PTFE的磨损表面粗糙,磨屑呈细粉状。 X-PTFE的三维网络是其出色的耐磨性能的原因。

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