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各类纳米颗粒对耐磨聚醚醚酮+聚四氟乙烯基复合材料力学性能和摩擦学性能的影响。

Effect of Various Type of Nanoparticles on Mechanical and Tribological Properties of Wear-Resistant PEEK + PTFE-Based Composites.

作者信息

Panin Sergey V, Nguyen Duc A, Buslovich Dmitry G, Alexenko Vladislav O, Pervikov Aleksander V, Kornienko Lyudmila A, Berto Filippo

机构信息

Laboratory of Mechanics of Polymer Composite Materials, Institute of Strength Physics and Materials Science SB RAS, 634055 Tomsk, Russia.

Department of Materials Science, Engineering School of Advanced Manufacturing Technologies, National Research Tomsk Polytechnic University, 634030 Tomsk, Russia.

出版信息

Materials (Basel). 2021 Feb 27;14(5):1113. doi: 10.3390/ma14051113.

Abstract

The mechanical and tribological properties of polyetheretherketone (PEEK)- and PEEK + PTFE (polytetrafluoroethylene)-based composites loaded with and four types of nanoparticles (carbonaceous, metallic, bimetal oxide, and ceramic) under metal- and ceramic-polymer tribological contact conditions were investigated. It was found that loading with the nanofillers in a small content (0.3 wt.%) enabled improvement of the elastic modulus of the PEEK-based composites by 10-15%. In the metal-polymer tribological contact, wear resistance of all nanocomposites was increased by 1.5-2.3 times. In the ceramic-polymer tribological contact, loading PEEK with metal nanoparticles caused the intensification of oxidation processes, the microabrasive counterpart wear, and a multiple increase in the wear rate of the composites. The three component "PEEK/10PTFE/0.3 nanofillers" composites provided an increase in wear resistance, up to 22 times, for the metal-polymer tribological contact and up to 12 times for the ceramic-polymer one (with a slight decrease in the mechanical properties) compared to that of neat PEEK. In all cases, this was achieved by the polymer transfer film formation and adherence on the counterparts. The various effects of the four types of nanoparticles on wear resistance were determined by their ability to fix the PTFE-containing transfer film on the counterpart surfaces.

摘要

研究了聚醚醚酮(PEEK)以及PEEK + 聚四氟乙烯(PTFE)基复合材料在金属 - 聚合物和陶瓷 - 聚合物摩擦接触条件下,负载四种类型纳米颗粒(碳质、金属、双金属氧化物和陶瓷)时的力学和摩擦学性能。结果发现,以低含量(0.3 wt.%)负载纳米填料可使PEEK基复合材料的弹性模量提高10 - 15%。在金属 - 聚合物摩擦接触中,所有纳米复合材料的耐磨性提高了1.5 - 2.3倍。在陶瓷 - 聚合物摩擦接触中,向PEEK中负载金属纳米颗粒会导致氧化过程加剧、微磨粒对偶磨损增加以及复合材料磨损率成倍提高。与纯PEEK相比,三元“PEEK/10PTFE/0.3纳米填料”复合材料在金属 - 聚合物摩擦接触中的耐磨性提高了22倍,在陶瓷 - 聚合物摩擦接触中的耐磨性提高了12倍(力学性能略有下降)。在所有情况下,这都是通过在对偶表面形成并附着聚合物转移膜实现的。四种类型纳米颗粒对耐磨性的不同影响取决于它们将含PTFE转移膜固定在对偶表面的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aec6/7956855/441796ca61bb/materials-14-01113-g001.jpg

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