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Mechanical and tribological properties of thermoplastic polyetheretherketone based nanocomposites

机译:热塑性聚醚醚酮基纳米复合材料的机械和摩擦学性能

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Mechanical and tribological properties of polyetheretherketone (PEEK) based nanocomposites filled with nanoparticles of i) copper (Cu), ii) brass (Cu-Zn), iii) silicon dioxide (SiO_2) and iv) copper ferrite (CuFe_2O_4) at tribotesting against metal and ceramic counterparts were studied. It is shown that at nanofillers content 0.3 wt. % the mechanical properties of the composites (elastic modulus, tensile strength) increased by 10-12 %, while the elongation at break decreased by 5-7 %. For most of the nanofillers used the wear rate of the composites increased at testing in metal-polymer tribological conjugation, while it always decreased at testing against ceramic counterpart. It is shown that nanofillers ensured dispersion hardening and did not act as a solid lubricant in the composites based on the high-strength PEEK matrix. The increasing wear resistance in metal-polymer tribological conjugation can be attained through the formation of a polymer transfer film on the steel counterpart which protects both components of the friction pair from intensive wear.
机译:基于聚醚醚酮(PEEK)的纳米复合材料的机械和摩擦学性质填充纳米颗粒的纳米颗粒,二氧化碳(Cu-Zn),III)二氧化碳(SiO_2)和IV)铜铁素体(Cufe_2O_4)在反对金属和陶瓷对应物进行了研究。显示在纳米填充物含量0.3重量%。复合材料的机械性能(弹性模量,拉伸强度)增加10-12%,而断裂伸长率下降5-7%。对于大多数纳米填充物,使用复合材料的磨损率在金属 - 聚合物摩擦族族的测试中增加,而在对陶瓷对应物的测试中总是降低。结果表明,纳米填料确保了分散硬化,并且在基于高强度PEEK基质的复合材料中没有用作固体润滑剂。通过在钢对应物上形成聚合物转移膜,可以通过形成钢对应物的聚合物转移膜来实现耐磨损性的耐磨性,这保护摩擦对的两个部件免受密集磨损。

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